Description
GE MULTIN F650-N-F-L-F2-G-1-HI-P-6E Motor Protection Device Control Power Board
The GE MULTLIN F650-N-F-L-F-2-G-1-HI-P-6E serves as the “brain” of electrical distribution systems, providing primary or backup protection for feeders in ring-bus, double-breaker, or breaker-and-a-half configurations. Its core purpose is to detect and respond to faults within milliseconds, minimizing downtime and equipment damage. With support for protocols like IEC 61850 Edition 2, Modbus RTU/TCP, and DNP 3.0, the relay acts as a communication hub, enabling interoperability with SCADA systems, HMIs, and other intelligent electronic devices (IEDs). Whether deployed in a substation, manufacturing facility, or smart grid, the F650 ensures stable power flow while adhering to global standards for safety and efficiency.
Label | Specification |
---|---|
Model Number | F650-N-F-L-F-2-G-1-HI-P-6E |
Brand | GE Multilin (GE Vernova) |
Type | Feeder Protection and Bay Controller |
Input Voltage | 10–250V DC / 10–240V AC (30W/30VA) |
Operating Temperature | -20°C to +60°C |
Communication Methods | IEC 61850 Edition 2, Modbus RTU/TCP, DNP 3.0, IEC 60870-5-103/104 |
Mounting | Panel or DIN rail |
Weight | 700 g |
Certifications | KEMA 61850 Edition 2 certified, CE |
Dimensions | 23.5 cm x 26.4 cm x 20.8 cm |
IP Rating | IP20 (indoor use) |
Protocols Supported | IEC 61850, Modbus, DNP 3.0, PRP/HSR |
Protection Functions | Overcurrent, earth fault, arc flash, frequency protection |
The GE MULTLIN F650-N-F-L-F-2-G-1-HI-P-6E combines cutting-edge technology with rugged industrial design. Its high-speed fault detection (≤10 ms) ensures rapid isolation of faulty sections, critical for preventing cascading failures in power grids. The relay’s dual-stage current limiting and overvoltage protection safeguard connected equipment from transient spikes, while its advanced metering capabilities provide real-time insights into power quality, including voltage, current, and energy consumption.
The GE MULTLIN F650-N-F-L-F-2-G-1-HI-P-6E excels in environments where power reliability is non-negotiable. In utility substations, it protects transmission lines and distribution feeders, coordinating with circuit breakers to isolate faults and restore power within seconds. For example, in a smart grid, the relay’s load shedding capabilities adjust power distribution during peak demand, preventing blackouts and ensuring grid stability. Its synchrocheck function also enables safe reconnection of distributed energy resources (DERs) like solar farms, supporting the transition to renewable energy.
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