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Configured for motor status monitoring and current overload evaluation in GE Multilin protection networks, the Multilin MPM-HI-A20 (MPMHIA20 Protective Relay) provides direct physical/electrical execution.
| Parameter | Specification |
|---|---|
| Model | MPM-HI-A20 (MPMHIA20) |
| Brand | Multilin (GE) |
| Origin | Canada |
| Weight | 2.70 lbs (1.22 kg) |
| Dimensions | Standard 1/8 DIN Panel Cutout Enclosure |
| Operating Temp | -20 to 60 deg C |
| Power Consumption | 20 VA (250 VAC, 50/60 Hz) |
| Nominal Voltage | 250 VAC |
| Current Rating | 8 A |
| Terminal Type | Screw Clamp Terminals |
| Primary Function | Motor Protection & Status Metering |
The Multilin MPM-HI-A20 incorporates internal non-volatile firmware flash storage to preserve operational trip curves, current transformer ratios, and alarm thresholds during power loss. The real-time microprocessing unit continuously samples phase currents and voltage waveforms across screw clamp terminals, providing deterministic fault detection execution. Onboard communication interfaces maintain backplane bus velocity to transmit motor health diagnostics, thermal capacity usage, and trip event records to host SCADA and DCS platforms without signal delay.
Q: What are the primary electrical power input requirements for the Multilin MPM-HI-A20 relay?
A: The device operates on a nominal supply voltage of 250 VAC at 50/60 Hz, with a maximum power burden rating of 20 VA.
Q: What termination method is used for field wiring on the MPM-HI-A20?
A: All current inputs, voltage sensing lines, and auxiliary control power connections utilize industrial screw clamp terminal blocks for secure physical wiring.
Mount the protective relay securely in a panel cutout, ensuring the front gasket forms a tight seal to prevent dust ingress. Wire phase current signals through dedicated Current Transformers (CTs) and verify that the CT secondary circuits are solidly grounded at a single point prior to energization. All auxiliary power and trip control lines must use insulated copper wiring terminated tightly at the screw clamp blocks to maintain reliable contact resistance.
This module is specifically engineered for use within the GE Mark VI Speedtronic control architecture. It is typically deployed in power generation facilities, thermal power plants, and large-scale petrochemical processing plants where turbine overspeed protection and precise synchronization are mission-critical requirements.
| Model | IS200VTURH1BAC |
| Series | Mark VI Speedtronic |
| Product Type | Turbine Specific Primary Trip Board |
| Operating Temperature | 0 to 60 deg C |
| MPU Pulse Rate Range | 2 Hz to 20 kHz |
| Pulse Rate Accuracy | 0.05% of Reading |
| Trip Solenoid Outputs | 3 Dedicated channels |
| Contact Voltage Sensing | 20 VDC (HI) / 6 VDC (LO) |
The IS200VTURH1BAC acts as the primary turbine protection board in the Mark VI system, responsible for monitoring turbine speed, executing overspeed trips, and managing generator synchronization.
Yes, the VTUR board is designed to interface with specific Mark VI terminal boards, including the TRPG, TRPL, TREG, and TRPS, to facilitate signal distribution and solenoid control.

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