Bosch Appliances Video Gaming Accessories D9412GV4 User Manual

Control Panel  
D9412GV4/D7412GV4 v2.00  
en  
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Control Panel  
Table of Contents | en  
3
Table of contents  
Bosch Security Systens, Inc.  
UL Installation Instructions  
2012.12 | 02 | F.01U.265.462  
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4
en | Introduction  
Control Panel  
1
Introduction  
1.1  
About documentation  
Copyright  
This document is the intellectual property of Bosch Security Systems, Inc. and is protected by  
copyright. All rights reserved.  
Trademarks  
All hardware and software product names used in this document are likely to be registered  
trademarks and must be treated accordingly.  
1.2  
Determine Bosch Security Systems, Inc. Product Manufacturing  
Dates  
Use the serial number located on the product label and refer to the Bosch Security Systems,  
The following image shows an example of a product label and highlights where to find the  
manufacturing date within the serial number.  
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Installation | en  
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2
Installation  
2.1  
Installation Preparation  
This section contains a general installation procedure and refers to other sections of the  
document for detailed instructions. Review this document and the D9412GV4/D7412GV4  
Program Entry Guide (P/N: F01U265459) before beginning the installation to determine the  
hardware and wiring requirements for the features used. Have the following documentation  
available when reading through this guide:  
D9412GV4/D7412GV4 Installation and System Reference Guide (P/N: F01U265457)  
D9412 GV4/D7412GV4 v2.00 Owner’s Manual (P/N: F01U265452)  
2.2  
2.3  
Enclosure Options  
Mount the control panel assembly in any of the Bosch Security Systems, Inc. enclosures listed:  
D8103 Universal Enclosure (tan)  
D8109 Fire Enclosure (red) for the D9412GV4 and D7412GV4 Control Panels  
D8108A Attack Resistant Enclosure (tan)  
Refer to the Approved Applications chapter inside the D9412GV4/D7412GV4 v2.00 Installation  
and System Reference Guide (P/N: F01U265457) to determine if the application requires a  
specific enclosure.  
Mounting Enclosure  
1. Run the necessary wiring throughout the premises.  
2. Mount the enclosure in the desired location. Use all five enclosure mounting holes. Refer  
to the diagram for mounting locations and descriptions.  
3. Pull the wires into the enclosure.  
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Control Panel  
Notice!  
Electromagnetic interference (EMI) can cause problems on long wire runs.  
Figure 2.1: Enclosure Mounting  
Callout - Description  
1 - Point chart label  
2 - Mounting skirt hooks (2)  
3 - Module mounting holes (12)  
4 - Tamper switch mounting holes (5)  
5 - Skirt mounting hole (1)  
6 - Enclosure mounting holes (5)  
7 - Mounting skirt hook holes (2)  
8 - Back of the control panel  
9 - Lock down tab  
2.4  
Installing the Control Panel  
1. Place the control panel over the inside back of the enclosure, aligning the large  
rectangular openings of the mounting skirt with the mounting hooks of the enclosure.  
Slide the control panel down so that it hangs on the hooks. Refer to Figure 2.1.  
2. Remove the tape from the #6 x 1/4-in. screw in the mounting tab on the control panel.  
The screw passes through the mounting tab and into the skirt mounting hole in the  
enclosure. Tighten the screw to secure the control panel in the enclosure.  
3. Connect earth ground to the control panel before making any other connections. Refer to  
Connecting Earth Ground.  
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2.5  
Connecting Earth Ground  
2.5.1  
Terminal 10  
To help prevent damage from electrostatic charges or other transient electrical surges,  
connect the system to earth ground at Terminal 10 before making other connections.  
Recommended earth ground references are a grounding rod or a cold water pipe.  
Warning!  
Do not use telephone or electrical ground for the earth ground connection. Use 14 AWG (1.8  
mm) to 16 AWG (1.5 mm) wire when making the connection. Do not connect other control  
panel terminals to earth ground.  
!
2.5.2  
Ground Fault Detect Enable  
Notice!  
To meet UL 864 requirements, enable Ground Fault Detect.  
A ground fault is a circuit impedance to earth ground. The control panel has a ground fault  
detection circuit that, when enabled, detects ground faults on Terminals 1 to 9 and 11 to 36.  
The control panel also detects and annunciates ground faults on any device connected to it.  
If a ground fault condition occurs, the keypads display SERVC GND FAULT and the control  
panel sends a GROUND FAULT TROUBLE, AREA 1. When the control panel recognizes that the  
ground fault condition is corrected, and remains corrected for between 5 to 45 consecutive  
seconds, a Restoral Report is sent.  
2.5.3  
Enabling Ground Fault Detection  
To enable the Ground Fault Detect Enable feature, lock (close) the S4 Ground Fault Detect Pin  
on the control panel.  
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Control Panel  
Figure 2.2: Ground Fault Detect (S4)  
Callout - Description  
1 - S4 Locked (Closed). Control panels detects ground faults.  
2 - S4 Unlocked (Open). Control panel does not detect ground faults.  
2.5.4  
Ground Fault Impedance Specifications  
The table below provides the impedance specifications for detecting ground faults when any  
terminal or field wiring is shorted to ground.  
Impedance  
≤ 300 Ω  
Control Panel Detects Ground Fault  
Yes  
300 Ω to 200 k Ω  
≥ 200 k Ω  
Detection depends upon the terminal  
No  
Table 2.1: Ground Fault Impedance Specifications  
2.5.5  
Locking the Reset Pin  
Locking the reset pin disables the control panel. When the reset pin is locked, the control  
panel is disabled. CALL FOR SERVICE appears in some keypad displays (SDI2 keypads display  
enter Installer Passcode) when the pin is locked down.  
On-board outputs (Terminals 6 and 7) and off-board outputs deactivate when the control  
panel is disabled. Terminal 8 has power when the output is deactivated. Activation interrupts  
power at that terminal. The on-board output (Terminal 8) remains deactivated when the reset  
pin is locked in the disable position.  
Unlocking the reset pin from the locked position resets the control panel. The control panel  
resets all its timers, counters, indexes, and buffers. Any points that restore after a reset do not  
generate Restoral Reports.  
If the reset pin is placed in the Lock position, and all areas are armed, the control panel will  
not answer RPS over a phone line unless the Answer Armed program item has a value other  
than zero in it. No entry is required for network or RPS Enhanced direct connection  
communication. Refer to RPS Parameters in RPS Help.  
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Figure 2.3: Reset Pin  
Callout - Description  
1 - Reset pin locked (closed)  
2 - Reset pin normal (open)  
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en | Diagrams  
Control Panel  
3
Diagrams  
3.1  
Faceplates  
Figure 3.1: Faceplates  
Callout - Description  
Callout - Description  
8 - Ring  
1 - Charging status LED (yellow)  
2 - Low battery LED (red)  
3 - Color-coded battery leads  
4 - Ground fault detect enable  
5 - Phone LED (red)  
9 - Operation monitor LED (green)  
10 - Accessory connector  
11 - Reset pin  
12 - SDI interconnect wiring connector  
13 - SDI2 interconnect wiring connector  
6 - Tip  
7 - Telephone cord connector  
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3.2  
Power Supply Side Wiring Diagrams  
3.2.1  
D9412GV4/D7412GV4 Power Supply Side System Wiring Diagram (Power  
and Phone)  
Figure 3.2: Side System Wiring Diagram  
Callout - Description  
Callout - Description  
1 - If required by local AHJ, connect D113  
Battery Lead Supervision Module.  
8 - To Output A or Output B  
2 - Batteries  
9 - Listed Audible Signaling Devices rated at 12.0 VDC nominal  
(do not use vibrating type horns)  
3 - D122/D122L Dual Battery Harness, as  
required  
10 - C900V2 (optional)  
4 - To Supervision Point  
11 - Secondary phone line (part of D928)  
5 - D1640 Transformer (NFPA applications may 12 - 560 Ω, 2 W end-of-line (EOL) Resistor (P/N: 15-03130-005)  
require the use of a D8004 Transformer  
Enclosure  
6 - D8132 Dual Battery Charger with two  
batteries (Batteries are not supervised.)  
13 - D928  
7 - D192G Bell Supervision Module  
14 - To earth ground  
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en | Diagrams  
Control Panel  
Notice!  
For UL Certified accounts, additional power can be obtained using only a UL Listed auxiliary  
12.0 VDC regulated, power-limited power supply.  
Notice!  
All terminals accept for Outputs A, B, and C (Terminals 6, 7 and 8) are supervised.  
3.3  
D9412GV4/D7412GV4 Input Points and Peripheral Devices  
System Wiring Diagram  
Figure 3.3: Input Points and Peripheral Devices System Wiring Diagram  
Callout - Description  
1 - (Optional): For 24 V applications use a UL 1481 Listed regulated, power-limited 24 VDC power supply with a  
D130 Relay Module. Refer to the D130 Installation Instructions (P/N: F01U072455) for correct wiring  
requirements.  
2 - D130 Relay Module  
3 - D125B Powered Loop Interface Module  
4 - To UL Listed two-wire smoke detectors with a fire rated EOL resistor. Refer to Two-Wire Smoke Detectors  
section in the Approved Applications chapter in the D9412GV4/D7412GV4 v2.00 Installation and System Reference  
Guide (P/N: F01U265457) for a listing of compatible two-wire smoke detectors.  
5 - 1 kΩ EOL resistor (P/N: F01U033966): For typical alarm applications.  
6 - D129 Dual Class A Initiation Circuit Module: Provides optional Waterflow Alarm Retard feature. Not suitable  
for two-wire smoke detectors.  
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Notice!  
For D129, use zero retard except for waterflow devices.  
All external connections except Terminal 5 (battery positive) are power limited.  
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en | Diagrams  
Control Panel  
3.4  
SDI Devices Wiring Diagrams  
3.4.1  
D9412GV4 SDI and Zonex Devices System Wiring Diagram  
Figure 3.4: D9412GV4 System Wiring Diagram, SDI and Zonex Devices  
Callout Description  
Callout Description  
1 Up to 16 supervised D1265, D1255 (all versions),  
D1255RB, D1256RB Keypads, or D1257RB Fire Annunciators,  
or up to 8 supervised D1260 Keypads (all versions) (maximum  
16 supervised, maximum 32 unsupervised)  
6 Zonex 1: 15 D8128Ds maximum1  
2 Up to 8 D9210C Access Control Interface Modules  
7Zonex 2: 15 D8128Ds maximum1  
8 Zonex 1: Up to 8 D129s maximum1  
3 Up to 2 B426/B420/DX4020 or ITS-DX4020-G Network  
Interface Modules  
4 D8125 POPEX Module  
9 Zonex 2: Up to 8 D8129s maximum1  
5 Up to 119 D9127U/T POPITs  
1The number of D8129 OctoRelays that can be connected to each Zonex terminal on the control panel is limited  
by the number of D8128D OctoPOPITs connected to the same terminal. Refer to the D8128D Installation Guide  
(P/N: F01U070537) or the D8129 Operation and Installation Guide (P/N: F01U036302) for specific information.  
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Notice!  
Terminals 24 through 36 are power limited, supervised. Fire and Intrusion devices must be on  
separate circuits. Refer to ICP-SDI-9114 Installation Instructions (P/N: F01U030068)  
3.4.2  
D7412GV4 SDI and Zonex Devices System Wiring Diagram  
Figure 3.5: D7412GV4 SDI and Zonex Devices System Wiring Diagram  
Callout - Description  
1 - Up to 16 supervised D1265, D1255 (all versions), D1255RB, D1256RB Keypads, or D1257RB Fire  
Annunciators, or up to 8 supervised D1260 Keypads (all versions) (maximum 16 supervised, maximum 32  
unsupervised)  
2 - Up to 2 D9210C Access Control Interface Modules  
3 - Up to 2 B426/B420/DX4020 or ITS-DX4020-G Network Interface Modules  
4 - D8125 POPEX Module  
5 - Up to 67 D9127U/T POPITs  
6 - Zonex 1: Up to 9 D8128Ds maximum  
7 - Zonex 1: Up to 8 D8129s maximum1  
1The number of D8129 OctoRelays that can be connected to each Zonex terminal on the control panel is limited  
by the number of D8128D OctoPOPITs connected to the same terminal. Refer to the D8128D Installation Guide  
(P/N: F01U070537) or the D8129 Operation and Installation Guide (P/N: F01U036302) for specific information.  
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16  
en | Diagrams  
Control Panel  
Notice!  
Terminals 24 through 36 are power limited, supervised.  
Fire and Intrusion devices must be on separate circuits. Refer to ICP-SDI-9114 Installation In-  
structions (P/N: F01U030068).  
3.5  
D9412GV4/D7412GV4 SDI2 Devices System Wiring  
Figure 3.6: SDI2 Devices System Wiring Diagram  
Callout - Description  
1 - B208 Octo-input Modules1  
2 - B308 Octo-output Modules1  
3 - B426/B420 Conettix Ethernet Communication Module1  
4 – B810 wireless receiver or B820 SDI2 Inovonics Interface Modules1  
5 – B920 Two-line Alphanumeric Keypad1  
6 - B930 ATM Style Alphanumeric Keypad1  
7 - B520 Auxiliary Power Supply Module1  
1Refer to the table below for information on the capacity of each GV4 Series Control Panel  
for SDI2 modules.  
D9412GV4/D7412GV4 Capacities  
Module  
D9412GV4  
D7412GV4  
B208 Octo-input Modules  
B308 Octo-output Modules  
24  
12  
23  
71  
62  
23  
B426/B420 Conettix Ethernet  
Communication Module  
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17  
Module  
D9412GV4  
D7412GV4  
4 BB810/B820 SDI2 Inovonics  
Interface Modules  
1
16  
16  
8
1
16  
16  
8
B920 Two-line Alphanumeric  
Keypad5  
B930 ATM Style Alphanumeric  
Keypad (SDI2)5  
B520 Auxiliary Power Supply  
Module  
1For the D7412GV4, only 5 inputs are available on the Octo-input at address 7.  
2For the D7412GV4, only 4 outputs are available on the Octo-output at address 6.  
3For the B426/B420, only two devices can be installed at one time.  
4For the B810 and B820 wireless receivers, only one device can be installed (either B810 or  
B820 receiver) at one time.  
5For the B920 and B930, a total of 16 keypads in any combination can be installed at one  
time.  
Notice!  
Terminals 33 through 36 are power limited, supervised. Fire and Intrusion devices must be on  
separate circuits. Refer to ICP-SDI-9114 Installation Instructions (P/N: F01U030068).  
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en | Diagrams  
Control Panel  
3.5.1  
SDI2 Bus Wiring Recommendations  
Use the following SDI2 bus wiring recommendations for SDI2 installation. The SDI2 bus is  
used by the GV4 Control Panel and corresponding modules to communicate with one another.  
Modules can be connected via home run, daisy chain, or single level T-tapped anywhere on the  
SDI2 bus. Please reference Figure 2.7 below.  
Figure 3.7: SDI2 Bus Wiring  
Callout Description  
1 Control panel  
2 SDI2 module  
3 Daisy chained wiring  
4 Single-level T-tapped wiring  
5 Home run wiring  
If the voltage at any device is below the minimum, you must add an auxiliary power supply to  
the system to power these devices.  
Notice!  
The absolute lowest voltage for the SDI2 devices is 10 VDC at the device terminals when in  
normal operation, with a fully charged battery on the system.  
Maximum cable lengths  
The following rules must be followed when wiring the SDI2 bus.  
The SDI2 bus requires the use of non-shielded cable from 12 AWG to 22 AWG.  
Maximum overall cable length based on the table listed below:  
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19  
Cable  
Overall  
Cable  
Overall  
Cable  
Overall  
Cable  
Overall  
capacitance cable  
length  
capacitance cable  
length  
capacitance cable  
length  
capacitance cable  
length  
pF/ft  
< 17  
18  
ft  
pF/ft  
22  
ft  
pF/ft  
27  
ft  
pFf/ft  
32  
ft  
7500  
7500  
7350  
7000  
6666  
6363  
6086  
5800  
5600  
5385  
5185  
5000  
4828  
4700  
4516  
4400  
4242  
4100  
4000  
3800  
23  
28  
33  
19  
24  
29  
34  
20  
25  
30  
35  
21  
26  
31  
36  
Table 3.1: Maximum cable length  
Notice!  
Use Non-shielded cable only.  
Notice!  
Maximum capacitance of 140nF (140,000 pf) per system. Contact the wire manufacturer for  
the capacitance ratings of the wire being used.  
3.6  
Keyswitch Wiring  
Figure 3.8: Keyswitch Wiring  
Callout - Description  
1 - Maintained keyswitch  
2 - Momentary keyswitch  
3 - Common  
4 - Point Input  
5 – End of Line (EOL) resistor*  
6 - Open on a circuit arms the area  
7 - Short on a circuit toggles the arming state  
*Use proper EOL for the specific device you are using.  
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20  
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Control Panel  
4
Power Supply and Power Outputs  
4.1  
Power Supply - Primary  
4.1.1  
Primary (AC) Power Circuit  
The primary source is a 16.5 VAC, 40 VA, internally-fused transformer (Bosch Security  
Systems, Inc. Model D1640). The control panel draws 225 mA when idle and 300 mA when in  
an alarm state. The total available auxiliary current is 1.4 A. Transient suppressors and spark  
gaps protect the circuit from power surges. This protection relies on the ground connection at  
Terminal 10. Ensure that you connect Terminal 10 to a proper ground. Refer to Connecting  
AC Power Fail  
The system indicates an AC power failure when Terminals 1 and 2 do not have power. The AC  
Fail Time parameter sets the number of minutes or seconds without AC power before the  
control panel acknowledges the failure and the number of minutes or seconds after the power  
returns before the control panel acknowledges restored power.  
Refer to the D9412GV4/D7412GV4 v2.00 Program Entry Guide (P/N: F01U265459) for  
additional information about AC Fail Time and UL 864 requirements.  
Reference the table below to view the Modem4 communication format signals.  
Modem4 Events  
Modem4 code  
D6500 Mode  
Modem4 Code  
Contact ID Contact ID Codes  
Events  
Bosch SIA Mode  
AC Fail - mains power supply  
Pssss  
Rsss0  
NAT  
NAR  
AC Loss  
AC Loss  
1 301 00 000  
3 301 00 000  
AC Restore - mains power supply  
Table 4.1: AC Power Fail  
4.1.2  
Installing the Transformer  
Notice!  
Do not short-circuit the terminals of the transformer. Shorting the terminals opens the inter-  
nal fuse, causing permanent failure. Connect the transformer to Terminals 1 and 2 of the con-  
trol panel before plugging it into the power source.  
1. Use 18 AWG (1.22 mm) wire (minimum) to connect the transformer to the control panel.  
The wire length should be as short as possible. The maximum length is 50 ft (15 m).  
Connect the battery and plug in the transformer.  
2. Route telephone and sensor loop wiring away from any AC conductors, including the  
transformer wire.  
AC wiring can induce noise and low level voltage into adjacent wiring. Route data wiring  
away from AC and telephone wiring.  
Notice!  
Always connect the battery first and then plug in the transformer.  
3. Connect the battery. Refer to Installing the Battery, page 21  
4. Plug the transformer into an unswitched, 120 VAC 60 Hz power outlet only.  
5. Secure the transformer to the outlet with the screw provided.  
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Power Supply and Power Outputs | en  
21  
D8004 Transformer Enclosure Required for Fire Systems  
Use the D8004 Transformer Enclosure for the D1640 Transformer in fire and combined fire  
and burglary applications.  
Notice!  
Check with the Authority Having Jurisdiction (AHJ) about mounting transformers on specific  
circuits.  
4.2  
Power Terminals - Secondary  
4.2.1  
Secondary (DC) Power  
A 12 V, 7 Ah (up to 18 Ah) sealed lead-acid rechargeable battery supplies secondary power for  
auxiliary and alarm outputs, and powers the system during interruptions in primary (AC)  
power.  
Warning!  
Use Lead Acid Batteries Only: The charging circuit is calibrated for lead-acid batteries. Do not  
use gel-cell or nicad batteries.  
!
Extra Batteries Increase Back-up Time  
To increase battery back-up time, connect a second 12 V battery in parallel to the first battery.  
Use a D122/D122L Dual Battery Harness to ensure proper and safe connection. Refer to the  
Standby Battery and Current Rating Chart in the Approved Applications section of the  
D9412GV4/D7412GV4 v2.00 Installation and System Reference Guide (P/N: F01U265457) for  
battery standby time calculations.  
D1218 Battery  
The D1218 is a 12 V, 18 Ah battery for use in applications requiring extended battery standby  
time. Up to two D1218 batteries can be connected when used with a D122 Dual Battery  
Harness.  
Warning!  
When connecting two D1218 Batteries to the control panel, the control panel can charge up  
to 36 Ah of battery.  
!
Notice!  
When using two D1218 batteries, use a separate enclosure, a D122L Dual Battery Harness,  
and long leads.  
4.2.2  
Installing the Battery  
1. Place the battery upright in the base of the enclosure.  
2. Locate the red and black leads supplied in the literature pack.  
3. Connect the black battery lead to Terminal 4, and then to the negative (-) side of the  
battery.  
4. Connect the red battery lead to Terminal 5, and then to the positive (+) side of the  
battery.  
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en | Power Supply and Power Outputs  
Control Panel  
Warning!  
High current arcs are possible. The positive (red) battery lead and Terminal 5 can create high  
current arcs if shorted to other terminals or the enclosure. Use caution when working with  
the positive lead and Terminal 5. Always disconnect the positive (red) lead from the battery  
before removing it from Terminal 5.  
!
!
Warning!  
The battery terminals and wire are not power limited. A 0.250 in (6.4 mm) space must be  
maintained between the battery terminals, battery wiring, and all other wiring. Battery wiring  
cannot share the same conduit, conduit fittings, or conduit knock-outs with other wiring. Re-  
fer to the Battery Terminals illustration.  
Figure 4.1: Battery Terminals  
Callout - Description  
1 - Battery terminals. Terminal 5 is non-power limiting.  
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Control Panel  
Power Supply and Power Outputs | en  
23  
Figure 4.2: Non-PowerLimited Wiring  
Callout Description  
1 Conduit required for use with external batteries.  
2 Battery wires  
3 0.25 in (6.4 mm) minimum. To ensure proper spacing, use tie-wraps or similar devices to  
secure wires.  
4 Relay output wires  
5 Input or Zone wires  
6 Standby battery  
4.3  
Power Outputs - Circuit Protection  
5 PTC’s protect the control panel from short circuits on the continuous and programmable  
power outputs. The PTC assignments are listed below.  
PTC CB2 protects:  
Terminal 3: Auxiliary Power  
PTC CB4 protects:  
Terminal 6: Output A (Alarm Power Output)  
Terminal 7: Output B (Alternate Alarm Power Output)  
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24  
en | Power Supply and Power Outputs  
Control Panel  
Terminal 8: Output C (Switched Auxiliary Power)  
PTC CB5 protects Terminal 24: Zonex Power.  
PTC CB1 protects Terminal 32: SDI Power +.  
PTC CB3 protects Terminal 36: SDI2 Power +.  
Required by UL:  
All devices powered from a power output are to be supervised.  
Power outputs are not shared between fire and non-fire devices unless all devices are in  
conduit within 20 ft, and in the same room.  
4.4  
Power Outputs - Total Available Power  
The system produces up to 1.4 A of combined power at 12.0 VDC Nominal for all powered  
devices. The outputs listed below share the available power. These outputs are shown as red  
circles on the faceplate.  
Terminal 3 - Auxiliary Power. Use this terminal to power devices requiring continuous  
power.  
Terminal 6 (Output A) - Alarm Power Output. Programmable relay normally open, power  
on alarm.  
Terminal 7 (Output B) - Alternate Alarm Power Output. Programmable relay normally  
open, power on alarm.  
Terminal 8 (Output C) - Switched Auxiliary Power. Programmable relay normally closed,  
switches power off when the Sensor Reset command is executed.  
Terminal 24 - Zonex Power. Use this terminal to power Zonex modules such as the  
D8125, D8128D, and D8129 Modules.  
Terminal 32 - SDI Power +. Use this terminal to power serial device interface (SDI)  
devices such as keypads, the D9210C Wiegand Control Interface Module, the ICP-  
SDI-9114 module, and other compatible SDI devices.  
Terminal 36 - SDI2 Power +. Use this terminal to power serial device interface 2 (SDI2)  
devices such as B208, B308, B426, B810, B920, B930, and other compatible SDI2  
devices.  
4.5  
Power Outputs - Continuous Power Output Terminals 3, 8, 24,  
32, and 36  
The continuous current draw for powered devices connected to Terminals 3, 8, 24, 32, and 36,  
and the accessory connector must not exceed 1.4 A. Devices powered from these outputs  
must operate at 12.0 VDC Nominal.  
Power Restricted for Fire and Combined Fire and Burglary Systems  
Use the Fire System Power Formula to calculate the current available for fire and combined  
4.6  
Power Outputs - Programmable Power Output Terminals 6, 7,  
and 8  
4.6.1  
Programming  
The power outputs at Terminals 6, 7, and 8 are programmed as Outputs A, B, and C. All  
outputs are programmed in the Outputs section. Outputs are assigned a output type, (Fire  
Bell, for example) when they are assigned to an area. Outputs can be assigned to one or more  
areas. The Bosch defaults set Output A (Terminal 6) as a Steady Alarm Bell output, Output B  
(Terminal 7) as a Pulsed Fire Bell output, and Output C (Terminal 8) as a Verification or Reset  
output for smoke detectors. The D9412GV4/D7412GV4 v2.00 Program Entry Guide (P/N:  
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Control Panel  
Power Supply and Power Outputs | en  
25  
F01U265459) contains complete instructions for programming outputs. Refer to Terminals 6  
descriptions of the functions of each terminal. Refer to the Bell Parameters section of the  
program to set the Fire Bell, Alarm Bell, and Gas Bell output responses for outputs. Four  
annunciation patterns are available: Steady, Pulsed, California Standard, Temporal Code 3,  
and Temporal Code 4.  
Voltage Output at Terminals 6, 7, and 8  
If Terminals 6, 7, and 8 do not provide the expected output, check:  
Programming for Outputs A, B, and C in the outputs section of the program. For proper  
operation, do not program a Panel Wide Output the same as an Area Wide Output.  
Bell Parameters section of the program to confirm that the Alarm, Fire, and Gas Bell  
responses are programmed for the expected duration and pattern.  
Point Assignments section to confirm that each point is programmed for the expected  
local response.  
4.6.2  
Terminals 6 and 7  
When activated, Terminals 6 (Output A) and 7 (Output B), provide positive (+) 12.0 VDC  
Nominal power output. Use the power at Terminals 6 and 7 to power bells, siren drivers,  
piezoelectric fire sounders, electronic horns, or other devices.  
Programming determines the format of the output and the conditions that activate it. One self-  
resetting circuit breaker protects Terminals 6, 7, and 8 against shorts. When using Output A or  
Output B to activate notification appliance circuits in UL Listed fire alarm applications, install  
a D192G Indicating Circuit Module.  
Available Power  
The system combines the 1.4 A of primary power produced by the power supply with the  
secondary power source (the battery) to produce a total of 2.0 A of alarm power at 12.0 VDC  
Nominal. Terminals 6 and 7 share the available alarm power.  
Power Restricted for Fire and Combined Fire and Burglary Systems  
Fire systems are prohibited from using the battery for determining alarm power. Use the fire  
system power formula described in Fire System Power Formula, page 25 to calculate the  
current available for fire and combined fire and burglary systems.  
4.6.3  
Fire System Power Formula  
To calculate the current available at Terminals 6 and 7 for fire and combined fire and burglary  
systems:  
1. Add together the current draws for all devices connected to Terminals 3, 8, 24, and 32,  
and the accessory connector. This is the total current required for the normal standby  
condition (NSC).  
2. The current available for NSC is 1.4 A. Subtract the NSC current required calculated in  
Step 1 from the NSC current available, 1.4 A. The difference is the alarm current available  
for Terminals 6 and 7.  
In formula format:  
1.4 A - NSC current required (Step 1) = Alarm current available  
Refer to the Approved Applications chapter inside the D9412GV4/D7412GV4 v2.00 Installation  
and System Reference Guide (P/N: F01U265457) for module or accessory current requirements.  
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26  
en | Power Supply and Power Outputs  
Control Panel  
4.6.4  
Terminal 8  
Terminal 8 provides continuous positive (+) 12.0 VDC Nominal power. Output C interrupts the  
power at Terminal 8 when activated. Use Terminal 8 to power smoke detectors or other  
devices that are reset by interrupting power. One self-resetting circuit breaker protects  
Terminals 6, 7, and 8 against shorts.  
Verification/Reset Output  
The default program sets Output C (Terminal 8) as a verification and reset output. Refer to  
Output Parameters and Point Assignments in the D9412GV4/D7412GV4 v2.00 Program Entry  
Guide (P/N: F01U265459) for instructions on programming verification/reset outputs and  
points.  
Performing a sensor reset at a keypad produces a five-second output activation of verification/  
reset outputs. The control panel ignores verification and reset points during the five-second  
output activation.  
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Control Panel  
Specifications | en  
27  
5
Specifications  
Voltage Input  
Primary:  
Terminals 1 and 2 16.5 VAC 40 VA class 2 plug-in  
(Power Supply)1  
transformer (D1640)  
Secondary: Terminals 4 and 5 Sealed lead-acid rechargeable battery  
(12.0 VDC, 7 Ah or 12.0 VDC, 17.2 or 18  
Ah). The control panel supports up to two  
12.0 VDC, 7 Ah batteries using the D122/  
D122L Dual Battery Harness or two  
D1218 (12.0 VDC, 17.2 or 18 Ah)  
batteries using a D122/D122L.  
Current  
Control Panel: Idle 225 mA; Alarm 300 mA. Refer to the Current Rating  
Chart for Standby Battery Calculations section in the D9412GV4/D7412GV4  
v2.00 Installation and System Reference Guide (P/N: F01U265457) for the  
current draw requirements of other system components.  
Requirement  
Power Outputs2 All external connections are power-limited except battery terminals  
Continuous  
Power  
Terminals 3,  
24, 32, 36  
1.4 A maximum at 12.0 VDC Nominal  
(continuous supply) total for all devices  
and outputs supplied at Terminals 3, 24,  
32, and 36.  
Outputs  
Alarm Power Terminals 6  
2.0 A maximum at 12.0 VDC Nominal  
output. Output can be steady or one of  
four pulsed patterns depending on  
programming. Refer to Outputs in RPS  
Help.  
Output  
and 7  
Switched  
Terminal 8  
1.4 A maximum at 12.0 VDC Nominal  
output. Continuous output is interrupted  
by Sensor Reset, or alarm verification  
depending on programming. Refer to  
Outputs in RPS Help.  
Aux Power  
Fire and Fire/ To comply with UL 985 and 864 listing standards for fire  
Burglary  
Systems  
alarm systems, the total combined continuous and alarm  
current draw for the system during alarm conditions must  
be limited to 1.4 A provided by the primary power supply  
(rectified AC). If current draw for the system exceeds 1.4  
A, use a UL Listed 12 VDC regulated, power limited  
auxiliary power supply module such as the B520 (refer to  
the Keyswitch Wiring section).  
1Requires a UL Listed power supply.  
2For UL 864 applications, refer to 6.0 Compatibilities for compatible devices.  
Minimum  
Operating  
Voltage  
10.2 VDC  
SDI Bus  
SDI Bus A+:  
9 VDC 15000 ft (4572 m) maximum  
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28  
en | Specifications  
Control Panel  
SDI Bus B-:  
9 VDC 15000 (4572 m) maximum  
SDI2 Bus  
SDI2 Bus A+; 12 VDC nominal 7500 ft (2286 m) maximum3  
SDI2 Bus B-: 12 VDC nominal (7500 ft) (2286 m) maximum3  
Telephone  
Connection: RJ31X or RJ38X jack can connect the control panels.  
Connections  
Two telco  
lines:  
Bosch Security Systems, Inc. D928 Dual Phone Line  
Module required for two phone line service. Supervision  
supplied by the control panel.  
3See SDI2 Bus Wiring Recommendations for more details  
Battery  
Discharge  
Cycle:  
13.9 VDC  
13.8 VDC  
12.1 VDC  
Charging float level.  
Discharge/  
Recharge  
Schedule  
Charging status LED on.  
Low Battery Reports if programmed. Low  
Battery LED on.  
10.2 VDC  
10.0 VDC  
AC ON  
Minimum operational voltage.  
Battery load shed.  
Recharge  
Cycle:  
Load shed relay resets, battery charging  
begins, Battery Trouble and AC Restoral  
Reports sent.  
13.7 VDC  
13.9 VDC  
Battery Restoral Report sent, Low Battery  
LED off.  
Charging status LED off, battery float  
charged.  
Environmental  
Temperature: +32F to +120F (0C to +49C)  
Relative  
Maximum 93% non-condensing  
Humidity:  
Arming Stations B920/B930 Keypads,D1255/D1255B/D1255RB Keypads, D1256RB Fire  
Command Centers; D1257RB Fire Alarm Annunciators; D1260/D1260B  
Keypads; Keyswitch; Keyfobs  
Point  
On-board  
Open  
Greater than 3.7 VDC, but less than 5.0  
VDC.  
Thresholds  
Points 1 to 8  
Normal  
Short  
Greater than 2.0 VDC, but less than 3.0  
VDC  
Greater than 0.0 VDC, but less than 1.3  
VDC.  
Compatible  
Enclosures  
D8103 Universal Enclosure, D8109 Fire Enclosure, D8108A Attack  
Resistant Enclosure, BATB-40/BATB-80 Battery Box  
2See SDI2 Bus Wiring Recommendations for more details  
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Specifications | en  
29  
5.1  
B520 Specifications  
Voltage Input (Power Primary:  
18 VAC terminal 18.0 VAC, 50 VA class 2 plug-in  
transformer -TR1850  
Supply)  
(18.0 VAC, 50 VA class 2 plug-in  
transformer – TR1850-CA for Canada)  
Secondary: Batt 1, Batt 2  
terminals  
The B520 Auxiliary Power Supply  
Module supports the connection of  
two independantly monitored sealed  
lead-acid rechargeable batteries (12.0  
VDC, 7 Ah through 12.0 VDC, 36 Ah).  
Current  
Refer to the B520 Auxiliary Power Supply Module Battery Standby Chart  
section in the B520 Auxiliary Power Supply Module Installation and  
Operation Guide (P/B: F01U265445) for the current draw  
requirements of other system components.  
Requirements  
Power Outputs*  
All external connections are power-limited except battery terminals  
Continuous SDI2 Out, AUX  
2.0 A maximum at 11.5 to 12.2 VDC  
(special application) (continuous  
supply) total for all devices and  
outputs supplied at Terminals 1-4,  
6-36.  
Power  
PWR terminals  
(rated range)  
Outputs  
Fire and  
Fire/  
To comply with UL 985 and 864 listing standards for fire  
alarm systems, the total combined continuous and  
alarm current draw for the system during alarm  
Burglary  
Systems  
conditions must be limited to 2.0 A provided by the  
primary power supply (rectified AC). If current draw for  
the system exceeds 2.0 A, remove connected devices  
until the current draw falls below 2.0 A. Then connect  
the removed devices to an additional B520 Auxiliary  
Power Supply Module or to an external power supply  
*For UL 864 applications, refer to the Compatible Accessories section.  
Minimum Operating 10.2 VDC  
Voltage  
SDI2 Bus  
SDI2 Bus A:  
SDI2 Bus B:  
8 VDC-2000 ft (610 m) maximum  
8 VDC-2000 ft (610 m) maximum  
Battery Discharge/  
Recharge Schedule  
Discharge  
Cycle  
13.2 VDC – Charging float level.  
12.0 VDC – Low Battery and AC Fail Reports if  
programmed. Low Battery LED on.  
10.2 VDC – Minimum operational voltage.  
9.8 VDC – Battery load (operation continue if AC is  
present).  
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30  
en | Specifications  
Control Panel  
Recharge Cycle AC ON – Load shed relay resets, battery charging  
begins, Battery Trouble and AC Restoral Reports  
sent.  
12.6 VDC – Battery Restoral Report sent, Low  
Battery LED off.  
Environmental  
Temperature:  
+32F to +120F (0C to +49C)  
Relative  
Maximum 93% non-condensing  
Humidity:  
Compatible  
Enclosures  
D8103 Universal Enclosure (requires B12 mounting plate), D8108A  
Attack Enclosure (requires B12 mounting plate), B10 Enclosure,  
D8004 Transformer Enclosure, D2203 Enclosure, BATB-80 Enclosure,  
BATB-40 Enclosure (requires B12 mounting plate), AE1, AE2  
Enclosures  
Table 5.1: B520 Specifications  
Terminal Wiring Requirements  
Requirements  
5.2  
Terminal Terminal  
No  
Description  
1
AC  
AC  
18 AWG min (up to 14 AWG max)  
18 AWG min (up to 14 AWG max)  
2
3
+ AUX POWER Terminal accommodates 14 to 22 AWG, use appropriate wire size based on current.  
4
BATTERY -  
BATTERY +  
OUTPUT A  
OUTPUT B  
OUTPUT C  
COMMON  
Bosch supplied wire lead, included with panel.  
5
Bosch supplied wire lead, included with panel.  
6
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on current.  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on current.  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on current.  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on current.  
14 to 16 AWG  
7
8
9
10  
EARTH  
GROUND  
11  
12  
13  
14  
15  
POINT 1  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 1/2  
COMMON  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 2  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 3  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 3/4  
COMMON  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
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Control Panel  
Specifications | en  
31  
Terminal Terminal  
Requirements  
No  
Description  
16  
POINT 4  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
17  
18  
19  
20  
21  
22  
23  
POINT 5  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 5/6  
COMMON  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 6  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 7  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 7/8  
COMMON  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
POINT 8  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on loop  
resistance less than 100 Ω.  
ZONEX  
22 AWG min (up to 14 AWG max)  
COMMON  
24  
25  
26  
27  
28  
29  
ZONEX POWER 22 AWG min (up to 14 AWG max)  
ZONEX IN 2* 22 AWG min (up to 14 AWG max)  
ZONEX OUT 2* 22 AWG min (up to 14 AWG max)  
ZONEX IN 1 22 AWG min (up to 14 AWG max)  
ZONEX OUT 1 22 AWG min (up to 14 AWG max)  
SDI COMMON Terminal accommodates 14 to 22 AWG, use appropriate wire size based on peripheral  
device current.  
30  
31  
32  
33  
34  
35  
SDI DATA  
BUS B  
22 AWG min (up to 14 AWG max)  
SDI DATA  
BUS A  
22 AWG min (up to 14 AWG max)  
SDI POWER  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on peripheral  
device current.  
SDI2 COMMON Terminal accommodates 14 to 22 AWG, use appropriate wire size based on peripheral  
device current.  
SDI2 DATA  
BUS B  
22 AWG min (up to 14 AWG max)  
SDI2 DATA  
BUS A  
22 AWG min (up to 14 AWG max)  
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32  
en | Specifications  
Control Panel  
Terminal Terminal  
Requirements  
No  
Description  
36  
SDI2 POWER  
Terminal accommodates 14 to 22 AWG, use appropriate wire size based on peripheral  
device current.  
*D9412GV4 only. Terminals 25 and 26 are NOT USED on the D7412GV4 Control Panel.  
5.3  
Compatibilities  
Notice!  
Where the fire alarm transmitter is sharing on-premise communications equipment, the  
shared equipment must be UL Listed (ITE or fire protective signaling).  
Model  
Title  
UL 864  
UL  
Intrusion cUL  
Intrusion  
985  
B930  
B920  
B208  
B308  
3B810  
B820  
ATM Style Alphanumeric Keypad  
Two-line Alphanumeric Keypad  
Octo-input Module  
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
Octo-output Module  
RADION receiver SD  
Inovonics Interface2 Module  
Conettix Ethernet Communication Module  
Auxiliary Power Supply Module  
Battery Lead Supervision Module  
Dual Battery Harness  
B426/B420  
B520  
X
X
X
X
X
X
X
X
D113  
D122/D122L  
D125B  
D126  
Powered Loop Interface Module  
Standby Battery (12V, 7Ah)  
Dual Class A Initiation Circuit Module  
Relay Module  
X
D129  
X
X
X
X
X
X
X
X
X
X
X
X
X
D130  
D185  
Reverse Polarity Module  
D192G  
D279A  
Bell Circuit Supervision Module  
Independent Zone Control (On-Board and OctoPOPIT  
Points)  
D720R  
LED Keypad (red)  
LED Keypad (white)  
Dual Phone Line Switcher  
Fire Keypad  
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
D720W  
D928  
X
X
X
X
D1255RB  
D1256RB  
D1257RB  
Fire Keypad  
Fire Alarm Annunciator  
X
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Control Panel  
Specifications | en  
33  
Model  
Title  
UL 864  
UL  
Intrusion cUL  
985  
Intrusion  
D1218  
12 V, 17.2 Ah Rechargeable Battery  
D1255/D1255B Keypads (General Purpose)  
X
X
X
X
X
X
X
D1255W  
Text Keypad (white)  
Keypads  
X
X
D1260/  
D1260B2  
D1640  
16.5 VAC 40 VA Transformer  
16.4 VAC 40 VA Transformer for Canada  
Transformer Enclosure  
POPEX Module  
X
X
X
D1640-CA  
D8004  
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
D8125  
D8125MUX  
D8128D  
D8129  
Multiplex Bus Interface  
OctoPOPIT Module  
X
X
OctoRelay Module  
D8130  
Release Module  
D8132  
Battery Charger Module  
POPIT Module  
X
X
X
D9127U/T  
D9210C  
DX4010V2  
DX4020  
X
X
Access Control Interface Module  
USB/Serial Interface Module  
Network Interface Module  
GPRS/GSM Communicator  
SDI Splitter  
X
X
X
X
X
X
X
X
X
X
X
X
X
ITS-DX4020-G  
ICP-SDI-9114  
IST-EZTS  
Tamper Switch  
ISW-D8125CW- Commercial Wireless Interface Module  
V2  
ZX776Z  
PIR Motion Sensor [15 m (50 ft)] with POPIT  
PIR Motion Sensor [24 m (80 ft)] with POPIT  
PIR/Microwave Motion Sensor with POPIT  
PIR Motion Sensor with POPIT  
PIR/Microwave Motion Sensor with POPIT  
RADION speciality  
X
X
X
X
ZX794Z  
ZX865  
ZX938Z  
ZX970  
3RFBT-A  
X
X
X
X
X
3RFDL-11-A  
3RFDW-RM-A  
3RFDW-SM-A  
3RFSM-A  
RADION TriTech  
RADION contact RM  
RADION contact SM  
RADION smoke  
X
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34  
en | Specifications  
Control Panel  
Model  
Title  
UL 864  
UL  
Intrusion cUL  
Intrusion  
985  
3RFRP-A  
RADION repeater  
RADION PIR  
X
X
X
X
X
3RFPR-12-A  
3RFPR-C12_A  
3RFUN  
RADION PIR C  
RADION universal transmitter  
1Where the fire alarm transmitter is sharing on-premise communications equipment, the shared equipment must  
be UL Listed (ITE or fire potective signaling).  
2Version 1.04 or above.  
3Compatible with version 2.xx or higher  
Table 5.2: Compatible Accessories1  
5.4  
Circuit Classes  
Onboard Points  
Onboard points, points 1 to 8, are Class B, Style B Initiating-Device Circuits.  
Zonex Bus or Buses  
Zonex buses are Class B, Style 4 Signaling Line Circuits.  
Notification Appliance Circuit (NAC)  
The control panels do not have an onboard NAC.  
A D192G can be added to the control panel (or D8129/B308) and is Class B, Style W.  
2012.12 | 02 | F.01U.265.462  
UL Installation Instructions  
Bosch Security Systens, Inc.  
Download from Www.Somanuals.com. All Manuals Search And Download.  
 
Download from Www.Somanuals.com. All Manuals Search And Download.  
Bosch Security Systems, Inc.  
130 Perinton Parkway  
Fairport, NY 14450  
USA  
© Bosch Security Systems, Inc., 2012  
Download from Www.Somanuals.com. All Manuals Search And Download.  

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