VIPA 240-1CA00 Communication Processor: Efficient Data Exchange Solution
The VIPA 240-1CA00 Communication processor facilitates seamless communication in industrial automation systems, ensuring efficient data transfer across diverse networks.
The VIPA 240-1CA00 Communication processor facilitates seamless communication in industrial automation systems, ensuring efficient data transfer across diverse networks.
Processor Type:High-performance microcontroller
Communication Interface:RS232 SubD 9 pol. potential separated
Data Transfer Protocol:ASCII, fragmented STX/ETX
Max Data Rate:3964R bps
Memory Capacity:RK512
Modulation Type:Modbus master/slave short/long
Operating Voltage Range:DC 24V
Power Consumption:≤1.5W
The VIPA 240-1CA00 Communication Processor is engineered to facilitate efficient data exchange in complex industrial settings, enabling seamless integration across diverse automation systems.
Featuring a high-performance microcontroller, this processor ensures robust and reliable communication, even under demanding conditions, making it suitable for both new installations and system upgrades.
With its RS232 interface and support for ASCII, fragmented STX/ETX protocols, the 240-1CA00 can handle a wide range of communication tasks, from simple data transfer to more complex control signals.
Equipped with a memory capacity of RK512, the processor offers ample space for storing critical data and control parameters, ensuring smooth operation and minimizing the risk of data loss.
The inclusion of Modbus master/slave short/long capabilities makes it an ideal choice for integrating with a variety of equipment and systems, enhancing the overall efficiency and flexibility of industrial networks.
Operating on a DC 24V power supply, the 240-1CA00 Communication Processor is designed with energy efficiency in mind, consuming ≤1.5W to minimize operational costs and environmental impact.
The VIPA 240-1CA00 Communication processor facilitates seamless communication in industrial automation systems, ensuring efficient data transfer across diverse networks.