Description
Parameters
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Analog Inputs: 4 channels, 4–20mA (default) or 0–10V DC (jumper-configurable)
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Analog Outputs: 8 channels, 4–20mA (default) or 0–10V DC (jumper-configurable)
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Resolution: 12-bit ADC (inputs) / 12-bit DAC (outputs)
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Accuracy: ±0.06% of full scale (H1 best-in-series)
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Input Impedance: 250Ω (current) / >1MΩ (voltage)
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Output Drive: 4–20mA into 750Ω max / 0–10V into 5kΩ min
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Filtering: 50Hz/60Hz adaptive noise rejection with enhanced drift monitoring, output load diagnostics, and predictive failure analysis (H1 exclusive)
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Isolation: 2500V RMS optical isolation (channel-to-backplane)
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Power: +5V DC @ 1.0A, +15V DC @ 0.35A (higher due to 8 output channels)
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Scan/Update Rate: 50ms (inputs, H1 optimized) / 50ms (outputs)
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Coating: Heavy conformal coating (suffix G) – multi-layer acrylic with enhanced chemical and moisture resistance
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Temp Range: -20°C to +75°C (widest range, enabled by G coating)
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Mounting: 6U VME Eurocard, single-slot
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Diagnostics: Advanced onboard with per-channel LED status, signal noise detection, drift monitoring, output load monitoring, calibration alerts, predictive maintenance indicators, and trend logging (H1 exclusive)
Advantages & Features
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Highest output density in HIO series – 8 analog outputs + 4 analog inputs on a single board, providing more actuation channels than HIOA (4 in/4 out) and HIOB (8 in/4 out)
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Hybrid I/O capability – combines inputs and outputs on one board, saving cabinet space
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H1 firmware offers the best accuracy (±0.06%), fastest update (50ms), adaptive 50/60Hz filtering, enhanced drift monitoring, output load diagnostics, predictive failure analysis, and trend logging – the most advanced firmware in the HIO series
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Higher isolation (2500V) protects against ground loops and transient surges
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Versatile signal support – inputs and outputs independently configurable for 4–20mA or 0–10V, compatible with most industrial actuators and transmitters
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G-grade coating provides excellent resistance to humidity, salt spray, and mild chemical exposure – suitable for coastal, offshore, and industrial environments
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Widest temperature range (-20°C to +75°C) among HIO variants
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Front-panel LEDs for per-channel status including output load faults, drift alerts, and predictive maintenance warnings
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Compatible with Mark IV backplanes and some VIe systems (with adapter)
Application Cases
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Multi-actuator control systems – controlling multiple turbine valves (IGV, fuel, steam, bypass) in offshore or coastal environments with predictive maintenance requirements
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Fuel gas pressure and flow control – multiple control valve positioners with limited feedback sensors in salt spray exposure
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Steam pressure, flow, and temperature control – multiple valve positioners for throttle, extraction, and reheat lines in challenging industrial environments
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Lube oil temperature and cooling control – multiple cooling water or bypass valve actuators with output load monitoring and trend logging
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Retrofit projects upgrading from G1 firmware or lower-grade coatings for the highest performance and environmental protection
Competitor Comparison
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vs. DS3800HIOD1G1G (G1/G variant): Better accuracy (±0.06% vs. ±0.065%), faster scan (50ms vs. 55ms), and H1 predictive failure analysis and trend logging – H1 is the premium firmware upgrade
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vs. DS3800HIOD1G1E (G1/E variant): Substantially better accuracy, faster scan, superior G coating, wider temp range, and H1 diagnostics – significant upgrade
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vs. DS3800HIOD (standard D variant): Substantially improved accuracy (±0.06% vs. ±0.1%), faster scan (50ms vs. 100ms), higher isolation (2500V vs. 1500V), H1 diagnostics, G coating, and wider temp range – transformative upgrade
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vs. DS3800HIOA1C1E (A/C1/E variant): More outputs (8 vs. 4), better accuracy, faster update, H1 diagnostics, and superior G coating (vs. E) – major upgrade
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vs. DS3800HIOB1H1G (B/H1/G variant): HIOD1H1G offers more outputs (8 vs. 4) but fewer inputs (4 vs. 8), with same accuracy (±0.06%), same scan (50ms), and same G coating – HIOB is input-heavy, HIOD is output-heavy; choose based on I/O mix
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vs. DS3800HIMA1C1D (input-only C1/D): HIOD1H1G offers outputs in addition to inputs, higher accuracy, faster scan, and superior G coating – significant upgrade
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vs. DS3800HOMB (output-only): HIOD1H1G offers inputs in addition to outputs, but fewer total outputs (8 vs. typically 16 on output-only boards)
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vs. ABB TB711 : ABB offers higher resolution (14-bit), but HIOD1H1G offers hybrid I/O with output-heavy configuration, higher isolation (2500V vs. 1500V), H1 predictive diagnostics, trend logging, and superior G coating
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vs. Siemens 7MH410 : Siemens offers HART protocol support, but GE offers hybrid I/O with higher output density, superior accuracy, H1 diagnostics, and G-grade environmental protection
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vs. Woodward 8440-2015 : Woodward offers more flexible configuration software, but GE HIOD provides a compact hybrid solution with highest accuracy, H1 diagnostics, trend logging, and superior G coating
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vs. Honeywell 51304638 : Honeywell offers similar long-term stability, but GE HIOD1H1G offers hybrid I/O (4 in/8 out vs. input-only on Honeywell), higher output density, H1 diagnostics, and G coating
Selection Suggestions
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Critical: Confirm input and output signal types (4–20mA or 0–10V) before installation – jumpers must match your transmitters and actuators
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Verify your backplane provides both +5V and +15V with sufficient current capacity (+5V @ 1.0A, +15V @ 0.35A)
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Assess channel mix – this board is ideal for applications requiring more actuator outputs (8) than sensor inputs (4)
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Evaluate if H1’s predictive failure analysis and trend logging are beneficial – particularly valuable for critical valve control loops where early fault detection is essential
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Determine accuracy requirement – 0.06% is the highest in the HIO series, suitable for the most demanding control loops
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Evaluate environmental conditions – G coating is suitable for salt spray, frequent humidity, and mild chemical exposure; choose H coating for the most extreme conditions
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Order mating front connector (p/n may vary – confirm with GE)
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For critical applications, purchase with a calibration certificate and 12-month warranty
Precautions
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Critical: Do not exceed 30mA or ±30V on input channels – overvoltage may damage the ADC and isolation circuits
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Critical: Do not short-circuit output channels – outputs are protected but prolonged shorts may cause damage
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Critical: Monitor output load – outputs are rated for specific loads; exceeding the rating may cause overheating or failure
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Critical: Use shielded twisted-pair cables for all analog inputs and outputs to avoid EMI – H1’s adaptive filtering helps but is not a substitute for good wiring practices
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Critical: H1 predictive failure analysis requires a stable reference and proper warm-up – allow 45–60 minutes before relying on advanced diagnostics and trend logging
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Ensure field power supply (+24V DC) for loop-powered transmitters is stable and within specifications (if used)
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H1 firmware offers adaptive 50/60Hz filtering – configure jumpers correctly for your region’s line frequency
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G coating provides excellent protection but is not suitable for direct immersion, heavy chemical spills, or continuous condensation – consult GE for extreme conditions
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Allow 45–60 minute warm-up before calibration (G coating affects thermal equilibrium)
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Store in ESD-safe packaging – edge connector is static-sensitive
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Periodically verify input and output calibration every 2 years against a certified reference
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Do not hot-swap – Mark IV backplanes require power-off for insertion/removal
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If replacing separate input and output boards, verify wiring and pinout compatibility – HIOD may differ from HIOA/HIOB series in pin assignments
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G coating may make component-level repairs difficult – consider board replacement instead of repair

SCHNEIDER 140CPS12400
AB 1756-IB32/B
SCHNEIDER 140CPS12400


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