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CP450C Industrial Control Processor

The CP450C is a high-performance industrial control processor, positioned as a mid-tier solution in the automation stack. It acts as a bridge between field devices (such as sensors, actuators, and meters) and upper-level control systems, processing incoming data and sending out control signals with minimal delay. Its architecture supports integration with common backplane systems, allowing it to fit seamlessly into existing setups without requiring extensive overhauls.

Model Number CP450C
Type Industrial Control Processor
Input Voltage 24 V DC ±10%
Operating Temp Range -20 °C to +70 °C
Mounting Style DIN Rail (35mm)
Dimensions 120mm x 80mm x 60mm
Weight 450g
Interface/Bus Dual Ethernet ports, RS-485
Compliance CE, UL, RoHS
Supported Protocols Ethernet/IP, Modbus TCP/IP, Profinet
Typical Power Draw 12W

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Description

The CP450C is a high-performance industrial control processor, positioned as a mid-tier solution in the automation stack. It acts as a bridge between field devices (such as sensors, actuators, and meters) and upper-level control systems, processing incoming data and sending out control signals with minimal delay. Its architecture supports integration with common backplane systems, allowing it to fit seamlessly into existing setups without requiring extensive overhauls.

CP450C

CP450C

In terms of I/O interaction, the CP450C can handle up to 64 digital inputs and 32 analog outputs, with configurable signal ranges to accommodate various sensor types. It supports advanced communication protocols like Ethernet/IP, Modbus TCP/IP, and Profinet, enabling it to communicate with PLCs, SCADA systems, and HMIs across the network. A key feature is its built-in redundancy support for critical applications—if the primary processor encounters an issue, a backup module automatically takes over, ensuring zero downtime. Additionally, it offers comprehensive diagnostic tools that provide real-time insights into signal quality, network health, and processor performance, making troubleshooting faster and more efficient.

CP450C

CP450C

Technical specifications:
Model Number CP450C
Type Industrial Control Processor
Input Voltage 24 V DC ±10%
Operating Temp Range -20 °C to +70 °C
Mounting Style DIN Rail (35mm)
Dimensions 120mm x 80mm x 60mm
Weight 450g
Interface/Bus Dual Ethernet ports, RS-485
Compliance CE, UL, RoHS
Supported Protocols Ethernet/IP, Modbus TCP/IP, Profinet
Typical Power Draw 12W

 

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CP450C

CP450C

 

Main features and advantages:

Engineered for durability and consistent performance, theCP450C delivers tangible benefits in real-world operations. Its high-speed processing capability—with a 1.2GHz dual-core processor—ensures that even large volumes of I/O data are processed in milliseconds, eliminating latency that could disrupt production timelines. This translates to more accurate control of processes, reducing waste and improving product quality.
The CP450C also reduces engineering overhead through its plug-and-play compatibility with most industry-standard field devices. Its intuitive configuration software allows engineers to set up signal routing, alarm thresholds, and communication parameters in hours rather than days. For maintenance teams, the processor’s self-monitoring features—including voltage fluctuation alerts and temperature tracking—mean potential issues are flagged before they escalate, minimizing unplanned downtime. Over the long term, this reliability lowers total cost of ownership by reducing repair costs and extending the lifespan of connected equipment.
Application areas:
The CP450C excels in a range of industrial environments. In automotive manufacturing plants, it’s used to synchronize robotic assembly lines, processing real-time data from position sensors and torque monitors to ensure precise part fitting and reduce assembly errors. In oil and gas refineries, it manages the flow of crude oil through distillation units, processing pressure and temperature signals to maintain optimal refining conditions and prevent equipment damage.
Water treatment facilities rely on the CP450C to control chemical injection systems, where it adjusts dosing rates based on pH and turbidity readings to meet water quality standards. In all these applications, theCP450C’s ability to operate in harsh conditions—resisting vibration, dust, and extreme temperatures—ensures uninterrupted performance, even in the most demanding settings.
Related products:
  • CP450A – Entry-level version with reduced I/O capacity, ideal for small-scale applications.
  • CP450X – Extended temperature range model (-40°C to +85°C) for extreme environment use.
  • CP450D – Dual-processor variant for redundant systems requiring 99.999% uptime.
  • CP350C – Older generation model with similar protocols but lower processing speed.
  • CP550C – Higher I/O capacity (128 digital inputs) for large industrial complexes.
  • CP450C-MOD – Add-on module for enhanced cybersecurity features, including encrypted data transmission.
  • CP450C-ETH – Version with additional Ethernet ports for expanded network connectivity.

 

Installation and maintenance:

Before installing the CP450C, verify that the backplane system is compatible with its communication protocols—check the bus voltage (24V DC) and ensure there’s enough clearance around the mounting location for heat dissipation (minimum 50mm on all sides). It’s also critical to confirm that the firmware of connected devices (sensors, PLCs) is up to date to avoid compatibility issues. During installation, use shielded cables for I/O connections to minimize electromagnetic interference, which can corrupt signal data. ​
For ongoing maintenance, conduct weekly checks of the status LEDs: a steady green light indicates normal operation, while a flashing red light signals a critical error (refer to the user manual for error codes). Inspect connector pins monthly for corrosion or bent contacts, especially in humid environments. Conduct a comprehensive functional test once a year, including simulating input signals and verifying redundant switching (such as configuration), to ensure that the processor can respond as expected in actual fault situations.

 

 

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