Description
Key Specifications
| Parameter | Specification |
|---|---|
| Input Voltage | 24 VDC nominal (18–32 VDC range) |
| Output Voltages | +5 VDC @ 45 A, +3.3 VDC @ 40 A, ±12 VDC @ 8 A each, Standby +5 VDC @ 3 A |
| Total Output Power | 400 W typical, 500 W peak (highest in LVPSG series) |
| Efficiency | >91% at full load (best in class) |
| Input Protection | Reverse polarity, overvoltage (crowbar), overcurrent, transient suppression (MIL-STD-1275A), enhanced surge suppression (±4 kV) |
| Output Protection | Overcurrent limiting, short-circuit, thermal shutdown, overvoltage clamping, active current sharing, output OR-ing |
| Status Indicators | LED array for input OK, each output rail OK, fault conditions, redundancy status, load-sharing status, expanded diagnostic blink codes |
| Monitoring | On-board voltage/current telemetry via I/O Net, redundant load sharing status, predictive failure alerts |
| Operating Temp | –40 °C to +80 °C (widest range in Mark VIe family) |
| Humidity | 5–100% condensing (silicone coating standard) |
| Coating | Thicker silicone conformal coating + enhanced edge encapsulation (UV-traceable), military-grade |
| Manufacturing | 168-hour burn-in, 100% X-Ray/AOI, military-grade components, enhanced thermal cycling (–40 to +100 °C, 150 cycles) |
| Form Factor | 6U VME64x (160 × 233 mm), single-slot width |
| Connectors | VME64x P1/P2 backplane connector + front-panel DC input terminal block with gold-plated contacts, captive washer screws, and redundant input terminals |
| Cooling | Convection with forced-air assist (minimum 250 LFM — increased requirement) |
| Diagnostic Memory | 2000-event fault log with timestamps, voltage/current waveforms, and predictive failure trend data |
| Predictive Analytics | On-board trend analysis for voltage, current, and temperature—alerts before failure occurs |
Advantages & Distinctive Features
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Highest Output Capacity: 400 W total output—supports the largest Mark VIe racks with extreme I/O density.
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Unmatched Efficiency: >91%—minimizes heat generation and maximizes reliability.
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Active Current Sharing with OR-ing: Enables parallel operation of up to 4 power supplies for true N+1 redundancy with automatic load balancing.
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Highest Current Capacity: +5 V @ 45 A and +3.3 V @ 40 A—handles the most demanding configurations.
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Widest Temperature Range: –40 °C to +80 °C—suitable for Arctic, desert, and extreme industrial environments.
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Predictive Failure Alerts: On-board trend analysis identifies aging components (capacitors, fans) before failure—enables planned maintenance.
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Redundant Input Terminals: Dual DC input terminals for redundant power feeds—prevents single-feed failure.
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Expanded Diagnostic Memory: 2000-event fault log with predictive trend data—enables comprehensive lifecycle management.
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Enhanced Manufacturing Quality: 168-hour burn-in, 150 thermal cycles (–40 to +100 °C), military-grade components—maximum field reliability.
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Thicker Silicone Coating + Enhanced Edge Encapsulation: Superior protection against extreme humidity, salt spray, chemicals, and condensing environments.
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Condensing Humidity Rating: 5–100% condensing—suitable for offshore, unheated, and tropical installations.
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Hot-Swappable: No rack power-down for replacement.
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Direct Retrofit: Replaces all LVPSG and VPWR series boards.
Application Fields
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Large Turbine Control Racks: Primary power for Mark VIe systems with >20 I/O boards
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High-Density I/O Racks: Power for extensive distributed I/O cabinets
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N+1 Redundant Configurations: Parallel load-sharing with multiple power supplies for mission-critical applications
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Extreme Environments: Arctic (–40 °C), desert (+80 °C), offshore, tropical, and condensing installations
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Nuclear Power Plants: Safety-critical power applications with highest reliability
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Data Centers: Critical power for SCADA and control systems
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Retrofit Projects: Upgrading older power supplies to highest capacity
Comparison with LVPSG3A and Competitors
| Feature | GE IS2020LVPSG4 | GE IS2020LVPSG3A | Competitor A | Competitor B |
|---|---|---|---|---|
| Output Power | 400 W | 300 W | 120 W | 100 W |
| +5 V Capacity | 45 A | 35 A | 15 A | 12 A |
| +3.3 V Capacity | 40 A | 30 A | 10 A | 8 A |
| Efficiency | >91% | >90% | >85% | >85% |
| Parallel Supplies | Up to 4 (N+1) | Up to 2 | No | No |
| Predictive Failure Alerts | Yes | No | No | No |
| Temp Range | –40 to +80 °C | –30 to +75 °C | 0 to +55 °C | –10 to +55 °C |
| Humidity | 5–100% condensing | 5–100% condensing | 5–90% | 5–90% |
| Burn-in | 168 hours | 120 hours | 24 hours | 24 hours |
| Fault Logging | 2000 events + trend data | 1000 events + waveforms | No | No |
| Redundant Input Terminals | Yes | No | No | No |
The GE IS2020LVPSG4 offers the highest output capacity, N+1 redundancy, predictive failure alerts, widest temperature range, and military-grade manufacturing—making it the definitive power supply solution for the largest, most critical Mark VIe systems in the world’s harshest environments.
Selection Guidelines
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When to choose:
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Large Mark VIe racks requiring >300 W total power
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Extremely high-density I/O configurations with multiple processor boards
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N+1 redundant power configurations requiring up to 4 power supplies in parallel
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Extreme environments (–40 to +80 °C, condensing, chemical exposure)
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Maximum reliability with predictive failure alerts (nuclear, critical infrastructure)
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When to choose LVPSG3A instead: For smaller racks with <300 W power requirements and less extreme environments.
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Load Calculation: Sum all board loads—ensure total ≤400 W. +5 V rail ≤45 A; +3.3 V rail ≤40 A.
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Redundancy Planning: For N+1 redundancy, order three supplies for 2+1, or four for 3+1 configurations. Active current sharing automatically balances load.
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Input Redundancy: Use both input terminals with separate power feeds to eliminate single-feed failure.
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Cooling: Ensure cabinet airflow ≥250 LFM (increased requirement)—derate above 70 °C.
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Input Wiring: Use 8 AWG minimum (higher current capacity); install fast-acting fuse (50 A) or circuit breaker.
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Coating Verification: Inspect under UV (365 nm)—thicker silicone coating shows distinct fluorescence; verify edge encapsulation bead is continuous and visibly thicker.
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Compatibility: Fits all Mark VIe VME64x racks. Requires ControlST v7.5 or higher for predictive failure alert features.
Operational Precautions
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Input Polarity: Double-check DC input polarity before power-up.
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Load Calculation: Verify total rack load ≤400 W. Overloading is a common installation error—measure current draw during commissioning.
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Active Current Sharing: Verify load balance (within 5%) across all parallel supplies during commissioning—unbalanced sharing indicates wiring or configuration issues.
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Redundant Input Feeds: Verify both input terminals are powered to prevent single-feed failure.
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Cooling: Ensure cabinet airflow ≥250 LFM—higher power output generates significant heat.
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Predictive Alerts: Review predictive trend data regularly—address warnings before component failure occurs.
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Redundancy Testing: For N+1 configurations, perform failover tests—verify seamless transfer without voltage dips.
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Fault Log: Access 2000-event log via Toolbox ST—review voltage/current waveforms and predictive trend data.
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Status Monitoring: Regularly check front-panel LEDs—redundancy and load-sharing status LEDs indicate system health.
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Coating Care: Use GE-approved silicone-safe cleaner; inspect annually under UV—rework voids with approved silicone coating per GE FSB-MKVIe-112.
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Hot-Swap: Remove/insert slowly under power—processor auto-recognizes new module.
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Spare Stock: Maintain 1 spare per 3–4 racks; “LVPSG4” backward-compatible with all LVPSG/VPWR sockets.
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Firmware Updates: Ensure the GE IS2020LVPSG4 is in “standby” mode during updates. Use ControlST v7.5 or higher.
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ESD: Handle by edges only with grounded wrist strap—coating does not protect connectors.
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Storage: Anti-static bag with desiccant at –40 to +85 °C; rotate every 3 years for coating inspection.

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