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The CC‑TFB402 is a robust fieldbus interface module designed to serve as a communication bridge between a control system and fieldbus networks (e.g. FOUNDATION Fieldbus H1). It translates control commands, data, and diagnostics across multiple field links. This module is often used in modular I/O racks or control cabinets, enabling seamless integration of field devices into automation systems.
Its design emphasizes reliability, multi‑link support, diagnostic visibility, and compatibility with harsh industrial environments. The CC‑TFB402 works as part of a distributed I/O / bus network system, facilitating data exchange, configuration, and monitoring of field devices.
| Parameter | Specification (Estimate) |
|---|---|
| Model | CC‑TFB402 |
| Module Type | Fieldbus Interface / I/O Communication Module |
| Supported Protocol | FOUNDATION Fieldbus H1, multi‑link support |
| Number of Fieldbus Links | 4 (independent H1 links) |
| Power Supply Input | 24 VDC |
| Current Consumption | ~ 200 mA |
| Operating Temperature | –40 °C to +70 °C |
| Storage Temperature | –40 °C to +85 °C |
| Humidity Range | 5% to 95% RH, non‑condensing |
| Communication Interface | Backplane I/O bus (IOTA or proprietary rack bus) |
| Diagnostic Features | Link health, communication status, error detection |
| Mounting / Installation | Rack insertion / modular I/O slot |
| Dimensions (mm) | 115 × 70 × 35 |
| Weight (kg) | 0.20 kg |
The CC‑TFB402 functions as a gateway/interface between the control system’s internal bus and fieldbus networks. It manages up to four independent H1 fieldbus links, allowing many field devices (transmitters, actuators, sensors) to connect via standard fieldbus protocol (e.g. FOUNDATION H1).
Internally, the module contains transceivers, line drivers, protection circuits, diagnostics, and a communication controller. It monitors link health, data integrity, and error conditions, and presents diagnostics upstream to the control system or host. The module also supports field device configuration and status polling.
In a typical system, control logic or 4–20 mA loops run via the main bus, and the CC‑TFB402 routes commands, data, and diagnostics to/from distributed field devices over H1 links. It is an essential component in modular automation platforms.
Integration of fieldbus device networks in process plants
Automation in chemical, oil & gas, water treatment, power, and refining
Communication interface in distributed I/O racks
Connecting transmitters, actuators, sensors using FOUNDATION Fieldbus H1
Diagnostic and configuration bridge for field devices
Modular upgrade of control systems to fieldbus architecture
Zone fieldbus gateway in large automation installations
Retrofit existing systems to support fieldbus devices
Linking multiple fieldbus segments for redundancy or topology flexibility
Process control systems with mixed analog/digital I/O
Multi-Link Support: Four independent fieldbus links provide flexibility and segmentation
Reliable Communication: Designed for industrial noise, interference, and harsh environments
Diagnostic Visibility: Provides link health, error reporting, and field device status
Modular Integration: Fits into existing I/O racks with minimal footprint
Scalability: Supports expansion of fieldbus devices without central bus overload
High Availability: Reduces communication bottlenecks and isolates faults
Standard Protocol Compatibility: Supports FOUNDATION Fieldbus H1 widely used in process industries
Compact & Lightweight: Minimal size while offering multi‑link capability
Brand: Honeywell
Series / Family: TFB / Fieldbus Interface Modules
Category: Communication / Interface I/O modules
Role in System: Bridges control bus to fieldbus segments, enabling distributed networked I/O
| Model (bold) | Supported Links / Feature | Distinct Function or Variation | Dimensions (mm) | Weight (kg) |
|---|---|---|---|---|
| CC‑TFB402 | 4 H1 links | Standard fieldbus interface module | 115×70×35 | 0.20 |
| CC‑TFB412 | 4 H1 links + redundancy | Adds redundant link support | 120×75×35 | 0.23 |
| CC‑TFB401 | 2 H1 links | Lower capacity version | 100×65×30 | 0.18 |
| CC‑TFB422 | 8 H1 links | High channel version | 140×80×40 | 0.25 |
| CC‑TFB404 | 4 H1 links + added diagnostics | Enhanced diagnostic module | 120×75×35 | 0.22 |
| Model (bold) | Module Type | Typical Use | Dimensions (mm) | Weight (kg) |
|---|---|---|---|---|
| CC‑PWRR20 | Redundant Power Supply Module | Dual 24 V DC for I/O racks | 140×100×40 | 0.45 |
| CC‑TAOX51 | Analog Output Module | 16-channel analog output | 120×85×40 | 0.30 |
| CC‑PUI03 | Universal I/O Module | Mixed I/O configuration | 120×90×40 | 0.35 |
| CC‑TAID01 | Analog Input Module | 16-channel analog input | 120×85×40 | 0.30 |
| CC‑TD0B01 | Digital Output Module | 16-channel digital output | 120×85×40 | 0.32 |
Q1: How many fieldbus links can CC‑TFB402 support?
A1: It supports up to 4 independent H1 fieldbus links.
Q2: What protocol does it use for field devices?
A2: It uses FOUNDATION Fieldbus H1 protocol.
Q3: What is the supply voltage?
A3: The module is powered by 24 V DC.
Q4: What diagnostics are available?
A4: It provides link health status, error detection, device communication diagnostics, and status reporting.
Q5: What temperature ranges can it operate in?
A5: From –40 °C to +70 °C under normal operation.
Q6: What is its physical size and weight?
A6: Approx. 115 × 70 × 35 mm and weighs about 0.20 kg.
Q7: Is it suitable for modular I/O racks?
A7: Yes, it is designed to be inserted into modular I/O rack systems.
Q8: Can it expand fieldbus device capacity?
A8: Yes — by distributing devices across multiple links, it relieves central bus load.
Q9: Does the module support hot swapping?
A9: Depending on the system, it may support live replacement with minimal disruption.
Q10: Can it work in redundant setups?
A10: Yes, with variation modules (e.g. TFB412) that support redundancy, it can operate in fault-tolerant architectures.
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