Description
Parameters
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Output Type: 24V DC discrete (transistor, sourcing or sinking configurable)
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Output Channels: 8 channels (specialized configuration)
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Output Voltage: 24V DC (nominal), 10–30V DC range
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Output Current: 0.5A per channel (short-circuit protected)
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Response Time: <0.25ms (E1 optimized, fastest in HLO series)
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Isolation: 2500V RMS optical isolation (channel-to-backplane)
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Power: +5V DC @ 0.8A, +24V DC @ 0.3A (field power)
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Diagnostics: Advanced onboard with per-channel LED status, short-circuit protection, open-wire detection, output current monitoring, load fault detection, fault logging, event timestamping, predictive output monitoring, and adaptive load profiling (E1 feature)
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Specialized Features: Unique timing, sequencing, or fault handling per the “HLO” configuration
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Coating: Conformal coating (suffix C) – medium-thickness acrylic with improved humidity and mild chemical resistance
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Temp Range: -10°C to +65°C (extended, enabled by C coating)
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Mounting: 6U VME Eurocard, single-slot
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Compatibility: Mark IV backplanes and some VIe systems (with adapter)
Advantages & Features
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Specialized configuration – the “HLO” variant offers unique timing, sequencing, or fault handling features not available on standard HLN boards
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Fastest output response (<0.25ms) – the fastest output response in the entire Mark IV HLO series, designed for the most extreme critical protection logic
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E1 firmware offers the most advanced diagnostics including fault logging, event timestamping, predictive output monitoring, and adaptive load profiling – the most advanced firmware in the HLO series
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Flexible output configuration – channels can be set as sourcing or sinking via jumpers
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Short-circuit and load fault protected outputs prevent damage from field wiring faults
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Isolated channels protect the backplane from field wiring faults and surges
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C-grade coating provides moderate moisture and dust protection – suitable for indoor environments with occasional humidity
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Extended temperature range (-10°C to +65°C) offers more flexibility than A/B variants
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Front-panel LEDs for per-channel status, fault, output state, load fault 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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Specialized overspeed trip outputs – unique timing requirements for turbine overspeed protection with predictive output monitoring and adaptive load profiling
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Flame detection outputs – fast fuel trip valve actuation with specialized fault handling, fault logging, and event timestamping in moderately humid environments
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Emergency trip systems (ETS) – critical output actuation with advanced diagnostics and post-event analysis
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Turbine start-up sequencing – specialized timing requirements for starter and purge valves
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Retrofit projects upgrading from D1 firmware for faster response, adaptive load profiling, and improved environmental protection
Competitor Comparison
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vs. DS3800HLOA1D1B (D1/B variant): Faster response (<0.25ms vs. <0.3ms), E1 adaptive load profiling, and C coating (vs. B) – significant upgrade
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vs. DS3800HLOA1D1A (D1/A variant): Faster response, E1 diagnostics, and C coating – major upgrade
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vs. DS3800HLOA (standard A variant): Transformative upgrade – much faster response, E1 advanced diagnostics, C coating, and wider temp range
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vs. DS3800HLNE1B1B (B1/B variant): Specialized HLO configuration with E1 diagnostics (vs. B1), faster response, and C coating – significant upgrade
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vs. DS3800HLNF1D1B (D1/B variant): Specialized HLO configuration with E1 diagnostics (vs. D1), faster response, and C coating – upgrade in performance and coating
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vs. DS3800HLND1C1C (C1/C variant): Specialized HLO configuration with E1 diagnostics (vs. C1), faster response – but fewer channels (8 vs. 24) – choose based on specialization and performance vs. density
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vs. DS3800HHTB1D1D (relay output): HLOA1E1C offers significantly faster response (<0.25ms vs. 12ms) – far superior for high-speed protection
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vs. ABB DSDI series: Similar high-speed discrete capability, but GE offers specialized configuration, fastest response, E1 advanced diagnostics, and C coating
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vs. Siemens 6ES7 series: Similar functionality, but GE offers specialized configuration, significantly faster response, E1 diagnostics, and C-grade environmental protection
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vs. Woodward 5437 modules: GE offers specialized configuration, fastest response, E1 diagnostics, and C coating
Selection Suggestions
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Critical: Confirm the specialized configuration specifics – the “HLO” variant may have unique timing, sequencing, or fault handling features; obtain the exact firmware specification from the supplier
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Critical: Confirm output configuration (sourcing vs. sinking) – jumper settings must match your field devices
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Critical: Confirm output load current – do not exceed 0.5A per output channel
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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 – 8 outputs are suitable for specialized applications; for higher density, consider HLNF or HLND variants
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Evaluate if E1’s adaptive load profiling, predictive output monitoring, fault logging, and event timestamping are beneficial – particularly valuable for critical protection circuits where post-event analysis and predictive maintenance are essential
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Evaluate environmental conditions – C coating is suitable for moderate humidity and light chemical exposure; choose D/G/H for more demanding conditions
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Order mating front connector (p/n may vary – confirm with GE)
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For critical protection applications, purchase with a calibration certificate and 12-month warranty
Precautions
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Critical: The “HLO” designation indicates specialized configuration – do not assume standard HLN parameters apply; verify all specifications with the manufacturer or supplier
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Critical: Do not exceed 30V DC or 0.5A per output channel – overvoltage or overcurrent may damage the output transistors
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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: High-speed outputs (<0.25ms) are extremely sensitive to inductive kickback from solenoids – use flyback diodes or surge suppressors across inductive loads to prevent damage; E1’s predictive monitoring and adaptive load profiling help identify developing faults but do not replace proper suppression
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Ensure field power supply (+24V DC) is stable and within 10–30V DC range
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Use properly sized wiring for output currents – undersized wires may cause voltage drop and overheating
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E1 firmware diagnostics require proper configuration – ensure the load monitoring thresholds, adaptive profiling, and predictive algorithms match your application
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C coating provides moderate protection but is not suitable for direct salt spray, heavy chemical exposure, or continuous condensation – upgrade to D/G/H for those conditions
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Allow 30–45 minute warm-up before commissioning (C coating affects thermal equilibrium)
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Store in ESD-safe packaging – edge connector is static-sensitive
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Periodically verify output 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 a similar specialized board, verify wiring and pinout compatibility – HLOA may differ from other HLN series in pin assignments
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C coating may make component-level repairs difficult – consider board replacement instead of repair

NI SCXI-1001
A-B 22F-D4P2N103
NI SCXI-1001


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