Description
Integrating seamlessly into Safety Manager and Fail Safe Control (FSC) architectures, the Honeywell SDI-1624 serves as a high-integrity safe digital input interface designed for safety-critical industrial processes. This solid-state module processes up to 16 isolated safe input channels, converting field signals into dual-channel diagnostic data for the safety controller. Engineered with a robust 3U Eurocard form factor, the SDI-1624 provides continuous self-testing, short-circuit protection, and precise signal filtering to prevent spurious trips in demanding industrial settings.
Features
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16 Safe Input Channels: High-density, isolated digital inputs operating at nominal 24 Vdc.
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Comprehensive Self-Diagnostics: Integrated circuitry continuously monitors channel status, input delays, and internal rail voltages.
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Short-Circuit Proof: Solid-state, current-limiting design protects internal logic from field wiring faults.
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Low Signal Propagation Delay: Input transition delay is typically restricted to 10 ms for rapid emergency response.
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Robust Environmental Compliance: Certified for use in SIL-rated safety instrumented systems under CE, TUV, UL, CSA, and FM standards.
Applications
- Emergency Shutdown (ESD) Systems in petrochemical and refining facilities.
- Burner Management Systems (BMS) for utility and industrial boilers.
- Fire and Gas (F&G) monitoring networks.
- High-Integrity Pressure Protection Systems (HIPPS).
Technical Specifications
| Parameter |
Specification |
| Manufacturer |
Honeywell |
| Model Number |
SDI-1624 |
| Module Type |
Safe Digital Input Module (Solid State) |
| Number of Channels |
16 |
| Physical Dimensions |
4 HP (TE) Width, 3U (HE) Height |
| Logic Power Consumption |
5 Vdc, 8 mA |
| Internal 24 Vdc Power |
24 Vdc, 110 mA |
| External 24 Vdc Power |
24 Vdc, 110 mA (input currents) |
| Maximum Input Voltage |
36 Vdc |
| Nominal Input Current |
7 mA at 24 Vdc |
| Input Threshold - HIGH |
> 15 Vdc |
| Input Threshold - LOW |
< 9 Vdc (Current < 2 mA) |
| Input Signal Delay |
Typically 10 ms |
| Maximum Loop Current |
450 mA |
| Max. Load Capacitance |
32 uF |
| Voltage Drop |
< 1.5 V at 450 mA |
| Ripple Limit (5 Vdc Rail) |
< 0.5 Vp-p (0 to 360 Hz) |
| Certifications / Approvals |
CE, TUV, UL, CSA, FM |
| Shipping Weight |
3.0 kg (6.6 lbs) |
Empirical Engineering Insights
Alternative Models & Compatibility
The SDI-1624 is a standardized safe input card for Honeywell FSC and Safety Manager backplanes. When migrating from older system revisions, confirm that the installed Field Termination Assembly (FTA) and cable routing are fully pin-compatible. This module directly replaces legacy safety digital inputs within the same system family, but safety parameter re-validation is recommended post-replacement.
Application Pitfalls & Engineering Notes
Keep the total field cabling capacitance below 32 uF. Exceeding this limit will distort the pulse-testing diagnostics generated by the safety processor, resulting in false channel faults or card mismatches. Ensure the 24 Vdc power supply feeding the field loops does not exhibit noise levels exceeding 0.5 Vp-p to prevent diagnostics from flagging signal instability.
Commissioning & Wiring Tips
Always route the 24 Vdc external supply and logic signals in separate shielded conduits to minimize electromagnetic interference (EMI). Ensure that the reference ground for the external 24 Vdc supply is bonded to the Safety Manager system common ground at a single, low-impedance point to prevent ground loops that could cause diagnostic errors.
Installation Guidelines
CRITICAL WARNING:
De-energize all field power loops and logic rack supplies before inserting or extracting the SDI-1624. Failure to fully discharge external loops can result in permanent diagnostic logic damage or unexpected safety system trips.
1
Inspect the backplane connector pins on the card rack to ensure they are clean, dry, and free of physical debris.
2
Align the module with the upper and lower card guide rails of the 3U subrack.
3
Slide the module backward steadily until the DIN connector fully mates with the rack backplane. Avoid forcing the module if resistance is encountered.
4
Secure both front panel retaining screws to guarantee mechanical stability and continuous chassis grounding.