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The GE Multilin G30, also cataloged as the G30 Generator Protection Relay, operates as a microprocessor-based electrical verification and protection component within the GE UR (Universal Relay) Series platform. It integrates high-speed algorithmic tripping matrices, automated breaker control logic, and industrial SCADA telemetry natively at the protective relay tier to maintain generator stator, rotor, and transformer circuit stability parallel to master processing bus execution cycles.
| Parameter | Specification |
|---|---|
| Model | G30 |
| Brand | GE (General Electric) / Multilin |
| Origin | United States |
| Weight | Approx. 8.5 lbs (Draw-out case dependent) |
| Format | Modular draw-out case construction for standard 19-inch racks |
| Relay Type | Microprocessor-Based Generator Protection Unit |
| System Platform | UR (Universal Relay) Series |
| Core Protection | Generator differential, overcurrent, ground fault, thermal overload, voltage/frequency anomalies |
| Control & Automation | Breaker control, auto-reclosing matrix, FlexLogic™ configuration engine |
| Metering Parameters | Phase current vectors, line voltage, active/reactive power ($kW/kVar$), energy, frequency, power factor |
| Data Capture | Sequence of Events (SOE), waveform oscillation capture, disturbance logging |
| Communication Protocols | IEC 61850, Modbus RTU/TCP, DNP3, TCP/IP, OPC |
| Operator Interface | High-resolution, full-color graphical LCD HMI |
| Operating Temp | -40 to +70 deg C |
| Operational Humidity | Up to 95% non-condensing maximum limits |
| Operational Altitude | Up to 2000 m without structural thermal derating |
Q: What structural hardware variations define the application boundary between the G30 and the larger G40 protection relay models?
A: The G30 is optimized for small to medium-sized steam, hydro, and combustion generator configurations. The G40 model features higher maximum fault current boundaries and an expanded modular slot profile to house a higher density of discrete I/O channels for complex, multi-breaker generator topologies.
Q: How does the G30 modular draw-out case design isolate active current transformer (CT) secondary loops during maintenance removal?
A: The draw-out chassis incorporates integrated self-shorting mechanical CT contacts within the stationary terminal block. When the internal relay module is pulled out of the enclosure, these contacts close automatically prior to connector separation, preventing high-voltage open-circuit transients across the running CT loops.

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