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TC-XXXXX1 Other names:
Analog quantity card TC-XXXXX1
TC-XXXXX1 Input/Output Module
Controller module TC-XXXXX1
TC-XXXXX1 communication module
TC-XXXXX1 redundant network interface control network card with high reliability and stability, designed specifically for industrial automation systems to improve system continuity and data integrity. Intended to achieve redundant backup and failure over of the network by providing multiple network interfaces. When the main network interface fails, the redundant network interface can quickly take over the data transmission task, ensuring network continuity and data integrity.
Detailed information and characteristics of TC-XXXXX1 redundant network interface control network card:
TC-XXXXX1 Redundant Network Interface Control Network Card
Brand and manufacturer:
Brand: HONEYWELL
Product features:
Dual power redundant input: Ensure that in the event of a power failure, the other power supply can immediately take over, avoiding system interruptions.
DC voltage isolation and reverse protection: Provides additional electrical safety and protects the module from the impact of electrical faults.
Working temperature range: Can operate stably in an environment between -10 ℃ and 70 ℃, with a relative humidity not exceeding 90% (non condensing).
Communication protocol support: Supports multiple communication protocols such as Modbus TCP/IP, EtherNet/IP, and PROFINET.
Redundant design: ensures the continuous operation of the system and the integrity of data transmission in the event of network or device failures.
Scope of application: Widely used in key industrial fields such as petroleum, chemical, power, pharmaceuticals, etc.
Redundant backup: TC-XXXXX1 redundant network interface control network card has multiple network interfaces, usually including the main interface and backup interface. When the main interface fails, the backup interface can automatically take over data transmission tasks and achieve seamless switching.
Fault detection and notification: The network card can detect the status of the network interface in real-time, and once a fault is detected, it will immediately notify the system or administrator. This helps to detect and solve problems in a timely manner, avoiding network interruptions that can have an impact on business.
High availability: Through redundant design, controlling network cards through redundant network interfaces can ensure high availability of the network. Even in the event of network equipment or line failures, the system can still maintain normal operation and data transmission.
Flexibility: TC-XXXXX1 redundant network interface control network card supports multiple network protocols and interface standards, and can adapt to different network environments and business needs. At the same time, it also supports multiple configuration methods, making it convenient for users to flexibly configure according to their actual needs.
Other advantages: TC-XXXXX1 supports multiple network communication protocols, such as Ethernet/IP, Modbus TCP, etc., achieving seamless connections.
Specifications and parameters (partial information):
External dimensions: 132mm x 105mm x 52mm
Weight: 0.45 kilograms
IP protection level: IP65 (dustproof and waterproof)
Quick switching and fault detection:
When a working component fails, the backup component can quickly and undisturbed take over all control tasks of the working component in milliseconds or even microseconds.
The module can accurately and timely detect faults, and issue alarms through network communication or local LED display, notifying users of faulty components and conditions.
Working principle
The working principle of TC-XXXXX1 redundant network interface control network card is based on a combination of hardware and software technology. In terms of hardware, the network card achieves redundant backup by providing multiple network interfaces. In terms of software, the network card driver or management software will detect the status of the network interface in real time and perform troubleshooting and switching as needed.-1.jpg)
Specifically, when the main network interface fails, the network card driver or management software will detect this change and trigger a fail over mechanism. At this point, the backup interface will be activated and take over the data transmission task. At the same time, drivers or management software will also send fault notifications to the system or administrators for timely handling and resolution of issues.
Technical indicators
The technical indicators ofTC-XXXXX1 redundant network interface control network card include interface type, transmission rate, delay time, switching time, etc. Among them, switching time is one of the important indicators to measure the performance of network cards. Usually, the shorter the switching time, the better the performance of the network card. Some advanced redundant network interfaces can control network cards to achieve switching times in milliseconds or even microseconds.
Application scenarios
TC-XXXXX1 redundant network interface control network cards are widely used in network environments that require high reliability and stability, such as data centers, cloud computing platforms, industrial control systems, etc. In these scenarios, network failures may lead to serious business interruptions and data loss, so it is necessary to use redundant network interfaces to control network cards to improve network reliability and stability.
Summary
Application areas: oil and gas, manufacturing, water and wastewater treatment, power generation, food and beverage, transportation, and building automation.
Redundant network interface control network card is an important network device that can achieve redundant backup and fault transfer of the network by providing multiple network interfaces. In network environments that require high reliability and stability, using redundant network interfaces to control network cards can ensure network continuity and data integrity, improve system stability and availability.
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Product Positioning and Series Affiliation
**Core Function:** As an input/output module in industrial automation systems, it supports data parsing and transmission, converting field device signals (such as sensors and actuators) into digital signals recognizable by the controller, while simultaneously issuing control commands.
**System Compatibility:** Compatible with GE Speedtronic Mark VIE series, ABB/Honeywell, and other DCS systems, supporting simplex, dual redundancy, and triple redundancy architectures, and adaptable to high-speed network I/O requirements.
**Core Identity:** Honeywell industrial automation control module, belonging to the Quantum series or C300 control system spare parts, compatible with the CompactLogix/ControlLogix platform, and supports 24V DC load circuit management.
**Integrated Systems:** Can be integrated into DCS (Distributed Control System), PLC, and SCADA systems, such as the GE Speedtronic Mark VIE series (note model compatibility, e.g., IS200STCIH2A terminal block integration example).
**Hardware Design:** Employs a multi-layer PCB board, integrating SMD components and connectors, communicating with the controller via a D-type interface. The input is equipped with a filter circuit (4ms response time) to suppress signal noise; the excitation voltage threshold is set to 50% to ensure signal stability.
Redundancy and Fault Handling: Supports redundant power supply design; storage requires an electrostatic sensitive box; module failure can be recovered by resetting the polymer positive temperature coefficient fuse, or by locating the problem through system diagnostics (e.g., loss of excitation voltage, unresponsive contacts).
Environmental Adaptability: Wide operating temperature range (-55℃~+100℃); fully sealed enclosure provides waterproof, dustproof, and impact-resistant characteristics, suitable for harsh industrial environments.
Core Technical Parameters
Electrical Characteristics:
Input Voltage: 10-30V DC universal input (some models support 24V DC±15%).
Signal Range: 4-20mA current signal (default range 3277-16383 corresponding engineering values), supports 0-20mA full-range analog.
Protection Rating: IP65/IP67 (dustproof and waterproof), suitable for wide temperature environments from -40℃ to +85℃. Physical Specifications:
Dimensions: 132mm×105mm×52mm (compact) to 30cm×20cm×20cm (Quantum series).
Weight: 0.45kg to 1.02kg, suitable for DIN rail or rack mounting.
Features and Applications:
Input/Output Capabilities:
Digital Input: Supports 24 channels of dry/active contact signals, with noise suppression and surge protection.
Analog Signal Processing: Can acquire 4-20mA/0-5V signals such as temperature, pressure, and flow rate, converting them into digital signals for control system analysis.
Communication Protocols: Compatible with ModBus RTU, CANopen, and Ethernet; supports UDP/TCP multi-center data transmission.
Application Areas:
Industrial Applications: DCS/PLC systems in industries such as power, petrochemical, metallurgy, and water treatment, such as generator excitation control and dynamic reactive power compensation.
Typical Case: Spare parts for C300 control systems, compatible with Mark VIE terminal blocks, used for high-speed network I/O in simplex/redundant systems.
Operation and Maintenance Points
Troubleshooting:
Power Failure: UPS power supply + backup battery ensures uninterrupted system operation for 20 minutes. Solenoid valve interlocking requires independent power supply.
Signal Abnormalities: PV display “B” indicates disconnection/over-range; switch to manual mode or contact instrumentation personnel.
Installation Requirements: Requires electrostatic sensitive storage; compatible with DIN rail or flat mounting; terminal blocks must be correctly wired to avoid surge interference.
Summary
The Honeywell TC-XXXXX1 is an intelligent input/output module designed specifically for industrial-grade 24V DC load circuits. It integrates high-precision signal processing, wide temperature adaptability, multi-protocol communication, and redundancy protection functions, suitable for scenarios with extremely high system stability requirements such as power, petrochemical, and metallurgy. Its modular design, compatibility, and reliability make it an indispensable core component in industrial automation and power systems.
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