GE DS3800XPEX

¥999.00

The DS3800XPEX is a high-power, extended-capacity power supply and exciter module board for the GE Mark IV turbine control system. It provides multiple regulated DC power outputs and adjustable excitation signals for field devices such as speed pickups, proximity probes, LVDTs, pressure transmitters, and other transducers. This board offers significantly higher current capacityadditional output channels, and enhanced thermal management compared to standard power boards, making it suitable for demanding applications with multiple sensors or long cable runs. It works alongside boards such as the DS3800NVIA1G1CDS3800NVIA1G1DDS3800NVPA series, and DS3800XCIA series.

Category:

Description

Key Parameters

  • Power Outputs: Multiple regulated DC outputs (+5V, ±15V, +24V, and additional auxiliary outputs)

  • Excitation Outputs: Adjustable excitation for transducers (e.g., 3V, 5V, 10V DC, or 4–20mA loop power)

  • Input Voltage: 120/240V AC or 125/250V DC (depending on system configuration)

  • Output Accuracy: ±0.05% regulation

  • Ripple/Noise: <5 mV peak-to-peak (acceptable for high-power output)

  • Current Capacity: Significantly higher than standard boards (consult board marking; supports multiple high-current sensors)

  • Isolation: 2500V RMS input-to-output

  • Diagnostics: LED status indicators for each output, over-voltage/over-current protection, thermal shutdown, output voltage monitoringthermal monitoring

  • Thermal Management: Enhanced heatsinking and airflow design

  • Temp Range: –30°C to +70°C

  • Physical: 6U VME single-slot board (with enhanced heatsink)

  • Key Features: High current capacity, additional output channels, enhanced thermal management, ultra-low noise, comprehensive protection


Advantages

  • High current capacity – the DS3800XPEX can supply significantly more current than standard boards, supporting multiple sensors, long cable runs, or high-power transducers.

  • Additional output channels – provides more auxiliary outputs than standard boards, reducing the need for external power supplies.

  • Enhanced thermal management – improved heatsinking and thermal design ensure reliable operation under high-load conditions.

  • Superior regulation – ±0.05% output regulation ensures stable excitation even under varying load conditions.

  • Comprehensive protection – over-voltage, over-current, and thermal protection safeguard the General Electric DS3800XPEX and connected field devices.

  • Thermal monitoring – alerts the system to overheating conditions, enabling proactive cooling or load reduction.

  • Diagnostic visibility – LED indicators and monitoring outputs simplify troubleshooting.

  • Drop-in compatible – works with all Mark IV backplanes and processor configurations.


Applications

  • Multiple sensor installations – powers numerous speed pickups, proximity probes, and LVDTs from a single board.

  • Long cable runs – the high current capacity of the DS3800XPEX compensates for voltage drop in long sensor cables.

  • High-power transducers – supplies excitation to transducers requiring higher current than standard boards can provide.

  • Large turbine systems – provides power for sensors across multiple turbine sections (gas turbine, steam turbine, generator).

  • Offshore and industrial installations – robust design suitable for demanding environments.

  • Retrofits – the DS3800XPEX replaces multiple standard power boards with a single high-capacity unit.


vs Competitors & Previous Variants

Feature DS3800XPEX DS3800XPEN1B1D DS3800XPEM1C1E Generic VME Board
Current capacity Significantly higher Higher Standard Limited
Auxiliary outputs Additional Standard Standard Limited
Thermal monitoring Yes No No Rarely
Thermal management Enhanced heatsink Standard Standard Standard
Output regulation ±0.05% ±0.05% ±0.1% ±0.1–0.5%
Ripple/noise <5 mV <3 mV <5 mV 10–50 mV
Redundancy No No No No
Extended temp range –30°C to +70°C –40°C to +85°C –30°C to +70°C 0°C to +60°C

Selection Tips

  • High power / multiple sensors – choose the DS3800XPEX when you need to power many sensors or high-power transducers from a single board.

  • Long cable runs – the higher current capacity of the General Electric DS3800XPEX allows compensation for voltage drop in long cables; calculate the required current based on cable length and sensor load.

  • Additional outputs – if your system requires more auxiliary voltages than standard boards provide, the DS3800XPEX offers additional outputs.

  • Thermal management – ensure adequate cabinet cooling (>250 CFM) for the DS3800XPEX, especially under high-load conditions.

  • Sensor compatibility – verify that the excitation voltage and current requirements of your sensors match the DS3800XPEX outputs.

  • Power loading – calculate the total current draw of all connected sensors and ensure it does not exceed the DS3800XPEX total power rating.

  • Spare strategy – keep one DS3800XPEX per 5–8 installed units, especially in sensor-rich installations.


Critical Precautions

  • Power loading – do not exceed the DS3800XPEX total power rating. Overloading can cause voltage drop, overheating, or thermal shutdown.

  • Thermal considerations – the DS3800XPEX generates significant heat under high-load conditions. Ensure adequate cabinet cooling and unobstructed airflow over the heatsink.

  • Output voltage selection – verify that output voltages are correctly configured before connecting sensors. Incorrect voltage can damage sensors.

  • Wiring polarity – ensure correct polarity when connecting sensors to the General Electric DS3800XPEX outputs; reversed polarity can damage sensitive transducers.

  • Shielded cabling – use shielded cables for sensor connections to minimize noise pickup. Ground the shield only at the DS3800XPEX end to prevent ground loops.

  • Ground loops – use single-point grounding for all sensors connected to the DS3800XPEX to avoid ground-loop noise.

  • Cable sizing – for long cable runs, ensure that the cable gauge is sufficient to handle the current without excessive voltage drop; consult the DS3800XPEX technical manual for derating guidelines.

  • Thermal monitoring – if thermal monitoring outputs are available, connect them to the Mark IV system for continuous temperature monitoring.

  • Hot-swap – never insert or remove the DS3800XPEX while the rack is powered; this can cause voltage spikes and damage connected sensors.

  • ESD handling – always use a grounded wrist strap when handling the DS3800XPEX; power components are ESD-sensitive.

  • Storage – store spare DS3800XPEX boards in anti-static bags in a dry, temperature-controlled environment.

AB 1756-BA2
A-B 1756-BA2
A-B 1756-TBNH
A-B 1756-BA1

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