National Instruments Network Card CFP 2200 User Manual

FIELDPOINT OPERATING INSTRUCTIONS AND SPECIFICATIONS  
cFP-2200/2210/2220  
Intelligent Real-Time Controllers for Compact FieldPoint  
4
5
6
7
3
8
13  
9
2
1
14  
15  
12  
10  
11  
Bottom  
RJ-45 Ethernet Port 2 (cFP-2220 Only)  
10 Reset Button  
11 Power Connector  
12 Digital Input/Output Terminals (cFP-2220 Only)  
13 RS-485 Serial Port (cFP-2220 Only)  
14 RS-232 Serial Port (cFP-2220 Only)  
15 RS-232 Serial Port (cFP-2210 and cFP-2220 Only)  
Front  
1
2
3
4
5
6
7
8
RS-232 Serial Port  
RJ-45 Ethernet Port 1  
9
Removable Compact Flash (cFP-2220 Only)  
Status LED  
Power LED  
User-Configurable LEDs  
DIP Switches  
USB Port (cFP-2220 Only)  
Figure 1. cFP-22xx, Front and Bottom Views  
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has the following symbol stamped beside it: . Connect the backplane PE  
ground terminal to safety ground using 14 AWG (1.6 mm) wire with a ring  
lug. Use the 5/16 in. panhead screw shipped with the backplane to secure  
the ring lug to the backplane PE ground terminal.  
To ensure maximum cooling efficiency, mount the Compact FieldPoint so  
that the I/O module vents are at the top and bottom, as shown in the  
following figure:  
Figure 2. cFP-22xx Installed on cFP-BP-4 Mounted Upright  
Caution Your installation must meet the following requirements for space and cabling  
clearance:  
Allow at least 51 mm (2 in.) all around the backplane for air circulation.  
Allow 38 mm (1.5 in.) below and 51 mm (2 in.) above the controller.  
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Cabling  
Clearance  
4 slots = 246 mm (9.68 in.)  
8 slots = 441 mm (17.4 in.)  
Cooling Outline 51 mm (2 in.)  
Cooling Outline 51 mm (2 in.)  
Figure 3. cFP-22xx Installed on cFP-BP-x, Bottom View with Dimensions  
4 slots = 246 mm (9.68 in.)  
8 slots = 441 mm (17.4 in.)  
Cabling Clearance  
Cooling Outline 51 mm (2 in.) All Around  
Figure 4. cFP-22xx Installed on cFP-BP-4, Front View with Dimensions  
cFP-2200/2210/2220  
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104.78 mm  
(4.1 in.)  
63.50 mm  
(2.5 in.)  
127.00 mm  
(5.0 in.)  
22.23 mm  
(0.9 in.)  
440.94 mm  
(17.4 in.)  
Figure 5. cFP-BP-8, Back View with Dimensions  
104.74 mm  
(4.1 in.)  
63.46 mm  
(2.5 in.)  
127.00 mm  
(5.0 in.)  
22.19 mm  
(0.9 in.)  
245.87 mm  
(9.6 in.)  
Figure 6. cFP-BP-4, Back View with Dimensions  
Caution Make sure that no I/O modules are in the backplane before mounting it.  
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Mounting the Backplane on a DIN Rail  
The DIN rail mounting kit is NI part number 778614-01. You need one kit  
to mount the cFP-BP-4 on a standard 35 mm DIN rail. Complete the  
following steps to mount the backplane on a DIN rail.  
1. Fasten the DIN rail clip to the cFP-BP-4 using a number 2 Phillips  
screwdriver and the 8-32 × 5/16 in. countersink screws shipped with  
the mounting kit.  
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Figure 7. Installing the DIN Rail Clip on the cFP-BP-4  
Caution Do not use screws longer than 5/16 in. to fasten the DIN rail clip to the backplane.  
2. Insert one edge of the DIN rail into the deeper opening of the DIN rail  
clip, as shown in Figure 8.  
1
2
3
1
DIN Rail Clip  
2
DIN Rail Spring  
3
DIN Rail  
Figure 8. One Edge of DIN Rail Inserted in Clip  
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3. Press down firmly on the backplane to compress the spring until the  
clip locks in place on the DIN rail.  
4. Connect the PE ground terminal on the backplane to safety ground.  
Caution Disconnect power and make sure that no I/O modules are in the backplane before  
removing it from the DIN rail.  
Mounting the Backplane on a Panel  
The horizontal panel-mount kit has mounting holes on the sides of the  
backplane and is NI part number 778616-01. The vertical panel-mount kit  
has mounting holes on the top and bottom of the backplane and is NI part  
number 778688-01. Complete the following steps to mount the system on  
a flat surface.  
1. Fasten the panel-mount plates to the back of the cFP-BP-x using a  
number 2 Phillips screwdriver and the 8-32 × 5/16 in. countersink  
screws shipped with the kit. You must use these screws because they  
are the correct depth and thread for the plates and backplane.  
AL  
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INSTRUMENTS  
Figure 9. Installing the Horizontal Panel-Mount Kit on the cFP-BP-4  
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102 mm  
(4 in.)  
260 mm (10.25 in.)  
Figure 10. cFP-BP-4 with Horizontal Panel Mount Kit Installed,  
Front View with Dimensions  
102 mm  
(4 in.)  
457 mm (18 in.)  
Figure 11. cFP-BP-8 with Horizontal Panel-Mount Kit Installed,  
Front View with Dimensions  
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Figure 12. Installing the Vertical Panel-Mount Kit on the cFP-BP-4  
cFP-2200/2210/2220  
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34.0 mm (1.34 in.)  
7.6 mm (0.30 in.)  
178 mm (7.0 in.)  
246 mm (9.7 in.)  
17.8 mm (0.70 in.)  
Figure 13. cFP-BP-4 with Vertical Panel-Mount Kit Installed,  
Front View with Dimensions  
33.1 mm (1.31 in.)  
374 mm (14.7 in.)  
7.6 mm  
(0.30 in.)  
17.8 mm  
(0.70 in.)  
457 mm (18 in.)  
Figure 14. cFP-BP-8 with Vertical Panel-Mount Kit Installed,  
Front View with Dimensions  
2. Bolt or screw the plates to a panel.  
3. Connect the PE ground terminal on the cFP-BP-x to safety ground.  
Caution Disconnect power and make sure that no I/O modules are in the backplane before  
removing it from the panel.  
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Mounting the Backplane in a Standard 19 in. Rack  
The rack-mount kit for Compact FieldPoint is NI part number 778615-01.  
The following figure shows the dimensions of the rack-mount kit.  
374.65 mm  
(14.750 in.)  
278.89 mm  
(10.980 in.)  
8× Diameter  
2×  
177.8 mm  
38.1 mm  
34.93 mm  
(1.375 in.)  
+0.07 mm  
0 mm  
(7.000 in.)  
(1.500 in.)  
7.92 mm  
2×  
+0.003 in.  
–0.000 in.  
0.312 in.  
6.91 mm  
(0.272 in.)  
(
)
63.07 mm  
25.4 mm  
(1.000 in.)  
(2.483 in.)  
25.02 mm (0.985 in.)  
37.69 mm  
(1.484 in.)  
66.29 mm  
(2.610 in.)  
132.56 mm  
(5.219 in.)  
82.52 mm  
(3.249 in.)  
4×  
10.59 mm  
(0.417 in.)  
37.72 mm  
(1.485 in.)  
Diameter  
50.8 mm  
(2.00 in.)  
2× Radius  
25.4 mm  
76.2 mm  
(1.000 in.)  
152.15 mm  
(5.990 in.)  
152.4 mm  
(6.000 in.)  
33.15 mm  
(1.305 in.)  
Full Radius  
+0.07 mm  
(3.000 in.)  
7.06 mm  
(0.278 in.)  
Diameter  
6.35 mm  
–0.02 mm  
+0.003 in.  
–0.001 in.  
0.250 in.  
(
)
2.29 mm  
(0.090 in.)  
2×  
444.5 mm  
(17.500 in.)  
21.34 mm  
(0.840 in.)  
4× Radius  
2.29 mm  
(0.090 in.)  
179.32 mm  
(7.060 in.)  
Figure 15. Dimensions of Rack-Mount Kit  
Complete the following steps to mount the system in a rack.  
1. Fasten the rack-mount bracket to the back of the cFP-BP-x using the  
captive screws on the bracket.  
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Figure 16. Installing the Rack-Mount Bracket on the cFP-BP-4  
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INST  
Figure 17. Installing the Rack-Mount Bracket on the cFP-BP-8  
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2. Bolt the rack-mount bracket to a standard 19 in. rack.  
3. Connect the PE ground terminal on the cFP-BP-x to safety ground.  
Caution Disconnect power and make sure that no I/O modules are in the backplane before  
removing it from the rack.  
You can install an 8 in. DIN rail in the rack-mount kit to mount a power  
supply such as the PS-5. The captive #10-32 nuts on the rack-mount kit  
make it easy to attach a DIN rail. Use two #10-32 screws of 3/8 in. length  
as shown in Figure 18. If you want to install flat washers under the screw  
heads, use a slightly longer screw, up to 1/2 in. length. If you need more  
DIN rail space, you can install an 18 in. rail in a second rack-mount kit  
using four #10-32 screws.  
1
2
3
4
1
2
cFP-BP-4 Backplane  
Captive #10-32 Nuts  
3
4
8 in. DIN Rail  
#10-32 Screws, 3/8–1/2 in.  
Figure 18. Installing an 8 in. DIN Rail in the Rack-Mount Kit  
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Installing the cFP-22xx on the Backplane  
1. Make sure that no power is connected to the controller.  
2. Make sure that the controller is right side up with the NI logo at the top,  
and align the captive screws on the controller with the holes on the  
backplane.  
3. Seat the card edge at the back of the controller in the card-edge  
connector on the backplane.  
4. Press the controller firmly to seat it on the backplane.  
Figure 19. Installing the Controller on the Backplane  
5. Using a number 2 Phillips screwdriver with a shank of at least 64 mm  
(2.5 in.) length, tighten the captive screws to 1.1 N · m (10 lb · in.) of  
torque.  
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Installing I/O Modules on the Backplane  
1. Align the captive screws on the I/O module with the holes on the  
backplane.  
2. Press firmly to seat the I/O module on the backplane.  
3. Using a number 2 Phillips screwdriver with a shank of at least 64 mm  
(2.5 in.) length, tighten the captive screws to 1.1 N · m (10 lb · in.) of  
torque.  
4. Repeat this procedure to install additional I/O modules on the  
backplane.  
Figure 20. Installing an I/O Module on the Backplane  
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Installing Connector Blocks on the Backplane  
In order to connect I/O modules to input signals or loads, you need to install  
a cFP-CB-x connector block or other connectibility accessory for each I/O  
module on the backplane. Use the connector socket to the right of each I/O  
module socket.  
Caution Do not insert or remove connector blocks or other connectivity accessories while  
power is applied to them.  
1. Wire signals or loads as described in the I/O module and connector  
block operating instructions.  
Caution Hazardous voltage wiring should be performed by qualified personnel and in  
accordance with local electrical standards.  
2. Align the captive screws on the connector block with the holes on the  
backplane.  
3. Press firmly to seat the connector block on the backplane.  
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Figure 21. Installing a Connector Block on the Backplane  
4. Using a number 2 Phillips screwdriver with a shank of at least 64 mm  
(2.5 in.) length, tighten the captive screws to 1.1 N · m (10 lb · in.) of  
torque.  
5. Repeat this procedure to install additional connector blocks on the  
backplane.  
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Connecting the cFP-22xx to a Network  
Connect the cFP-22xx to an Ethernet network using RJ-45 Ethernet port 1  
on the controller front panel. Use a standard Category 5 (CAT-5) or better  
Ethernet cable to connect the controller to an Ethernet hub, or use an  
Ethernet crossover cable to connect the controller directly to a computer.  
Caution To prevent data loss and to maintain the integrity of your Ethernet installation,  
do not use a cable longer than 100 m. If you are using 100 Mbps Ethernet, National  
Instruments recommends using a CAT-5 or better shielded twisted-pair Ethernet cable.  
If you need to build your own cable, refer to the Cabling section for more  
information about Ethernet cable wiring connections.  
The host computer communicates with the controller over a standard  
Ethernet connection. If the host computer is on a network, you must  
configure the controller on the same subnet as the host computer. If neither  
the host computer nor the controller is connected to a network, you can  
connect the two directly using a crossover cable.  
If you want to use the controller on a subnet other than the one the host  
computer is on, first connect the controller on the same subnet as the host  
computer. Use DHCP to assign an IP address or reassign a static IP address  
for the subnet where you want to use the controller and physically move it  
to the other subnet. The first time you configure the controller, you may  
also have to install software on it. Refer to the Measurement & Automation  
Explorer Help for more information about installing software on and  
configuring the controller in Measurement & Automation Explorer  
(MAX). Contact your network administrator if you need assistance  
configuring the host computer and controller on the same subnet.  
Using Ethernet Port 2 to Connect the cFP-2220  
to Other FieldPoint Systems on the Network  
You can use Ethernet port 2 to connect the cFP-2220 to another system on  
a private network. You must first configure the second system with a static  
IP address in MAX. For information about using Ethernet port 2, go to  
ni.com/info and enter the infocode dualenet.  
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Wiring Power to the cFP-22xx  
The cFP-22xx requires an external power supply that meets the  
specifications in the Power Requirements section. The cFP-22xx filters and  
regulates the supplied power and provides power for all of the I/O modules.  
You must connect a power supply to at least one pair of Vand C terminals.  
Optionally, you can connect a power supply to the other pair of V and  
C terminals. The controller draws power from the power supply with the  
higher voltage. The controller has one layer of reverse-voltage protection.  
Caution In order to comply with standards and laws governing electromagnetic emissions  
and compatibility, you must install the ferrite shipped with the controller. If you decide to  
connect an optional second power supply, you must install a second, similar ferrite. You  
can order the ferrite from ni.com. The ferrite is NI part number 711849-01.  
Complete the following steps to connect power supplies to the controller.  
1. Install the ferrite 2–3 in. from the ends of the power wires. Wrap the  
wires around one side of the ferrite so that they pass through the ferrite  
twice, as shown in Figure 22.  
Figure 22. Wrapping the Power Wires around the Ferrite  
Figure 23. Closed Ferrite  
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2. Install a tie wrap or other device on the power wires to secure the ferrite  
in place near the controller power connector, as shown in Figure 24.  
Figure 24. Ferrite Installed with Tie Wrap  
3. Connect the positive lead of the power supply to the V1 terminal of the  
COMBICON connector shipped with the cFP-22xx.  
4. Connect the negative lead of the power supply to one of the C terminals  
of the COMBICON connector.  
5. Optionally, connect the positive lead of another power supply to the  
V2 terminal and the negative lead to one of the C terminals of the  
COMBICON connector.  
6. Install the COMBICON connector on the front panel of the cFP-22xx.  
Note The controller draws power from either V1 or V2 depending on which terminal has  
a higher voltage. It does not draw power from both terminals. The controller switches  
between V1 and V2 without affecting operation. If the output voltages of the two power  
supplies are within 0.1–0.6 V of each other, the cFP-22xx can use either supply.  
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Note The controller indicates which terminal it is using on the channel called Power  
Source in software. A value of 0 indicates V2, and a value of 1 indicates V1. This behavior  
is different from that of older Compact FieldPoint controllers. If your application uses  
input from the Power Source channel, you must change your application to reflect the  
change in channel behavior. You can either make the change in software or connect the  
primary power supply to V2 and a backup power supply to V1.  
Caution The C terminals are internally connected to each other. If you use two power  
supplies, make sure that they share a common ground.  
Caution The C terminals are internally connected to the controller chassis to prevent a  
faulty ground connection from causing the chassis ground to float. If you reverse the input  
voltage, the positive input voltage is connected directly to the chassis. The controller  
has built-in reverse-voltage protection, but reversed voltage can damage connected  
peripherals if the chassis ground is not reliably connected to earth ground.  
Caution Do not tighten or loosen the terminal screws on the power connector while the  
power connector is plugged into the controller or while the power supply is on.  
When you apply power to the cFP-22xx, the controller runs a power-on  
self test (POST). During the POST, the Power and Status LEDs turn on.  
The Status LED turns off, indicating that the POST is complete. If the  
LEDs do not behave in this way when the system powers on, refer to the  
Understanding LED Indications section.  
You can configure the cFP-22xx to launch an embedded stand-alone  
LabVIEW RT application each time you boot the controller. Refer to the  
Running a Stand-Alone Real-Time Application (RT Module) topic of the  
LabVIEW Help for more information.  
Connecting Serial Devices to the cFP-22xx  
You can connect devices such as displays or input devices to the serial ports  
of the cFP-22xx. Use the Serial VIs to read from and write to the serial ports  
from a LabVIEW RT application. If your application is not embedded on  
the controller, you must target the cFP-22xx to access the serial ports. Refer  
to the LabVIEW Help for information about the Serial VIs and about  
targeting the cFP-22xx. Refer to Figure 1 for the locations of the serial  
ports.  
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COM 1  
COM 1 is an RS-232 DTE serial port with a standard DB-9 connector.  
The Serial VIs access COM 1 as port 0. The following figure shows the  
locations of the DB-9 connector pins and Table 1 lists the signals on  
the pins.  
Pin 5  
Pin 9  
Pin 6  
Pin 1  
Figure 25. Controller Serial Port  
Table 1. DB-9 Pin Descriptions  
Pin  
1
Signal  
DCD  
RXD  
TXD  
DTR  
GND  
DSR  
RTS  
2
3
4
5
6
7
8
CTS  
RI  
9
COM 2 (cFP-2210 and cFP-2220 Only)  
COM 2 is an RS-232 DTE serial port with a 10-position modular jack. The  
Serial VIs access COM 2 as port 1. Refer to Figure 26 and Table 2 for pin  
locations and signal descriptions.  
COM 3 (cFP-2220 Only)  
COM 3 is an RS-232 DTE serial port with a 10-position modular jack. The  
Serial VIs access COM 3 as port 2. Refer to Figure 26 and Table 2 for pin  
locations and signal descriptions.  
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COM 4 (cFP-2220 Only)  
COM 4 is an RS-485 serial port with a 10-position modular jack. The Serial  
VIs access COM 4 as port 3. COM 4 has 100 Vrms of operational isolation.  
Use an external RS-485 isolator if your application requires more isolation.  
Refer to Figure 26 and Table 2 for pin locations and signal descriptions.  
Pin 1  
Pin 10  
Figure 26. 10-Position Modular Jack Pin Locations  
Table 2. 10-Position Modular Jack Pin Descriptions  
10-Position  
Modular Jack Pin  
RS-232 Signal  
DCD  
RS-485 Signal  
GND  
10  
9
8
7
6
5
4
3
2
1
RXD  
CTS+ (HSI+)  
RTS+ (HSO+)  
RXD+  
TXD  
DTR  
GND  
RXD–  
DSR  
CTS– (HSI–)  
RTS– (HSO–)  
TXD+  
RTS  
CTS  
RI  
TXD–  
No Connect  
No Connect  
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Figure 27 shows how to wire several FP-1001 banks in an RS-485 network  
controlled by the cFP-2220. Only two FP-1001 banks are shown, but the  
cFP-2220 can control up to 24 FP-1001 banks. Install 120 Ω termination  
resistors at each end of the network as shown in Figure 27.  
cFP-2220 COM 4  
FP-1001  
FP-1001  
RX–  
RX+  
TX–  
TX+ RX–  
120 Ω  
RX+  
TX–  
TX+  
RXD– RXD+ TXD– TXD+  
120 Ω  
120 Ω  
120 Ω  
Figure 27. Wiring for an RS-485 Network Controlled by the cFP-2220  
COM 4 is designed to operate in four-wire mode as shown in Figure 27.  
You can use COM 4 in two-wire mode, but you must design your  
application so that it filters out the writes that echo back over the read  
channels. NI does not recommend this method.  
NI offers a DIN rail–mountable screw terminal adapter that you can use  
to connect termination resistors to COM 4. The adapter is part number  
778674-01.  
Cable adapters for the 10-position modular jacks are available from NI.  
Part numbers 182845-01, -02, and -03 are 1, 2, and 3 m cable adapters for  
connecting the 10-position modular jack to a 9-position D-SUB plug.  
External Digital Inputs and Outputs (cFP 2220 Only)  
The cFP-2220 has two digital inputs and two digital outputs that you can  
use to connect a simple operator interface to the controller. Refer to  
Figure 1 for the location of the input and output terminals. The inputs and  
outputs appear in software as Input 1, Input 2, Output 1, and Output 2.  
Logic high for the DIO ports is +5 V. Logic low is 0 V. The DIO ports are  
not isolated and are not intended for field connections. Use them only for  
simple VI controls and indicators.  
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You can use the two digital inputs to control the cFP system from  
LabVIEW. For example, one input could be a START/STOP switch, and  
the other could determine which of two VIs should run at startup. NI  
recommends connecting a single-pole single-throw (SPST) switch between  
the input terminal and one of the C terminals. The inputs have a value of 1  
when the switch is closed and 0 when the switch is open.  
C
R2  
R1  
LED B  
O2  
C
LED A  
O1  
C
Switch 2  
I2  
C
Switch 1  
I1  
Figure 28. Wiring the cFP-2220 External Input and Output Terminals  
Connecting USB Mass-Storage Devices to the cFP-2220  
The cFP-2220 supports common USB mass-storage devices such as USB  
Flash drives. You can connect USB mass-storage devices to the cFP-2220  
while the controller is operating. USB devices are mapped to the U: drive  
in LabVIEW. The cFP-2220 does not support other types of USB devices.  
Refer to the LabVIEW Real-Time Module Help for more information.  
Caution Do not hotswap USB devices while the Compact FieldPoint system is in a  
hazardous location or connected to high voltages.  
Using the Internal Real-Time Clock  
The system clock of the cFP-22xx gets the date and time from the internal  
high-precision real-time clock at startup. This synchronization provides  
timestamp data to the controller. You can also use the internal real-time  
clock to correct drift of the system clock. Please contact National  
Instruments for more information.  
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Configuring DIP Switches  
IP RESET  
SAFE MODE  
NO APP  
CONS. OUT  
USER2  
USER1  
Figure 29. DIP Switches  
All of the DIP switches are in the OFF position when the controller is  
shipped from National Instruments.  
Push the IP RESET switch to the ON position and reboot the controller to  
reset the IP address to 0.0.0.0. If the controller is on your local subnet and  
the IP RESET switch is in the ON position, the controller appears in MAX  
with IP address 0.0.0.0. You can configure a new IP address for the  
controller in MAX. Refer to the Resetting the Network Configuration of the  
cFP-22xx section for more information about resetting the IP address. You  
also can push this switch to the ON position to unlock a controller that was  
previously locked in MAX.  
SAFE MODE Switch  
The position of the SAFE MODE switch determines whether the embedded  
LabVIEW Real-Time engine launches at startup. If the switch is in the OFF  
position, the LabVIEW Real-Time engine launches. Keep this switch in the  
OFF position during normal operation. If the switch is in the ON position  
at startup, the cFP-22xx launches only the essential services required  
for updating its configuration and installing software. The LabVIEW  
Real-Time engine does not launch.  
Push the SAFE MODE switch to the ON position if the software on the  
controller is corrupted. Even if the switch is not in the ON position, the  
controller automatically boots into safe mode if there is no software  
installed on it. The SAFE MODE switch must be in the ON position to  
reformat the drive on the controller. Refer to the Measurement &  
Automation Explorer Help for more about installing software and  
reformatting the drive.  
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NO APP Switch  
Push the NO APP switch to the ON position to prevent a LabVIEW RT  
startup application from running at startup. If you want to permanently  
disable a LabVIEW RT application from running at startup, you must  
disable it in LabVIEW. To run an application at startup, push the NO APP  
switch to the OFF position, create an application using the LabVIEW  
Application Builder, and configure the application in LabVIEW to launch  
at startup. If you already have an application configured to launch at startup  
and you push the NO APP switch from ON to OFF, the startup application  
is automatically enabled. For more information about automatically  
launching VIs at startup and disabling VIs from launching at startup, refer  
to the Running a Stand-Alone Real-Time Application (RT Module) topic of  
the LabVIEW Help.  
CONS OUT Switch  
With a serial-port terminal program, you can use the CONS OUT switch  
to read the IP address and firmware version of the controller. Use a  
null-modem cable to connect the serial port to a computer. Push the switch  
to the ON position. Make sure that the serial-port terminal program is  
configured to the following settings:  
9,600 bits per second  
Eight data bits  
No parity  
One stop bit  
No flow control  
The serial-port terminal program displays the IP address and firmware  
version of the controller, and alerts you when you connect an unsupported  
USB device to the cFP-2220. Keep this switch in the OFF position during  
normal operation.  
USER2 and USER1 Switches  
You can define the USER2 and USER1 switches for your application.  
To define the switches in an embedded application, use the RT Read  
Switch VI in a LabVIEW RT embedded VI. You can use the FieldPoint  
ReadVI to read defined switches in embedded or unembedded applications.  
For more information about the RT Read Switch VI and the FieldPoint  
Read VI, refer to the LabVIEW Help.  
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Using the Reset Button  
Pressing the Reset button resets the processor in the same manner as  
cycling power.  
Understanding LED Indications  
STATUS LED  
The STATUS LED is off during normal operation. The cFP-22xx indicates  
specific error conditions by flashing the STATUS LED a certain number of  
times as shown in Table 3.  
Table 3. Status LED Indications  
Number of Flashes  
Indication  
1
The controller is unconfigured. Refer to the Measurement & Automation  
Explorer Help for information about configuring the controller in MAX.  
2
The controller has detected an error in its software. This can occur  
when an attempt to upgrade the software is interrupted. Refer to the  
Measurement & Automation Explorer Help for information about  
reinstalling software on the controller.  
3
4
The controller is in safe mode. Refer to the Configuring DIP Switches  
section for information about the Safe Mode DIP switch.  
The software has crashed twice without rebooting or cycling power  
between crashes. This usually occurs when the controller runs out of  
memory. Review your RT VI and check the memory usage. Modify  
the VI as necessary to solve the memory usage issue.  
Solid  
The controller has detected an unrecoverable error. Please contact  
National Instruments.  
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POWER LED  
The POWER LED is lit while the cFP-22xx is powered on. This LED  
indicates that the power supply connected to the controller is adequate. The  
POWER LED lights green when the controller is using the primary power  
supply and amber when the controller is using the secondary power supply.  
User-Configurable LEDs  
You can use the FieldPoint Write VI to write values to LEDs A, B, C, and  
D. The LEDs can have any of three values: 0 is OFF, 1 is green, and 2 is  
amber.  
Removable CompactFlash (cFP-2220 Only)  
You can use CompactFlash for removable data storage with the cFP-2220.  
The controller takes Type I and Type II CompactFlash up to 512 MB. With  
the power off, open the CompactFlash cover and plug a CompactFlash into  
the slot, then power up the controller. You can access the removable  
CompactFlash by using LabVIEW file I/O VIs running embedded on the  
controller. To read from or write to the removable CompactFlash, point the  
VI to the D: drive on the controller.  
Caution You must power down the controller before installing or removing a  
CompactFlash. Removing the CompactFlash without powering down the controller can  
cause data corruption. In order to get data from the CompactFlash while the controller is  
operating, use an FTP client to download the data from the D: drive on the controller.  
File Transfer Capability  
When running on a cFP-22xx, the Real-Time Engine has a File Transfer  
Protocol (FTP) server. The FTP server gives you the ability to use any  
standard FTP utility for transferring files to and from the hard drive of the  
cFP-22xx. You must provide the correct password when opening a  
connection to the cFP-22xx if the configuration is locked in MAX.  
For programmatic file transfer control in LabVIEW or LabVIEW  
Real-Time, use the Internet Developers Toolkit, included in the LabVIEW  
Enterprise Connectivity Toolset. Refer to ni.com for more information  
about the LabVIEW Enterprise Connectivity Toolset.  
Note Contact NI to determine whether the version of the toolkit you are using can be  
downloaded onto the cFP-22xx.  
cFP-2200/2210/2220  
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Remote Front Panels  
You may need to monitor and control an embedded VI remotely. The  
cFP-22xx supports multiple remote front panels for embedded VIs. Users  
can view the remote front panel using either LabVIEW or a Web browser.  
Users accessing the remote front panels with a Web browser need to have  
either Internet Explorer 5.5 Service Pack 2 or later, or Netscape 4.7 or later.  
If you plan to use remote front panels to control the VI, keep the front panel  
simple and do not use property nodes. Complex front panels can cause  
slight control latency when users operate them remotely. Users cannot  
programmatically change the value of a control remotely.  
Resetting the Network Configuration of the cFP-22xx  
If the cFP-22xx is not able to communicate with the network, you can use  
the IP RESET switch to manually restore the controller to the factory  
network settings. When you restore the controller to the factory network  
settings, the IP address, subnet mask, DNS address, gateway, and Time  
Server IP are set to 0.0.0.0. Power-on defaults, watchdog settings, and  
VIs are unaffected.  
Complete the following steps to reset the network configuration.  
1. Move the IP RESET DIP switch to the ON position.  
2. Push the RESET button to cycle power to the controller. The STATUS  
LED flashes once, indicating that the IP address is unconfigured.  
3. Move the IP RESET switch to the OFF position.  
The network settings are restored. You can reconfigure the settings in MAX  
from a computer on the same subnet. Refer to the Measurement &  
Automation Explorer Help for more information about configuring the  
controller.  
Note If the controller is restored to the factory network settings, the LabVIEW run-time  
engine does not load. You must reconfigure the network settings and restart the controller  
for the LabVIEW run-time engine to load.  
© National Instruments Corporation  
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Troubleshooting  
This section contains troubleshooting instructions for the cFP-22xx and  
FieldPoint software. For more troubleshooting information, refer to the  
Measurement & Automation Explorer Help for FieldPoint and the  
Measurement & Automation Explorer Remote Systems Help.  
Runaway Startup Application  
unresponsive, you must power down the cFP-22xx, then reboot it with  
either the NO APP switch or the SAFE MODE switch in the ON position.  
Rebooting the controller with the NO APP switch ON prevents any VIs  
from running at startup. Rebooting with the SAFE MODE switch ON starts  
the cFP-22xx in safe mode, and the embedded LabVIEW Real-Time engine  
is not launched. Refer to the Configuring DIP Switches section for more  
information.  
Other Indications of Trouble with the Controller  
Amber status LED stays lit when controller is in normal mode  
Cannot detect controller in MAX unless it is in safe mode  
After you set the IP address, the controller reboots unconfigured or  
with the old IP address  
Green status LED error code greater than 3  
Green status LED error code 2 during normal operation  
Controller incorrectly reports that the disk is full  
I/O module ready LEDs off in normal mode but on in safe mode  
Unusual file or folder names when you FTP to the controller  
First, use MAX to reinstall software on the controller. If that does not solve  
the problem, you may have to reformat the internal memory of the  
controller.  
Reformatting the Internal Memory  
1. Reboot the controller into safe mode by moving the SAFE MODE DIP  
switch to the ON position and cycling the power.  
2. Open MAX and expand Remote Systems to find the FieldPoint bank.  
3. Right-click the FieldPoint bank and select Format Disk.  
After formatting, you must reconfigure network settings and reinstall  
software. Remember to install LabVIEW Real-Time 8.5.1 or later on the  
controller, because previous versions do not work with the controller.  
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Specifications  
The following specifications are typical for the –40 to 70 °C operating  
temperature range unless otherwise noted.  
Network  
Network interface................................... 10BaseT and 100BaseTX  
Ethernet  
Compatibility ......................................... IEEE 802.3  
Communication rates ............................. 10 Mbps, 100 Mbps,  
auto-negotiated  
Maximum cabling distance .................... 100 m/segment  
Memory  
cFP-2200 ................................................ 128 MB nonvolatile;  
128 MB DRAM  
cFP-2210 ................................................ 128 MB nonvolatile;  
256 MB DRAM  
cFP-2220 ................................................ 256 MB nonvolatile;  
256 MB DRAM  
Memory lifetime (nonvolatile)............... 100,000 writes per block  
For information about the amount of memory used by the LabVIEW  
Real-Time Module and the operating system, go to ni.com/info and  
enter rdfpec.  
Serial Ports  
cFP-2200 ................................................ One RS-232 serial port  
cFP-2210 ................................................ Two RS-232 serial ports  
cFP-2220 ................................................ Three RS-232 serial ports;  
one RS-485 serial port  
© National Instruments Corporation  
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RS-232 (DTE) serial ports  
Maximum baud rate.........................115,200 bps  
Data bits...........................................5, 6, 7, 8  
Stop bits...........................................1, 1.5, 2  
Parity................................................Odd, Even, Mark, Space  
Flow control.....................................RTS/CTS, XON/XOFF,  
DTR/DSR  
RS-485 (DTE) serial port  
Baud rate..........................................9,600 to 115,200 bps  
Data bits...........................................5, 6, 7, 8  
Stop bits...........................................1, 1.5, 2  
Parity................................................Odd, Even, Mark, Space  
Flow control.....................................XON/XOFF  
Wire mode .......................................4-wire  
Isolation voltage, port to earth ground  
Continuous ...............................100 Vrms  
Dielectric withstand..................740 Vrms, verified by 5 s test  
USB Port (cFP-2220 Only)  
Maximum data rate.................................12 Mb/s  
Maximum current ...................................500 mA  
Power Requirements  
Caution You must use a National Electric Code (NEC) UL Listed Class 2 power supply  
with the cFP-22xx.  
Power supply input voltage range ..........11 to 30 VDC  
Recommended minimum power  
cFP-BP-4 system .............................15 W  
cFP-BP-8 system .............................20 W  
Power consumption ................................6.1 W + 1.1(I/O module power  
requirements)  
cFP-2200/2210/2220  
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Physical Characteristics  
If you need to clean the controller, wipe it with a dry towel.  
Screw-terminal wiring............................ Use copper conductor wire with  
10 mm (0.39 in.) of insulation  
from the ends.  
External digital I/O terminals ......... 16 to 28 AWG  
Power supply terminals................... 14 to 30 AWG  
Torque for screw terminals .................... 0.5 to 0.6 N · m  
(4.4 to 5.3 lb · in.)  
Weight.................................................... 278 g (9.8 oz)  
Safety Voltages  
Connect only voltages that are within these limits.  
V terminal to C terminal ........................ 35 V max, Measurement  
Category I  
Measurement Category I is for measurements performed on circuits not  
directly connected to the electrical distribution system referred to as  
MAINS voltage. MAINS is a hazardous live electrical supply system that  
powers equipment. This category is for measurements of voltages from  
specially protected secondary circuits. Such voltage measurements include  
signal levels, special equipment, limited-energy parts of equipment,  
circuits powered by regulated low-voltage sources, and electronics.  
Caution Do not connect the system to signals or use for measurements within  
Measurement Categories II, III, or IV.  
Safety Standards  
This product is designed to meet the requirements of the following  
standards of safety for electrical equipment for measurement, control,  
and laboratory use:  
IEC 61010-1, EN 61010-1  
UL 61010-1, CSA 61010-1  
Note For UL and other safety certifications, refer to the product label or visit ni.com/  
certification, search by model number or product line, and click the appropriate link  
in the Certification column.  
© National Instruments Corporation  
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Electromagnetic Compatibility  
This product is designed to meet the requirements of the following  
standards of EMC for electrical equipment for measurement, control,  
and laboratory use:  
EN 61326 EMC requirements; Industrial Immunity  
EN 55011 Emissions; Group 1, Class A  
CE, C-Tick, ICES, and FCC Part 15 Emissions; Class A  
Note For EMC compliance, operate this device according to product documentation.  
CE Compliance  
This product meets the essential requirements of applicable European  
Directives, as amended for CE marking, as follows:  
2006/95/EC; Low-Voltage Directive (safety)  
2004/108/EC; Electromagnetic Compatibility Directive (EMC)  
Note Refer to the Declaration of Conformity (DoC) for this product for any additional  
regulatory compliance information. To obtain the DoC for this product, visit ni.com/  
certification, search by model number or product line, and click the appropriate link  
in the Certification column.  
Environmental Management  
National Instruments is committed to designing and manufacturing  
products in an environmentally responsible manner. NI recognizes that  
eliminating certain hazardous substances from our products is beneficial  
not only to the environment but also to NI customers.  
For additional environmental information, refer to the NI and the  
Environment Web page at ni.com/environment. This page contains the  
environmental regulations and directives with which NI complies, as well  
as other environmental information not included in this document.  
Waste Electrical and Electronic Equipment (WEEE)  
EU Customers At the end of their life cycle, all products must be sent to a WEEE recycling  
center. For more information about WEEE recycling centers and National Instruments  
WEEE initiatives, visit ni.com/environment/weee.htm.  
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(RoHS)  
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RoHS  
ni.com/environment/rohs_china  
(For information about China RoHS compliance, go to  
.)  
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Environmental  
The cFP-22xx is intended for indoor use only, but it may be used outdoors  
if mounted in a suitably rated enclosure.  
Operating temperature  
(IEC 60068-2-1, IEC 60068-2-2)........... –40 to 70 °C  
Note To meet this operating temperature range, follow the guidelines in the installation  
instructions for your Compact FieldPoint system.  
Storage temperature  
(IEC 60068-2-1, IEC 60068-2-2)........... –55 to 85 °C  
Ingress protection................................... IP 20  
Operating humidity  
(IEC 60068-2-56)................................... 10 to 90% RH, noncondensing  
Storage humidity  
(IEC 60068-2-56)................................... 5 to 95% RH, noncondensing  
Maximum altitude.................................. 2,000 m  
Pollution Degree (IEC 60664) ............... 2  
Shock and Vibration  
To meet these specifications, you must panel mount the Compact  
FieldPoint system and affix ferrules to the ends of the power terminal wires.  
Operating shock  
(IEC 60068-2-27)................................... 30 g, 11 ms half sine;  
50 g, 3 ms half sine;  
18 shocks at 6 orientations  
Operating vibration,  
random (IEC 60068-2-64)...................... 5 grms, 10 to 500 Hz  
Operating vibration,  
sinusoidal (IEC 60068-2-6).................... 5 g, 10 to 500 Hz  
Special Conditions for Marine Applications  
Some products are Lloyd’s Register (LR) Type Approved for marine  
applications. To verify Lloyd’s Register certification, visit ni.com/  
certification and search for the LR certificate, or look for the Lloyd’s  
Register mark on the product.  
© National Instruments Corporation  
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Cabling  
Table 4 shows the standard Ethernet cable wiring connections for both  
normal and crossover cables.  
Table 4. Ethernet Cable Wiring Connections  
Connector 2  
(Normal)  
Connector 2  
(Crossover)  
Pin  
1
Connector 1  
white/orange  
orange  
white/orange  
orange  
white/green  
green  
2
3
white/green  
blue  
white/green  
blue  
white/orange  
blue  
4
5
white/blue  
green  
white/blue  
green  
white/blue  
orange  
6
7
white/brown  
brown  
white/brown  
brown  
white/brown  
brown  
8
Connector 1  
Connector 2  
Pin 1  
Pin 8  
Pin 1  
Pin 8  
Figure 31. Ethernet Connector Pinout  
cFP-2200/2210/2220  
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Where to Go for Support  
The National Instruments Web site is your complete resource for technical  
support. At ni.com/support you have access to everything from  
troubleshooting and application development self-help resources to email  
and phone assistance from NI Application Engineers.  
National Instruments corporate headquarters is located at  
11500 North Mopac Expressway, Austin, Texas, 78759-3504.  
National Instruments also has offices located around the world to help  
address your support needs. For telephone support in the United States,  
create your service request at ni.com/support and follow the calling  
instructions or dial 512 795 8248. For telephone support outside the United  
States, contact your local branch office:  
Australia 1800 300 800, Austria 43 662 457990-0,  
Belgium 32 (0) 2 757 0020, Brazil 55 11 3262 3599,  
Canada 800 433 3488, China 86 21 5050 9800,  
Czech Republic 420 224 235 774, Denmark 45 45 76 26 00,  
Finland 358 (0) 9 725 72511, France 01 57 66 24 24,  
Germany 49 89 7413130, India 91 80 41190000, Israel 972 3 6393737,  
Italy 39 02 41309277, Japan 0120-527196, Korea 82 02 3451 3400,  
Lebanon 961 (0) 1 33 28 28, Malaysia 1800 887710,  
Mexico 01 800 010 0793, Netherlands 31 (0) 348 433 466,  
New Zealand 0800 553 322, Norway 47 (0) 66 90 76 60,  
Poland 48 22 3390150,Portugal 351 210 311 210,Russia 7 495 783 6851,  
Singapore 1800 226 5886, Slovenia 386 3 425 42 00,  
South Africa 27 0 11 805 8197, Spain 34 91 640 0085,  
Sweden 46 (0) 8 587 895 00, Switzerland 41 56 2005151,  
Taiwan 886 02 2377 2222, Thailand 662 278 6777,  
Turkey 90 212 279 3031, United Kingdom 44 (0) 1635 523545  
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National Instruments, NI, ni.com, and LabVIEW are trademarks of National Instruments Corporation.  
Refer to the Terms of Use section on ni.com/legal for more information about National  
Instruments trademarks. Other product and company names mentioned herein are trademarks or trade  
names of their respective companies. For patents covering National Instruments products, refer to the  
appropriate location: Help»Patents in your software, the patents.txt file on your CD, or  
ni.com/patents.  
© 2008 National Instruments Corporation. All rights reserved.  
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