IS200JPDHG1A High-Density Power Distribution Board
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Part Number: IS200JPDHG1A
Manufacturer: General Electric
Series: MKVIE
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IS200JPDHG1A High-Density Power Distribution Board
The IS200JPDHG1A module functions as a high-density 28 V distribution module within the GE Mark VI control system.Â
Rest assured, the IS200JPDHG1A module efficiently distributes power at 28 volts, ensuring a stable and reliable power supply to various components within the control system.Â
The module allows for daisy-chaining of multiple IS200JPDHG1A units via J1 and J1X connectors, enabling expanded power distribution.
Module Model: IS200JPDHG1A
Voltage: 28 V
Compatibility: GE Mark VI Control System
Weight: 0.12 kg
Dimensions: 16 cm x 11 cm x 2 cm
Operating Temperature: -40°C to 70°C
Input Power: 93.5 VAC to 264 VAC
Features:
~Precise 28 V power distribution
~Compact and high-density design measuring 16 cm x 11 cm x 2 cm
~Reliable performance with a weight of 0.12 kg
~Easy installation and integration
~Robust construction for durability
~Twenty-four varistors distributed across three rows of eight, accompanied by an equivalent count of 2-position plugs arrayed in the same configuration (JR1-JR8, JS1-JS8, JT1-JT8)
~Three additional 2-position plugs designated as JR5, JS5, and JT5, alongside two 6-position plugs identified as J1 and J1X
Compatibility:
Seamless Integration: the IS200JPDHG1A module is specifically designed for use with the GE Mark VI control system. Its compatibility ensures a seamless integration, allowing you to optimize the performance of your control system.Â
It is suitable for specific hazardous environments, including Class 1 Division 2, Class 1 Zone 2, and ATEX classifications, requiring compliance with UL/ATEX HazLoc standards for wiring and maintenance.
Performance Improvement for GE Mark Systems:
By providing precise 28 V power distribution, the IS200JPDHG1A module enhances the overall performance of GE Mark systems by ensuring consistent and reliable power supply to critical components.Â
This results in improved system stability, efficiency, and operational reliability. The module’s ability to daisy-chain multiple units allows for expanded power distribution, further enhancing the performance of GE Mark systems.
Applications:
The IS200JPDHG1A module finds applications in various industries where the GE Mark VI control system is utilized, including:
~Power generation plants
~Oil and gas facilities
~Manufacturing plants
~Water treatment facilities
Troubleshooting Common Issues:
Power Interruptions: Check for loose connections and ensure proper power input within the specified range of 93.5 VAC to 264 VAC.
Overheating: Verify adequate ventilation and cooling around the module, ensuring it operates within the specified temperature range of -40°C to 70°C.
Communication Errors: Inspect communication cables and connections for faults, as the module does not have a specified communication protocol.
Voltage Fluctuations: Monitor input power quality and stability to ensure it remains within the specified input voltage range.
Module Failure: If the module fails to function properly despite troubleshooting efforts, contact GE technical support for further assistance.
Frequently Asked Questions about IS200JPDHG1A:
What is the IS200JPDHG1A module?
The IS200JPDHG1A is a printed circuit board (PCB) component designed for integration within the General Electric (GE) Mark VI system.
What is the primary function of the IS200JPDHG1A module?
The IS200JPDHG1A operates as a High-Density Power Distribution Card, furnishing individual, safeguarded control power to each Input/Output (I/O) pack.
Can multiple IS200JPDHG1A units be daisy-chained?
Yes, the IS200JPDHG1A allows for daisy-chaining of multiple units via J1 and J1X connectors.
What is the significance of the J1 plug-in daisy-chaining configurations?
Adherence to the current rating of the initial JPDH J1 plug is imperative in such configurations.
Is the IS200JPDHG1A suitable for hazardous environments?
Yes, the board is suitable for specific hazardous environments, including Class 1 Division 2, Class 1 Zone 2, and ATEX classifications. It necessitates compliance with UL/ATEX HazLoc standards for wiring and upkeep.
What is the physical composition of the IS200JPDHG1A module?
The IS200JPDHG1A encompasses twenty-four varistors distributed across three rows of eight, accompanied by an equivalent count of 2-position plugs arrayed in the same configuration (JR1-JR8, JS1-JS8, JT1-JT8)
What additional components does the IS200JPDHG1A module accommodate?
It accommodates three supplementary 2-position plugs designated as JR5, JS5, and JT5, alongside two 6-position plugs identified as J1 and J1X
What is the typical power source for the Mark VI system?
A 125Vdc battery setup typically powers the Mark VI system, although it can alternatively derive power from a 120/240vac source through a converter featuring an isolation transformer for rectification to 125Vdc
What is the significance of the GE publication GEI-100861?
Pertinent details about the IS200JPDHG1A board and its constituent elements are cataloged within GE publication GEI-100861.
How reliable is the IS200JPDHG1A board?
The IS200JPDHG1A board is very reliable and less prone to damage, but improper handling and poor storage can affect its functionality.
What is the refurbishing process for the IS200JPDHG1A circuit board?
The refurbishing process includes replacing aging and commonly failing components, applying TIL modification if necessary, reflowing solder to eliminate dry solder, thoroughly industrial-standard cleaning of the card, and using a protective coating.
What is the functional verification test for the IS200JPDHG1A?
The functional verification test involves testing the IS200JPDHG1A in an actual OEM system setup to assure 100% reliability, individually verifying all inputs and outputs for their functionality.
What precautions should be taken when handling the IS200JPDHG1A circuit board?
The IS200JPDHG1A is a static-sensitive board and should be handled with proper ESD safety precautions, minimizing hands-on contact with the PCB, especially in the conducting area.