Description
Detailed Technical Specifications
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Input Voltage: 24 VDC nominal (18–32 VDC range)
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Output Voltages:
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+5 VDC @ 20 A (main logic supply)
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+3.3 VDC @ 15 A (VME I/O and processor core supply)
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±12 VDC @ 2 A each (analog and communication interfaces)
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Standby +5 VDC @ 1 A (for battery charging and RTC retention)
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Total Output Power: 150 W typical, 180 W peak
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Efficiency: >85% at full load
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Form Factor: 6U VME64x (160 × 233 mm), single-slot width
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Input Protection: Reverse polarity, overvoltage (crowbar), overcurrent, and transient suppression (MIL-STD-1275A compliant)
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Output Protection: Individual channel overcurrent limiting, short-circuit protection, and thermal shutdown
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Status Indicators: LED array for input OK, each output rail OK, and fault conditions
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Monitoring: On-board voltage/current telemetry accessible via I/O Net (with optional monitoring firmware)
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Operating Temp: 0 °C to +60 °C (standard), derated above 50 °C
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Cooling: Convection with forced-air assist (minimum 150 LFM)
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Connectors: VME64x P1/P2 backplane connector + front-panel DC input terminal block (screw-type)
Advantages & Distinctive Features
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Stable Power Delivery: Provides clean, regulated power to all VME backplane boards, minimizing noise and ripple (<50 mV peak-to-peak) critical for analog I/O accuracy and high-speed processor operation.
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Comprehensive Protection: Full suite of input/output protections ensures that a fault on any single rail does not compromise the entire rack—overcurrent limiting prevents downstream damage.
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Hot-Swappable: The GE IS200VPWRH1A supports hot-swap insertion/removal (with proper sequencing), allowing replacement without powering down the entire turbine control system—critical for maintaining uptime in power generation applications.
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Diagnostic Visibility: On-board voltage and current monitoring provides real-time status via the I/O Net network (when configured), enabling predictive maintenance and early fault detection.
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Redundancy Ready: Can be paired with a second power supply in a redundant configuration (diode-ORed outputs) for high-availability systems.
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Wide Input Range: Accepts 18–32 VDC, accommodating battery-backed DC systems with voltage sags or surges common in industrial environments.
Application Fields
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Turbine Control Racks: Primary power source for Mark VIe racks housing GE IS200VPROH1A, GE IS200VPROH1B, and H2 series processor boards.
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I/O Expansion Racks: Powers terminal boards (IS200TBCIH, IS200TRTDH, IS200VCMIH) in distributed I/O cabinets.
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Redundant Power Configurations: Used in pairs for mission-critical applications (gas turbines, steam turbines, compressors) where a single power supply failure cannot be tolerated.
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Retrofit Projects: Replaces older IS200PWR-series modules in legacy Mark V/VI systems when upgrading to Mark VIe.
Comparison with Competing Products
| Feature | GE IS200VPWRH1A | Competitor A (Siemens PS-407) | Competitor B (Woodward 8440-2050) |
|---|---|---|---|
| Input Voltage | 18–32 VDC | 24 VDC (±20%) | 18–36 VDC |
| Output Power | 150 W | 120 W | 100 W |
| +5 V Capacity | 20 A | 15 A | 12 A |
| +3.3 V Capacity | 15 A | 10 A | 8 A |
| Hot-Swappable | Yes | No | Yes |
| Monitoring | Voltage/current via I/O Net | Basic LED only | Basic LED only |
| Redundancy | Diode-OR ready | Not supported | Diode-OR ready |
| Operating Temp | 0 to +60 °C | 0 to +55 °C | –10 to +55 °C |
The GE IS200VPWRH1A offers higher current capacity and integrated network monitoring, making it superior for power-hungry Mark VIe racks with multiple processor and I/O boards.
Selection Guidelines
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When to choose: Primary or redundant power supply for any Mark VIe VME rack containing processor boards (VPRO), terminal boards, or communication modules requiring +5 V, +3.3 V, and ±12 V rails.
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Compatibility: Fits standard Mark VIe racks (VME64x backplane). Check total rack power consumption—sum of all board loads must not exceed 150 W (180 W peak).
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Redundancy Planning: For critical turbines, order two GE IS200VPWRH1A units with a diode-OR backplane or external redundancy module to enable failover.
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Input Wiring: Use appropriately sized conductors (minimum 14 AWG) for DC input. Install a fast-acting fuse (20 A) or circuit breaker on the DC input line per NEC/CEC requirements.
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Cooling: Ensure cabinet airflow ≥150 LFM; derate maximum output power by 10% for every 5 °C above 50 °C ambient.
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Firmware: Optional monitoring firmware enables I/O Net telemetry—requires ControlST v6.0+ and configuration in Toolbox ST.
Operational Precautions
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Input Polarity: Double-check DC input polarity before power-up—reverse polarity protection is present but sustained reversal may damage input capacitors.
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Hot-Swap Procedure: When inserting or removing the GE IS200VPWRH1A under power, do so slowly to avoid inrush current spikes. Insert fully before applying front-panel input power (if external breaker is used).
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Load Calculation: Verify total rack load does not exceed 150 W. Overloading the +5 V rail (20 A max) is a common installation error—measure current draw during commissioning.
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Battery Backup: For systems requiring uninterrupted operation during input power sags, use a DC UPS (e.g., 24 V battery string) upstream of the GE IS200VPWRH1A—the module has no internal battery.
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Status Monitoring: Regularly check front-panel LEDs—if any rail LED is amber/red, investigate the downstream load for shorts or excessive current draw.
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Redundancy Testing: For redundant configurations, perform manual failover tests during outages—verify that the standby unit takes over seamlessly without voltage dips.
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Spare Stock: Maintain at least one spare GE IS200VPWRH1A per 3–4 racks. Input power surges can stress supplies over time—rotate spares every 5 years or after any major lightning event in the vicinity.

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