General Electric IC693CPU363-DL CPU Module

General Electric IC693CPU363-DL
General Electric IC693CPU363-DL
General Electric IC693CPU363-DL

IC693CPU363-DL Product datasheet 

Model number IC693CPU363-DL  
Manufacture General Electric  
System PLC  

Condition

Brand New  

Country of Origin

USA  

HS Code 

8537101190  

After-Sales Support

12-months  

 

IC693CPU363-DL Overview

The IC693CPU363-DL CPU MODULE General Electric is a high-performance Series 90-30 processor with 240KB memory, 25 MHz speed, and dual serial ports for RS232/485 communication.


Technical Data Summary

• Processor Speed: Operates at 25 MHz using an 80386EX microprocessor for reliable control.

• Memory Capacity: Features 240KB of user memory, utilizing both RAM and Flash storage types.

• Scan Performance: Delivers a typical scan rate of 0.22 ms per 1K of Boolean logic for fast processing.

• Communication Ports: Includes three serial ports supporting RS232 and RS485 communication standards.

• I/O Capacity: Supports up to 2048 discrete inputs and 2048 discrete outputs for extensive applications.

• Power Requirements: Draws 890 mA from the +5 VDC backplane supply during operation.


FAQ

Q1: What is the primary function of the IC693CPU363?

A1: It is the central processing unit for the Series 90-30 PLC, executing user programs and managing communications with HMIs, SCADA, and other devices.

 

Q2: What processor and speed does this CPU use?

A2: It features an 80386EX microprocessor with a clock speed of 25 MHz and a typical scan rate of 0.22 ms per 1K of Boolean logic.

 

Q3: How many communication ports are available?

A3: It has three serial ports: two on the module (RJ45 and 15-pin sub-D) supporting RS232/RS485, and one on the power supply for SNP/SNPX protocols.

 

Q4: What is the memory capacity and type?

A4: It has 240KB of user memory partitioned for registers, plus Flash memory for storing the CPU firmware.

 

Q5: How many I/O baseplates can this CPU support?

A5: It can handle up to eight baseplates total, including one local baseplate and up to seven remote or distributed I/O racks.

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Use These Steps for Calculating Input Power Requirements


• Determine total output load from typical specifications listed for individual modules in the IC693 PLC Installation and Hardware Manual.

• Multiply the total output load, determined in the previous step, by 1.5 to determine input power value.

• Divide the input power by the operating source voltage to determine the input current requirement. Since operating source voltage may vary, use the lowest measured or estimated input voltage to determine the maximum input current.

• Allow for start-up surge current requirements.

• Allow margin (10% to 20%) for variation.

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