ALLEN BRADLEY   1785 CPU
ALLEN BRADLEY   1785 CPU

ALLEN BRADLEY 1785 CPU

ALLEN BRADLEY 1785 CPU Specification

  • Working Temperature
  • 0°C to 60°C
  • Features
  • Modular; High-speed control; Robust performance
  • Operating Temperature
  • 0°C to 60°C
  • Output Current
  • 0.5A
  • Noise Level
  • Low
  • Output Type
  • Digital Signal
  • Connector Type
  • Edge Connector
  • Cooling Method
  • Natural Convection
  • Current Range
  • 500mA to 2A
  • Phase
  • Single Phase
  • Application
  • Industrial Automation
  • Rated Power
  • 10W
  • Power Factor
  • 0.95
  • Power Supply
  • External Power Supply Required
  • Rated Current
  • 0.5A
  • Product Type
  • Programmable Logic Controller (PLC) CPU module
  • Output Power
  • 10W
  • Input Voltage
  • 24V DC
  • Voltage Protection
  • Surge Protection
  • Efficiency
  • High
  • Material
  • Metal
  • Line Regulation
  • ±1%
  • Storage Temperature
  • -40°C to 85°C
  • Weight
  • 1.5kg
 
 

ALLEN BRADLEY 1785 CPU About

ALLEN BRADLEY   1785 CPU    1785-L20E/F 


High-Speed and Modular Performance

With its high-speed control and modular architecture, the ALLEN BRADLEY 1785 CPU enables rapid customization and scaling in industrial automation systems. Its robust design ensures consistent operation in varying environmental conditions, supporting up to 10W output power for reliable process control.


Efficient and Reliable Operation

Engineered for exceptional efficiency, with a power factor of 0.95 and 1% line regulation, this CPU provides stable digital output signals. Surge protection and natural convection cooling contribute to both reliability and low maintenance needs, supporting extended operation within a temperature range of 0C to 60C.


Versatile Industrial Integration

Designed for single-phase industrial applications across India, the CPU simply integrates into automation setups where external 24V DC power supplies are available. The metal chassis and low noise levels make it ideal for environments requiring both durability and quiet operation.

FAQs of ALLEN BRADLEY 1785 CPU:


Q: How is the ALLEN BRADLEY 1785 CPU installed in an industrial automation system?

A: The CPU is mounted using its edge connector and requires an external 24V DC power supply. Secure installation is ensured by following standard industrial safety protocols and manufacturer guidelines for modular controllers.

Q: What are the key benefits of using this CPU in automation applications?

A: This CPU offers robust performance with high efficiency, surge protection, and low noise operation. Its modular design supports system expansion, while reliable digital signal output enhances precision in process control.

Q: When should I consider upgrading to the 1785 series CPU for my operations?

A: Upgrade to the 1785 series if you require high-speed control, modular flexibility, and improved reliability under varying power conditions, especially for applications demanding efficient digital output and robust voltage protection.

Q: Where can the ALLEN BRADLEY 1785 CPU be applied within the Indian industrial sector?

A: The CPU is suitable for use in factories, manufacturing plants, and process automation facilities across India, wherever precise, high-speed control and reliable digital output are essential.

Q: What is the process to connect the CPU to external devices?

A: Connection involves using the edge connector interface, ensuring the power supply meets 24V DC requirements. Configure the CPU according to system specifications for successful communication with other digital automation components.

Q: How does natural convection cooling benefit the operation of this CPU?

A: Natural convection cooling helps maintain a low noise level and reliable thermal management without the need for additional fans, supporting extended operation and reduced maintenance.

Q: What safety and voltage protection features are included with this CPU?

A: The CPU is equipped with surge protection to defend against electrical disturbances, and its metal construction enhances durability and shielding against environmental factors during industrial operation.

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