GE IS2020LVPSG1A

¥999.00

The GE IS2020LVPSG1A is a VMEbus power supply module manufactured by General Electric for the Mark VIe distributed control system (DCS). This board is a dedicated Low-Voltage Power Supply module, designed to provide regulated, isolated DC power to VME backplane boards within the rack. The GE IS2020LVPSG1A serves as the primary power source for processor boards (such as the VPRO series), I/O terminal boards, and communication interfaces, converting incoming bulk DC power into the regulated voltages required by VME64x backplane specifications. The “2020LVPSG” and “H1A” designations indicate a newer-generation power supply module with improved efficiency, enhanced diagnostics, and higher output capacity compared to older VPWR series boards.

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Description

Key Specifications

Parameter Specification
Input Voltage 24 VDC nominal (18–32 VDC range)
Output Voltages +5 VDC @ 25 A (main logic supply), +3.3 VDC @ 20 A (VME I/O and processor core supply), ±12 VDC @ 3 A each (analog and communication interfaces), Standby +5 VDC @ 2 A (for battery charging and RTC retention)
Total Output Power 200 W typical, 250 W peak (improved over VPWRH1A)
Efficiency >88% at full load (improved over VPWRH1A)
Input Protection Reverse polarity, overvoltage (crowbar), overcurrent, and transient suppression (MIL-STD-1275A compliant)
Output Protection Individual channel overcurrent limiting, short-circuit protection, thermal shutdown, and overvoltage clamping
Status Indicators LED array for input OK, each output rail OK, fault conditions, and diagnostic blink codes
Monitoring On-board voltage/current telemetry accessible via I/O Net (standard)
Operating Temp –25 °C to +70 °C (extended range)
Humidity 5–95% non-condensing (with conformal coating)
Coating Conformal coating (standard) — UV-traceable
Manufacturing 96-hour burn-in, 100% X-Ray/AOI, premium component selection
Form Factor 6U VME64x (160 × 233 mm), single-slot width
Connectors VME64x P1/P2 backplane connector + front-panel DC input terminal block with captive washer screws and gold-plated contacts
Cooling Convection with forced-air assist (minimum 150 LFM)
Diagnostic Memory Non-volatile fault logging — stores last 500 events with timestamps

Advantages & Distinctive Features

  • Higher Output Capacity: 200 W total output (versus 150 W on VPWRH1A)—supports larger racks with more I/O boards.

  • Higher Efficiency: >88% (versus >85% on VPWRH1A)—reduces heat generation and improves reliability.

  • Extended Temperature Range: –25 °C to +70 °C operation—suitable for unheated cabinets and harsh environments.

  • Improved Current Capacity: +5 V @ 25 A (versus 20 A) and +3.3 V @ 20 A (versus 15 A)—handles power-hungry processor and I/O boards.

  • Enhanced Diagnostics: Expanded LED blink codes and 500-event fault log for comprehensive troubleshooting.

  • Conformal Coating Standard: Protects against humidity, salt spray, and chemical vapors—suitable for coastal, offshore, and industrial environments.

  • Gold-Plated Captive Washer Terminals: Corrosion-resistant and vibration-proof DC input connections.

  • Hot-Swappable: Supports removal and replacement without powering down the rack.

  • Direct Retrofit: Replaces VPWRH1A and older power supply modules.


Application Fields

  • Turbine Control Racks: Primary power source for Mark VIe racks housing VPRO processor boards and I/O terminal boards.

  • I/O Expansion Racks: Powers distributed I/O cabinets.

  • Redundant Power Configurations: Used in pairs for mission-critical applications (gas turbines, steam turbines, compressors).

  • Retrofit Projects: Replaces older VPWR series modules when upgrading to Mark VIe.

  • Offshore Platforms: Salt-spray environments requiring conformal coating.

  • Arctic/Desert Installations: Extreme temperature environments.


Comparison with VPWRH1A and Competitors

Feature GE IS2020LVPSG1A GE IS200VPWRH1A Competitor A Competitor B
Output Power 200 W 150 W 120 W 100 W
+5 V Capacity 25 A 20 A 15 A 12 A
+3.3 V Capacity 20 A 15 A 10 A 8 A
Efficiency >88% >85% >85% >85%
Temp Range –25 to +70 °C 0 to +60 °C 0 to +55 °C –10 to +55 °C
Coating Standard Optional Optional Optional
Fault Logging 500 events No No No
Hot-Swappable Yes Yes No Yes

The GE IS2020LVPSG1A offers superior output capacity, efficiency, environmental protection, and diagnostics—making it the ideal power supply solution for modern Mark VIe systems.


Selection Guidelines

  • When to choose: Primary or redundant power supply for any Mark VIe VME rack requiring higher capacity—especially for racks with multiple processor or I/O boards.

  • Load Calculation: Sum all board loads—ensure total does not exceed 200 W (250 W peak). +5 V rail capacity is 25 A max; +3.3 V rail is 20 A max.

  • Redundancy Planning: For critical turbines, order two GE IS2020LVPSG1A units with a diode-OR backplane or external redundancy module.

  • Input Wiring: Use appropriately sized conductors (minimum 12 AWG) for DC input. Install a fast-acting fuse (25 A) or circuit breaker per NEC/CEC requirements.

  • Cooling: Ensure cabinet airflow ≥150 LFM; derate maximum output power by 10% for every 5 °C above 60 °C ambient.

  • Compatibility: Fits all Mark VIe VME64x racks. Requires ControlST v6.5 or higher for full diagnostic features.


Operational Precautions

  1. Input Polarity: Double-check DC input polarity before power-up—reverse polarity protection is present but sustained reversal may damage input capacitors.

  2. Load Calculation: Verify total rack load does not exceed 200 W. Overloading the +5 V rail (25 A max) is a common installation error—measure current draw during commissioning.

  3. 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 IS2020LVPSG1A.

  4. Status Monitoring: Regularly check front-panel LEDs—if any rail LED is amber/red, investigate the downstream load for shorts or excessive current draw.

  5. Redundancy Testing: For redundant configurations, perform manual failover tests during outages—verify that the standby unit takes over seamlessly without voltage dips.

  6. Fault Log: Access 500-event log via Toolbox ST for post-event analysis—review voltage/current trends to identify issues.

  7. Coating Care: Use GE-approved cleaner; inspect annually under UV—rework voids with approved coating per GE FSB.

  8. Hot-Swap: Remove/insert slowly under power—processor auto-recognizes new module.

  9. Spare Stock: Maintain 1 spare per 3–4 racks; “LVPSG1A” backward-compatible with VPWRH1A sockets.

  10. Firmware Updates: Ensure the GE IS2020LVPSG1A is in “standby” mode during updates.

  11. ESD: Handle by edges only with grounded wrist strap—coating does not protect connectors.

  12. Storage: Anti-static bag with desiccant at –40 to +85 °C; rotate every 3 years for coating inspection.

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