Description
1. Product Description
The UFC760BE143 3BHE004573R0143 is a high-performance industrial automation component designed to deliver reliable and efficient control in complex industrial systems. As a key part of ABB’s robust portfolio, the UFC760BE143 3BHE004573R0143 is engineered to meet the demands of modern manufacturing, energy, and process control environments. This versatile module serves as a critical interface between various system components, enabling seamless data transmission and precise control to enhance operational stability.
Built for durability and adaptability, the UFC760BE143 3BHE004573R0143 ensures optimal performance even in harsh industrial conditions. Its advanced design prioritizes ease of integration, making it a preferred choice for both new installations and retrofitting existing systems. By combining reliable hardware with intelligent software compatibility, this module empowers industries to achieve higher levels of automation efficiency and productivity.
2. Product Specifications
The following table outlines the key technical parameters of the UFC760BE143 3BHE004573R0143:
Parameter | Details |
---|---|
Voltage Input | 24V DC (±10% tolerance) |
Power Consumption | ≤15W |
Communication Interfaces | Ethernet (10/100 Mbps), Profibus DP, CAN bus |
Operating Temperature | -20°C to +60°C (with humidity up to 95%, non-condensing) |
Compatibility | Compatible with ABB AC800M, PLC systems, and third-party controllers |
Dimensions | 150mm (W) x 100mm (H) x 50mm (D) |
Certifications | CE, RoHS, IP20 protection rating |
UFC760BE143 3BHE004573R0143
3. Advantages and Features
The UFC760BE143 3BHE004573R0143 stands out for its unique combination of reliability, flexibility, and performance:
- High Reliability: Built with rugged components and error-checking mechanisms, the module minimizes downtime and ensures consistent operation over long periods, even in vibration-prone or high-temperature environments.
- Seamless Integration: Its multi-protocol support allows easy connection to diverse industrial networks, reducing the need for additional adapters and simplifying system configuration.
- Real-Time Control: Advanced processing capabilities enable rapid data exchange and precise control responses, critical for applications requiring low-latency communication.
- Modular Design: The compact form factor and standardized mounting options facilitate quick installation and maintenance, saving time and operational costs.
4. Application Areas and Case Study
Application Areas
The UFC760BE143 3BHE004573R0143 is ideal for:
- Industrial manufacturing plants (e.g., assembly lines, robotics control)
- Energy production facilities (power generation, renewable energy systems)
- Process control industries (chemical, oil and gas, water treatment)
- Material handling and logistics automation
Case Study
A leading chemical plant faced challenges with inconsistent data transmission between its legacy control systems and new IoT-enabled sensors. By integrating the UFC760BE143 3BHE004573R0143, the plant achieved seamless communication across heterogeneous networks, reducing data latency by 30% and improving overall process control accuracy. The module’s reliability ensured zero unplanned outages during a year of operation, contributing to a 15% increase in production efficiency.
5. Competitive Analysis
Compared to similar industrial automation modules, the UFC760BE143 3BHE004573R0143 distinguishes itself through:
- Broader compatibility with both legacy and modern systems, eliminating the need for extensive system overhauls.
- Enhanced thermal and mechanical resilience, making it suitable for more demanding operational environments.
- A balance of high performance and energy efficiency, reducing long-term operational costs without compromising on functionality.
UFC760BE143 3BHE004573R0143
6. Selection Recommendations
When considering the UFC760BE143 3BHE004573R0143 for your application:
- Compatibility Check: Ensure the module supports your existing communication protocols (e.g., Ethernet, Profibus) and integrates with your control system architecture.
- Environmental Requirements: Verify that the operating temperature, humidity, and protection rating match your installation environment, especially for harsh industrial settings.
- Scalability Needs: Assess if the module’s input/output capabilities and processing speed align with current and future system requirements to avoid upgrades in the short term.
- Budget Consideration: While prioritizing performance, evaluate the module’s long-term value, including energy efficiency and maintenance costs.
7. Usage and Installation Notes
To ensure optimal performance and safety:
- Installation: Follow the manufacturer’s guidelines for proper mounting and wiring, ensuring all connections are secure and free from electromagnetic interference (EMI).
- Electrostatic Protection: Use anti-static equipment during handling to prevent damage to sensitive components.
- Software Configuration: Update firmware regularly to benefit from the latest features and security patches, and ensure compatibility with your control system software.
- Maintenance: Schedule periodic inspections to check for physical wear, loose connections, or overheating, and keep the module clean to maintain airflow and heat dissipation.
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