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ge ic697cpm915 cpu module-0

GE 90-70 Series PLC

Home >  Products >  GE >  GE 90-70 Series PLC

GE IC697CPM915 CPU MODULE

Product Name:  CPU MODULE

Brand Name: General Electric

Model Number:  IC697CPM915

Place of Origin: USA

Warranty: 12 Months

Whatsapp:+86 18020776782

Email:[email protected]

Appurtenance:
  • Overview
  • Commercial Terms
  • Product Parameters
  • Introduction
  • Functions
  • Features
  • Advantage
  • FAQ
  • Recommended Products

Contact Info

Sales

Email

Whatsapp

Jim Pei

[email protected]

+86 18020776782

Commercial Terms

Minimum Order Quantity

1 Piece

Price

Contact for Jim

Packaging Details

Original new Factory Sealed

Delivery Time

3–7 Days

Payment Terms

T/T

Shipping Method

DHL / FedEx / UPS / TNT

Supply Ability

In stock

Product Parameters

Product Name GE IC697CPM915 CPU MODULE
Manufacturer General Electric
Product Type CPU MODULE
Part Number IC697CPM915
Weight 0.8kg
Estimated shipping dimensions 4x21.8x29.3cm
Place of shipment Xiamen, China
Country of origin USA
Current draw 2.8 Amps
Input voltage 5 Volts DC
Compatibility GE Fanuc 90-70 PLCs
Operating temperature 0 to 60 degrees Celsius
Clock speed 32 megahertz
RAM 1 Megabyte
Serial port 1

Introduction

The GE IC697CPM915 CPU Module is a high-performance programmable logic controller (PLC) processor designed for use within the GE Fanuc Series 90-70 automation platform. Acting as the central processing unit of the control system, it executes user programs, manages data processing, coordinates I/O communications, and controls system operations in real time. Featuring a 32 MHz processor and 1 MB of RAM, the module delivers reliable performance for complex industrial automation, manufacturing, and process control applications.

Designed for seamless integration with GE Fanuc 90-70 PLC systems, the IC697CPM915 provides dependable operation in demanding industrial environments with an operating temperature range of 0°C to 60°C. The module includes a serial communication port for programming, diagnostics, and system interfacing. With its robust processing capabilities, compact design, and proven reliability, the IC697CPM915 serves as a critical controller for mission-critical automation systems requiring stable and efficient operation.

Functions

  • Executes PLC control logic and user application programs.
  • Processes real-time data from connected I/O modules.
  • Manages communication between PLC components and field devices.
  • Coordinates system-wide automation and control operations.
  • Stores and executes user-defined control programs.
  • Supports monitoring and diagnostics of system performance.
  • Provides serial communication for programming and maintenance.
  • Handles data processing for manufacturing and process automation applications.
  • Controls sequencing, timing, and machine operations.
  • Enables reliable operation of distributed industrial control systems.

Features

  • High-performance CPU module for GE Fanuc Series 90-70 PLC platforms
  • 32 MHz processor for efficient program execution
  • 1 MB RAM for application and data storage
  • Compatible with GE Fanuc 90-70 PLC systems
  • Single integrated serial communication port
  • Supports real-time control and data processing
  • Designed for industrial automation and process control applications
  • Operating temperature range of 0°C to 60°C
  • Input voltage requirement of 5 VDC
  • Current draw of 2.8 Amps
  • Reliable execution of complex control strategies
  • Supports communication, diagnostics, and system maintenance functions
  • Compact module design for easy installation
  • Rugged industrial construction for long-term operation
  • Optimized for high-availability automation environments
  • Suitable for manufacturing, power generation, utilities, and process industries
  • Manufactured to meet industrial reliability standards

Advantage

Compared with other PLC CPU modules of the same generation, the IC697CPM915 offers reliable processing performance, seamless Series 90-70 integration, and proven industrial durability.

  • Provides dedicated CPU performance for demanding industrial control applications.
  • Delivers reliable program execution through a 32 MHz processor architecture.
  • Supports large-scale automation systems within the GE Fanuc 90-70 platform.
  • Offers 1 MB RAM capacity for control programs and operational data.
  • Simplifies programming, troubleshooting, and maintenance through the integrated serial port.
  • Ensures stable operation in industrial environments with temperatures up to 60°C.
  • Supports fast communication with connected I/O and system modules.
  • Reduces system downtime through dependable and proven hardware design.
  • Integrates easily with existing GE Fanuc 90-70 installations.
  • Suitable for continuous-operation applications requiring high system availability.

FAQ

Q: What PLC platform is the IC697CPM915 compatible with?
A: The IC697CPM915 is specifically designed for compatibility with GE Fanuc Series 90-70 PLC systems.

Q: What is the processor speed of the IC697CPM915?
A: The IC697CPM915 features a 32 MHz processor for reliable control and data-processing performance.

Q: How much memory does the IC697CPM915 provide?
A: The IC697CPM915 includes 1 MB of RAM for program execution and data storage.

Q: Does the IC697CPM915 include communication capabilities?
A: Yes, the IC697CPM915 is equipped with a serial communication port for programming, diagnostics, and system interfacing.

Q: What is the operating temperature range of the IC697CPM915?
A: The IC697CPM915 operates within a temperature range of 0°C to 60°C, making it suitable for industrial environments.

Q: What power requirements does the IC697CPM915 have?
A: The IC697CPM915 operates on 5 VDC and has a current draw of approximately 2.8 Amps.

Q: Why is the IC697CPM915 a popular choice for industrial automation systems?
A: The IC697CPM915 combines reliable processing performance, Series 90-70 compatibility, robust industrial construction, and dependable long-term operation, making it a trusted solution for critical automation applications.

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