33
Secondary injection testing is possible using low current sources to test the feeder modules. It is recommended to use
currents of 1/1000 of the expected circuit current through the zero sequence current sensor. Because there are inter-
locking signals from the system module that prevent feeder module trip and indication, it is necessary to either apply
a voltage to the N-G terminals of the system module, or simply pull one of the DDR2 fuses to drive the system module
into the alarm condition thus enabling the feeder modules to provide indication and digital trip functionality.
Note: Should the injection current induced during this procedure exceed 100mA then the feeder module will trip on the
analog backup circuit without any indication at all.
DSP-ADM Arc Detection Module
The I-Gard DSP-ADM is an ARC detection module that uses air pressure and/or light sensing transducers to con-
tinuously monitor up to 21 sensors through up to seven channels. It offers a first line of defense in the arc detection
feature of the DSP-OHMNI system. The DSP-ADM is used to provide protection against arc flash hazards in lowering
the incident energy level to safer values protecting both personnel and equipment from severe damages. This module
should be installed following the DSP-DFM in the 35 mm DIN Rail line-up.
The DSP-ADM is designed to be used with:
- SENSOR L1 point light sensors
- SENSOR F1 modified point sensor with fiber optic tail
- SENSOR iPS2 or 1PS4 pressure arc sensors
The DSP-ADM monitors the area to be protected for flashes of light and for air pressure waves caused by arc flashes.
When any of the sensors identifies such an incident, the internal Form C contact transfers. This signal is then use to
trip the breaker interrupting energy to the circuit.
The DSP-ADM (Arc Detection Module) requires the DSP-OHMNI to have firmware of 2.20 or higher.
DSP-ADM Installation (See Figure 46)
The DSP-ADM is designed to be mounted in the DSP-OHMNI module array after (to the right of) the DSP-DFM feeder
modules. The RC-3 ribbon cable supplies power to the DSP-ADM and allows communication to the main DSP-OHMNI
system.
Up to seven of each of three styles of sensors can be connected to the DSP-ADM module. One of each sensor is as-
signed to one of seven channels as indicated in the table below.
Sensor Type
Connection Points
Channel
SENSOR L1 or F1 point light sensor
RTN 52-51
1
SENSOR L1 or F1 point light sensor
RTN 50-49
2
SENSOR L1 or F1 point light sensor
RTN 48-47
3
SENSOR L1 or F1 point light sensor
RTN 46-45
4
SENSOR L1 or F1 point light sensor
RTN 44-43
5
SENSOR L1 or F1 point light sensor
RTN 42-41
6
SENSOR L1 or F1 point light sensor
RTN 40-39
7
SENSOR FO fiber optic sensor
Optic 1
1
SENSOR FO fiber optic sensor
Optic 2
2
SENSOR FO fiber optic sensor
Optic 3
3
SENSOR FO fiber optic sensor
Optic 4
4
Содержание DSP-OHMNI
Страница 1: ...C EG30EM Instruction Manual V2 June 2020 DSP OHMNI ...
Страница 11: ...9 Figure 1b DSP DCM Wiring Figure 1c System Module DSP DSM Wiring ...
Страница 12: ...10 Figure 1d Power Supply DSP DPS Wiring Figure 2 Preferred Feeder Module DSP DFM Wiring ...
Страница 45: ...43 Figure 41 DSP DPS System Module Connection ...
Страница 46: ...44 Figure 43 DSP DLM Logging Module Connections Figure 44 DSP TDM Display Module Connections ...
Страница 47: ...45 Figure 45 Typical DSP DRM Installation Connections ...
Страница 50: ...www i gard com Phone 905 673 1553 Toll Free 1 888 737 4787 Fax 905 673 8472 sales i gard com ...