Description
Parameters
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Input Type: 24V DC discrete (sourcing/sinking, configurable)
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Input Channels: 24 channels (higher density than HLIA’s 16)
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Input Voltage: 24V DC (nominal), 10–30V DC range
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Input Current: 5mA per channel (typical)
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Response Time: <0.5ms (high-speed logic capability)
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Hardware Latch: Yes – captures short-duration pulses (<1ms)
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Isolation: 2500V RMS optical isolation (channel-to-backplane)
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Power: +5V DC @ 0.9A, +24V DC @ 0.3A (higher due to more channels)
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Filtering: Programmable input debounce filter with hardware latch capability
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Coating: Basic conformal coating (suffix C – single-layer acrylic)
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Temp Range: 0°C to +60°C (or extended if C indicates enhanced coating; verify with supplier)
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Mounting: 6U VME Eurocard, single-slot
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Diagnostics: LED status per channel, open-wire detection, and short-circuit protection
Advantages & Features
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Higher channel density – 24 high-speed inputs on a single board, more than HLIA’s 16 channels
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Ultra-fast response (<0.5ms) – designed for critical protection logic
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Hardware latch capability – captures short-duration pulses that might otherwise be missed by firmware polling
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Flexible input configuration – channels can be set as sourcing or sinking via jumpers
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Isolated channels protect the backplane from field wiring faults and surges
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C-grade coating provides basic moisture and dust protection for indoor installations (verify actual level with supplier)
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Front-panel LEDs for per-channel status, fault, and open-wire detection
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Compatible with Mark IV backplanes and some VIe systems (with adapter)
Application Cases
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Overspeed protection – ultra-fast magnetic pickup sensor inputs for turbine overspeed trip logic with multiple sensors
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Flame detection – high-speed UV/IR flame scanner signals for burner management across multiple zones
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Emergency trip systems (ETS) – critical discrete inputs for emergency shutdown logic with high channel count
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Turbine start-up sequencing – fast-response speed and position sensors
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Retrofit projects replacing multiple lower-density high-speed input boards with a single higher-density solution
Competitor Comparison
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vs. DS3800HLIA (A variant): More input channels (24 vs. 16) – HLIC offers higher density, but coating and response time may be similar
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vs. DS3800HLIA1B1D (A/B1/D variant): HLIC offers more channels but may lack B1 firmware features and D-grade coating
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vs. DS3800HLEA (input-only high-speed): HLIC offers faster response (<0.5ms vs. <1ms) and hardware latch – HLIC is for critical protection applications
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vs. DS3800HLCA (hybrid I/O): HLIC is input-only with faster response (<0.5ms vs. <1ms) and hardware latch – better for critical protection
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vs. DS3800HHRB1D1D (standard discrete I/O): HLIC offers significantly faster response (<0.5ms vs. 3ms) – critical for high-speed protection
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vs. ABB DSDI series: Similar high-speed discrete capability, but GE offers hardware latch and better Mark IV integration
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vs. Siemens 6ES7 series: Similar functionality, but GE offers faster response and higher channel density
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vs. Woodward 5437 modules: GE offers faster response and hardware latch for critical protection
Selection Suggestions
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Critical: Confirm input type (sourcing vs. sinking) – jumper settings must match your field devices
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Critical: Verify response time requirement – HLIC’s <0.5ms is for critical protection
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Verify your backplane provides both +5V and +24V field power with sufficient current capacity (+24V @ 0.3A)
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Assess channel count – 24 channels cover larger monitoring applications with multiple high-speed sensors
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Critical: Verify the actual coating level for the “C” suffix – in some series C indicates enhanced coating, in others it is basic; confirm with supplier documentation
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Evaluate environmental conditions – upgrade to D/G/H if higher protection is needed
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Order mating front connector (p/n may vary – confirm with GE)
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For critical protection applications, consider used/refurbished units with 90-day warranty
Precautions
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Critical: Do not exceed 30V DC on input channels – overvoltage may damage the isolation circuits
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Critical: High-speed inputs are extremely sensitive to noise – use shielded twisted-pair cables, proper grounding, and dedicated field wiring to avoid false triggers
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Critical: Hardware latch capability requires proper configuration – ensure the latch settings match your application requirements
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Ensure field power supply (+24V DC) is stable and within 10–30V DC range
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Programmable debounce filtering must be set correctly – for critical protection, very short debounce delays (or none) may be needed
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Verify the actual coating level – if C indicates basic coating, it does not protect against humidity or corrosive gases
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Allow 30-minute warm-up before commissioning
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Store in ESD-safe packaging – edge connector is static-sensitive
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Periodically verify input operation every 6 months (critical protection circuits require frequent testing)
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Do not hot-swap – Mark IV backplanes require power-off for insertion/removal
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If replacing multiple lower-density boards, verify wiring and pinout compatibility – HLIC may differ from HLIA in pin assignments

A-B 1794-ACN15/C
A-B 1756-OB32/A
A-B 1762-IF4


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