Description
Operating Voltage:24V DC
Output Current:5A
Response Time:≤ 2ms
Operating Temperature Range:-20°C to +70°C
Communication Interface:RS485 Modbus Protocol
Input Resolution:16-bit
Power Consumption:Max 1.2W
Protection Class:IP20
Operating Humidity Range:5% to 95% RH non-condensing
The Parker CP*48660207 control module is a testament to Parker’s commitment to innovation and excellence in industrial automation. With its robust design and high-performance capabilities, it ensures efficient and precise control over complex systems. Its compact size and modular architecture allow for easy integration into existing setups without compromising on functionality or performance.
Featuring a wide range of input and output signals, this module caters to diverse application needs, from monitoring critical parameters to controlling actuators and motors. The integrated communication interface supports Modbus TCP/IP, facilitating seamless data exchange with other automation components, enhancing system interoperability.
Engineered with precision and reliability in mind, the CP*48660207 boasts a quick response time, ensuring that your processes are not only efficient but also responsive to changing conditions. Its compact footprint and IP20 protection rating make it suitable for various industrial environments, from clean rooms to harsh outdoor settings.
The energy-efficient design of the module contributes to lower operational costs and reduced environmental impact, aligning with the growing demand for sustainable manufacturing practices. Whether you’re automating production lines, managing machinery, or optimizing process control, the Parker CP*48660207 is the ideal choice for enhancing productivity and achieving operational excellence.
Backed by Parker’s reputation for quality and support, the CP*48660207 comes with comprehensive documentation and access to a global network of technical experts. This ensures that you can leverage the full potential of the module, benefiting from expert guidance throughout the installation and operation phases.
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