CKD KCA-TPH-2A: Industrial Automation Control Module, Advanced Performance for Reliable Operation
The CKD KCA-TPH-2A is a high-performance industrial control module designed for seamless integration into automated systems. It offers unparalleled precision and reliability, making it ideal for applications requiring stringent control and monitoring.
Detailed content
Power Rating:110V AC
Operating Temperature Range:-20°C to +60°C
Response Time:Less than 5ms
Communication Protocol:Modbus TCP/IP
Operating Current:0.5A
Relay Contacts:2NO + 2NC
Dimensions (WxHxD):85mm x 85mm x 32mm
Weight:0.25kg
Certifications:CE, UL, ISO 9001
The CKD KCA-TPH-2A boasts a robust design optimized for demanding industrial environments, ensuring durability and longevity. Its advanced PID control algorithm enables precise temperature, flow, or level control in a variety of processes.
Featuring a modular architecture, the device is easily adaptable to different system configurations, enhancing flexibility in system integration. Its wide operating voltage range allows for compatibility across diverse power sources in industrial settings.
Equipped with MODBUS RTU communication protocol, the CKD KCA-TPH-2A facilitates seamless data exchange with other control systems, improving overall system efficiency and monitoring capabilities.
With an extensive input signal range, the module is capable of accurately interpreting and responding to environmental changes, making it ideal for applications requiring sensitive control mechanisms.
Operated within a temperature range of -20°C to +70°C, and withstanding humidity up to 95% without condensation, the CKD KCA-TPH-2A ensures reliable performance even under harsh conditions, making it suitable for outdoor or high-moisture environments.
The device’s IP65-rated aluminum housing not only provides protection against dust and water ingress but also resists corrosion, safeguarding the internal electronics from external hazards. This makes it an excellent choice for long-term, continuous operation in industrial applications.