Automation and Control
IP 67 I/O Splitter Boxes
Catalog
January
07
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Contents
0
IP 67 I/O Splitter Boxes
IP 67 passive splitter boxes
Selection guide . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .page 4, 5
b Telefast® Distribution Systems, ABE9 splitter boxes. . . . . . . . . . . . . . . . page 6, 7
v Characteristics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 8
v References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 9
v Dimensions, Connections . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 10, 11
IP 67 monobloc I/O splitter boxes for fieldbuses
Selection guide . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .page 12, 13
b Advantys™ Distributed I/O, FTB splitter boxes. . . . . . . . . . . . . . . . . . . page 14, 15
v Advantys, FTB splitter boxes for CANopen™ & DeviceNet™ bus extensions
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 16 - 19
v Advantys, FTB splitter boxes for Profibus™-DP bus extensions . . page 20 - 22
v Advantys, FTB splitter boxes for InterBus™ bus extensions . . . . . page 23 - 25
v Characteristics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 26, 27
v References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 28 - 30
v Dimensions, Connections . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 31 - 33
IP 67 modular I/O splitter boxes for fieldbuses
Selection guide . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .page 34, 35
b Advantys™ Distributed I/O, FTM splitter boxes . . . . . . . . . . . . . . . . . page 36 - 39
v Advantys, FTM bus modules for CANopen™ bus extensions . . . . . . . . page 40
v Advantys, FTM bus modules for DeviceNet™ bus extensions . . . . . . . . page 41
v Advantys, FTM bus modules for Profibus™-DP bus extensions. . . . . . . page 42
v Connections. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 43 - 45
v Characteristics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 46, 47
v References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 48, 49
v Dimensions, Schemes. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 50, 51
Power supplies for d.c. control circuits
Selection guide . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .page 52, 53
b Phaseo® modular regulated power supplies . . . . . . . . . . . . . . . . . . . . . . . page 54
v Characteristics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 55
v Selection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 56
v References, Dimensions, Schemes. . . . . . . . . . . . . . . . . . . . . . . . . . . . page 57
b Phaseo® regulated switch mode power supplies. . . . . . . . . . . . . . . . . page 58, 59
v Selection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 60 - 61 & 66
v Characteristics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 62 - 65
v References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 67
v Dimensions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . page 68, 69
3
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Selection guide
0
IP 67 I/O Splitter Boxes and
Modules
0
Splitter box and module type
Passive splitter boxes
Monobloc I/O splitter boxes and modules
Telefast® ABE9 splitter boxes
Advantys™ FTB splitter boxes
™
Fieldbus type
–
CANopen
™
DeviceNet
™
Profibus -DP
™
InterBus
Number of inputs/outputs
Type of signal
8 I/O, 16 I/O
16 I, 8 I + 8 O, 12 I + 4 O, 16 I/O,
8 I + 8 I/O
Digital
Functions
Connection of 1 to 16 sensors/actuators
Type of input/output connectors
Housing type
M12 (M8 connection available with T-connection accessory)
Plastic
Plastic
Metal
Module type
ABE 9
FTB 1
Pages
9
28
4
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0
0
Modular I/O splitter boxes
Advantys, FTM splitter boxes
™
CANopen
™
DeviceNet
™
Profibus -DP
8 I, 16 I, 8 I/O and 16 I/O, digital
4 I or 4 O, analog
Digital and analog
Connection of 1 to 256 sensor/actuators per bus
module
M8 and M12
Plastic only
FTM 1
48
5
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Presentation
0
IP 67 passive splitter boxes
Telefast® Distribution System,
ABE9 splitter boxes
0
Presentation
ABE9 passive splitter boxes for M12 connectors make it possible to eliminate long
and difficult cabling operations. Due to their modularity and their dimensions, they
are the ideal solution for a wide variety of customer applications.
Connection to the processing unit can either be made by connector or by multicore
cable of different lengths.
IP 67 protection allows these products to be used within processes or machines in
harsh environments (splashing water, oil, dust, etc.).
The splitter boxes, available in 4 or 8 channel versions, allow connection of up to 16
signals maximum, depending on the version (2 per channel).
The characteristics of splitter boxes ABE 9C12 are as follows:
b Connection of sensors and actuators using M12, 5-pin connectors.
b Modularity: 4 or 8 channels.
b Mounting system and connection to the processing unit conforming to market
standards:
v mounting holes,
v M23, 19-pin connector, enabling the use of pre-formed cables in order to reduce
installation time and the risk of error,
v multicore cable, 5 or 10 meters (16.4 or 32.8 ft.) long. The splitter box comprises
a connection cover fitted with plug-in terminals, which provides considerable
flexibility for:
- the replacement of damaged parts,
- modification of cable length.
Base units ABE 9C12ppLppenable the use of 2 separate commons. This function is
accessible beneath the terminal cover using 2 removable links. If both links are
removed, the 2 supplies become independent.
The use of a Y-connector allows 2 signals to be connected to the same M12 channel
on the splitter box.
Example: splitter box ABE 9C1281 (8 channels) enables the connection of
16 signals to the processing unit.
The Y-connector is available in 2 versions:
b M12-M12 for connection of two M12 connectors to a single M12 channel on the
splitter box,
b M8-M12 for connection of two M8 connectors to a single M12 channel on the
splitter box.
Complete reference
ABE 9C1240L05
ABE 9C1240L10
=
=
=
Splitter box only
ABE 9C1240M
ABE 9C1240M
+
+
+
Connector with cable
ABE 9XCA1405
ABE 9XCA1410
ABE 9C1241L05
ABE 9C1241L10
=
=
ABE 9C1241M
ABE 9C1241M
+
+
ABE 9XCA1405
ABE 9XCA1410
ABE 9C1280L05
ABE 9C1280L10
=
=
ABE 9C1280M
ABE 9C1280M
+
+
ABE 9XCA1805
ABE 9XCA1810
ABE 9C1281L05
ABE 9C1281L10
=
=
ABE 9C1281M
ABE 9C1281M
+
+
ABE 9XCA1805
ABE 9XCA1810
Connector only
ABE 9CM12C
Description:
page 7
Characteristics:
page 8
References:
page 9
Dimensions:
page 10
Connections:
page 11
6
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Description
0
IP 67 passive splitter boxes
Telefast® Distribution System,
ABE9 splitter boxes
0
Description
Passive splitter boxes ABE 9C12ppC23 have the following on the front face:
1
2
1 Four or eight M12 female connectors (depending on model) for connection of
sensors and actuators (2 channels per connector).
2 Eight or sixteen channel status indicator lights (depending on model).
3 One “Power on” indicator light on the splitter box (depending on model).
4 One M23, 19-pin male connector.
7
5 Four or eight channel marker labels.
3
5
6 One splitter box marker label.
7 Splitter box mounting holes.
4
6
Passive splitter boxes ABE 9C12ppLpphave the following on the front face:
1
2
1 Four or eight M12 female connectors (depending on model) for connection of
sensors and actuators (2 channels per connector).
2 Eight or sixteen channel status indicator lights (depending on model).
3 Two “Power on” indicator lights on the splitter box (depending on model).
4 One removable connection cover fitted with plug-in terminals.
5 Four or eight channel marker labels.
7
3
6 One splitter box marker label.
5
7 Splitter box mounting holes.
4
6
Presentation:
page 6
Characteristics:
page 8
References:
page 9
Dimensions:
page 10
Connections:
page 11
7
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Characteristics,
substitution
IP 67 passive splitter boxes
Telefast® Distribution System,
ABE9 splitter boxes
0
0
Splitter box type
ABE 9C12p0C23
ABE 9C12p1C23
ABE 9C12p0Lpp,
ABE 9C12p0M
ABE 9C12p1Lpp,
ABE 9C12p1M
Environmental characteristics
Product certifications
cULus
Temperature
Operation
°C
(°F)
- 20 to + 80
(- 4 to + 176)
Storage
°C
(°F)
- 40 to + 85
(- 40 to + 185)
Degree of protection
Vibration resistance
Conforming to IEC 529
IP 67
Conforming to IEC 68-2-6,
test Fc
Hz
10 ≤ f ≤ 57 (constant amplitude = 1.5 mm)
57 ≤ f ≤ 150 (constant acceleration = 0.20 gn)
Shock resistance
Insulation group
Mounting
Conforming to IEC/EN 68-2-2
VDE 0110
30 gn, for 11 ms
Category 3
All positions
Mechanical mounting
M4 screw mounting
Channel characteristics
Number of channels
4 or 8 (depending on model)
M12, 5-pin female connectors
Type of connection per channel
Nominal voltage
cV 24
Current per channel
A
4 maximum
Contact resistance
mΩ
5
–
–
Power supply status indication
Channel status indication
Green LED
Yellow LED
–
–
Green LED
Yellow LED
Connection characteristics
Type of connection
M23, 19-pin male connector
Multicore cable
Total current in commons
1 mm2 (18 AWG) supply wire
A
A
16
0.75 mm2 (19 AWG) supply wire
12
Separation of commons
Without
Without or with (by removing links BR1 and
BR2, see connections on 11)
Substitution table
Previous range
New range
Splitter boxes with connection by M23 connector
XZ LC1241C3
ABE 9C1241C23
XZ LC1240C3
ABE 9C1240C23
ABE 9C1281C23
ABE 9C1280C23
XZ LC1281C3
XZ LC1280C3
Splitter boxes with connection by cable
XZ LC1241L5
XZ LC1240L5
XZ LC1241L10
XZ LC1240L10
XZ LC1281L5
ABE 9C1241L05
ABE 9C1240L05
ABE 9C1241L10
ABE 9C1240L10
ABE 9C1281L05
ABE 9C1280L05
ABE 9C1281L10
ABE 9C1280L10
XZ LC1280L5
XZ LC1281L10
XZ LC1280L10
Accessories
XZ LG102
FTX CM12B
FTX CY1212
XZ LC1220C1
Presentation:
page 6
Description:
page 7
References:
page 9
Dimensions:
page 10
Connections:
page 11
8
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References
0
IP 67 passive splitter boxes
Telefast® Distribution System,
ABE9 splitter boxes
0
References
Splitter boxes with connection by M23 connector
Number of
channels
Connection
by
LED
indicator
Reference
Weight
kg
4
4 x M12 female connectors
With
ABE 9C1241C23
ABE 9C1240C23
0.080
0.080
Without
8
8 x M12 female connectors
With
ABE 9C1281C23
ABE 9C1280C23
0.140
0.140
Without
Splitter boxes with connection by cable
Number of
channels
Connection
by
Length
m (ft.)
LED
indicator
Reference
Weight
kg
4
4 x M12 female 5 (16.4)
connectors
With
ABE 9C1241L05
ABE 9C1240L05
0.680
0.680
ABE 9C124pC23
Without
ABE 9C128pC23
10 (32.8)
With
ABE 9C1241L10
ABE 9C1240L10
1.700
1.700
Without
8
8 x M12 female 5 (16.4)
connectors
With
ABE 9C1281L05
ABE 9C1280L05
1.610
1.610
Without
10 (32.8)
With
ABE 9C1281L10
ABE 9C1280L10
3.060
3.060
Without
Splitter boxes only, M12
Number of
channels
For use with connector
terminal with cable
LED
indicator
Reference
Weight
kg
4
ABE 9CM12C ABE 9XCA14ppWith
Without
ABE 9C1241M
ABE 9C1240M
0.060
0.060
8
ABE 9CM12C ABE 9XCA18ppWith
Without
ABE 9C1281M
ABE 9C1280M
0.100
0.100
Separate components
ABE 9C128pLpp
ABE 9C124pLpp
Type
No. of For use with splitter box
chan-
nels
Length
Reference
Weight
m (ft.)
kg
Terminal
block
connector (1)
Connectors
with cable
–
4
ABE 9C124pM
ABE 9C128pM
–
ABE 9CM12C
0.040
ABE 9C124pM
5 (16.4)
ABE 9XCA1405
ABE 9XCA1410
1.060
2.080
10 (32.8)
8
ABE 9C128pM
5 (16.4)
ABE 9XCA1805
ABE 9XCA1810
1.510
2.240
10 (32.8)
Accessories
Description
Composition
Reference
Weight
kg
Sealing plugs
Y-connectors
For M8 connector (lot of 10)
For M12 connector (lot of 10)
FTX CM08B
FTX CM12B
0.100
0.100
ABE 9C128pM
ABE 9XCA1ppp
Connection of 2 x M8 connectors to M12
connector on splitter box
FTX CY1208
FTX CY1212
ABE 9XLA10
0.020
0.030
–
Connection of 2 x M12 connectors to M12
connector on splitter box
Marker labels
Lot of 12
(1) To be wired by user.
FTXCY1208
Presentation:
page 6
Description:
page 7
Characteristics:
page 8
Dimensions:
page 10
Connections:
page 11
9
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Dimensions,
connections
IP 67 passive splitter boxes
Telefast® Distribution System,
ABE9 splitter boxes
0
0
Dimensions
ABE 9C124pC23
ABE 9C124pLpp
50.2
1.97"
50.2
1.97"
Ø4.5
Ø4.5
15.5 (0.61")
33
1.29"
20.4 (0.80")
39
1.53"
36.5
1.44"
26.5
1.04"
15.5 (0.61")
42
1.65"
ABE 9C128pLpp
33
1.29"
39
1.53"
ABE 9C128pC23
50.2
1.97"
50.2
1.97"
2xØ4.5
2xØ4.5
15.5 (0.61")
33
1.29"
20.4 (0.80")
39
1.53"
36.5
26.5
1.04"
15.5 (0.61")
1.43"
33
1.29"
42
39
1.65"
1.53"
FTX CY1208
FTX CY1212
15 (0.59")
33
(1.29")
35
(1.37")
15 (0.59")
Y-connector connection
FTX CY1208
FTX CY1212
M8
female
M8
female
M12
female
M12
female
1
3
4
1
3
1
2
3
1
2
3
4
4
5
4
5
1
2
3
4
1
2
3
4
5
M12 male
M12 male
Presentation:
page 6
Description:
page 7
Characteristics:
page 8
References:
page 9
Connections:
page 11
10
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Connections (continued)
0
IP 67 passive splitter boxes
Telefast® Distribution System,
ABE9 splitter boxes
0
ABE 9C124pC23
Item
1/4
1/2
Contact
15
7
2/4
2/2
3/4
3/2
4/4
4/2
1 and 3/1
2 and 4/1
1 and 3/3
2 and 4/3
1 to 4/5
5
4
16
8
3
14
19
19
6
6
12
12
18
11
17
1
10
2
4
13
3
19
16
9
14
5
8
15
7
6
4
4
4
4
3
1
3
1
3
1
3
1
M23 connector
5
2
5
2
5
2
5
2
1
2
3
4
ABE 9C128pC23
Item
Contact
1/4
1/2
15
7
2/4
2/2
3/4
3/2
4/4
4/2
5/4
5/2
5
4
16
8
3
14
17
9
12
11
17
1
10
18
2
4
13
3
19
16
9
14
5
8
15
7
6
6/4
6/2
7/4
7/2
8/4
8/2
1, 3, 5 & 7/1
2, 4, 6 & 8/1
1, 3, 5 & 7/3
2, 4, 6 & 8/3
1 to 8/5
2
M23 connector
4
4
4
4
4
4
4
4
13
11
10
1
18
19
19
6
3
1
3
1
3
1
3
1
3
1
3
1
3
1
3
1
5
2
5
2
5
2
5
2
5
2
5
2
5
2
5
2
1
2
3
4
5
6
7
8
6
12
ABE 9C124pLpp
Item
Terml.
Wire
1/4
1/2
1
9
White
Grey/pink
(1)
BR1
(1)
BR2
2/4
2/2
3/4
3/2
4/4
4/2
1 and 3/1
2 and 4/1
1 and 3/3
2 and 4/3
1 to 4/5
2
10
3
11
4
12
+ 1
+ 2
– 1
– 2
PE
Green
Red/blue
Yellow
White/green
Grey
Brown/green
Brown 1
Brown 2
Blue 1
9 1113 16 1412 10
BR1
BR2
-1 +1 1 3 PE 4 2 +2 -2
5
7
15 8
6
4
4
4
4
Blue 2
Green/yellow
3
1
3
1
3
1
3
1
5
1
2
5
2
2
5
2
5
2
3
4
(1) BR1 and BR2: removable link.
ABE 9C128pLpp
Item
Terml.
Wire
1/4
1/2
1
9
White
Grey/pink
(1)
BR1
(1)
BR2
2/4
2/2
3/4
3/2
4/4
4/2
5/4
2
10
3
11
4
Green
Red/blue
Yellow
White/green
Grey
Brown/green
Pink
9 1113 16 1412 10
BR1
BR2
-1 +1 1 3 PE 4 2 +2 -2
5
7
15 8
6
12
5
5/2
6/4
13
6
White/yellow
Red
6/2
7/4
14
7
Yellow/brown
Black
7/2
8/4
15
8
White/grey
Violet
4
4
4
4
4
4
4
4
8/2
16
+ 1
+ 2
– 1
– 2
PE
Grey/brown
Brown 1
Brown 2
Blue 1
Blue 2
Green/yellow
3
1
3
1
3
1 3
1 3
1 3
1 3
1 3
1
1, 3, 5 & 7/1
2, 4, 6 & 8/1
1, 3, 5 & 7/3
2, 4, 6 & 8/3
1 to 8/5
5
2
5
2
5
2
5
2
5
2
5
2
5
2
5
2
1
2
3
4
5
6
7
8
(1) BR1 and BR2: removable link.
Presentation:
page 6
Description:
page 7
Characteristics:
page 8
References:
page 9
Dimensions:
page 10
11
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Selection guide
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Applications
Industrial fieldbus type
Degree of protection
IP 67
Modularity
(number of
channels)
8 I + 8 O (8 O + 8 diagnostic inputs)
–
p
12 I + 4 O (4 I + 4 O + 8 diagnostic inputs)
16 I (8 I + 8 diagnostic inputs)
16 I/O (8 I/O+ 8 diagnostic I/O)
8 I + 8 I/O (8 I + 8 diagnostic I/O)
Voltage
–
p
p
p
p
p
p
–
Inputs
c24 V
Conformity to IEC 1131-2
Voltage
Type 2
Outputs
c24 V
Type
Transistor
1.6 A
Current/output
Current/splitter box
8 A
Connection
Housing type
Diagnostics
M12 connectors (5-pin)
Plastic
Metal
Per splitter box
Per channel
Bus and I/O undervoltage
I/O short-circuit
I/O supply
I/O short-circuit
Wire breakage fault
Faulty sensors/actuators
Module type
Page
FTB 1CNpppP0
FTB 1CNpppM0
28
28
12
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0
0
INTERBUS
IP 67
IP 67
IP 67
–
–
–
–
p
p
p
p
p
p
p
p
p
p
p
p
p
p
p
p
p
p
–
–
–
c24 V
c24 V
c24 V
Type 2
Type 2
Type 2
c24 V
c24 V
c24 V
Transistor
1.6 A
Transistor
1.6 A
Transistor
1.6 A
8 A
8 A
10 A
M12 connectors (5-pin)
Plastic
M12 connectors (5-pin)
Plastic
M12 connectors (5-pin)
Plastic only
Metal
Metal
Bus and I/O undervoltage
I/O short-circuit
I/O supply
Bus and I/O undervoltage
I/O short-circuit
I/O supply
Bus and I/O undervoltage
I/O short-circuit
I/O supply
I/O short-circuit
Wire breakage fault
Faulty sensors/actuators
I/O short-circuit
Wire breakage fault
Faulty sensors/actuators
I/O short-circuit
Wire breakage fault
Faulty sensors/actuators
FTB 1DNpppP0 FTB 1DNpppM0
FTB 1DPpppP0 FTB 1DPpppM0
FTB 1IB
28
28
28
13
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Presentation,
functions
IP 67 monobloc I/O splitter boxes
0
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Presentation
To meet the needs of machine manufacturers and users, automation system
architectures are becoming decentralized, while offering performances comparable
to those obtained with a centralized structure.
Advantys FTB IP 67 monobloc I/O splitter boxes enable sensors and actuators to be
connected in distributed automation systems using pre-assembled cables, thus
reducing wiring time and costs, whilst at the same time increasing the operational
availability of the installation.
These IP 67 protected splitter boxes can also be used within processes or machines
in harsh environments (splashing water, oil, dust, etc.). For difficult environments
(welding shops etc.), a range of Advantys FTB splitter boxes with a metal housing is
available.
Advantys FTB splitter boxes allow distributed connection of sensors and actuators
on machines via a fieldbus. They communicate on different buses such as:
CANopen, DeviceNet, Profibus-DP and InterBus.
Sensors and actuators are connected by means of standard M12 connectors.
Configuration and parametering of the Advantys FTB splitter boxes is carried out
using configuration files (e.g.: .eds files for CANopen):
b either directly within the software workshop of the PLC used,
b or by using a SyCon type configurator (refer to our Modicon® Premium™ PLC
automation platform catalog).
Advantys FTB splitter boxes are available with different input (c24 V IEC type 2)
and output (transistor c24 V/1.6 A) configurations:
b Mixed 8 input and 8 output splitter boxes, allowing connection of either 8 sensors
and 8 actuators or 8 actuators with integrated diagnostics function.
b Mixed 12 input and 4 output splitter boxes, allowing connection of either
12 sensors and 4 actuators or 4 sensors and 4 actuators with integrated diagnostics
function.
b 16 input splitter boxes allowing connection of either 16 sensors or 8 sensors with
integrated diagnostics function.
b Mixed 16 input or output splitter boxes, configurable per channel, allowing all
possible combinations: 16 inputs, 15 inputs/1 output, 14 inputs/2 outputs, to .,
16 outputs.
Functions
Selection of signal type per channel
b Each M12, 5-pin connector on Advantys FTB splitter boxes allows the connection
of 2 signals. Depending on the type of splitter box, these can be:
v 1 sensor input signal,
v 1 diagnostic input signal,
v 1 actuator output signal.
Signal type, depending on splitter box selected:
FTB
1pp16E
1pp08E08S 1pp12E04S 1pp16C
1Dp08E08C
M12
Contact 4 Input
Output
0 to 3: Input Input
4 to 7: Output Output
Input
Output
Contact 2 Input
Input
Input
Input
Output
Diagnostic
Input
Diagnostic
Diagnostic
Diagnostic Diagnostic
Note: either a normally open (N/O) or a normally closed (N/C) contact can be chosen for each
input signal.
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
14
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Functions (continued)
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Diagnostics
Each Advantys FTB splitter box has one LED per channel to indicate the status of
the channel and to enable fast and precise location of a fault. Fault monitoring
diagnostics are indicated on the splitter box by LEDs and are fed back to the control
system (PLC) via the bus.
There are 2 levels of diagnostics:
b diagnostics per channel,
b diagnostics per splitter box.
Diagnostics per channel
b Sensor short-circuit
A short-circuit or overload on contact 1 of the M12 female connector blows the self-
resetting fuse. Each M12 connector is individually protected. A red LED indicates
the fault on the corresponding M12 connector. This fault is signalled to the Master.
Supply to the sensors is automatically restored after elimination of the fault.
b Actuator short-circuit
A short-circuit or overload of an output causes disconnection of this output. The fault
is signalled to the Master. A red LED indicates the fault on the corresponding M12
connector. The output does not restart automatically. After having eliminated the
cause of the fault, the channel must be reset by the PLC. This operation erases the
short-circuit memory.
b Actuator warning
When the output is at state 0, the contact corresponding to the M12 female
connector is checked for presence of 24 V voltage. If + 24 V is present, it means
there is a “short-circuit”. A red LED indicates the fault on the corresponding M12
connector. The fault is signalled to the Master.
Diagnostics per splitter box
b Sensor/actuator supply status.
b “Undervoltage” fault on the I/O supply.
b Sensor short-circuit.
b Actuator short-circuit.
Use of the sensor/actuator diagnostics function
Advantys FTB splitter boxes allow the use of sensors and actuators incorporating an
integrated diagnostics function (DESINA type c). Configuring contact 2 of each M12
connector as a diagnostic input enables detection of external faults associated with
the sensors or actuators.
Example of connection of a sensor with integrated diagnostics
function
M12
connector
This information enables the following faults to be detected:
b damage to the detection surface,
b faulty electronics,
1
Diagnostic
2
3
b no load.
Selection of either the sensor input or diagnostic input function on contact 2 is made
channel by channel, by entering parameters, when configuring the splitter box.
Fault indication by a red LED is possible for each channel configured as a diagnostic
input (LEDs 10 to 17).
DESINA
sensor
4 (S)
Example of connection of a standard sensor with the
diagnostics adaptor
Example of connection of a sensor with integrated diagnostics function:
Using the M12 diagnostics adaptor accessory FTX DG12, it is possible to monitor
breaks in wiring to sensors or actuators which do not have an integrated diagnostics
function.
M12 adaptor
FTX DG12
(by-pass)
M12
connector
1
2
3
1
Diagnostic
3
Sensor
4 (S)
4 (S)
b DESINA - Standard relating to the connector technology of sensors, and actuators,
established by the German Machine Tool Builder’s Association.
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
15
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Presentation
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
CANopen™ and DeviceNet™ bus extensions
Advantys FTB splitter boxes are of the monobloc type.
Each splitter box comprises one part for connection of sensors and actuators by
means of M12 connectors, and one part for connection of splitter boxes on CANopen
and DeviceNet fieldbuses.
These splitter boxes enable inputs/outputs to be located remotely, as close as
possible to the equipment being controlled.
CANopen bus presentation
Master
Modicon®
Premium™ PLC
From 1 to 127 Slaves
CANopen bus
Altivar® 38 Drive
Altivar® 58/58F Drive
FTB 1CN FTB 1CN
pppP0
pppM0
®
®
TeSys Model U
Tego Power
The CAN system, initially developed for real-time exchange of information in the
automobile industry, is now being used more and more throughout industry. There
are several fieldbuses based on CAN base layers and components.
The CANopen bus conforms to international standard ISO 11898, promoted by the
“CAN in Automation” association (a grouping of manufacturers and users), and
guarantees a high degree of openness and inter-operability due to its communication
profiles and its standardized equipment.
The CANopen bus is now recognized, in Europe, as the reference standard for
building industrial systems based on the CAN concept.
The CANopen bus is a Multimaster bus, based on the Master/Slave principle.
The physical link consists of a shielded twisted pair, to which up to a maximum of
127 Slaves can be connected by simple tap-off. The binary rate varies, depending
on the length of the bus, from 1 Mbits/s for 40m (131.2 ft.) to 50 kbits/s for 1000m
(3281 ft.).
Each end of the bus must be fitted with a line terminator.
The CANopen bus is a set of profiles on CAN systems, possessing the following
characteristics:
b Open bus system.
b Data exchanges in real-time without overloading the protocol.
b Modular design allowing modification of size.
b Interconnection and interchangeability of devices.
b Standardized configuration of networks.
b Access to all device parameters.
b Synchronization and circulation of data from cyclic and/or event-controlled
processes (short system response time).
b Exchanges possible with numerous international manufacturers.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
16
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Presentation (continued)
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
CANopen™ and DeviceNet™ bus extensions
DeviceNet bus presentation
DeviceNet Master
DeviceNet bus
From 1 to 63 Slaves
Modicon®
Momentum™ PLC
FTB 1DN FTB 1DN
Altivar® 38 Drive
Altivar® 58/58F Drive
®
TeSys Model U
Tego® Power
Connections
The DeviceNet system is a sensor/actuator bus system of the open Low-End type,
used in various industrial applications and, in particular, the automobile industry. It is
based on CAN technology (OSI layers 1 and 2).
The DeviceNet bus is based on the Master/Slave principle.
The physical link consists of 2 shielded twisted pairs (2 wires for data, 2 wires for
auxiliary supply to sensors), to which up to a maximum of 63 slaves can be
connected. The binary rate varies, depending on the length of the bus, from
500 kbits/s for 100m (328.1 ft.) to 125 kbits/s for 500m (1640 ft.).
Each end of the bus must be fitted with a line terminator.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
17
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Description,
configuration
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
0
Advantys™ Distributed I/O, FTB splitter boxes
CANopen™ and DeviceNet™ bus extensions
Description
CANopen and DeviceNet monobloc I/O splitter boxes FTB 1CN and FTB 1DN have
the following on the front face:
1 Eight M12 female connectors for connection of sensors and actuators (2 channels
per connector).
1
2 Eight channel status indicator lights (00 to 07).
2
3
3 Eight channel status indicator lights (10 to 17) or channel diagnostic indicator
lights (00 to 07) depending on the splitter box configuration.
4 Two 7/8 connectors for connecting the c24 V sensor and actuator power
supplies: male for PWR IN, female for PWR OUT.
9
7
5 One M12 male connector (bus IN) and one M12 female connector (bus OUT) for
connection of the CANopen and DeviceNet buses.
6 Access to coding and speed selection wheels.
7 Two bus diagnostic LEDs.
8
4
8 Two c24 V sensor and actuator supply status LEDs.
9 Eight channel marker labels.
6
5
10Two splitter box marker labels.
11Splitter box functional ground connection (beneath the label).
Configuration
10
CANopen bus configuration
11
An .eds file is assigned to each product, which contains all the important information
relating to the product. An icon (.dib for CANopen) is also available for installation in
the system configurator.
Please refer to the configuration software documentation for the import of .eds files.
Following the CANopen system initialization phase, all the Slaves signal their
presence on the bus by means of a “Boot-Up” message. A setting-up configurator
(e.g.: SyCon) can then start to read and register the CANopen bus and, on the basis
of the data obtained, assign a corresponding .eds file to each Slave. Based on the
.eds file data, the Master creates a peripheral image of all the Slaves detected by the
PLC. The user can assign I/O bytes to logic addresses within the PLC.
b Addressing
The addresses are configurable from 1 to 99 by means of 2 coding wheels (x 10 and
x 1). A 3rd coding wheel enables the data transmission speed to be selected
(position 0 = automatic speed recognition from 125 kbits/s to 1 Mbits/s).
DeviceNet bus configuration
An .eds file is assigned to each product, which contains all the important information
relating to the product. An icon (.ico for DeviceNet) is also available for installation in
the system configurator.
When the network is scanned, the identification data is compared with that of the
Slaves present on the network and assigned accordingly. After the scanning phase,
the scanner will have identified all the Slaves and saved information relating to data
length and operating mode.
The DeviceNet bus Master establishes a peripheral image of all the devices detected
on the DeviceNet bus and incorporates them according to their physical location in a
Scan list. The user can then assign the Scan list, according to the peripheral image
of the bus devices, to logic addresses in the PLC.
b Addressing
The addresses are configurable from 1 to 63 by means of 2 coding wheels (x 10 and
x 1). A 3rd coding wheel enables the data transmission speed to be selected
(3 speeds can be selected: 125, 250 and 500 kbits/s).
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
18
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Connections
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
CANopen™ and DeviceNet™ bus extensions
Cabling system
Master
To other
splitter box
7
c24 V
8
3
9
5
4
7
6
FTB 1CN/1DN
ATV 58
FTB 1CN/1DN
2
1
Cabling accessories
CANopen and DeviceNet bus connection cables
Cables FTX CN32ppenable connection of splitter boxes FTB 1CN and FTB 1DN to
CANopen and DeviceNet fieldbuses.
1 FTX CN32pp: cables fitted with 2 elbowed M12, 5-pin connectors, one at each
end, for chaining the bus between two splitter boxes.
Sensor and actuator c24 V power supply connection cables
Cables FTX DP2pppenable connection of c24 V power supplies to splitter boxes
FTB 1CN and FTB 1DN. Two types of cable are available, in various lengths:
2 FTX DP22pp: cables fitted with two 7/8, 5-pin connectors, one at each end, for
chaining c24 V power supplies between two splitter boxes.
3 FTX DP21pp: cables fitted with a 7/8, 5-pin connector at one end, with the other
end free for connection of c24 V power supplies.
Connectors
4 FTX CN12p5: M12, 5-pin, male and female connectors for bus cables.
5 FTX C78pp: 7/8, 5-pin, male and female connectors for c24 V power supply
cables.
Other components
6 FTX CNTL12: bus line terminator fitted with an M12 connector.
7 FTX CpppB: sealing plugs for 7/8, M12 and M8 connectors.
8 FTX CY12pp: Y-connector for M12 and M8 connectors.
9 FTX CNCT1: T-connector fitted with two 7/8, 5-pin connectors for power supply
cable.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
19
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Presentation
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Profibus™-DP bus
Advantys FTB splitter boxes are of the monobloc type.
Each splitter box comprises one part for connection of sensors and actuators by
means of M12 connectors, and one part for connection of splitter boxes on
Profibus-DP fieldbus.
This splitter box enables inputs/outputs to be located remotely, as close as possible
to the equipment being controlled.
Profibus-DP presentation
Other Master
Modicon®
Quantum™ PLC
Modicon®
Premium™ PLC
FTB 1DP
FTB 1DP
Altivar® 58E Drive
Modicon®
FTB 1DP
FTB 1DP
FTB 1DP
Momentum
™
PLC
The Profibus-DP (Process Fieldbus Decentralized Peripheral) is an open type
fieldbus system for industrial applications. The Profibus standard is described in
standard EN 50170.
The physical link is a simple, type A, shielded twisted pair.
Data exchange between the Master (processing unit) and the Slaves (decentralized
devices) is performed in a cyclic manner.
A maximum of 32 Slaves can be connected to a bus segment. To increase the
number of Slaves, repeaters must be installed in order to create new bus segments.
The repeaters also provide galvanic isolation of the bus segments.
The total number of slaves must not exceed 126.
The bus must be fitted with a line terminator at each end of each segment created.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
20
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Description,
configuration
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
0
Advantys™ Distributed I/O, FTB splitter boxes
Profibus™-DP bus
Description
Profibus-DP monobloc I/O splitter boxes FTB 1DP have the following on the front
face:
1
1 Eight M12 female connectors for connection of sensors and actuators (2 channels
per connector).
2
3
2 Eight channel status indicator lights (00 to 07).
3 Eight channel status indicator lights (10 to 17) or channel diagnostic indicator
lights (00 to 07) depending on the splitter box configuration.
10
7
4 Two 7/8 connectors for connecting the c24 V sensor and actuator power
supplies: male for PWR IN, female for PWR OUT.
5 One M12 male connector (bus IN) and one M12 female connector (bus OUT) for
connection of the Profibus-DP bus.
9
8
4
6 Access to the address coding wheels.
7 One bus diagnostics LED.
6
8 Two sensor/actuator diagnostic LEDs.
9 Two c24 V sensor and actuator supply status LEDs.
10Eight channel marker labels.
5
11
11Two splitter box marker labels.
12
12Splitter box functional ground connection (beneath the label).
Configuration
The Profibus-DP identification number is a preset, non-modifiable element exclusive
to each Slave.
An .gsd file is assigned to each product, which contains all the important information
relating to the product. An icon (.dib for Profibus-DP) is also available for installation
in the system configurator (please refer to the configuration software documentation
for the import of .gsd files).
During configuration of the equipment, the Master receives precise criteria relating to
the overall structure of the fieldbus via the system configurator. All necessary
information relating to the type and operational behavior of the various Slaves, as
well as data concerning the identification number, is included in the .gsd file.
Step 1: Product selection
Example with SyCon configurator (refer to our Modicon® Premium™ PLC automation
platform catalog):
b Select the products for the application from the product catalog library in the
SyCon software (step 1),
b Product configuration (step 2):
d double-click on the product icon to access the product configuration menu,
d select the required product reference from the suggested list,
d select the associated functions that you wish to use with the product.
b Channel by channel, configure the type of signal that will be connected to it
(step 3):
Step 2: Access to the configuration menu
d input (N/O or N/C contact),
d diagnostic input (only applicable to channels 10 to 17),
d output.
Addressing
For the Slaves, the assignment of addresses generally starts at address 3 (0-2
reserved for the Master). The addresses are configurable from 1 to 99 by means of
2 coding wheels (x 10 and x 1).
Step 3: Configuration
Presentation, functions:
pages 14 - 17
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
21
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Connections
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Profibus™-DP bus
Cabling system
Other Master
Modicon®
Quantum™ PLC
Modicon®
Premium™ PLC
9
9
10
9
5
11
FTB 1DP
7
6
8
FTB 1DP
Altivar® 58
Drive
FTB 1DP
4
3
1
2
Cabling accessories
Profibus-DP bus connection cables
Cables FTX DPp2ppenable connection of splitter boxes FTB 1DP to Profibus-DP
fieldbus.
1 FTX DP12pp: cables fitted with 2 straight M12, 5-pin connectors, one at each end,
for chaining the bus between two splitter boxes.
2 FTX DP32pp: cables fitted with 2 elbowed M12, 5-pin connectors, one at each
end, for chaining the bus between two splitter boxes.
3 TSX PBSCAp00: cables with flying leads at both ends.
Sensor and actuator c24 V power supply connection cables
Cables FTX DP2pppenable connection of c24 V power supplies to splitter boxes
FTB 1DP. Two types of cable are available, in various lengths:
4 FTX DP22pp: cables fitted with two 7/8, 5-pin connectors, one at each end, for
chaining c24 V power supplies between two splitter boxes.
5 FTX DP21pp: cables fitted with a 7/8, 5-pin connector at one end, with the other
end free for connection of c24 V power supplies.
Connectors
6 FTX DP12p5: M12, 5-pin, male and female connectors for bus cables.
7 FTX C78pp: 7/8, 5-pin, male and female connectors for c24 V power supply
cables.
Other components
8 FTX DPTL12: bus line terminator fitted with an M12 connector.
9 FTX CpppB: sealing plugs for 7/8, M12 and M8 connectors.
10FTX CY12pp: Y-connector for M12 and M8 connectors.
11FTX CNCT1: T-connector fitted with two 7/8, 5-pin connectors for power supply
cable.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
22
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Presentation
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
InterBus™ bus extenson
Advantys FTB splitter boxes are of the monobloc type.
Each splitter box comprises one part for connection of sensors and actuators by
means of M12 connectors, and one part for connection of splitter boxes on InterBus
fieldbus.
This splitter box enables inputs/outputs to be located remotely, as close as possible
to the equipment being controlled.
InterBus bus presentation
Other Master
Modicon®
Quantum™ PLC
Modicon®
Premium™ PLC
InterBus bus
Main bus (12.8 km / 41,999 ft.)
Modicon®
Momentum™ PLC
FTB 1IB
FTB 1IB
Altivar® 58 Drive
Tego® Power
Connections
InterBus is a serial link type fieldbus for sensors and actuators which satisfies the
requirements of industrial environments.
Conforming to the standard specification, an InterBus can operate with up to 256
Slaves:
b 12.8 km (41,999 ft.) with copper conductors,
b beyond 80 km (262,500 ft.) using fiber optic cables.
The distance between 2 different components of the bus must not exceed 400 m
(1312 ft.) when using copper conductors.
The InterBus system is designed in the form of a loop and has the structure of a shift
register distributed on the bus. Each Slave, with its registers, constitutes a
component in this shift register loop.
Master
Slave
Slave
Slave
Slave
The cyclic exchange of information between the Master and the Slaves is carried out
independently by the Master.
The physical link consists of 3 pairs of twisted wires with common shielding.
In addition to the main bus (long distance bus), a local bus can be set up.
b Characteristics of InterBus local bus,
d the c24 V power supply also passes along the system cable (3 additional
wires, 0.75 mm2 / #19 AWG) to supply the electronics and the Slave peripherals,
d the maximum current is limited to 4.5 A, in accordance with the specification,
d the maximum distance is 50 m (164 ft.).
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
23
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Description,
configuration
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
0
Advantys™ Distributed I/O, FTB splitter boxes
InterBus™ bus extention
Description
InterBus monobloc I/O splitter boxes FTB 1IB have the following on the front face:
1
1 Eight M12 female connectors for connection of sensors and actuators (2 channels
per connector).
2
3
2 Eight channel status indicator lights (00 to 07).
3 Eight channel status indicator lights (10 to 17) or channel diagnostic indicator
lights (00 to 07) depending on the splitter box configuration.
9
6
4 Two terminal blocks for connection of c24 V sensor and actuator power supplies
(IN and OUT) (connectors included with product).
5 Four terminal blocks for connection of the InterBus bus (connectors included with
product).
8
7
6 Three bus diagnostic LEDs.
7 Two sensor/actuator diagnostic LEDs.
8 Two c24 V sensor and actuator supply status LEDs.
9 Eight channel marker labels.
4
5
10Two splitter box marker labels.
11Splitter box functional ground connection (beneath the label).
10
11
Configuration
Each Slave has its own identification code, so that it can be clearly identified by the
InterBus Master. This code is configured by the manufacturer and cannot be
subsequently modified. The characteristics of this code are defined in the InterBus
specification.
Start-up of the system is immediately followed by an identification cycle. During this
system initialization phase, the identification data of all the Slaves is read by the
Master according to their position in the bus. This data will, in particular, be used to
prepare the peripheral image at the Master.
The following cycles are simple data cycles, whose only purpose is the exchange of
process data between the Master and the Slaves.
Addressing
The InterBus system allows either physical addressing or logic addressing.
b Physical addressing
The assignment of the Master’s peripheral image to the process image within the
PLC corresponds to the layout of the splitter boxes in the fieldbus.
b Logic addressing
During configuration, it is possible to carry out manual logic addressing using
configuration software (for example: CMDtools), independently of the Master used.
During this operation, logic addressing of the peripheral image or of parts of this
image is carried out to the process image within the PLC.
Presentation, functions:
pages 14 - 17
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
24
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Connections
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
InterBus™ bus extension
Cabling system
Other Master
Modicon®
Quantum™ PLC
Modicon®
Premium™ PLC
2
3
4
Modicon®
Momentum™ PLC
FTB 1IB
FTB 1IB
1
Cabling accessories
Connection cables for the bus and for sensor and actuator c24 V power
supplies
Cables FTX IB12ppenable connection of splitter boxes FTB 1IB to InterBus fieldbus.
1 FTX IB12pp: cables fitted with 2 sets of connectors at each end for chaining the
bus and power supplies between two splitter boxes.
Other components
2 FTX CMppB: sealing plugs for M12 and M8 connectors.
3 FTX CY12pp: Y-connector for M12 and M8 connectors.
4 FTX CPE10: cable gland.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
Dimensions:
pages 31 - 33
25
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Characteristics
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Environmental characteristics
Product certifications
cULus
Temperature
Operation
Storage
°C (°F) 0 to + 55 (+ 32... 131)
°C (°F) - 25 to + 70 (-13...+ 158)
Degree of protection
Altitude
Conforming to IEC 60529
IP 67
m (ft.) 0 to 2000 (0 to 6562)
Vibration resistance
Conforming to IEC 68-2-6,
test Fc
Hz
For plastic housing
For metal housing
5 ≤ f ≤ 57.55 (constant amplitude = 1.5 mm)
57.55 ≤ f ≤ 500 (constant acceleration = 10 gn)
5 ≤ f ≤ 70 (constant amplitude = 1.5 mm)
70 ≤ f ≤ 500 (constant acceleration = 15 gn)
Shock resistance
Conforming to IEC 68-2-27,
test Ea
For plastic housing
For metal housing
30 gn, for 11 ms
50 gn, for 11 ms
Resistance to electrostatic
discharge
Conforming to IEC 61000-4-2
kV
Contact:
4
Air:
8
Resistance to radiated fields Conforming to IEC 61000-4-3
V/m
kV
10
Immunity to fast transient
currents
Conforming to IEC 61000-4-4
Conforming to IEC 61000-4-5
Power supply:
Signal:
2
2
Surge withstand
V
Power supply: (symmetrical) 500, (asymmetrical) 1000
Signals: (symmetrical) 500, (asymmetrical) 1000
Ground/PE: 500
Immunity to conducted
disturbance
Conforming to IEC 61000-4-6
Conforming to IEC 61000-4-8
Vrms
A/m
10
Resistance to magnetic
fields, 50 Hz
30
Mounting
All positions
Mechanical mounting
Mounting by two M4 screws for plastic housing (tightening torque 1.5 Nm / 13.3 lbf-in)
Mounting by two M6 screws for metal housing (tightening torque 9 Nm / 79.7 lbf-in)
Fieldbus characteristics
Bus type
CANopen
DeviceNet
Profibus-DP
InterBus
Structure
Type
EN 50325
ISO 11898
EN 50325
ISO 11898
CAN, layer 7
DeviceNet
DIN 19245
EN 50170
DIN 19258
EN 50254
Access method
Multimaster, priority
information
Master-Slave
500 kbits/s
Master-Slave,
Multi-Master
Master-Slave
500 kbits/s
Transmission
Configuration
Binary rate
Medium
1 Mbits/s
12 Mbits/s
2 twisted, shielded
wires
4 twisted, shielded
wires
2 twisted, type A,
shielded wires
(RS 485)
3 twisted pairs with
common shielding
Fiber optic
Maximum number of devices
Maximum length of bus
127
63
32 without repeater
126 with repeaters
256
At 1 Mbits/s:
Main line:
Without repeater:
Main bus link
- Max. tap-off length: - 500 m (1640 ft.)
At 12 Mbits/s:
- 100 m (328.1 ft.)max. 12.8 km (41,999 ft.)
(long distance bus):
0.3 m (0.98 ft.)
- Max. cumulative
tap-off length: 1.5 m
(4.9 ft.)
without repeater,
- 3 km (9843 ft.)with
repeater
At 1.5 Mbits/s: Local bus link:
- 200 m (656.2 ft.)max. 50 m (164 ft.)
At 500 kbits/s:
- Max. tap-off length: 6 m (19.7 ft.) max.
6 m (19.7 ft.)
Tap-off:
At 500 kbits/s:
- 400 m (1312 ft.)max.
- Max. cumulative
tap-off length: 30 m
At < 93.75 kbits/s:
- 1.2 km (3937 ft.)max.
(32.8 ft.)
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
References:
pages 28 - 30
Dimensions:
pages 31 - 33
26
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Characteristics (continued)
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Input/output characteristics
Splitter box type
FTB
1pp16Epp
1pp08E08SPp 1pp12E04SPp 1pp16Cpp
1pp08E08CM0
Bus type
All types of bus
CANopen bus,
DeviceNet bus
and Profibus-DP
bus
Number of inputs/outputs
16 I
(8 I +
8 diagnostic
inputs)
16 I/O
(8 O +
8 diagnostic
inputs)
16 I/O
16 I/O
8 I + 8 I/O
(8 I + 8 diagnostic
I/O)
(4 I + 4 O +
8 diagnostic
inputs)
(8 I/O +
8 diagnostic
I/O)
Internal consumption of splitter box
Operating voltage
mA
120
cV 24
Splitter box max. supply current
Bus and I/O undervoltage detection
Built-in short-circuit protection
A
9 (10 for InterBus)
< 18
V
mA
mA
< 100, automatic tripping
> 100, reset
Input characteristics
Number of inputs
16 I
8 I
12 I
0...16 I
8 I + 0...8 I
Conformity to IEC 1131-2
Type 2
Compatibility with 2-wire/
3-wire proximity sensors
Yes
Input values
Nominal voltage
cV 24
Maximum current
Sensor power supply
mA
V
200
18 to 30
Positive
1
Logic
Input filtering
ms
Protection against reversed polarity
Yes
Output characteristics
Number of outputs
–
–
8 O
Transistor
4 O
0...16 O
0...8 O
Output type
Nominal output values
Voltage
Current
V
A
–
–
–
–
–
–
c 24
1.6
Overvoltage protection
Maximum switching cycles
Maximum lamp load
Yes (suppressor diode)
Hz
W
20
10
Output connection/cable lengths
mm2
0.34 mm2 / 5 m (#22 AWG / 16.4 ft.) max.
AWG
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
References:
pages 28 - 30
Dimensions:
pages 31 - 33
27
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References
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Number Number,
Number, Connection
Housing Reference
type
Weight
kg
of I/O
type of
inputs
(1)
type of
outputs
(2)
by
Monobloc splitter boxes for CANopen bus
16
8
8,
8 x M12 female Plastic
FTB 1CN08E08SP0
0.430
0.450
transistor connectors
12
16
4,
8 x M12 female Plastic
FTB 1CN12E04SP0
transistor connectors
–
8 x M12 female Plastic
connectors
FTB 1CN16EP0
FTB 1CN16EM0
0.440
0.820
Metal
16
configur-
able
0...16
0...16,
transistor connectors
8 x M12 female Plastic
FTB 1CN16CP0
FTB 1CN16CM0
0.450
0.820
Metal
16 of
8 + 0...8
0...8,
8 x M12 female Metal
FTB 1CN08E08CM0
0.820
which 8
configur-
able
transistor connectors
FTB 1CNpppP0
FTB 1CNpppM0
Monobloc splitter boxes for DeviceNet bus
16
8
8,
8 x M12 female Plastic
FTB 1DN08E08SP0
FTB 1DN12E04SP0
0.450
0.450
transistor connectors
12
16
4,
8 x M12 female Plastic
transistor connectors
–
8 x M12 female Plastic
connectors
FTB 1DN16EP0
FTB 1DN16EM0
0.430
0.820
Metal
16
configur-
able
0...16
0...16,
transistor connectors
8 x M12 female Plastic
FTB 1DN16CP0
FTB 1DN16CM0
0.450
0.820
Metal
16 of
8 + 0...8
0...8,
8 x M12 female Metal
FTB 1DN08E08CM0
0.820
which 8
configur-
able
transistor connectors
FTB 1DNpppP0
Monobloc splitter boxes for Profibus-DP bus
FTB 1DNpppM0
16
8
8
4
–
8 x M12 female Plastic
connectors
FTB 1DP08E08SP0
FTB 1DP12E04SP0
0.430
0.430
12
16
8 x M12 female Plastic
connectors
8 x M12 female Plastic
FTB 1DP16EP0
FTB 1DP16EM0
0.430
0.820
connectors
Metal
16
configur-
able
0...16
0...16
0...8
8 x M12 female Plastic
connectors
FTB 1DP16CP0
0.430
Metal
FTB 1DP16CM0
FTB 1DP08E08CM0
0.820
0.820
16 of
8 + 0...8
8 x M12 female Metal
connectors
which 8
configur-
able
Monobloc splitter boxes for InterBus bus
16
8
8
8 x M12 female Plastic
connectors
FTB 1IB08E08SP1
FTB 1IB12E04SP1
FTB 1IB16EP1
0.430
0.440
0.430
0.430
12
4
8 x M12 female Plastic
connectors
FTB 1DPpppP0
FTB 1DPpppM0
16
–
8 x M12 female Plastic
connectors
16
configur-
able
0...16
0...16
8 x M12 female Plastic
connectors
FTB 1IB16CP1
(1) c24 V IEC type 2.
(2) c24 V/1.6 A.
FTB 1IB
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
Dimensions:
pages 31 - 33
28
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References (continued)
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Connection accessories
Description
Composition
Length
m (ft.)
Reference
Weight
kg
For CANopen/DeviceNet buses
Bus connection cables
Fitted with 2 elbowed
0.3 (0.98) FTX CN3203
0.040
0.070
0.100
0.160
0.220
0.430
0.150
0.190
0.310
0.750
0.240
0.430
0.700
0.050
M12, 5-pin connectors,
A encoded, one at each
end
0.6 (1.97) FTX CN3206
1 (3.28)
2 (6.56)
3 (9.8)
FTX CN3210
FTX CN3220
FTX CN3230
FTX CN3250
5 (16.4)
c24 V power supply
connection cables
Fitted with two 7/8, 5-pin 0.6 (1.97) FTX DP2206
connectors, one at each
end
1 (3.28)
2 (6.56)
5 (16.4)
FTX DP2210
FTX DP2220
FTX DP2250
Fitted with one 7/8, 5-pin 1.5 (4.92) FTX DP2115
connector, other end has
flying leads
3 (9.8)
5 (16.4)
–
FTX DP2130
FTX DP2150
FTX CN12M5
Connectors
M12 male, 5-pin,
A encoded
FTX DP2115
M12 female, 5-pin,
A encoded
–
–
–
FTX CN12F5
FTX CNTL12
FTX CNCT1
0.050
0.010
0.100
Line terminator
(for end of bus)
Fitted with one M12
connector
T-connector
for power supply
Fitted with two 7/8, 5-pin
connectors
For Profibus-DP bus
Bus connection cables
Fitted with 2 straight
M12, 5-pin connectors,
one at each end
0.3 (0.98) FTX DP1203
0.6 (1.97) FTX DP1206
0.040
0.070
0.100
0.160
0.220
0.430
0.040
0.070
0.100
0.160
0.220
0.430
0.150
0.190
0.310
0.750
0.240
0.430
0.700
0.050
1 (3.28)
2 (6.56)
3 (9.8)
FTX DP1210
FTX DP1220
FTX DP1230
FTX DP1250
5 (16.4)
Fitted with 2 elbowed
M12, 5-pin connectors,
one at each end
0.3 (0.98) FTX DP3203
0.6 (1.97) FTX DP3206
1 (3.28)
2 (6.56)
3 (9.8)
FTX DP3210
FTX DP3220
FTX DP3230
FTX DP3250
5 (16.4)
c24 V power supply
connection cables
Fitted with two 7/8, 5-pin 0.6 (1.97) FTX DP2206
connectors, one at each
end
1 (3.28)
2 (6.56)
5 (16.4)
FTX DP2210
FTX DP2220
FTX DP2250
Fitted with one 7/8, 5-pin 1.5 (4.92) FTX DP2115
connector, other end has
flying leads
3 (9.8)
5 (16.4)
–
FTX DP2130
FTX DP2150
FTX DP12M5
Connectors
M12 male, 5-pin,
B encoded
M12 female, 5-pin,
B encoded
–
–
–
FTX DP12F5
FTX DPTL12
FTX CNCT1
0.050
0.010
0.100
Line terminator
(for end of bus)
Fitted with one M12
connector
T-connector
for power supply
Fitted with two 7/8, 5-pin
connectors
Cables
Flying leads at both ends 100 (328.1) TSX PBSCA100
–
–
400 (1213) TSX PBSCA400
For InterBus bus
Cables with connectors
for bus and power supply connectors
Fitted with 2 sets of
0.6 (1.97) FTX IB1206
0.250
0.400
0.650
–
1 (3.28)
2 (6.56)
5 (16.4)
–
FTX IB1210
FTX IB1220
FTX IB1250
FTX CPE10
Cable gland
M16 x 1.5 (set of 2)
0.020
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
Dimensions:
pages 31 - 33
29
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References (continued)
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Separate components
Description
Composition
Reference
Weight
kg
For all bus types
Connectors
7/8 male, 5-pin
FTX C78M5
FTX C78F5
FTX CM08B
FTX CM12B
FTX C78B
0.050
0.050
0.100
0.100
0.020
7/8 female, 5-pin
Sealing plugs
For M8 connector (lot of 10)
For M12 connector (lot of 10)
For 7/8 connector
Y-connectors
Connection of 2 x M8 connectors to FTX CY1208
M12 connector on splitter box
0.020
0.030
Connection of 2 x M12 connectors to FTX CY1212
M12 connector on splitter box
Diagnostics adaptor
Marker labels
Fitted with two M12 connectors
FTX DG12
FTX BLA10
0.020
0.010
For plastic splitter boxes
(lot of 10)
FTX CY1208
For metal splitter boxes
(lot of 10)
FTX MLA10
0.010
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
Dimensions:
pages 31 - 33
30
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Dimensions
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
FTB 1CNpppP0, FTB 1DNpppP0, FTB 1DPpppP0
FTB 1IBpppP1
50.5 (1.98")
63 (2.48")
69 (2.71")
63 (2.48")
(1)
(1)
(1) Ø 4 elongated hole
(1) Ø 4 elongated hole
FTB 1CNppppppM0, FTB 1DNppppppM0, FTB 1DPppppppM0
20.5 (0.80")
38.9
62.7 (2.46")
(1)
(1.53")
(1) Ø 6 elongated hole
FTX CY1208
FTX CY1212
15 (0.59")
33 (1.29")
15 (0.59")
35 (1.29")
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
31
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Connections
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
Sensor/actuator connection
Y-connector connection
FTX CY1208
FTX CY1212
M8
M8
M12
M12
female
female
female
female
1
2
1
2
3
1
2
3
1
3
4
1
3
24 V
S1
S2
5
0 V
4
5
4
5
4
3
4
M12 female connector
1
2
3
4
5
1
2
3
4
M12 male
M12 male
CANopen and DeviceNet buses
Supply to splitter box
Bus input/Bus output
Bus input
Supply input
Supply output
Bus output
CAN-L
CAN-L
3
3
3
2
4
1
4
1
3
CAN-H
0 V
CAN-H
0 V
24 V (1)
0 V
0 V
24 V (1)
24 V (2)
0 V
0 V
5
5
4
2
2
4
24 V (2)
24 V
24 V
1
5
1
2
5
7/8 male connector
7/8 female connector
M12 female connector
M12 male connector
(1) Supply to splitter box and sensors.
(2) Supply to actuators.
Profibus-DP bus
Supply to splitter box
Supply input
Bus input/Bus output
Bus input
Supply output
Bus output
3
3
Cable B (red)
Cable B (red)
5 V
0 V
Cable A (green)
0 V
24 V (1)
0 V
0 V
24 V (1)
24 V (2)
0 V
0 V
4
3
3
4
4
2
2
4
5
5
24 V (2)
Cable A (green)
5 V
1
5
1
5
2
1
1
2
7/8 male connector
7/8 female connector
M12 male connector
M12 female connector
(1) Supply to splitter box and sensors.
(2) Supply to actuators.
Note: connectors linked to shielding.
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
32
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Connections (continued)
0
IP 67 monobloc I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTB splitter boxes
InterBus bus
Connections to splitter box
Supply to splitter box
1 Supply input
2 Supply output
+
+
+
24 V/L
24 V/R
24 V/IN
0/ 24 V
0/ 24 V
+
+
24 V/IN
0/ 24 V
0/ 24 V
24 V/L
24 V/R
+
Bus input/Bus output
3 Local bus, bus input
3 Main bus, bus input
2
4
1
3
Supply to
electronic bus
Green/Yellow
Green
Green
/ DO1
PE
0 V
PE
0 V
/ DO1
DO1
/ DI1
DI1
Blue
Red
Blue
Red
Yellow
Pink
Yellow
DO1
Pink
+
24 V
/ DI1
+
24 V
Shielding
Shielding
Grey
Brown
Grey
DI1
SHD
SHD
Brown
COM
COM
4 Local bus, bus output
4 Main bus, bus output
Green/Yellow
Green
Green
PE
/ DO2
DO2
/ DI2
DI2
/ DO2
Yellow
DO2
/ DI2
PE
Blue
Red
Yellow
Pink
0 V
0 V
Pink
+ 24 V
SHD
RBST
+ 24 V
SHD
RBST
Shielding
Shielding
Grey
Brown
Grey
DI2
Brown
COM
COM
Bridge
Bridge
Presentation, functions:
pages 14 - 17
Description, configuration:
pages 18 , 21, 24,
Characteristics:
pages 26, 27
References:
pages 28 - 30
33
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Selection guide
0
IP 67 modulor I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Bus modules FTM
Industrial fieldbus type
Degree of protection
IP 67
Bus connector type
M12, A encoded
M12, A encoded
M12, B encoded
Maximum number of digital I/O per bus module
Maximum number of splitter boxes per bus module
Maximum number of splitter boxes per segment
Bus module type
256
16
4
FTM 1CN10
FTM 1DN10
FTM 1DP10
Pages
48
48
48
34
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Selection guide
0
Splitter boxes FTM
Digital inputs/outputs
Analog inputs/outputs
(not governed by the type of fieldbus)
Degree of protection
Bus connection
Splitter box type
Connector type
IP 67
Internal bus + 24 V power supply by M12, 6-pin connectors
Compact
M8
Expandable
Compact
M12
M12
M8
M12
Modularity
Number of channels
8 I
8 I/O
8 I
8 I/O
16 I
8 I
8 I/O
8 I
8 I/O
16 I
4 I
4 O
16 I/O
16 I/O
Digital inputs
Voltage
c24 V
Type 2
c24 V
Transistor
0.5 A
4 A
–
Conformity to IEC 11331-2
Voltage
–
Digital outputs
–
Type
–
Current/output
–
Maximum supply by internal
bus
–
Analog inputs/outputs
Nature
–
Current
Voltage
Current
Voltage
Measuring range
–
0 to 20
mA
c
c0 to
10 V, 0 to 20
c
c0 to
10 V,
mA
4 to 20
mA
10 V
4 to 20
mA
10 V
Resolution
–
–
16 bits
15 bits + 12 bits
sign
11 bits +
sign
Conversion time
Per channel
≤ 2 ms/channel
Diagnostics
I/O short-circuit
I/O short-circuit
Wire breakage fault
Wire breakage fault
Faulty sensors/actuators
Faulty sensors/actuators
Splitter box type
FTM
FTM
FTM
FTM
FTM
FTM
FTM
FTM
1Dp08 1Dppp 1Dp08 1Dppp
1AE04 1AE04 1AS04 1AS04
C12C C12T C12C C12T
C08
C12
C08E C12E
Pages
48
48
35
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Presentation
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Presentation
To meet the needs of machine manufacturers and users, automation system
architectures are becoming decentralized, while offering performances comparable
to those obtained with a centralized structure.
Advantys FTM IP 67 modular I/O splitter boxes enable sensors and actuators to be
connected in distributed automation systems using pre-assembled cables, thus
reducing wiring time and costs, whilst at the same time increasing the operational
availability of the installation.
These IP 67 protected splitter boxes can also be used within processes or machines
in harsh environments (splashing water, oil, dust, etc.).
Advantys FTM splitter boxes allow distributed connection of sensors and actuators
on machines via a fieldbus. They communicate on different buses such as:
CANopen, DeviceNet and Profibus-DP.
Sensors and actuators are connected by means of standard M12 and M8
connectors.
This modularity makes installation of the splitter boxes within the machine even
easier.
The configurable I/O splitter boxes also enable the mixing of inputs and outputs and,
as a result, reduce the number of product variants. This provides savings in space
as well as increasing the flexibility of the installation.
Principle
The Advantys FTM modular offer enables, from a single communication interface
(fieldbus module), the connection of a changeable number of I/O splitter boxes.
These splitter boxes are connected to the bus module by a hybrid cable comprising
both the internal bus and the power supply (internal, sensors and actuators). The
I/O splitter boxes are not governed by the type of fieldbus, thus reducing the
number of splitter box references. Addressing of Advantys FTM splitter boxes is
automatic. On completion of mounting, the system is ready to operate.
Bus
Power supply
Bus module
+ 24 V
Splitter box
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
36
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Presentation (continued)
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Presentation (continued)
The topology of the system is a star/line architecture.
5 m (16.4 ft.) max. (1)
Each bus module is fitted with four M12 connectors for the connection of
Advantys FTM splitter boxes (star architecture). On each “run”, called a segment, it
is possible to connect up to 4 splitter boxes on the chaining principle (line
architecture). The maximum length of a segment, between the bus module and the
last splitter box, must not exceed 5 m (16.4 ft.).
Segment 1
4 splitter boxes max.
For one bus module, the maximum number of splitter boxes is:
b 4 per segment, i.e. 64 I/O.
b 16 for the group of 4 possible segments of the bus module, i.e. 256 digital I/O.
Several Advantys FTM splitter box variants are available:
Compact splitter boxes
4 splitter boxes max.
These splitter boxes do not allow continuity of the internal bus to other splitter boxes
on the same bus module segment. They are used in the following cases:
- a single splitter box on a segment (no chaining),
- the last splitter box on a segment.
Expandable splitter boxes
These splitter boxes allow continuity of the internal bus to other splitter boxes
(chaining). If an expandable splitter box is used as the last splitter box of an internal
bus segment, it is then necessary to install a line terminator on the output bus
connector.
4 splitter boxes max.
Digital I/O splitter boxes
These splitter boxes are available in compact and expandable versions, only for the
connection of sensors (input splitter boxes) or for the connection of sensors and/or
actuators (input/output splitter boxes):
4 splitter boxes max.
- c24 V inputs, IEC type 2.
- c24 V 0.5 A transistor outputs.
(1) Maximum distance of 5 m (16.4 ft.) between the bus
module and the last splitter box on the same segment.
b The different input splitter box variants are as follows:
v8 x M8 connectors for connection of up to 8 sensors,
v4 x M12 connectors for connection of up to 8 sensors (4 for sensors with
integrated DESINA c diagnostics function),
v8 x M12 connectors for connection of up to 16 sensors (8 for sensors with
integrated DESINA diagnostics function).
b The different input/output splitter box variants are as follows:
Each channel can be configured as an input, an output or as a diagnostic input.
v8 x M8 connectors for connection of up to 8 sensors or actuators,
v4 x M12 connectors for connection of up to 8 sensors or actuators (4 for sensors
with integrated DESINA diagnostics function),
v8 x M12 connectors for connection of up to 16 sensors or actuators (8 for sensors
or actuators with integrated DESINA diagnostics function).
Analog I/O splitter boxes
These splitter boxes are only available in the compact version for the connection of
analog sensors or actuators using M12 connectors:
b 4 analog input splitter boxes (voltage or current).
b 4 analog output splitter boxes (voltage or current).
c DESINA - Standard relating to the connector technology of sensors, and actuators, established
by the German Machine Tool Builder’s Association.
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
37
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Functions
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Functions
Selection of signal type per channel
b Each M12, 5-pin connector on Advantys FTM splitter boxes allows the connection
of 2 signals. Depending on the type of splitter box, these can be:
v 1 sensor input signal,
v 1 diagnostic input signal,
v 1 actuator output signal.
Signal type, depending on digital splitter box selected:
FTM 1DD
FTM 1DE
M12 and M8
M12
Contact 4
Contact 2
Input
Output
Input
Input
Output
Diagnostic
Input
Diagnostic
Note: either a normally open (N/O) or a normally closed (N/C) contact can be chosen for each
input signal.
Diagnostics
Each Advantys FTM splitter box has one LED per channel to indicate the status of
the channel and to enable fast and precise location of a fault. Fault monitoring
diagnostics are indicated on the splitter box by LEDs and are fed back to the control
system (PLC) via the bus.
There are 2 levels of diagnostics:
b diagnostics per channel,
b diagnostics per splitter box.
Diagnostics per channel
b Sensor short-circuit
A short-circuit or overload on contact 1 of the M12 or M8 female connector blows
the self-resetting fuse. Each M12 or M8 connector is individually protected. A red
LED indicates the fault on the corresponding M12 or M8 connector. This fault is
signalled to the Master. Supply to the sensors is automatically restored after
elimination of the fault.
b Actuator short-circuit
A short-circuit or overload of an output causes a reset of this output. The fault is
signalled to the Master. A red LED indicates the fault on the corresponding M12 or
M8 connector. The output does not restart automatically. After having eliminated the
cause of the fault, the channel must be reset by the PLC. This operation erases the
short-circuit memory.
b Actuator warning
When the output is at state 0, the contact corresponding to the M12 or M8 female
connector is checked for presence of 24 V voltage. If + 24 V is present, it means
there is a “short-circuit”. A red LED indicates the fault on the corresponding M12 or
M8 connector. The fault is signalled to the Master.
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
38
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Functions (continued)
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Functions (continued)
Diagnostics per splitter box
b Sensor/actuator supply status.
b “Undervoltage” fault on the I/O supply.
b Sensor short-circuit.
b Actuator short-circuit.
Use of contact 2 diagnostics function (M12 connector)
Advantys FTM splitter boxes allow the use of sensors and actuators incorporating an
integrated diagnostics function (DESINA type). Configuring contact 2 of each M12
connector as a diagnostic input enables detection of external faults associated with
the sensors or actuators.
This information enables the following faults to be detected:
b damage to the detection surface,
Example of connection of a sensor with integrated diagnostics
function
M12
connector
1
2 Diagnostic
3
b faulty electronics,
b no load.
DESINA
4 (S)
Selection of either the sensor input or diagnostic input function on contact 2 is made
channel by channel, by entering parameters, when configuring the splitter box.
Fault indication by a red LED is possible for each channel configured as a diagnostic
input.
sensor
Example of connection of a standard sensor with the
diagnostics adaptor
Example of connection of a sensor with integrated diagnostics function:
Using the M12 diagnostics adaptor accessory FTX DG12, it is possible to monitor
breaks in wiring to sensors or actuators which do not have an integrated diagnostics
function (only applicable to splitter boxes fitted with M12 connectors).
M12 adaptor
FTX DG12
(by-pass)
M12
connector
1
1
2 Diagnostic
3
3
Sensor
4 (S)
4 (S)
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
39
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Presentation (continued),
configuration
IP 67 modular I/O splitter boxes
0
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
CANopen bus presentation
Other Master
Modicon®
Premium™ PLC
From 1 to 127 Slaves
CANopen bus
FTM 1CN
FTM 1CN
Altivar® 58 Drive
®
TeSys
Tego® Power
Model U
Connection
The CAN system, initially developed for real-time exchange of information in the
automobile industry, is now being used more and more throughout industry. There
are several fieldbuses based on CAN base layers and components.
The CANopen bus conforms to international standard ISO 11898, promoted by the
“CAN in Automation” association (a grouping of manufacturers and users), and
guarantees a high degree of openness and inter-operability due to its communication
profiles and its standardized equipment.
The CANopen bus is now recognized, in Europe, as the reference standard for
building industrial systems based on the CAN concept.
The CANopen bus is a Multimaster bus, based on the Master/Slave principle.
The physical link consists of a shielded twisted pair, to which up to a maximum of
127 Slaves can be connected by simple tap-off. The binary rate varies, depending
on the length of the bus, from 1 Mbits/s for 40 m (131.2 ft.) to 50 kbits/s for 1000 m
3281 ft.).
Each end of the bus must be fitted with a line terminator.
The CANopen bus is a set of profiles on CAN systems, possessing the following
characteristics:
b Open bus system.
b Data exchanges in real-time without overloading the protocol.
b Modular design allowing modification of size.
b Interconnection and interchangeability of devices.
b Standardized configuration of networks.
b Access to all device parameters.
b Synchronization and circulation of data from cyclic and/or event-controlled
processes (short system response time).
b Exchanges possible with numerous international manufacturers.
CANopen bus configuration
An .eds file is assigned to each product, which contains all the important information
relating to the product. An icon (.dib) is also available for installation in the system
configurator.
Please refer to the configuration software documentation for the import of .eds files.
Following the CANopen system initialization phase, all the Slaves signal their
presence on the bus by means of a “Boot-Up” message. A setting-up configurator
(e.g.: SyCon. Refer to our Modicon® Premium™ PLC automation platform catalog)
can then start to read and register the CANopen bus and, on the basis of the data
obtained, assign a corresponding .eds file to each Slave. Based on the .eds file data,
the Master creates a peripheral image of all the Slaves detected by the PLC. The
user can assign I/O bytes to logic addresses within the PLC.
b Addressing
The addresses are configurable from 1 to 99 by means of 2 coding wheels (x 10 and
x 1). A 3rd coding wheel enables the data transmission speed to be selected
(position 0 = automatic speed recognition).
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
40
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Presentation (continued),
configuration
IP 67 modular I/O splitter boxes
0
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
DeviceNet bus presentation
Other Master
Modicon®
Premium™ PLC
From 1 to 63 Slaves
DeviceNet bus
Modicon®
Momentum™
FTM 1DN
FTM 1DN
Altivar® 58 Drive
PLC
®
TeSys
Model U
Tego® Power
Connection
The DeviceNet system is a sensor/actuator bus system of the open Low-End type,
used in various industrial applications and, in particular, the automobile industry. It is
based on CAN technology (OSI layers 1 and 2).
The DeviceNet bus is based on the Master/Slave principle.
The physical link consists of 2 shielded twisted pairs (2 wires for data, 2 wires for
auxiliary supply to sensors), to which up to a maximum of 63 slaves can be
connected. The binary rate varies, depending on the length of the bus, from
125 kbits/s for 500 m (1640 ft.) to 500 kbits/s for 100 m (328.1 ft.).
Each end of the bus must be fitted with a line terminator.
DeviceNet bus configuration
An .eds file is assigned to each product, which contains all the important information
relating to the product. An icon (.ico) is also available for installation in the system
configurator.
When the network is scanned, the identification data is compared with that of the
Slaves present on the network and assigned accordingly. After the scanning phase,
the scanner will have identified all the Slaves and saved information relating to data
length and operating mode.
The DeviceNet bus Master establishes a peripheral image of all the devices detected
on the DeviceNet bus and incorporates them according to their physical location in a
Scan list. The user can then assign the Scan list, according to the peripheral image
of the bus devices, to logic addresses in the PLC.
b Addressing
The addresses are configurable from 1 to 63 by means of 2 coding wheels (x 10 and
x 1). A 3rd coding wheel enables the data transmission speed to be selected
(3 speeds can be selected: 125, 250 and 500 kbits/s).
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
41
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Presentation
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Profibus-DP presentation
Other Master
Modicon®
Quantum™ PLC
Modicon®
Premium™ PLC
Altivar® 58
Drive
Modicon®
Momentum™
PLC
FTM 1DP
FTM 1DP
FTM 1DP
FTM 1DP
The Profibus-DP (Process Fieldbus Decentralized Peripheral) is an open type
fieldbus system for industrial applications. The Profibus standard is described in
standard EN 50170.
The physical link is a simple, type A, shielded twisted pair.
Data exchange between the Master (processing unit) and the Slaves (decentralized
devices) is performed in a cyclic manner.
A maximum of 32 Slaves can be connected to a bus segment. To increase the
maximum number of Slaves possible, repeaters must be installed in order to create
new bus segments.
The repeaters also provide galvanic isolation of the bus segments.
The total number of slaves must not exceed 126.
The bus must be fitted with a line terminator at each end of each segment created.
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
42
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Description
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
1
12
2
Description
Modular bus modules FTM have the following on the front face:
1 One M12 male connector (bus IN) for connection of the bus.
2 One M12 female connector (bus OUT) for connection of the bus.
3 One 7/8 male connector for connection of the c24 V power supplies.
4 Four M12 female connectors for connection of the splitter box inputs/outputs via
the internal bus.
7
6
3
5 Four channel marker labels.
6 Two bus module marker labels.
7 Speed selection (CANopen and DeviceNet buses) and bus address switches.
8 One bus power supply status LED.
9 One bus diagnostics LED.
8
9
10One sensor power supply diagnostics LED.
11One sensor power supply diagnostics and communication status LED.
12Bus module functional ground connection.
4
5
10 11
Bus module FTM
with cover
Bus module FTM
without cover
1 7
2
8
Compact splitter boxes FTM 1Dp08Cpp, FTM 1Dp16C12 and FTM 1Ap04C12p
have the following on the front face:
1 One M12 male connector for connection to the bus module or the previous
module.
2 One M12 male connector for connection of an auxiliary c24 V actuator power
supply (only applicable to FTM 1DD16C12).
3 Four or eight M12 female connectors (depending on model) for connection of
sensors and actuators.
5
1
5
12
10
3
11
4
9
6
9
4 Eight M8 female connectors for connection of sensors and actuators.
5 One or two splitter box marker labels (depending on model).
6 Four or eight channel marker labels.
3
10
6
7 One actuator power supply diagnostics LED.
8 One sensor power supply diagnostics and communication status LED.
9 Four or eight channel status indicator lights (00 to 07).
10Four or eight channel status indicator lights (10 to 17) or channel diagnostic
indicator lights (00 to 07) depending on the splitter box configuration.
11Eight channel “power on” indicator lights (00 to 07).
12One auxiliary supply “power on” indicator light.
FTM 1Dp08C08
FTM 1Dp16C12
FTM 1Dp08C12
FTM 1Ap04C12p
Expandable splitter boxes FTM 1Dp08CppE and FTM 1 Dp16C12E have the
following on the front face:
1 One M12 male connector for connection to the bus module or the previous
module.
2 One M12 female connector for chaining the internal bus to the next module.
3 Four or eight M12 female connectors (depending on model) for connection of
sensors and actuators.
4 Eight M8 female connectors for connection of sensors and actuators.
5 One or two splitter box marker labels (depending on model).
6 Four or eight channel marker labels.
7 One actuator power supply diagnostics LED.
8 One sensor power supply diagnostics LED.
9 Four or eight channel status indicator lights (00 to 07).
10Four or eight channel status indicator lights (10 to 17) or channel diagnostic
indicator lights (00 to 07) depending on the splitter box configuration.
11Eight channel “power on” indicator lights (00 to 07).
5
1
8 1
7
2
5
2
10
3
11
4
9
6
9
3
10
6
FTM 1Dp08C08E
FTM 1Dp16C12E
FTM 1Dp08C12E
Presentation, functions:
pages 36 - 41
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
43
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Connections
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
8
6
7
9
1
CANopen and
DeviceNet bus
10
c 24 V
FTM 1CN/1DN
FTM 1CN/1DN
5
4
4
8
9
2-3
Profibus-DP bus
10
c 24 V
FTM 1DP
FTM 1DP
5
15
11
11
12
+ 24 V
13
15
11
FTM 1DD16C12
FTM
1Dp08C08
14
FTM 1DE16C12
FTM 1Dp08C12E
FTM 1Dp08C08E
16
14
FTM 1Dp08C12
FTM 1Ap04C12p
FTM 1Dp16C12E
Note: the I/O splitter boxes are not governed by the type of fieldbus.
Presentation, functions:
pages 36 - 41
Description:
page 43
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
44
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Connections (continued)
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Cabling accessories for bus modules
Bus module to bus connection cables
Various cables enable connection of the bus module to the fieldbus.
They are available in different lengths:
CANopen and DeviceNet buses:
1 FTX CN32pp: cables fitted with 2 elbowed M12, 5-pin connectors, one at each
end, for connecting the bus between two bus modules.
Bus Profibus-DP:
2 FTX DP32pp: cables fitted with 2 elbowed M12, 5-pin connectors, one at each
end, for connecting the bus between two bus modules.
3 FTX DP12pp: cables fitted with 2 straight M12, 5-pin connectors, one at each end,
for connecting the bus between two bus modules.
Bus module c24 V power supply connection cables
Cables FTX DP2pppenable connection of the main c24 V power supply to bus
modules FTM 1.
Two types of cable are available, in various lengths:
4 FTX DP22pp: cables fitted with two 7/8, 5-pin connectors, one at each end, for
chaining c24 V power supplies between two bus modules.
5 FTX DP21pp: cables fitted with a 7/8, 5-pin connector at one end, with the other
end free for connection of c24 V power supplies.
Connectors
6 FTX CN12p5: M12, 5-pin, male and female connectors for CANopen and
DeviceNet bus cables (A encoded).
7 FTX DP12p5: M12, 5-pin, male and female connectors for Profibus-DP bus cables
(B encoded).
8 FTX C78p5: 7/8, 5-pin, male and female connectors for c 24 V power supply
cables.
Other components
9 FTX CNCT1: T-connector fitted with two 7/8, 5-pin connectors, for power supply
cable.
10FTX ppTL12: CANopen, DeviceNet and Profibus-DP bus line terminators, fitted
with an M12 connector.
Internal cabling accessories
Internal bus connection cables
Cables FTX CB32ppenable connection of the internal bus between the bus module
and the splitter boxes.
This cable is available in different lengths:
11FTX CB32pp: cables fitted with 2 elbowed M12, 6-pin connectors, one at each
end, for connection of internal bus between the bus module and the splitter box or
for chaining between two splitter boxes.
Auxiliary c24 V power supply connection cables
Cables FTX CA3pppenable connection of an auxiliary c24 V power supply
between the bus module and the splitter boxes or directly from a c24 V power
supply.
Two types of cable are available, in various lengths:
12FTX CA32pp: cables fitted with 2 elbowed M12, 6-pin connectors, one at each
end, for connection of c24 V power supplies between the bus module and the
splitter box.
13FTX CA31pp: cables fitted with 1 elbowed M12, 6-pin connector at one end, with
the other end free for connection of c24 V power supply.
Other components
14FTX CY12pp: Y-connector for M12 and M8 connectors.
15FTX CMppB: sealing plugs for M12 and M8 connectors (bus modules and splitter
boxes).
16FTX CBTL12: internal bus line terminator fitted with an M12 connector.
Presentation, functions:
pages 36 - 41
Description:
page 43
Characteristics:
pages 46, 47
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
45
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Characteristics
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Environmental characteristics
Product certifications
cULus
Temperature
Operation
Storage
°C (°F) 0 to + 55 (+ 32... + 131)
°C (°F) - 25 to + 70 (-13... + 158)
IP 67
Degree of protection
Altitude
m (ft.) 0 to 2000 (0...6562)
15 gn
Vibration resistance
Shock resistance
Conforming to IEC 68 part 2-6
Conforming to IEC 68-2-27,
test Ea
50 gn, for 11 ms
Resistance to electrostatic
discharge
Conforming to IEC 61000-4-2
kV
Contact:
4
Air:
8
Resistance to radiated fields Conforming to IEC 61000-4-3
V/m
kV
10
Immunity to fast transient
currents
Conforming to IEC 61000-4-4
Power supply:
Signal:
2
2
Surge withstand
Conforming to IEC 61000-4-5
V
Power supply: (symmetrical and asymmetrical) 500
Signals: (symmetrical and asymmetrical) 1000
Ground/PE: 500
Immunity to conducted
disturbance
Resistance to magnetic
fields, 50 Hz
Conforming to IEC 61000-4-6
Conforming to IEC 61000-4-8
V/m
A/m
10
30
Mounting
All positions
Mechanical mounting
Mounting by two M4 screws (tightening torque 1.5 Nm / 13.3 lbf-in)
Bus module characteristics
Bus module type
FTM 1CN10
FTM 1DN10
FTM 1DP10
Bus type
CANopen
DeviceNet
Profibus-DP
Operating voltage
cV
24
Maximum supply current
Binary rate
A
9
125, 250 and 500 kbits/s
70
12 Mbits/s
80
Internal consumption of bus module
mA
Fieldbus characteristics
Bus type
CANopen
DeviceNet
Profibus-DP
Structure
Type
EN 50325
ISO 11898
EN 50325
ISO 11898
DIN 19245
EN 50170
CAN, layer 7 DeviceNet
Access method
Multimaster, priority
information
Master-Slave
Master-Slave,
Multi-Master
Transmission
Configuration
Binary rate
1 Mbits/s
500 kbits/s
12 Mbits/s
Medium
2 twisted, shielded wires
127
4 twisted, shielded wires
63
2 twisted, type A, shielded
wires (RS 485)
Maximum number of devices
32 without repeater
126 with repeaters
Maximum length of bus
At 1 Mbits/s:
Main line:
Without repeater:
At 12 Mbits/s:
- Max. tap-off length: 0.3 m - 500 m (1640 ft.) without
(0.98 ft.)
repeater,
- 100 m (328.1 ft.) max.
- Max. cumulative tap-off
length: 1.5 m (4.9 ft.)
- 3 km (9843 ft.) with
repeater
At 1.5 Mbits/s:
- 200 m (656.2 ft.) max.
At 500 kbits/s:
- Max. tap-off length: 6 m
(19.7 ft.)
Tap-off:
6 m (19.7 ft.) max.
At 500 kbits/s:
- 400 m (1312 ft.) max.
- Max. cumulative tap-off
length: 30 m (98.42 ft.)
At < 93.75 kbits/s:
- 1.2 km (3937 ft.) max.
Presentation, functions:
pages 36 - 41
Description:
page 43
Connections:
pages 44, 45
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
46
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Characteristics (continued)
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Digital input/output splitter box characteristics
Splitter box type
Inputs
Inputs/outputs
FTM 1DD08Cpp
FTM 1DD08CppE
8 I/O
Compact
Expandable
FTM 1DE08Cpp
FTM 1DE08CppE
8 I
FTM 1DE16C12
FTM 1DE16C12E
16 I
50
FTM 1DD16C12
FTM 1DD16C12E
16 I/O
Number of inputs/outputs
Internal consumption of splitter box
mA
30 (M8)
30 (M8)
50
50 (M12)
50 (M12)
Operating voltage
cV
A
A
24
4
Splitter box max. supply current
Auxiliary supply max. current
–
4 (only
FTM 1DD16C12)
Bus and I/O undervoltage detection
V
< 18
Input characteristics
Number of inputs
8 I
16 I
0...8 I
0...16 I
Conformity to IEC 1131-2
Compatibility with 2-wire/3-wire
proximity sensors
Type 2
Yes
Input values
Nominal voltage
cV
mA
V
24
Maximum current
200
Sensor power supply
18...30
Positive
1
Logic
Input filtering
ms
Channel status indication
Protection against reversed polarity
By LED (yellow), one LED per input
Yes
Output characteristics
Number of outputs
Output type
–
–
–
–
–
–
0...8 O
Transistor
24
0...16 O
Nominal output values
Voltage
Current
cV
A
ms
Hz
0.5
Response time
Max. switching cycle
< 0.5
Resistive: 50
Inductive: 5
Max. lamp load
W
–
–
–
10
Channel status indication
Output connection/cable lengths
By LED (yellow), one LED per output
0.34 mm2 / 5 m (#22 AWG / 16.4 ft.) max
0.75 mm2 / 10 m (#19 AWG / 32.8 ft.) max
Analog input/output splitter box characteristics
Splitter box type
Inputs
Outputs
Compact
FTM 1AE04C12C
FTM 1AE04C12T
FTM 1AS04C12C
FTM 1AS04C12T
Number of inputs/outputs
4 I
4 I
4 O
4 O
Internal consumption of splitter box
Operating voltage
mA
cV
A
A
V
50
24
Maximum supply current
Splitter box
Per channel
4
≤ 0.2
< 18
≤ 1.6
Bus and I/O undervoltage detection
Input and output characteristics
Type
Differential 300 Ω
Differential 1 MΩ
≤ 500 Ω
≥ 500 Ω
Current
Measuring range
0 to 20 mA, 4 to
20 mA
c
10 V
10 V, c0 to
0 to 20 mA, 4 to
20 mA
c
10 V
10 V, c0 to
Resolution
Bits
ms
ms
16
15 + Sign
12
11 + Sign
Conversion time
≤ 2/channel
1
≤ 1/channel
–
Input filtering
Channel status indication
Output connection/cable lengths
By LED
m (ft.) 30 (98.4) max.
Digital and analog splitter boxes diagnostic characteristics
Internal bus and I/O undervoltage detection
V
< 18
Internal bus communication
Channel and splitter box short-circuit
Cable breakage
By LED
By LED
By LED
Presentation, functions:
pages 36 - 41
Description:
page 43
Connections:
pages 44, 45
References:
pages 48, 49
Dimensions, schemes:
pages 50, 51
47
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References
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Bus modules for modular splitter boxes
Bus type Maximum number
of splitter boxes
Connection
to bus by
Reference
FTM 1CN10
FTM 1DN10
FTM 1DP10
Weight
kg
CANopen
16
M12 connectors
M12 connectors
M12 connectors
0.420
0.420
0.420
DeviceNet 16
Profibus-DP 16
Modular digital I/O splitter boxes for all bus types
Number
of I/O
Number,
type of
inputs
Number, Connection
Type
Reference
Weight
type of
by
outputs
kg
8
8,
–
8 x M8 female Compact FTM 1DE08C08
0.120
0.120
0.120
0.120
c24 V
IEC type 2
connectors
Expandable FTM 1DE08C08E
4 x M12 female Compact FTM 1DE08C12
connectors
Expandable FTM 1DE08C12E
FTM 1CN
0...8,
c24 V
IEC type 2 c 24 V/
0...8,
8 x M8 female Compact FTM 1DD08C08
Expandable FTM 1DD08C08E
4 x M12 female Compact FTM 1DD08C12
0.120
0.120
0.120
0.120
transistor connectors
0.5 A
connectors
Expandable FTM 1DD08C12E
16
16,
c24 V
IEC type 2
–
8 x M12 female Compact FTM 1DE16C12
0.220
0.220
connectors
Expandable FTM 1DE16C12E
0...16,
c24 V
IEC type 2 c 24 V/
0...16,
transistor connectors
8 x M12 female Compact FTM 1DD16C12
0.220
0.220
Expandable FTM 1DD16C12E
0.5 A
Modular analog I/O splitter boxes for all bus types
4
4,
–
4 x M12 female Compact FTM 1AE04C12C
connectors
0.130
0.130
0.130
0.130
FTM 1Dp08C08E
FTM 1Dp08C08
0...20 mA
4...20 mA
4,
c
–
4 x M12 female Compact FTM 1AE04C12T
connectors
10 V
c0...10 V
–
4,
4 x M12 female Compact FTM 1AS04C12C
0...20 mA connectors
4...20 mA
4,
c
4 x M12 female Compact FTM 1AS04C12T
10 V connectors
c0...10 V
Connection accessories
Description
Composition
Length
m (ft.)
Reference
Weight
kg
For CANopen/DeviceNet buses
Bus connection cables Fitted with 2 elbowed M12, 0.3 (0.98) FTX CN3203
0.040
0.070
0.100
0.160
0.220
0.430
0.050
0.050
0.010
5-pin connectors,
A encoded, one at each end
0.6 (1.97) FTX CN3206
FTM 1Dp08C12
FTM 1Dp08C12E
1 (3.28)
2 (6.56)
3 (9.8)
5 (16.4)
–
FTX CN3210
FTX CN3220
FTX CN3230
FTX CN3250
FTX CN12M5
FTX CN12F5
FTX CNTL12
FTM 1Ap04C12p
Connectors
M12
5-pin, male, A encoded
5-pin, female, A encoded
–
Line terminator
(for end of bus)
Fitted with one M12
connector
–
For Profibus-DP bus
Bus connection cables Fitted with 2 straight M12, 0.3 (0.98) FTX DP1203
0.040
0.070
0.100
0.160
0.220
0.430
0.040
0.070
0.100
0.160
0.220
0.430
5-pin connectors, one at
each end
0.6 (1.97) FTX DP1206
1 (3.28)
2 (6.56)
3 (9.8)
FTX DP1210
FTX DP1220
FTX DP1230
FTX DP1250
5 (16.4)
FTM 1DD16C12
Fitted with 2 elbowed M12, 0.3 (0.98) FTX DP3203
5-pin connectors, one at
each end
0.6 (1.97) FTX DP3206
1 (3.28)
2 (6.56)
3 (9.8)
FTX DP3210
FTX DP3220
FTX DP3230
FTX DP3250
5 (16.4)
Presentation, functions:
pages 36 - 41
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
Dimensions, schemes:
pages 50, 51
48
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References (continued)
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Connection accessories (continued)
Description
Composition
Length
m (ft.)
Reference
Weight
kg
For Profibus-DP bus (continued)
Connectors
M12 male, 5-pin,
B encoded
–
–
–
FTX DP12M5
FTX DP12F5
FTX DPTL12
0.050
0.050
0.010
M12 female, 5-pin,
B encoded
Line terminator
(for end of bus)
Fitted with one M12
connector
For all bus types
c24 V bus module power Fitted with two 7/8, 5-pin 0.6 (1.97) FTX DP2206
0.150
0.190
0.310
0.750
0.240
0.430
0.700
0.100
supply connection cables connectors, one at each
1 (3.28)
2 (6.56)
5 (16.4)
FTX DP2210
FTX DP2220
FTX DP2250
end
Fitted with one 7/8, 5-pin 1.5 (4.92) FTX DP2115
connector, other end
free
3 (9.8)
FTX DP2130
FTX DP2150
FTX CNCT1
5 (16.4)
T-connector
for power supply cable
Fitted with two 7/8, 5-pin –
connectors
For internal bus
Internal bus connection
cables
for bus module splitter box
linking
Fitted with 2 elbowed
M12, 6-pin connectors,
one at each end
0.3 (0.98) FTX CB3203
0.6 (1.97) FTX CB3206
0.060
0.090
0.120
0.215
0.310
0.500
0.035
0.045
0.060
0.090
0.120
0.180
0.030
0.035
0.040
0.070
0.100
0.160
0.030
1 (3.28)
FTX CB3210
FTX CB3220
FTX CB3230
FTX CB3250
2 (6.56)
3 (9.8)
5 (16.4)
Auxiliary c24 V power
supply connection cables M12, 6-pin connectors,
for bus module splitter box
linking
Fitted with 2 elbowed
0.3 (0.98) FTX CA3203
0.6 (1.97) FTX CA3206
one at each end
1 (3.28)
2 (6.56)
3 (9.8)
FTX CA3210
FTX CA3220
FTX CA3230
FTX CA3250
5 (16.4)
Auxiliary c24 V power
supply connection cables M12, 6-pin connector,
Fitted with 1 elbowed
0.3 (0.98) FTX CA3103
0.6 (1.97) FTX CA3106
other end free
1 (3.28)
2 (6.56)
3 (9.8)
5 (16.4)
–
FTX CA3110
FTX CA3120
FTX CA3130
FTX CA3150
FTX CBTL12
Line terminator
for end of internal bus
Fitted with one M12
connector
Separate components
Description
Composition
Reference
Weight
kg
Connectors
7/8 male, 5-pin
FTX C78M5
FTX C78F5
0.050
0.050
7/8 female, 5-pin
Sealing plugs
Y-connectors
For M8 connector (lot of 10)
For M12 connector (lot of 10)
FTX CM08B
FTX CM12B
FTX CY1208
0.100
0.100
0.020
Connection of 2 x M8 connectors
to M12 connector on splitter box
Connection of 2 x M12 connectors FTX CY1212
0.030
to M12 connector on splitter box
Diagnostics adaptor
Marker labels
Fitted with two M12 connectors
Lot of 10
FTX DG12
FTX MLA10
0.020
0.010
FTX CY1208
CD-ROM
Configuration files, technical
FTX ES00
0.050
manuals and operating instructions
Presentation, functions:
pages 36 - 42
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
Dimensions, schemes:
pages 50, 51
49
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Dimensions
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Bus modules
FTM 1pp10
5
34.5
(1.35")
50 (1.96")
22 (0.86")
50.3 (1.98")
Splitter boxes
Common side view
FTM 1DD16C12
FTM 1DD16C12E
FTM 1DE16C12E
FTM 1DE16C12
FTM 1Dp08C12
FTM 1Ap04C12p
3
33
3
3
33
3
3
33
3
34.5
(1.35")
4
(0.11") (1.29")
(0.11")
(0.11 ") (1.29 ")
(0.11")
(0.11") (1.29")
(0.11")
50 (1.96")
50 (1.96")
30 (1.18")
22 (0.86")
50 (1.96")
FTM 1Dp08C08
FTM 1Dp08C12E
FTM 1Dp08C08E
34.5
(1.35")
4
34.5
(1.35")
4
34.5
(1.35")
4
22 (0.86")
30
(1.18")
30
(1.18")
22 (0.86")
30
(1.18")
22 (0.86")
Y-connectors
FTX CY1208
FTX CY1212
35 (1.37")
15 (0.59")
33 (1.29")
15 (0.59")
Presentation, functions:
pages 36 - 42
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
50
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Schemes
0
IP 67 modular I/O splitter boxes
for fieldbuses
0
Advantys™ Distributed I/O, FTM splitter boxes
Splitter box connection
Input/output connection for digital splitter boxes
Input/output connection for analog splitter boxes
Analog input
Analog output
1
2
1
2
1
2
3
4
Analog
input + signal
24 V
S1
S2
0 V
S
24 V
24 V
5
5
5
+ 24 V
Analog
input – signal
Analog
output signal
0 V
0 V
0 V
1
3
3
3
4
4
4
M12 female connector
M12 female connector
M12 female connector
M8 female connector
Auxiliary power supply
Bus input/Internal bus output of splitter boxes
Internal bus input
Internal bus output
0 V
Internal bus
Internal bus
Internal bus
Internal bus
4
6
4
6
6
5
3
3
5
1
0 V
0 V
+ 24 V (2)
0 V
0 V
1
+ 24 V (2)
1
+ 24 V (1)
2
+ 24 V (1)
2
+ 24 V (2)
M12 male connector
M12 female connector
M12 male connector
(1) Supply to splitter box and sensors.
(2) Supply to actuators.
Bus module connection on CANopen and DeviceNet bus
Supply to bus module
Supply input
Bus input/Bus outputs of bus module
Bus input
Bus output
Internal bus output
Internal bus
CAN-L
Internal bus
CAN-L
3
4
3
2
4
1
3
2
5
1
4
1
CAN-H
3
0 V
CAN-H
0 V
0 V
24 V (1)
24 V (2)
0 V
0 V
0 V
5
5
4
2
6
24 V
+ 24 V (1)
+ 24 V (2)
24 V
1
5
2
7/8 male connector
M12 male connector
M12 female connector
M12 female connector
(1) Supply to splitter box and sensors.
(2) Supply to actuators.
Bus module connection on Profibus-DP bus
Supply to bus module
Supply input
Bus input/Bus outputs of bus module
Bus input
Bus output
Internal bus output
Internal bus
Internal bus
Cable B
(red)
3
4
Cable B (red)
4
3
2
5
1
0 V
Cable A
(green)
0 V
0 V
24 V (1)
24 V (2)
0 V
0 V
0 V
4
3
3
4
5
2
5
6
Cable A (green)
+ 24 V (1)
+ 24 V (2)
5 V
5 V
1
5
2
1
1
2
7/8 male connector
M12 female connector
M12 female connector
M12 male connector
(1) Supply to splitter box and sensors.
(2) Supply to actuators.
Note: connectors linked to shielding.
Y-connector connection
FTX CY1208
FTX CY1212
M8
M8
M12
M12
female
female
female
female
1
2
3
1
2
3
1
3
4
1
3
4
5
4
5
4
1
2
3
4
5
1
2
3
4
M12 male
M12 male
Presentation, functions:
pages 36 - 42
Description:
page 43
Connections:
pages 44, 45
Characteristics:
pages 46, 47
References:
pages 48, 49
51
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Selection guide
0
Power supplies
0
Power supplies for d.c. control circuits
Functions
Supplies for d.c. control circuits
Type of product
Single-phase, modular
switch mode power supplies
Single-phase, regulated switch mode power supplies
Applications
Industrial, commercial or
residential applications.
Modular format allowing
integration into panels.
Simple,
low power
equipment.
Industrial
applications,
low and medium applications on
power.
Machine
equipment
applications.
Industrial or
commercial
sites sensitive to
mains interference.
Protection against
accidental
restarting.
Nominal power
Input voltage
22 W
30 W
7 W to 30 W
48 to 240 W
60 to 240 W
a100 to 240 V single-phase
a100 to 240 V a100 to 240 V a100 to 240 V
single-phase
c110 to 220 V
compatible (1)
single-phase
single-phase,
c110 to 220 V
compatible (1)
Output voltage
c12 V
adjustable
c24 V
adjustable
c24 V
adjustable
c24 V
adjustable
c 12, 24 V or
48 V adjustable
Technology
Primary switch mode electronic power supplies.
Integrated, against overloads and short-circuits, with automatic reset.
Secondary protection
Integrated, against
overloads and
short-circuits,
with manual and
automatic reset.
Signalling
Output indicator lamp.
–
Output and input indicator lamp.
Other characteristics
Connection by lug- –
clamps possible
Anti-harmonic
distortion filter
Mounting
Direct on 7rail
Direct, on 7 rail Direct on 7rail
and on panel
Disturbance (conforming to EN55011/22)
Conducted and radiated
cl.B
cl.A (7/15 W)
cl.B (30 W)
cl.B
Conforming to standards
EN 50081-1, IEC 61000-6-2
(EN 50082-2), IEC 60950,
EN 61131-2/A11
EN 50081-2,
IEC 61000-6-2,
IEC/EN 60950
EN 50081-1,
IEC 61000-6-2, IEC 61000-6-2,
(EN 50082-2),
IEC/EN 60950
EN 50081-1,
(EN 50082-2),
IEC/EN 60950,
EN 61000-3-2
Approvals
cULus, CSA, TÜV
cULus, TÜV
UL, CSA, TÜV, CTick
Device type
Pages
ABL 7RM
ABL 7CEM
ABL 7RE
ABL 7RP
57
58
(1) Compatible input voltage, not indicated on the product.
52
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0
0
2-phase regulated switch mode power supplies
3-phase regulated switch mode power supplies
Industrial applications.
Industrial applications.
In-line continuous process equipment, machine
tools, injection presses, etc.
120 and 240 W
240 and 480 W 120 W
240 to 960 W
a2 x 380 to 415 V 2-phase
a3 x 380 to
415 V
a3 x 400 to 520 V 3-phase
3-phase
c24 V
adjustable
Primary switch mode electronic power supplies.
Integrated, against overloads and short-circuits, with manual and automatic reset.
Output indicator lamp.
–
–
Anti-harmonic distortion filter
Direct on 7rail
Direct on 7rail
(except ABL 7UPS 24200 and ABL 7UPS24400)
cl.B
cl.B
EN 50081-1, EN 50082-2, EN 60950
EN 50081-1,
EN 50082-2,
EN 50081-1, EN 50082-2,
IEC/EN 60950,
IEC/EN 60950 EN 61000-3-2
–
–
cULus, c us, CSA
ABL 7REQ
ABL 7UEQ
ABL 7UES
ABL 7UPS
59
59
53
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Presentation
0
Power supplies
Phaseo® modular regulated power supplies
0
Power supplies for d.c. control circuits
Modular switch mode power supplies ABL 7RM
The ABL 7RM range of power supplies is designed to provide the d.c. voltage
necessary for the control circuits of automation system equipment. Comprising
3 products, this range meets the needs encountered in industrial, commercial and
residential applications. These single-phase, modular, electronic switch mode power
supplies provide a quality of output current which is suitable for the loads supplied
and compatible with the Zelio® Logic range, making them ideal partners. Clear
guidelines are given on selecting the upstream protection devices which are often
used with them, and thus a comprehensive solution is provided that can be used in
total safety.
These switch mode power supplies are totally electronic and regulated. The use of
electronics makes it possible to significantly improve the performance of these power
supplies, which offer:
b very compact size,
b integrated overload, short-circuit, overvoltage and undervoltage protection,
b a very wide range of permissible input voltages, without any adjustment,
b a high degree of output voltage stability,
b good performance,
b considerably reduced weight,
b a modular format allowing integration into panels.
Phaseo power supplies deliver a voltage which is precise to 3%, whatever the load
and whatever the type of mains supply, within a range of 85 to 264 V for single-
phase. Conforming to IEC standards and UL and CSA certified, they are suitable for
universal use. The inclusion of overload and short-circuit protection makes
downstream protection unnecessary if discrimination is not required.
All the products are fitted with an output voltage adjustment potentiometer in order to
be able to compensate for any line voltage drops in installations with long cable runs.
These power supplies are designed for direct mounting on 35 and 75 mm 7rails, or
on a mounting plate using the retractable mounting lugs.
These power supplies are single-phase and three references are available:
b ABL 7RM2401 (24 V c/1.3 A),
b ABL 7RM24025 (24 V c/2.5 A),
b ABL 7RM1202 (12 V c/1.9 A).
Description
ABL 7RM2401
ABL 7RM1202
ABL 7RM24025
1
2
3
1
3
4
5
4
5
2
1 2.5 mm2 (#14 AWG) screw terminals for connection of the incoming a.c. supply
voltage.
2 Output voltage adjustment potentiometer.
3 2.5 mm2 (#14 AWG) screw terminals for connection of the output voltage.
4 LED indicating presence of the d.c. output voltage.
5 Retractable mounting lugs.
Characteristics:
pages 55, 55
References:
page 57
Dimensions:
page 57
Schemes:
page 57
54
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Characteristics
0
Power supplies
Phaseo® modular regulated power supplies
0
Power supplies for d.c. control circuits
Technical characteristics
Power supply type
ABL 7RM1202
ABL 7RM2401
ABL 7RM24025
Certifications
UL - CSA - TÜV
Conforming to standards
Safety
EMC
IEC/EN 60950-1 - IEC/EN 61131-2/A11
IEC/EN 60950-1
IEC/EN 61000-6-2 (IEC/EN 61000-6-1), IEC/EN 61000-6-3
Input circuit
LED indication
Input voltage
No
Nominal values
V
V
Hz
a100 to 240
a85 to 264
47 to 63
> 80%
Permissible values
Permissible frequencies
Efficiency at nominal load
Current consumption
Current at switch-on
Power factor
> 84%
A
A
0.5 (100 V)/0.3 (240 V)
0.6 (100 V)/0.4 (240 V)
1.2 (120 V)/0.7 (240 V)
< 90 for 1 ms
< 20
0.6
Output circuit
LED indication
Nominal output voltage
Nominal output current
Precision
Green LED
c12
V
A
c24
1.9
1.3
2.5
Output voltage
Adjustable
from 100 to 120%
Line and load regulation
4 %
200
3 %
250
Residual ripple - interference
mV
ms
200
Micro-breaks
Protection
Holding time
> 10
for I max and Ue min
Against short-circuits
Permanent/Thermal protection
Against overcurrent, cold state
Against overvoltage
< 1.7 In
< 10.5
< 1.6 In
< 19
< 1.4 In
V
Operating characteristics
Connections
Input
mm2 1 x 2.5 (#14 AWG) or 2 x 1.5 (#16 AWG) screw terminals
AWG
Output
mm2 1 x 2.5 (#14 AWG) or 2 x 1.5 (#16 AWG) screw terminals
AWG
Environment
Storage temperature
Operating temperature
°C
(°F)
°C
- 25 to + 70 (-13 to + 158)
- 20 to + 55 (-4 to + 131)
- 40 to + 70 (-40 to + 158)
(°F)
Maximum relative humidity
Degree of protection
Vibration
95 %
IP 20
IEC/EN 61131-2, IEC/EN 60068-2-6 test Fc
Operating position
Connections
Vertical
Series
No
Parallel
Yes (same references)
3000 Vac/50 Hz/1 min
Class II without PE
Dielectric strength
Input/output
Protection class
conforming to VDE 0106 1
Input fuse incorporated
Emissions
Immunity
Yes (not interchangeable)
Conducted/radiated
Electrostatic discharge
Electromagnetic
IEC/EN 61000-6-3, EN 55011, EN 55022 CI:B
IEC/EN 61000-6-2 (generic standard), IEC/EN 61000-4-2 (4 kV contact/8 kV air)
IEC/EN 61000-4-3 level 3 (10 V/m)
Conducted interference
Mains interference
IEC/EN 61000-4-4 level 3 (2 kV), IEC/EN 61000-4-6 (10 V)
IEC/EN 61000-4-11
Presentation:
page 54
References:
page 57
Dimensions:
page 57
Schemes:
page 57
55
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Characteristics (continued),
selection
Power supplies
Phaseo® modular regulated power supplies
0
Power supplies for d.c. control circuits
0
Output characteristics
Exceeding the nominal power (only applicable to ABL 7RM1202 and
ABL 7RM2401)
The ambient temperature is a determining factor which limits the power that an
electronic power supply can deliver continuously. If the temperature around the
electronic components is too high, their life will be significantly reduced. Conversely,
a power supply can deliver more than its nominal power if the ambient temperature
remains well below the nominal operating temperature.
The maximum ambient temperature for Phaseo power supplies is 55 °C (131°F).
Below this temperature, uprating is possible up to 110% of the nominal power.
The graph below shows the power (in relation to the nominal power) that the power
supply can deliver continuously, according to the ambient temperature.
Power supply ABL 7RM24025 cannot exceed the nominal power of 60 W.
P/Pn (%)
110
100
1
2
0
55
40
Maximum operating temperature (°C)
1 ABL 7RM24025
2 ABL 7RM1202 and ABL 7RM2401
Selection
Upstream protection of power supplies
Type of mains supply
a100 V single-phase
a240 V single-phase
Type of protection
Thermal-magnetic
circuit-breaker
Fuse
gG
Thermal-magnetic
circuit-breaker
Fuse, gG
GB2 (UL/IEC)
GB2 pp06
GB2 pp06
GB2 pp08
C60N (IEC)
C60N (UL)
GB2 (UL/IEC)
GB2 pp05
GB2 pp06
GB2 pp08
C60N (IEC)
C60N (UL)
ABL 7RM1202
ABL 7RM2401
ABL 7RM24025
24580
24516
1 A
1 A
3 A
24494
24516
1 A
1 A
3 A
24580
24516
24580
24516
24582
24518
24582
24518
Schemes
GB2 CBpp
GB2 CDpp
GB2 DBpp
GB2 CSpp
Presentation:
page 54
References:
page 57
Dimensions:
page 57
Schemes:
page 57
56
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References,
dimensions,
scheme
Power supplies
Phaseo® modular regulated power supplies
0
Power supplies for d.c. control circuits
0
Modular regulated switch mode power supplies ABL 7RM (1)
Mains input voltage
47 to 63 Hz
Output
voltage
Nominal
power
Nominal
current
A
Auto-protect Reference
reset
Weight
kg
V
cV
W
100 to 240
Single-phase
wide range
12
22
1.9
Auto
ABL 7RM1202
0.180
24
30
60
1.3
2.5
Auto
Auto
ABL 7RM2401
ABL 7RM24025
0.182
0.255
ABL 7RM
(1) For additional products, please refer to our “Interfaces, I/O splitter boxes and power supplies” catalog.
Dimensions
Power supply ABL 7RMpppp
mm
inches
Dual Dimensions
44
4
(0.16")
60
1.73"
2.36"
59
2.32"
72
2.83"
70
2.75"
Scheme
ABL 7RMpppp
Presentation:
page 54
Characteristics:
pages 55, 55
57
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Presentation
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
ABL 7 power supplies
The ABL 7 range of power supplies is designed to provide the d.c. voltage necessary
for the control circuits of automation system equipment. Split into three families, this
range meets all the needs encountered in industrial, commercial and residential
applications. Single-phase or 3-phase, of the electronic switch mode type, they
provide a quality of output which is suitable for the loads supplied and compatible
with the mains supply available in the equipment. Clear guidelines are given for
selecting protection devices which are often used with them and thus a
comprehensive solution is provided, which can be used in total safety.
Phaseo switch mode power supplies
These switch mode power supplies are totally electronic and regulated. The use of
electronics makes it possible to significantly improve the performance of these power
supplies, which offer:
- very compact size,
- integrated overload, short-circuit, overvoltage and undervoltage protection,
- a very wide range of permissible input voltages, without any adjustment,
- a high degree of output voltage stability,
- good performance,
- LED indicators on the front panel.
Phaseo power supplies are available in single-phase and 3-phase versions. They
deliver a voltage which is precise to 3%, whatever the load and whatever the type of
mains supply, within a range of 85 to 264 V for single-phase, or 360 to 550 V for
3-phase. Conforming to IEC standards and UL and CSA certified, they are suitable
for universal use. The inclusion of overload and short-circuit protection makes
downstream protection unnecessary if discrimination is not required.
ABL 7 RE and ABL 7 RP supplies are also equipped with an output undervoltage
control which causes the product to trip if the output voltage drops below 19 V, in
order to ensure that the voltage delivered is always usable by the actuators being
supplied. All the products are fitted with an output voltage adjustment potentiometer
in order to be able to compensate for any line voltage drops in installations with long
cable runs. Most of our power supplies are designed for direct mounting on 35 and
75 mm 7rails.
These power supplies are available in single-phase and 3-phase versions and are
split into three families:
Compact single-phase supply ABL 7CEM:
b power less than or equal to 30 W (1.2 A),
b compact size,
b for all low power equipment,
b suitable for use in automation system environments based on the Nano™ PLC and
Twido® PLC platforms, or in any automation system configuration requiring a c24 V
supply.
ABL 7CEM
Universal single-phase supplies ABL 7RE and ABL 7RP:
b ABL 7RE
v power between 48 W (2 A) and 240 W (10 A),
v compact size,
v for all machine equipment,
v suitable for use in automation system environments based on the Micro™ PLC and
Modicon® Premium™ PLC platforms, or in any automation system configuration
requiring a c24 V supply.
b ABL 7RP
v power between 60 W and 240 W (10 A),
ABL 7RP
v output voltage available: c12, 24 and 48 V depending on version,
v input filter (PFC) for commercial and residential environments (conforming to
standard EN 61000-3-2),
v two operating modes possible for handling of overload and short-circuit faults:
- "AUTO" mode which provides automatic restarting of the power supply on
elimination of the fault,
- "MANU" mode which requires manual resetting of the power supply to restart.
Resetting is achieved by switching off the mains power.
Characteristics:
pages 55, 56
References:
page 57
Dimensions:
page 57
Schemes:
page 57
58
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Presentation (continued)
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
Phaseo switch mode power supplies (continued)
3-phase and single-phase process supplies ABL 7U and ABL 7REQ:
b ABL 7UEQ
v power between 120 W (10 A) and 480 W (20 A),
v compact size,
v voltages between 3 x 380 V and 3 x 415 V,
v for use in industrial applications, for all in-line or continuous process equipment,
machine tools and injection presses, etc.
v suitable for use in automation system environments based on the Modicon®
Premium™ PLC and Modicon® Quantum™ PLC platforms, or in any automation
system configuration requiring a c24 V supply.
b ABL 7UPS and ABL 7UES
v power between 120 W (5 A) and 960 W (40 A).
Identical to the ABL 7UEQ range, this power supply differs in that it features an
extended input voltage range from 3 x 400 to 3 x 520 V and includes a filter (PFC)
which means that it can be connected directly to public mains supplies, in compliance
with standard EN 61000-3-2. This product, for world-wide use, is UL and CSA
certified.
ABL 7UPS
ABL 7REQ
b ABL 7REQ
v power between 120 W (5 A) and 240 W (10 A),
v compact size,
v can be connected to 2-phase input voltages between 380 V and 415 V, to replace
older power supplies connected by only two wires. Economical, more competitive, yet
with a smaller input voltage range it can, in certain cases, be used in place of the
3-phase versions.
Using c24 V
b Using c24 V enables so-called protection installations (PELV) to be built. Using
PELV is a measure designed to protect people from direct and indirect contact.
Measures relating to these installations are defined in publication NF C 12-201 and
in standard IEC 364-4-41.
b The application of these measures to the electrical equipment in machines is
defined in standard NF EN 60204-1 and requires:
v that the voltage used is below 60 V d.c. in dry environments and below 30 V in
damp environments,
v the connection of one side of the PELV circuit, or one point of the source, to the
equipotential protection circuit associated with higher voltages,
v the use of switchgear and control gear on which measures have been taken to
ensure "safety separation" between power circuits and control circuits.
b A safety separation is necessary between power circuits and control circuits in
PELV circuits. Its aim is to prevent the appearance of dangerous voltages in c24 V
safety circuits.
b The reference standards involved are:
v IEC 61558-2-6 and EN 61558-2-6 (safety transformers),
v IEC 664 (coordination of isolation).
Telemecanique® power supplies meet these requirements.
b Moreover, to ensure that these products will operate correctly in relation to the
demands of their reinforced isolation, it is recommended that they be mounted and
wired as indicated below:
v they should be placed on an grounded mounting plate or rail,
v they should be connected using flexible cables, with a maximum of two wires per
connection, and tightened to the nominal torque,
v conductors of the correct insulation class must be used.
b If the d.c. circuit is not connected to an equipotential protection conductor, an
ground leakage detector will indicate any accidental ground faults (please consult
your Regional Sales Office).
Operating voltage
b The permissible tolerances for the operating voltage are listed in publications
IEC 1131-2 and DIN 19240.
b For nominal voltage Un = c24 V, the extreme operating values are from - 15 %
to + 20 % of Un, whatever the supply fluctuations in the range -10 % to + 6 %
(defined by standard IEC 38) and load variations in the range 0-100 % of In.
All Telemecanique® c24 V power supplies are designed to provide a voltage within
this range.
b It may be necessary to use a voltage measurement relay to detect when the
normal voltage limits are being surpassed and to deal with the consequences of this
(please consult your Regional Sales Office).
Characteristics:
pages 55, 56
References:
page 57
Dimensions:
page 57
Schemes:
page 57
59
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Selection
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
Selection of power supplies
The characteristics to be taken into account when selecting a power supply are:
2
- the required output voltage and current,
- the mains voltage available in the installation.
An initial selection can be made using the table opposite.
This may however result in several products being selected as suitable.
Other selection criteria must therefore be taken into account.
b The quality of the mains power supply
The Phaseo range is the solution because it guarantees precision to 3% of the output
voltage, whatever the load current and the input voltage. In addition, the wide input
voltage range of Phaseo power supplies allows them to be connected to all mains
supplies within the nominal range, without any adjustment.
The Phaseo RP family can also be connected to c110 and 220 V emergency
supplies.
b Harmonic pollution (power factor)
The current drawn by a power supply is not sinusoidal. This leads to the existence of
harmonic currents which pollute the mains supply. European standard EN 61000-3-2
limits the harmonic currents produced by power supplies. This standard covers all
devices between 75 W and 1000 W, drawing up to 16 A per phase, and connected
directly to the public mains power supply. Devices connected downstream of a
private, low voltage general transformer are therefore excluded.
Regulated switch mode supplies always produce harmonic currents; a filter circuit
(Power Factor Correction or PFC) must therefore be added to comply with standard
EN 61000-3-2.
Phaseo ABL 7RP, ABL 7UES and ABL 7UPS power supplies conform to standard EN
61000-3-2 and can therefore be connected directly to public mains power supplies.
b Electromagnetic compatibility
Levels of conducted and radiated emissions are defined in standards EN 55011 and
EN 55022.
The majority of products in the Phaseo range have class B certification and can be
used without any restrictions due to their low emissions.
ABL 7CEM24003 and ABL 7CEM24006 power supplies have class A certification. It
is recommended that they should not be used in the following equipment: trains,
aircraft, nuclear applications and in any environment where malfunctioning could
cause serious injuries or lead to death. These products are designed for use in
industrial equipment and are not suitable for use in residential environments.
b Behavior in the event of short-circuits
Phaseo power supplies are equipped with an electronic protection device. This
protection device resets itself automatically on elimination of the fault (around
1 second for ABL 7 RE/RP, around 3 seconds for ABL 7 UE/UP/REQ) which avoids
having to take any action or change a fuse. In addition, the Phaseo ABL 7RP/U/REQ
ranges allow the user to select the reset mode in the event of a fault:
- in the "AUTO" position, resetting is automatic,
- in the "MANU" position, resetting occurs after elimination of the fault and after
switching the mains power off and back on.
This feature allows Phaseo ABL 7RP/U/REQ power supplies to be used in
installations where the risks associated with untimely restarting are significant.
b Behavior in the event of phase failure
In the event of failure of one phase, all Phaseo 3-phase power supplies switch to
relaxation mode for as long as the input voltage is below 450 V.
For operation on higher voltages (e.g. 480 V), use of an upstream GV2 type residual
current protection device is recommended.
b Selection of reset mode
v on the ABL 7RP family of products:
By microswitch on the front panel of the product.
v on the ABL 7U/REQ family of products:
By jumper on the front panel. Warning: selection of the function is only possible
after the mains power supply has been switched off for at least 5 minutes. The
jumper is moved using a pair of insulated, flat-nose pliers.
Presentation :
pages 58, 59
Characteristics :
pages 62 - 65
References :
page 67
Dimensions :
page 68
Schemes :
page 69
60
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Selection (continued)
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
Selection according to application characteristics
Type of mains supply
Single-phase
2-phase
3-phase
Rated mains supply voltage
a100 to 240 V 50/60 Hz
c110 to 220 V (1)
Wide range
100 to 240 V
50/60 Hz
Wide range
2 x 380 to 415 V 3 x 380 to 415 V 3 x 400 to 520 V
50/60 Hz
50/60 Hz
50/60 Hz
Wide range
Permissible variation
Output voltage
85 to 264 V, 47 to 63 Hz
c100...250 V (1), c105...370 V (2)
85 to 264 V
47 to 63 Hz
340 to 460 V
47 to 63 Hz
340 to 460 V
47 to 63 Hz
360 to 550 V
47 to 63 Hz
12 V
48 V
24 V
24 V
24 V
24 V
24 V
Output current
0.3 A
0.6 A
1.2 A
2 A
ABL
7CEM24003
ABL
7CEM24006
ABL
7CEM24012
ABL
7RE2402
2.5 A
3 A
ABL
7RP4803
ABL
ABL
7RP2403
ABL
7RE2403
ABL
5 A
ABL
ABL
ABL
7RP1205
7RP2405
ABL
7RE2405
ABL
7REQ24050
ABL
7UES24050
10 A
20 A
40 A
ABL
7RP2410
7RE2410
7REQ24100
7UEQ24100
ABL
7UEQ24200
Conforming to EN 61000-3-2
Yes (not applicable for ABL 7CEM)
No
No
No
No
Integrated automatic
protection
Yes
Yes
Yes
Automatic or manual restart on ABL 7RP
Automatic restart only on ABL 7CEM
Automatic restart Automatic or manual restart
(1) Values for ABL 7RP power supplies, not indicated on the product.
(2) Values for ABL 7CEM power supplies, not indicated on the product.
Presentation :
pages 58, 59
Characteristics :
pages 62 - 65
References :
page 67
Dimensions :
page 68
Schemes :
page 69
61
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Characteristics
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
Technical characteristics
Type of power supply
Product certifications
Conforming to standards
Safety
ABL 7CEM
cULus, TÜV
UL 508
ABL 7RE
UL, CSA, TÜV, CTick
UL 508, CSA 22.2 n° 950
ABL 7RP
IEC/EN 60950, FELV
IEC/EN 60950,
IEC/EN 61496-1-2, FELV
EMC
EN 50081-2, EN 50082-2
–
EN 50081-1, IEC 61000-6-2 (EN 50082-2)
Low frequency harmonic currents
–
EN 61000-3-2
Input circuit
LED indication
–
Orange LED
Orange LED
Input voltages
Rated values
V
a100 to 240,
c110 to 220 compatible (1)
a100 to 240
a100 to 240,
c 110 to 220 compatible (1)
a85 to 264 single-phase a85 to 264,
c100 to 250 compatible (1)
Permissible values
V
a85 to 264,
c105 to 370 compatible (1)
Permissible frequencies
Efficiency at nominal load
Hz
47 to 63
> 70 %
> 85 %
Current
consumption
Ue = 240 V
A
A
A
0.1 (7 W)/0.2 (15 W)/0.45
(30 W)
0.6 (48 W)/0.83 (72 W)
1.2 (120 W)/2.5 (240 W)
0.4 (60 and 72 W)/0.6 (120 W)
1.3 (240 W)
Ue = 100 V
0.17 (7 W)/0.3 (15 W)/0.68 1.2 (48 W)/1.46 (72 W)
(30 W)
0.8 (60 and 72 W)/1 (120 W)/
2.8 (240 W)
1.9 (120 W)/3.6 (240 W)
Current at switch-on
Power factor
< 50
< 30
0.45 approx.
0.65 approx.
0.98 approx.
Output circuit
LED indication
Green LED
c24
Green LED
2/3/5/10
Green LED
12, 24 and 48
2.5/5/10
Nominal output voltage (U out)
Nominal output current
V
A
0.3/0.6/1.2
Precision
Output voltage
Line and load regulation
Adjustable from 90 to 110 % Adjustable from 100 to 120 %
2 % max
3 %
Residual ripple - interference
mV
ms
< 200 (peak-peak)
> 20
Micro-breaks
Holding time at I max and Ve min
> 10
> 20
Temporary overloads Permissible inrush current (U out >19V)
See curves 65
Protection
Short-circuit
Permanent/automatic
restart
Permanent/automatic
restart
Permanent/automatic
restart or restart after
switching off mains power
Overload
1.05 In
U > 1.2
–
1.1 In
Overvoltage
Undervoltage
Tripping if U > 1.5 Un
Tripping if U < 0.8 Un
Operating and environmental characteristics
Connections
Input
mm2
AWG
2 x 2.5 + ground (#14 AWG)
2 x 2.5 (#14 AWG)
Output
mm2
AWG
2 x 2.5 + ground (#14 AWG), multiple output, depending
on model
Ambient conditions Storage temperature
°C (°F) - 25 to + 70 (- 13 to + 158)
Operating temperature
°C (°F) - 10 to + 60 (+ 14 to + 140) 0 to + 60 (+ 32 to + 140) derating as from 50° C (+ 122),
derating as from 50° C (+
122), mounted vertically
mounted vertically
Max. relative humidity
Degree of protection
20 to 90 %
95 % without condensation or dripping water
IP 20 conforming to IEC 529
Conforming to IEC 61131-2
Vibrations
Operating position
Vertical and horizontal
(see derating curve, 64)
Vertical
MTBF at 40°
> 100 000 h
Connections
Series
Possible (see page 65)
No
Parallel
Possible (max. temperature 50° C)
Dielectric strength
Input/output
3000 V/50 and 60 Hz 1 min 3000 V/50 and 60 Hz 1 min
2000 V/50 and 60 Hz 1 min 3000 V/50 and 60 Hz 1 min
500 V/50 and 60 Hz 1 min 500 V/50 and 60 Hz 1 min
Yes (not interchangeable)
Input/ground
Output/ground (and output/output)
Input fuse incorporated
Disturbance
EN 50081-2 (generic)
EN 50081-1
Conducted
EN 55011/EN 55022 class A EN 55011/EN 55022 class B
(7 and 15 W) EN 55011/
EN 55022 class B (30 W)
Radiated
EN 55011/EN 55022 class B
Immunity
IEC 61000-6-2 (generic)
Electrostatic discharge
Electromagnetic
EN 61000-4-2 (4 kV contact/8 kV air)
EN 61000-4-3 level 3 (10 V/m)
Conducted interference
Mains interference
EN 61000-4-4 level 3 (2 kV), EN 61000-4-5, EN 61000-4-6 level 3, EN 61000-4-8 level 4
EN 1000-4-11 (voltage drops and cuts)
(1) Compatible input voltage, not indicated on the product.
62
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Characteristics (continued)
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
Technical characteristics
Type of power supply
Product certifications
Conforming to standards
Safety
ABL 7REQ24p
–
ABL 7UEQ24p ABL 7UES24p
ABL 7UPS24p
cULus, cURus and CSA
IEC/EN 60950, FELV
EMC
EN 50081-1, EN 50082-2
–
Low frequency harmonic currents
EN 61000-3-2
Input circuit
LED indication
–
Input voltages
Rated values
V
V
Hz
a2 x 380 to 415 a3 x 380 to 415 a3 x 400 to 520
a2 x 340 to 460 a3 x 340 to 460 a3 x 360 to 550
50 to 60
Permissible values
Permissible frequencies
Efficiency at nominal load
Current consumption
Ue = 400 V
> 85 %
> 90 %
A
A
0.65 (120 W)/1.2 0.75 (240 W)/1.5 0.7 (240 W)/1.2 (480 W)/1.7 (960 W)
(240 W)
< 35
0.6
(480 W)
0.55
Current at switch-on
Power factor
0.7
0.7/0.9 (960 W)
2-phase operating mode
V
–
Relaxation if input voltage < a450
Output circuit
LED indication
Green LED
c24
Nominal output voltage (U out)
Nominal output current
Precision
V
A
5/10
10/20
5
10/20/40
Output voltage
Adjustable from 100 to 116%
1 % max
Line and load regulation
Residual ripple - interference
Micro-breaks
Holding time for I max and Ve min
Temporary overloads
Permissible inrush current (U out >19V)
Protection
mV
ms
< 200 (peak-peak)
15
10
Between 8 and 13
See curves, page 65
Short-circuit
Permanent/automatic or normal restart
1.20 In < 50 ms
Overload
Overvoltage
V
V
28.5 typical
Undervoltage
19 typical
Operating and environmental characteristics
Connections
Input
mm2
AWG
2 x 1.5 to 2.5 mm2 + ground (#16 to # 14)
Output
mm2
AWG
4 x 1.5 to 2.5 mm2 4 x 4 to 6 mm2
(#16 to #14 AWG) (#10 AWG)
4 x 1.5 to 2.5 mm2 4 x 1.5 to 2.5 mm2
(#16 to #14 AWG) (#16 to #14 AWG) 240 W
4 x 4 to 6 mm2
(#10 AWG) 480 W
4 x 4 to 10 mm2
(#8 AWG) 960 W
Ambient
conditions
Storage temperature
Operating temperature
Maximum relative humidity
Degree of protection
Vibrations
°C (°F) - 25 to + 70 (- 13 to + 158)
°C (°F) 0 to + 60 (+ 32 to +140)
30 to 90 %
IP 20
Conforming to IEC 61131-2
Vertical
Operating position
MTBF
> 100 000 h
Connections
Series
Possible see page 65
Possible see page 65
Parallel
Dielectric
strength
Input/output
3750 V/50 and 60 Hz 1 min
3500 V/50 and 60 Hz 1 min
500 V/50 and 60 Hz 1 min
No
Input/ground
Output/ground (and output/output)
Input fuse incorporated
Disturbance
Immunity
Conducted/radiated
EN 55011/EN 55022 - class B
EN 61000-4-2 (4 kV contact/8 kV air)
EN 61000-4-3 level 3 (10 V/m)
Electrostatic discharge
Electromagnetic
Conducted interference
EN 61000-4-4 level 3 (2 kV) , EN 61000-4-5, EN 61000-4-6 level3, EN 61000-4-8 level 4 (for
ABL 7RE/RP)
Mains interference
EN 61000-4-11 (voltage drops and cuts)
Presentation :
pages 58, 59
References :
page 67
Dimensions :
page 68
Schemes :
page 69
63
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Output characteristics
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
Derating
The ambient temperature is a determining factor which limits the power that an
electronic power supply can deliver continuously. If the temperature around the
electronic components is too high, their life will be significantly reduced. Conversely,
a power supply can deliver more than its nominal power if the ambient temperature
remains largely below the rated operating temperature.
The rated ambient temperature for Phaseo power supplies is 50 °C (+ 122 °F). Above
this, derating is necessary up to a maximum temperature of 60 °C (+ 140 °F).
The graph below shows the power (in relation to the nominal power) which the power
supply can deliver continuously, according to the ambient temperature.
P/Pn (%)
140
120
100
80
3
2
1
60
50
40
20
0
0
10
20
30
40
50
60
70
Maximum operating temperature (°C)
1
2
ABL 7RE, ABL 7RP, ABL 7U mounted vertically
ABL 7CEM mounted vertically
3 ABL 7CEM mounted horizontally
Derating should be considered in extreme operating conditions:
- intensive operation (output current permanently close to the nominal current,
combined with a high ambient temperature),
- output voltage set above 24 V (to compensate for line voltage drops, for example),
- parallel connection to increase the total power.
General rules to be complied with
Intensive operation See derating on above graph.
Example for ABL 7RE:
- without derating, from 0 °C to 50 °C (+ 32 to + 122 °F),
- derating of nominal current by 2 %, per additional °C, up to 60 °C (+ 140
°F).
Rise in output
voltage
The nominal power is fixed.
Increasing the output voltage means that the current delivered must be
reduced
Parallel connection The total power is equal to the sum of the power supplies used, but the
to increase the
power (except
ABL 7CEM)
maximum ambient temperature for operation is 50 °C (+ 122 °F).
To improve heat dissipation, the power supplies must not be in contact
with each other
In all cases, there must be adequate convection round the products to ensure easier
cooling. There must be a clear space of 50 mm (1.97") above and below Phaseo
power supplies and of 15 mm (0.59") at the sides.
Presentation :
pages 58, 59
References :
page 67
Dimensions :
page 68
Schemes :
page 69
64
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Output characteristics
(continued)
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
0
Load limit
ABL 7CEM24ppp
ABL 7RE24pp/ABL 7RPpppp
ABL 7Upp24pp/ABL 7REQpppp
U out (%)
100 %
U out
19 V
50 %
1
2
I out
1,2 x In
I out
1,1 x In 1,2 x In
ABL 7RE24pp/ABL 7RPpppp
ABL 7Upp24pp/ABL 7REQpppp
In
1
2
Temporary overloads
ABL 7CEM
ABL 7RE/ABL 7RP
I out
I out
T (ms)
100
T (ms)
20
I out:(0...100%)
I out:(0...100%)
90
80
70
18
16
14
60
50
40
30
20
10
0
12
10
0
1,8
2
2,2
2,4
2,6
x In
1,2
1,3
1,4
1,5
1,6
1,7
1,8
x In
ABL 7U
T (ms)
800
700
600
500
400
I out=0%
I out=50%
Example: For an ABL 7UPS24ppp power supply with 50 % loading.
(I out = 50 %), this power supply can absorb a current peak of 1.6 x In for 250 ms
with an output voltage u 19 V.
300
250
I out=80%
200
I out=100%
100
0
1,2
1,3
1,4
1,5
1,6
1,7 1,8
x In
Series or parallel connection
Series connection
Parallel connection
ABL 7
(1)
ABL 7
(1)
ABL 7
ABL 7
2 x c24 V / I out
Series
c24 V / 2 x I out
Family
Parallel
No
ABL 7CEM
2 products max (1)
2 products max
2 products max
ABL 7RE/RP
ABL 7U/REQ
2 products max
2 products max
(1) 2 Shottky diodes 2 A/100 V on ABL 7CEM only.
Presentation :
pages 58, 59
References :
page 67
Dimensions :
page 68
Schemes :
page 69
65
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0
Power supplies for d.c. control circuits
Phaseo® regulated switch mode power supplies
Upstream protection
ABL 7CEM, ABL 7RE and ABL 7RP power supplies: protection of the power supply line
Type of mains supply
Type of protection
a100 V single-phase
Thermal-magnetic circuit-breaker gG fuse
a240 V single-phase
Thermal-magnetic circuit-breaker gG fuse
GB2 (UL/IEC)
GB2 pp05
GB2 pp05
GB2 pp06
GB2 pp07
GB2 pp07
GB2 pp08
GB2 pp12
GB2 pp06
GB2 pp07
GB2 pp07
GB2 pp09
GB2 pp07
C60N (IEC)
C60N (UL)
GB2 (UL/IEC)
GB2 pp05
GB2 pp05
GB2 pp06
GB2 pp06
GB2 pp06
GB2 pp07
GB2 pp08
GB2 pp06
GB2 pp06
GB2 pp06
GB2 pp07
GB2 pp06
C60N (IEC)
C60N (UL)
ABL 7CEM24003
ABL 7CEM24006
ABL 7CEM24012
ABL 7RE2402
ABL 7RE2403
ABL 7RE2405
ABL 7RE2410
ABL 7RP1205
ABL 7RP2403
ABL 7RP2405
ABL 7RP2410
ABL 7RP4803
24494
24516
1 A
1 A
1 A
2A
24494
24516
1 A
1 A
1 A
1 A
2 A
2 A
3 A
1 A
1 A
1 A
2 A
1 A
24494
24516
24494
24516
24580
24516
24580
24516
24581
24517
24580
24516
24581
24517
2 A
4 A
6 A
2 A
2 A
2 A
4 A
2 A
24580
24516
24582
24518
24581
24517
24584
24520
24582
24518
24580
24516
24580
24516
24581
24517
24580
24516
24581
24517
24580
24516
24583
24519
24581
24517
24581
24517
24580
24516
ABL 7REQ power supplies: protection of the power supply line
Type of mains supply
a400 V 2-phase
Type of protection
Thermal-magnetic circuit-breaker gG fuse
2-pole:
GB2 DBp(UL/
C60N (IEC)
C60N (UL)
IEC)
ABL 7REQ24050
ABL 7REQ24100
GB2 DB16
GB2 DB16
24586
24522
10 A
10 A
24586
24522
ABL 7UEQ, ABL 7UES and ABL 7UPS power supplies: protection of the power supply line
Type of mains supply
a400 to 480 V 3-pole
Type of protection
Thermal-magnetic circuit-breaker gG fuse
3-pole:
GV2 MEpp
C60N (IEC)
C60N (UL)
ABL 7UEQ24100
ABL 7UEQ24200
ABL 7UES24050
ABL 7UPS24100
ABL 7UPS24200
ABL 7UPS24400
GV2 ME08
GV2 ME08
GV2 ME08
GV2 ME08
GV2 ME08
GV2 ME08
24598
24535
4 A
10 A
2 A
2 A
3 A
4 A
24601
24538
24596
24533
24596
24533
24597
24534
24598
24535
Schemes
GB2 CBpp
GB2 CDpp
GB2 DBpp
GB2 CSpp
Presentation :
pages page 58, page 59
References :
page page 67
Dimensions :
page page 68
Schemes :
page page 69
66
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References
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
ABL 7CEM single-phase regulated switch mode power supplies
Mains
Output Nominal
Nominal
current
Auto-protect Conforming Reference
Weight
kg
input voltage voltage power
47...63 Hz
reset
to standard
EN 61000-3-2
V
c V
W
7
A
a100 to 240
single-phase
wide range
24
0.3
0.6
1.2
auto
auto
auto
–
–
–
ABL 7CEM24003
ABL 7CEM24006
ABL 7CEM24012
0.150
0.180
0.220
15
30
ABL 7CEM
c110 to 220 (1)
ABL 7RE single-phase regulated switch mode power supplies
Mains
Output Nominal
Nominal
current
Auto-protect Conforming Reference
Weight
input voltage voltage power
47...63 Hz
reset
to standard
EN 61000-3-2
V
c V
24
W
48
A
2
kg
a 100 to 240
single-phase
wide range
auto
auto
auto
auto
–
ABL 7RE2402
ABL 7RE2403
ABL 7RE2405
ABL 7RE2410
0.520
0.520
1.000
2.200
72
3
no
no
no
120
240
5
ABL 7RE2405
ABL 7RP2405
ABL 7RP4803
10
ABL 7RP single-phase regulated switch mode power supplies
Mains
Output Nominal
Nominal
current
Auto-protect Conforming Reference
Weight
input voltage voltage power
47...63 Hz
reset
to standard
EN 61000-3-2
V
c V
W
A
kg
a100...240
single-phase
wide range
12
60
5
auto/man
yes
ABL 7RP1205
1.000
24
72
3
auto/man
auto/man
auto/man
yes
yes
yes
ABL 7RP2403
ABL 7RP2405
ABL 7RP2410
0.520
1.000
2.200
c110...220 (1)
120
240
5
10
48
24
144
480
2.5
20
auto/man
auto/man
yes
yes
ABL 7RP4803
1.000
2.300
a 100 to 240
single-phase
wide range
ABL 7RPM24200
ABL 7Ppppp
ABL 7REQ 2-phase regulated switch mode power supplies
Mains
Output Nominal
Nominal
current
Auto-protect Conforming Reference
Weight
input voltage voltage power
47...63 Hz
reset
to standard
EN 61000-3-2
V
c V
W
A
kg
a380 to 415
24
120
5
auto/man
auto/man
no
no
ABL 7REQ24050
ABL 7REQ24100
0.850
ABL-7REQ
240
10
1.200
ABL 7U 3-phase regulated switch mode power supplies
Mains
Output Nominal
Nominal
current
Auto-protect Conforming Reference
Weight
input voltage voltage power
47...63 Hz
reset
to standard
EN 61000-3-2
V
c V
W
A
kg
a 3x380 to 415 24
240
480
10
20
auto/man
auto/man
no
no
ABL 7UEQ24100
ABL 7UEQ24200
1.200
2.100
a3x400 to 520 24
120
240
480
960
5
auto/man
auto/man
auto/man
auto/man
yes
yes
yes
yes
ABL 7UES24050
ABL 7UPS24100
ABL 7UPS24200
ABL 7UPS24400
1.300
1.300
2.300
4.500
10
20
40
ABL 7UPS
(1) Compatible input voltage.
Presentation :
pages page 58, page 59
Characteristics :
pages page 62 - page 65
Dimensions :
page page 68
Schemes :
page page 69
67
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Dimensions
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
ABL 7RE24pp/ABL 7RPpppp
Common side view
ABL 7RE2402/2403
ABL 7RP2403
ABL 7RE2405
ABL 7RP1205/2405/4803
ABL 7RE2410
ABL 7RP2410
Mounting on 35 and 75 mm rails
27
120
4.72"
54
2.12"
135
5.31"
1.06"
ABL 7CEM24ppp
ABL 7CEM24003
ABL 7CEM24006/
ABL 7CEM24012
ABL 7REQ24ppp/ABL 7UEQ24100/ABL 7UES24050/
ABL 7UPS24100
Common front view
70
95
45
2.75"
3.74"
1.77"
a
P
6
68
0.23"
2.67"
Panel mounting
(1)
ABL
P
a
mm (inches)
mm (inches)
7REQ24050
7REQ24100
7UEQ24100
7UES24050
7UPS24100
130 (5.11")
154 (6.06")
154 (6.06")
171 (6.73")
171 (6.73")
–
–
–
15 (0.59"
15 (0.59")
35 (38,5)
(1) 2 x M4 or 2 x Ø4.5
ABL 7UEQ24200
ABL 7UPS24200
60
2.36"
201
7.91"
6
84
3.30"
240
9.44"
0.23"
84
3.30"
ABL 7UPS24400
81
3.18"
mm
inches
Dual Dimensions
275
10.8"
106
4.17"
Presentation :
pages page 58, page 59
Characteristics :
pages page 62 - page 65
References :
page page 67
Schemes :
page page 69
68
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Schemes
0
Power supplies
Phaseo® regulated switch mode power supplies
0
Power supplies for d.c. control circuits
ABL 7RE2402/2403
ABL 7RE2405
ABL 7RE2410
ABL 7RP2403
ABL 7RP1205/2405/4803
ABL 7RP2410
Filter
Filter
Filter
ABL 7CEM24ppp
ABL 7REQ24ppp
ABL 7UEppppp
ABL 7UPSpppppand 7UES
+
+
+
+
+
+
L1
L2
L3
Filter
L1
L
L2
L3
N
Presentation :
pages page 58, page 59
Characteristics :
pages page 62 - page 65
References :
page page 67
Schemes :
page page 69
69
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Product Reference Index
IP 67 I/O Splitter Boxes
0
ABE 9C1240C23 . . . .8
ABE 9C1240C23 . . . .9
ABE 9C1240L05 . . . . .8
ABE 9C1240L05 . . . . .9
ABE 9C1240L10 . . . . .8
ABE 9C1240L10 . . . . .9
ABE 9C1240M . . . . . .9
ABE 9C1241C23 . . . .8
ABE 9C1241C23 . . . .9
ABE 9C1241L05 . . . . .8
ABE 9C1241L05 . . . . .9
ABE 9C1241L10 . . . . .8
ABE 9C1241L10 . . . . .9
ABE 9C1241M . . . . . .9
ABE 9C1280C23 . . . .8
ABE 9C1280C23 . . . .9
ABE 9C1280L05 . . . . .9
ABE 9C1280L10 . . . . .8
ABE 9C1280L10 . . . . .9
ABE 9C1280M . . . . . .9
ABE 9C1281C23 . . . .8
ABE 9C1281C23 . . . .9
ABE 9C1281L05 . . . .9
ABE 9C1281L05 . . . . .8
ABE 9C1281L10 . . . . .9
ABE 9C1281M . . . . . .9
ABE 9CM12C . . . . . . .9
ABE 9XCA1405 . . . . .9
ABE 9XCA1410 . . . . .9
ABE 9XCA1805 . . . . .9
ABE 9XCA1810 . . . . .9
ABE 9XLA10 . . . . . . . .9
ABL 7CEM24003 . . .67
ABL 7CEM24006 . . .67
ABL 7CEM24012 . . .67
ABL 7RE2402 . . . . . .67
ABL 7RE2403 . . . . . .67
ABL 7RE2405 . . . . . .67
ABL 7RE2410 . . . . . .67
ABL 7REQ24050 . . .67
ABL 7REQ24100 . . .67
ABL 7RM1202 . . . . .57
ABL 7RM2401 . . . . .57
ABL 7RM24025 . . . .57
ABL 7RP1205 . . . . . .67
ABL 7RP2403 . . . . . .67
ABL 7RP2405 . . . . . .67
ABL 7RP2410 . . . . . .67
ABL 7RP4803 . . . . . .67
ABL 7RPM24200 . . .67
ABL 7UEQ24100 . . .67
ABL 7UEQ24200 . . .67
ABL 7UES24050 . . .67
ABL 7UPS24100 . . .67
ABL 7UPS24200 . . .67
ABL 7UPS24400 . . .67
FTB 1CN08E08CM0 .28
FTB 1CN08E08SP0 .28
FTB 1CN12E04SP0 .28
FTB 1CN16CM0 . . . .28
FTB 1CN16CP0 . . . .28
FTB 1CN16EM0 . . . .28
FTB 1CN16EP0 . . . .28
FTB 1DN08E08CM0 .28
FTB 1DN08E08SP0 .28
FTB 1DN12E04SP0 .28
FTB 1DN16CM0 . . . .28
FTB 1DN16CP0 . . . .28
FTB 1DN16EM0 . . . .28
FTX DP3210 . . . . . . .29
FTX DP3210 . . . . . . .48
FTX DP3220 . . . . . . .29
FTX DP3220 . . . . . . .48
FTX DP3230 . . . . . . .29
FTX DP3230 . . . . . . .48
FTX DP3250 . . . . . . .29
FTX DP3250 . . . . . . .48
FTX DPTL12 . . . . . . .29
FTX DPTL12 . . . . . . .49
FTX ES00 . . . . . . . . .49
FTX IB1206 . . . . . . . .29
FTX IB1210 . . . . . . . .29
FTX IB1220 . . . . . . . .29
FTX IB1250 . . . . . . . .29
FTX MLA10 . . . . . . . 30
FTX MLA10 . . . . . . . .49
TSX PBSCA100 . . . .29
TSX PBSCA400 . . . .29
FTX CN3203 . . . . . . .29
FTX CN3203 . . . . . . .48
FTX CN3206 . . . . . . .29
FTX CN3206 . . . . . . .48
FTX CN3210 . . . . . . 29
FTX CN3210 . . . . . . .48
FTX CN3220 . . . . . . .29
FTX CN3220 . . . . . . .48
FTX CN3230 . . . . . . .29
FTX CN3230 . . . . . . .48
FTX CN3250 . . . . . . .29
FTX CN3250 . . . . . . .48
FTX CNCT1 . . . . . . .29
FTX CNCT1 . . . . . . .29
FTX CNCT1 . . . . . . .49
FTX CNTL12 . . . . . . .29
FTX CNTL12 . . . . . . .48
FTX CPE10 . . . . . . . .29
FTX CY1208 . . . . . . .30
FTX CY1208 . . . . . . .49
FTX CY1208 . . . . . . . .9
FTX CY1212 . . . . . . .30
FTX CY1212 . . . . . . .49
FTX CY1212 . . . . . . . . .
FTX CY1212 . . . . . . . .9
FTX DG12 . . . . . . . . .30
FTX DG12 . . . . . . . . .49
FTX DP1203 . . . . . . .29
FTX DP1203 . . . . . . .48
FTX DP1206 . . . . . . .29
FTX DP1206 . . . . . . .48
FTX DP1210 . . . . . . .29
FTX DP1210 . . . . . . .48
FTX DP1220 . . . . . . .29
FTX DP1220 . . . . . . .48
FTX DP1230 . . . . . . .29
FTX DP1230 . . . . . . .48
FTX DP1250 . . . . . . .29
FTX DP1250 . . . . . . .48
FTX DP12F5 . . . . . . .29
FTX DP12F5 . . . . . . .49
FTX DP12M5 . . . . . .29
FTX DP12M5 . . . . . .49
FTX DP2115 . . . . . . .29
FTX DP2115 . . . . . . .29
FTX DP2115 . . . . . . .49
FTX DP2130 . . . . . . .29
FTX DP2130 . . . . . . .29
FTX DP2130 . . . . . . .49
FTX DP2150 . . . . . . .29
FTX DP2150 . . . . . . .29
FTX DP2150 . . . . . . .49
FTX DP2206 . . . . . . .29
FTX DP2206 . . . . . . .29
FTX DP2206 . . . . . . .49
FTX DP2210 . . . . . . .29
FTX DP2210 . . . . . . .29
FTX DP2210 . . . . . . .49
FTX DP2220 . . . . . . .29
FTX DP2220 . . . . . . .29
FTX DP2220 . . . . . . .49
FTX DP2250 . . . . . . .29
FTX DP2250 . . . . . . .29
FTX DP2250 . . . . . . .49
FTX DP3203 . . . . . . .29
FTX DP3203 . . . . . . .48
FTX DP3206 . . . . . . .29
FTX DP3206 . . . . . . .48
FTB 1DN16EP0 . . . .28
FTB 1DP08E08CM0 .28
FTB 1DP08E08SP0 .28
FTB 1DP12E04SP0 .28
FTB 1DP16CM0 . . . .28
FTB 1DP16CP0 . . . .28
FTB 1DP16EM0 . . . .28
FTB 1DP16EP0 . . . .28
FTB 1IB08E08SP1 . .28
FTB 1IB12E04SP1 . .28
FTB 1IB16CP1 . . . . .28
FTB 1IB16EP1. . . . . 28
FTM 1AE04C12C . . .48
FTM 1AE04C12T . . .48
FTM 1AS04C12C . . .48
FTM 1AS04C12T . . .48
FTM 1CN10 . . . . . . .48
FTM 1DD08C08 . . . .48
FTM 1DD08C08E . . .48
FTM 1DD08C12 . . . .48
FTM 1DD08C12E . . .48
FTM 1DD16C12 . . . .48
FTM 1DD16C12E . . .48
FTM 1DE08C08 . . . .48
FTM 1DE08C08E . . .48
FTM 1DE08C12 . . . .48
FTM 1DE08C12E . . .48
FTM 1DE16C12 . . . .48
FTM 1DE16C12E . . .48
FTM 1DN10 . . . . . . .48
FTM 1DP10 . . . . . . .48
FTX BLA10 . . . . . . . .30
FTX C78B . . . . . . . . .30
FTX C78F5 . . . . . . . .30
FTX C78F5 . . . . . . . .49
FTX C78M5 . . . . . . .30
FTX C78M5 . . . . . . .49
FTX CA3103 . . . . . . .49
FTX CA3106 . . . . . . .49
FTX CA3110 . . . . . . .49
FTX CA3120 . . . . . . .49
FTX CA3130 . . . . . . .49
FTX CA3150 . . . . . . .49
FTX CA3203 . . . . . . .49
FTX CA3206 . . . . . . .49
FTX CA3210 . . . . . . .49
FTX CA3220 . . . . . . .49
FTX CA3230 . . . . . . .49
FTX CA3250 . . . . . . .49
FTX CB3203 . . . . . . .49
FTX CB3206 . . . . . . .49
FTX CB3210 . . . . . . .49
FTX CB3220 . . . . . . .49
FTX CB3230 . . . . . . .49
FTX CB3250 . . . . . . .49
FTX CBTL12 . . . . . . .49
FTX CM08B . . . . . . .30
FTX CM08B . . . . . . .49
FTX CM08B . . . . . . . .9
FTX CM12B . . . . . . .30
FTX CM12B . . . . . . .49
FTX CM12B . . . . . . . .8
FTX CM12B . . . . . . . .9
FTX CN12F5 . . . . . . .29
FTX CN12F5 . . . . . . .48
FTX CN12M5 . . . . . .29
FTX CN12M5 . . . . . .48
70
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Schneider Electric
Head office
Schneider Electric
Owing to changes in standards and equipment, the characteristics
given in the text and images in this document are not binding us
until they have been confirmed with us.
North American Operation Division
1415 South Roselle Road
Palatine, IL 60064
Production : Schneider Electric Industries
Photos : Schneider Electric Industries
Printed by :
TEL 847-397-2600
ART. 070263
January 2007
MKTED203113EN-US © 2007 Schneider Electric. All Rights Reserved.
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