GE DS3815PXCA

¥999.00

The DS3815PXCA is a high-density, multi-function module for the GE Mark IV turbine control system that integrates regulated DC power outputs and high-accuracy vibration input channels in a single slot. This module provides sensor excitation for accelerometers, velocity sensors, and proximity probes, while simultaneously acquiring precise vibration measurements for turbine shaft, bearing, and casing monitoring. It is ideal for applications requiring both power for vibration sensors and dedicated vibration analysis in a compact, space-saving design. It works alongside boards such as the DS3800NVIA1G1CDS3800NVIA1G1DDS3800XPEN series, DS3800XVIA series, and DS3800NVPA series.

Category:

Description

Key Parameters

Power Supply Section:

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

  • Excitation Outputs: Adjustable excitation for transducers, including IEPE constant current (4mA) for accelerometers

  • Output Accuracy: ±0.05% regulation

  • Ripple/Noise: <3 mV peak-to-peak (ultra-low noise for sensitive vibration measurements)

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

Vibration Input Section:

  • Input Channels: 4 or 8 differential vibration inputs (depending on configuration)

  • Input Types: Accelerometer (IEPE/ICP®), velocity (mV/mm/s), proximity probe (eddy-current), or general-purpose voltage (software/jumper-selectable per channel)

  • Signal Conditioning: Integrated IEPE excitation (constant current), charge amplifier (for piezoelectric sensors), integration (velocity to displacement), and programmable filtering

  • Excitation: 24V DC, 4mA constant current (IEPE)

  • Frequency Range: 0.5 Hz to 10 kHz (programmable high-pass and low-pass filtering)

  • Resolution: 18-bit ADC with ±0.05% accuracy (high precision)

  • Measurement Parameters: Acceleration (g), Velocity (mm/s or in/s), Displacement (µm or mils) – software-selectable integration with drift compensation

  • Diagnostics: Per-channel LED status, transducer fault detection (open/bias/overload), over-range detection, signal quality monitoring

Common Section:

  • Isolation: 2500V RMS channel-to-backplane

  • Temp Range: –40°C to +85°C (extended)

  • Power Supply: +5V (logic), +24V/48V (field power) from backplane or external supply

  • Physical: 6U VME single-slot board

  • Key Features: Integrated power supply + vibration inputs, IEPE excitation, 18-bit ADC, programmable filtering, acceleration/velocity/displacement output, extended temp range, high isolation


Advantages

  • Integrated power + vibration measurement – the DS3815PXCA combines sensor excitation and dedicated vibration input channels in a single module, reducing board count and simplifying system architecture.

  • Space-saving – replaces up to three separate boards (power supply, vibration input, and excitation supply) with one module.

  • Ultra-low noise power – <3 mV ripple provides exceptionally clean power for sensitive vibration measurements.

  • Integrated signal conditioning – includes excitation, charge amplification, filtering, and integration circuitry, eliminating the need for external signal conditioners.

  • Multi-parameter measurement – can output acceleration, velocity, or displacement from a single sensor input.

  • IEPE/ICP compatibility – supports modern piezoelectric accelerometers with built-in electronics.

  • Proximity probe support – can also interface with eddy-current probes for shaft relative vibration.

  • Transducer diagnostics – detects open circuits, bias faults, and overload conditions, alerting the system to sensor issues.

  • Programmable filtering – the General Electric DS3815PXCA allows setting high-pass and low-pass filters to reject unwanted noise.

  • High accuracy – 18-bit ADC with ±0.05% accuracy ensures precise vibration measurement for early fault detection.

  • Extended temperature range – operates from –40°C to +85°C for harsh environments.

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

  • High isolation – 2500V RMS isolation protects the backplane from field-side faults.

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


Applications

  • Turbine shaft vibration monitoring – measures relative shaft vibration using eddy-current proximity probes or absolute shaft vibration using accelerometers.

  • Bearing vibration monitoring – the General Electric DS3815PXCA monitors bearing housing vibration for early detection of bearing wear, imbalance, and misalignment.

  • Casing vibration monitoring – measures casing vibration for turbine structural integrity assessment.

  • Compressor and pump vibration monitoring – used for vibration monitoring in gas turbine-driven compressors and pumps.

  • Condition monitoring and predictive maintenance – provides vibration data for trending, FFT analysis, and fault diagnosis.

  • Offshore and harsh environments – extended temperature range makes it suitable for demanding applications.

  • Retrofits – replaces separate power supply and vibration input boards with a single, integrated solution.


vs Competitors & Separate Boards

Feature DS3815PXCA DS3815PAAA (Power + AI) DS3800XPEN + DS3800XVIA Generic VME Combo Board
Power outputs Yes Yes Yes + No Varies
Vibration inputs 4–8 (with IEPE) 0 (general AI) 0 + 4–8 2–4
IEPE excitation Yes No Yes (XVIA) Rarely
Signal conditioning Built-in No Built-in (XVIA) Limited
Parameter output Accel, velocity, displacement General analog Accel, velocity, displacement Fixed
ADC resolution 18-bit 16-bit 16-bit 12–16-bit
Board count 1 1 2 1
Extended temp range –40°C to +85°C –40°C to +85°C –40°C to +70°C 0°C to +60°C

Selection Tips

  • Vibration monitoring + power – choose the DS3815PXCA for integrated vibration measurement with sensor excitation in a single module.

  • Slot-limited installations – the General Electric DS3815PXCA reduces board count compared to separate power supply and vibration input boards.

  • IEPE accelerometer compatibility – the built-in IEPE excitation eliminates the need for external signal conditioners.

  • Measurement type – select the appropriate output parameter (acceleration, velocity, or displacement) for your application.

  • Sensor compatibility – verify that your vibration sensors (accelerometer, velocity, proximity probe) are supported.

  • Filtering requirements – configure the high-pass and low-pass filters to reject noise while preserving the vibration frequency band of interest.

  • Harsh environments – the extended temperature range makes it suitable for offshore, desert, or unheated cabinet installations.

  • Power loading – calculate the total current draw of all connected sensors and ensure it does not exceed the DS3815PXCA total power rating.

  • Spare strategy – keep one DS3815PXCA per 5–8 installed units, especially in critical rotating equipment applications.

  • Calibration – periodically verify vibration measurement accuracy using a portable vibration calibrator or reference sensor.


Critical Precautions

  • IEPE sensor power – for IEPE accelerometers, ensure the DS3815PXCA excitation voltage and current (typically 24V DC, 4mA) are correctly configured. Incorrect settings can damage the sensor.

  • Proximity probe compatibility – eddy-current probes require specific excitation voltage and calibration; verify the General Electric DS3815PXCA is configured for the correct probe type.

  • Frequency range – set the high-pass and low-pass filters appropriately. Too high a high-pass cutoff can miss low-frequency vibration components; too low a low-pass cutoff can let noise through.

  • Integration selection – when selecting velocity or displacement output, ensure the integration algorithm is correctly configured. Double integration can introduce low-frequency drift.

  • Sensor wiring – use shielded twisted-pair cables for vibration sensor connections. Ground the shield only at the DS3815PXCA end to prevent ground loops.

  • Transducer fault detection – if the DS3815PXCA detects a transducer fault, verify sensor and cabling integrity before replacing the board.

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

  • Ground loops – use single-point grounding for all vibration sensors to avoid ground-loop noise that can mask true vibration signals.

  • Thermal considerations – ensure adequate cabinet cooling (>200 CFM); the DS3815PXCA can generate significant heat under full load.

  • Self-test – allow the DS3815PXCA to complete its power-up self-test (~2 seconds) before relying on vibration readings.

  • Calibration intervals – schedule periodic calibration verification (every 6–12 months) to maintain accuracy.

  • Hot-swap – never insert or remove the DS3815PXCA while the rack is powered.

  • ESD handling – always use a grounded wrist strap; sensitive analog and charge amplifier components are ESD-sensitive.

  • Storage – store spare DS3815PXCA boards in anti-static bags in a dry, temperature-controlled environment.

A-B 1786-XT
A-B 1786-BNC
A-B 1786-BNC

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