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Haryt kody:CC-TDOR01
Honeywell CC-TDOR01 51308376-175 16-Channel Relay Module
Manufacturer: Honeywell
Product No.: CC-TDOR01
Product Type: Digital Output Module
Product Origin: USA
Payment:T/T, Western Union
Weight: 500g
Shipping port: Xiamen
Warranty: 12 months
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Product Overview
The Honeywell CC-TDOR01 51308376-175 serves as a high-density 16-channel Digital Output Relay Module structured for the Series C Digital Output Field Termination Assembly (IOTA) architecture. This critical control component drives interposing relays, solenoids, motor starters, and indicators across automated networks. It delivers deterministic switching and galvanic line isolation between automated controller logic and high-energy field loads.
Core Technological Advantages
Versatile Dual-State Relay Architecture
The module board integrates 16 isolated digital outputs configurable for both Normally Open (NO) and Normally Closed (NC) dry contact setups, allowing physical integration into diverse fail-safe logic designs without external switching hardware.
Advanced Safety and Load Protection
Onboard hardware protections defend the control node from erratic field events. Active overvoltage protection shields internal lines against induction spikes, while short circuit protection limits current surges to secure uninterrupted network operation.
Comprehensive Visual Diagnostics
The hardware features a matrix of 16 individual diagnostic status LEDs aligned with an active self-diagnostics auto-check subsystem, allowing field technicians to identify channel states and loop health immediately.
Technical Specifications
| Specification Parameter | Value / Operational Limit |
|---|---|
| Manufacturer | Honeywell |
| Model Number | CC-TDOR01 |
| Part Number | 51308376-175 |
| Module Type | Digital Output Relay Module (Series C IOTA) |
| Number of Outputs | 16 Discrete Relay Channels |
| Relay Contact Type | Normally Open (NO) / Normally Closed (NC) |
| Input Power Voltage | 24 V DC ± 10% |
| Active Power Consumption | 4 W maximum |
| Communication Protocol | Modbus RTU over RS-485 Interface |
| Operating Temperature | -10°C to +60°C |
| Relative Humidity Limits | 0% to 95% (Non-condensing) |
| Net Weight | 0.5 kg |
Engineering Installation Guide
Mechanical DIN Rail Mounting
Mount the 0.5 kg assembly horizontally onto a standard 35mm DIN rail profile inside the marshalling cabinet. Ensure rigid latch engagement with the rail track to minimize environmental vibration or physical alignment drift during fast mechanical relay actuation cycles.
Secure Terminal Wiring
Connect field control lines using the robust integrated screw terminals. Route inductive load cables separated from low-voltage communications lines. Terminate connections firmly to prevent contact heating and ensure stable transmission across all 16 discrete outputs.
RS-485 Bus Integration
When running Modbus RTU telemetry over the RS-485 communication link, utilize standard shielded twisted-pair cables. Ground the communication line shield loop at a single node to eliminate data distortions induced by magnetic common-mode noise fields.
Engineering Advantages
Native Series C Architecture Integration
This module provides drop-in mechanical and digital compatibility with Honeywell Series C IOTA systems, dropping installation times and guaranteeing native signal processing speeds without system bus delays.
Extended Operational Temperature Lines
The thermal-hardened components ensure reliable relay contact switching from extreme cold states at -10°C up to high-density cabinet temperatures hitting +60°C without contact timing drift.
Distributed Modbus Connectivity
Incorporating direct Modbus RTU communications across RS-485 data paths permits versatile remote mounting schemes, giving engineering firms the freedom to place control rows close to the active field equipment.
Technical FAQs
Q1: What power fluctuations can the internal 24 V DC circuit safely tolerate?
A1: The module accepts a continuous voltage variance line of ± 10%, keeping its 16 status LEDs and switching logic operational during auxiliary power fluctuations.
Q2: How do technicians identify an inactive channel or failed module state?
A2: The hardware executes automated internal self-diagnostics checks. Any discrepancies or failures can be identified by cross-referencing the 16 onboard status LEDs or reading diagnostic registers over the Modbus interface.
Q3: Does this module manage inductive AC field loads directly?
A3: Yes, through its isolated Normally Open/Closed dry contacts. However, deploying external RC snubbers or suppressing diodes across inductive loads is recommended to protect the internal contacts from arc wear.
Goşmaça spesifikasiýalar
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Skalyar (V/f)
Wektor
AC tok bilen işleýän
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