GE DS3800NVOC

¥999.00

The DS3800NVOC is a specialized output combiner/amplifier board for the GE Mark IV turbine control system. It takes low-level analog command signals from the main processor or I/O boards (such as the DS3800NVIA1G1C or DS3800NVIA1G1D) and converts them into high-current, high-voltage drive signals for electro-hydraulic (EHC) servo valves and hydraulic actuators. This board is essential for final control element positioning in gas and steam turbine fuel, steam, and inlet guide vane loops.

Category:

Description

Key Parameters

  • Input Signal: 0–10V DC or 4–20mA (jumper-selectable) from VME backplane

  • Output Type: High-current analog ±10V / ±50mA or 4–20mA (configurable per channel)

  • Channels: 4 independent output channels with individual gain/offset trims

  • Drive Capability: Up to ±50mA continuous per channel (sufficient for most EHC servo valves)

  • Diagnostics: Output short-circuit protection, open-loop detection, over-temperature shutdown

  • Temp Range: –30°C to +70°C

  • Power Supply: +5V, ±15V from backplane

  • Physical: 6U VME single-slot board


Advantages

  • High-current drive – directly powers EHC torque motors without external amplifiers.

  • Isolated outputs – each channel is galvanically isolated from the backplane logic, preventing ground loops.

  • Adjustable gain/offset – fine-tune valve response without changing software parameters.

  • Short-circuit protection – automatic current limiting prevents damage to the DS3800NVOC and downstream servo valves.

  • Quick swap – field-replaceable without recalibrating the entire loop (plug-and-play with stored trim pots).


Applications

  • Gas turbine fuel control – drives the main fuel servo valve for gas or liquid fuel.

  • Steam turbine EHC – positions intercept, stop, and control valves.

  • Inlet guide vanes (IGV) – modulates IGV position for compressor surge prevention.

  • Bypass and dump valves – provides rapid response for emergency shutdown sequences.


vs Competitors & Related Variants

Feature DS3800NVOC Generic VME Amplifier Board
Native Mark IV integration Yes (proprietary mapping) No (requires custom scaling)
Output channels 4 (independently trimmed) Typically 2–3
Isolated outputs Yes (channel-to-channel) Usually common ground
Short-circuit protection Built-in foldback External fuse required
Field calibration On-board pots (no software needed) Software-dependent
Temp range –30°C to +70°C 0°C to +60°C

Selection Tips

  • Valve matching – verify your EHC servo valve requires ±50mA or less; the DS3800NVOC cannot drive larger proportional valves directly (use an interposing amplifier).

  • Input mapping – confirm your main processor is configured to send the correct channel assignment to the General Electric DS3800NVOC.

  • Spare strategy – keep one DS3800NVOC per 5 installed units; valve short circuits can damage the output stage.

  • Calibration – record the trim pot settings (gain/offset) for each channel before removal; use a precision multimeter during re-installation.


Critical Precautions

  • Output short – never short output terminals while powered; the DS3800NVOC has foldback protection but repeated shorts can degrade accuracy.

  • Grounding – ensure the servo valve shield is grounded only at the DS3800NVOC end to avoid ground loops.

  • Power sequencing – apply backplane power only after all output cables are securely connected; disconnecting under load can cause voltage spikes.

  • Potentiometer handling – adjust gain/offset trims slowly; over-torquing can damage internal wipers.

  • Heat dissipation – the DS3800NVOC generates significant heat at high output currents; ensure adequate airflow (>200 CFM) across the board.

  • Compatibility – do not mix the DS3800NVOC with older Mark I–III I/O racks; it is specifically designed for Mark IV VME backplanes only.

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