GE DS3800XAIH

¥999.00

The DS3800XAIH is a high-speed, high-density variant of the GE Mark IV analog I/O extender board. It provides 32 analog inputs and 16 analog outputs with per-channel configurability, designed for applications requiring faster data acquisition than standard boards. The DS3800XAIH features an increased sampling rate of 500 Hz per channel, making it ideal for capturing fast-changing process variables such as pressure transients, vibration signals, and rapid temperature changes. It works alongside boards such as the DS3800NVIA1G1C, DS3800NVIA1G1D, and DS3800NVOC to provide comprehensive analog signal handling.

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Description

Key Parameters

  • Analog Input Channels: 32 differential or 64 single-ended (software-configurable)

  • Analog Input Types: 0–10V, ±10V, 4–20mA (per-channel jumper-selectable)

  • Analog Output Channels: 16 independent (0–10V, ±10V, or 4–20mA, per-channel configurable)

  • Resolution: 14-bit ADC (inputs), 12-bit DAC (outputs)

  • Accuracy: ±0.1% of full scale (inputs), ±0.2% of full scale (outputs)

  • Sampling Rate: 500 Hz per channel (aggregate – 5x faster than standard variants)

  • Isolation: 1500V RMS channel-to-backplane

  • Diagnostics: Per-channel LED status, over/under-range detection, open-circuit detection, output short-circuit detection

  • Temp Range: –30°C to +70°C

  • Power Supply: +5V, ±15V from VME backplane (higher current draw due to high-speed operation)

  • Physical: 6U VME single-slot board

  • Key Variant Features: 32 AI / 16 AO, per-channel configurability, 500 Hz sampling rate, high-speed ADC, 1500V isolation


Advantages

  • High-speed acquisition – the DS3800XAIH samples at 500 Hz per channel, capturing fast transients that standard boards (100 Hz) would miss. Ideal for vibration monitoring, surge detection, and pressure pulsation analysis.

  • Maximum density + flexibility – combines 32 inputs and 16 outputs with per-channel configurability for both, offering versatility in a single slot.

  • Per-channel configurability – each input can be individually set for voltage or current, accommodating mixed sensor types.

  • High-speed outputs – output update rate is also increased, allowing rapid actuator response for fast control loops.

  • Per-channel diagnostics – individual LEDs and fault detection (open-circuit, short-circuit, over-range) for rapid troubleshooting.

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


Applications

  • Vibration monitoring – captures high-frequency vibration signals from accelerometers for bearing and shaft monitoring.

  • Pressure transient analysis – detects rapid pressure changes in fuel gas, steam, or hydraulic systems during startup or load changes.

  • Surge detection – the General Electric DS3800XAIH provides fast sampling for compressor surge prevention systems.

  • High-speed control loops – drives actuators with fast update rates for precise control in dynamic processes.

  • Large combined-cycle plants – provides fast data acquisition for multiple turbines and balance-of-plant equipment.

  • Condition monitoring systems – collects high-speed data for predictive maintenance and performance analysis.


vs Competitors & Previous Variants

Feature DS3800XAIH DS3800XAIG1A1A DS3800XAID DS3800XAIF Generic VME Board
Analog inputs 32 32 32 None 8–16
Analog outputs 16 16 16 16 2–4
Configurability Per-channel (I/O) Per-channel (I/O) Per-channel (I only) Per-channel (O only) Fixed
Input resolution 14-bit 16-bit + DSP 14-bit N/A 12–14-bit
Sampling rate 500 Hz 200 Hz 100 Hz N/A 50–100 Hz
Accuracy ±0.1% ±0.03% ±0.1% ±0.2% ±0.2–0.5%
Isolation 1500V 2500V 1500V 1500V 500–1000V
Self-calibration No Yes No No No
Temp range –30°C to +70°C –40°C to +85°C –30°C to +70°C –30°C to +70°C 0°C to +60°C

Selection Tips

  • High-speed requirements – choose the DS3800XAIH when you need fast data acquisition (vibration, surge detection, transients). The 500 Hz sampling rate is 5x faster than standard boards.

  • Resolution vs. speed trade-off – the DS3800XAIH offers 14-bit resolution. If you need higher precision (16-bit) and can accept slower speeds, consider the DS3800XAIG1A1A instead.

  • Mixed signal types – per-channel configurability accommodates diverse voltage and current sensors and actuators.

  • Power budget verification – high-speed operation increases power draw. Verify your backplane power supply capacity before installation.

  • Firmware compatibility – confirm your Mark IV main processor firmware supports the higher data throughput of the General Electric DS3800XAIH; older processors may be bandwidth-limited.

  • Spare strategy – keep one DS3800XAIH per 8 installed units, especially in applications where high-speed monitoring is critical.

  • Calibration – perform two-point calibration (zero and span) on critical channels after installation using a precision calibrator.


Critical Precautions

  • Power supply loading – high-speed operation increases current draw. Do not exceed backplane power ratings, especially when installing multiple DS3800XAIH boards.

  • Jumper configuration – each input and output channel has its own jumper. Document all positions before removal; incorrect settings produce errors.

  • Over-voltage on inputs – never apply voltage above ±30V to any analog input; this can damage the high-speed ADC front-end.

  • Output short circuit – while short-circuit detection is present, repeated shorts can degrade output stages. Clear faults promptly.

  • Output load limits – do not exceed drive capability (10mA voltage, 22mA current). Use interposing amplifiers for higher loads.

  • Bandwidth considerations – the high sampling rate generates more backplane traffic. Ensure your Mark IV processor can handle the data throughput; consult GE application notes.

  • Ground loops – use single-point grounding for field transmitters and actuators to avoid common-mode voltage exceeding ±10V.

  • Wiring separation – keep analog signal wiring away from AC power lines and high-voltage cables to prevent noise coupling; high-speed sampling can amplify noise if wiring is poor.

  • Heat dissipation – high-speed operation generates more heat. Ensure adequate cabinet cooling (>250 CFM) if multiple high-density or high-speed boards are installed.

  • Calibration intervals – schedule periodic calibration verification (every 6–12 months) to maintain ±0.1% accuracy.

  • ESD handling – always use a grounded wrist strap; the high-speed ADC is particularly ESD-sensitive.

  • Humidity – avoid condensation; conformal coating protects against moisture, but high humidity can still affect high-impedance circuits.

  • Hot-swap – never insert or remove the DS3800XAIH while the rack is powered; high current draw increases the risk of arcing and damage.

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