Honeywell CC-TDIL61 Digital Input Module PWA 51307085-175
Honeywell CC-TDIL61 is a 32 channel redundant digital input module for the Honeywell’s flagship Experion Process Knowledge System (PKS) Series C architecture. This module is designed for high density discrete signal processing and is excellent at real time binary data collecting from field devices such as limit switches, proximity sensors, push buttons and contact closures.
The CC-TDIL61 is based on a rugged Input Output Terminal Assembly (IOTA) platform with Printed Wiring Assembly (PWA 51307085-175) architecture for guaranteed hardware stability during demanding operating cycles. It provides accurate, isolated telemetry with low signal-to-noise distortion, which is essential for high-availability process control applications.
Technical Details
| Attribute | Specification Details |
|---|---|
| Model Number | CC-TDIL61 |
| MPN / Part Number | 51307085-175 (PWA Assembly) |
| PWB Board Number | 51307084-100 |
| Channel Capacity | 32 Independent Digital Input Channels |
| Nominal Operating Voltage | 24 VDC |
| Voltage Operational Range | 18 VDC to 30 VDC |
| Current Consumption | 0.190 A @ 24 VDC |
| Heat Dissipation | 4.220 Watts |
| Redundancy Support | Yes (Supports Redundant IOTA Configurations) |
| Isolation Voltage | 1500 VDC (Channel-to-Backplane Opto-Isolation) |
| Physical Dimensions | Approx. 141 mm × 117 mm × 40 mm |
| Net Weight | 0.610 kg (610 grams) |

Industrial and Marine Applications
- Marine & Offshore Automation: integrated in centralised vessel management systems, cargo monitoring, ballast control networks and main propulsion alarm logging systems.
- Oil, Gas & Petrochemical Refineries. Monitors ESD (emergency shutdown systems) safety valve positions and hazard interlocks.
- Power Generation Facilities: Maintains critical breaker status settings, auxiliary plant interconnects, boiler safety limits.
- Process Manufacturing (Heavy) Live physical telemetry gathering from high speed production lines, conveyors and packaging lines.
Integration Guide:
- Torque Dynamics: Always torque the terminal screws on the corresponding IOTA block to the exact manufacturer specification. Undertorque causes micro-gapping from engine resonance, resulting in false intermittent Open Circuit alarms. Over-torque shears the PWA traces.
- Cold-Swapping Protocol: Although the Series C platform supports hot-swapping, we strongly recommend checking the status of the secondary redundant link before extraction. Look for a solid green status indicator on the standby module to prevent tripping loop-fail interlocks on active machinery.
- Shield Grounding Integrity: Field loops coming from high-inductive loads (e.g., heavy-duty solenoid valves or starters) must have their shields terminated strictly at the IOTA ground rail, never floating. This prevents inductive cross-talk across the 32 channels.
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