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Configured for multi-phase parameter evaluation in high-capacity power distribution networks, the GE G60E00HUHF8LH6UMXXPXXUXXWXX (UR G60 Generator Protection and Control Relay) provides direct physical/electrical execution. The solid-state control node processes specialized sensing functions natively at the hardware tier to isolate electrical faults, drive high-speed breakers, and synchronize generator states across active power generation grids.
| Parameter | Specification |
|---|---|
| Model | G60E00HUHF8LH6UMXXPXXUXXWXX |
| Brand | GE (General Electric Multilin) |
| Origin | USA |
| Weight | Standard UR series rack mass profile |
| Dimensions | Standard UR series panel/rack mount enclosure |
| Operating Temp | -40 to +85 deg C continuous operational limits |
| Power Consumption | Base control logic power drawn from 24 VDC input rail |
| Core Processor | Intel 1.66 GHz 64-bit embedded processing architecture |
| System Memory | 1 GB RAM configuration |
| Local Interface | Integrated large full-color graphical display |
| Ethernet Ports | 3 independent physical network ports |
| Network Time Sync | IEEE 1588 hardware time synchronization support |
| Logic Framework | FlexLogic programmable automation engine |
| Protocol Suite | IEC 61850 Edition 1 and Edition 2 compliant |
| Regulatory Marks | CE, UL |
| Product Type | Transmission and Distribution Relays |
Q: How does the IEEE 1588 synchronization standard affect the fault diagnostics data captured by the relay?
A: The IEEE 1588 standard provides precise hardware-level time stamping across the 3 independent Ethernet ports, synchronizing the internal clock to within sub-microsecond variances. When a generator differential trip event occurs, the local fault records and waveform captures across separate grid nodes are matched to a unified timeline, allowing engineers to analyze exact sequence-of-events propagation.
Q: What protection constraints govern the 24 VDC control power input during extreme ambient temperature peaks up to +85 deg C?
A: The internal buck-boost power conditioning stages are matched to the extended -40 to +85 deg C thermal operational envelope. The hardware utilizes passive thermal dissipation layouts to prevent internal components from reaching critical junctions, maintaining consistent voltage regulation to the Intel 64-bit processor without requiring auxiliary forced-air cooling systems.

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