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General Electric IC695CPE330 CPU Module
General Electric IC695CPE330 CPU Module
General Electric IC695CPE330 CPU Module
General Electric IC695CPE330 CPU Module
Popular Product

General Electric IC695CPE330 CPU Module


Manufacturer:General Electric

Product Number:IC695CPE330

Payment Methods:T/T, PayPal, Western Union

Condition:New & In Stock

Warranty:1 Year

Lead Time:1-3 Working Days

Certificate:COO

Courier partners:DHL, UPS, TNT, FedEx and EMS.

Business hours:7*24

Contact Sales

Product Description

The GE Fanuc IC695CPE330 is a high-performance CPU module designed for the PACSystems RX3i series, delivering advanced control capabilities for industrial automation. As a key component of GE Fanuc’s PACSystems architecture, the IC695CPE330 features a 32-bit RISC processor, 512 MB of user memory, and dual communication ports (Ethernet/IP and ControlNet) for seamless integration with PLC networks. Supporting ladder logic, structured text, and function block programming, this module enables real-time data processing, machine-to-machine communication, and complex motion control. Its compact design and rugged construction make it suitable for harsh industrial environments, while built-in redundancy support ensures continuous operation in critical applications.

Product Parameters

Parameter Specification
Brand GE Fanuc
Model IC695CPE330
Type CPU Module (RX3i Series)
Processor 32-bit RISC (400 MHz)
Memory 512 MB user memory (non-volatile)
Communication Ports 2 × Ethernet/IP (10/100 Mbps), 1 × ControlNet
I/O Capacity Up to 8,192 I/O points (rack-mounted)
Programming Languages Ladder logic, structured text, function blocks
Power Supply 24 VDC (1.2 A max)
Operating Temperature 0–60°C (32–140°F)
Redundancy Support Hot standby (with IC695CPE330 redundant pair)
Dimensions 100 mm (W) × 160 mm (H) × 120 mm (D)
Weight 0.75 kg (1.65 lbs)

Advantages and Characteristics

  • High-Speed Processing: 400 MHz processor with 0.15 μs/step execution time for rapid control responses.
  • Dual Network Connectivity: Ethernet/IP and ControlNet ports enable flexible integration with IoT platforms and legacy systems.
  • Redundancy Ready: Supports hot standby redundancy, reducing downtime in critical operations (e.g., oil refineries).
  • Large Memory Capacity: 512 MB user memory accommodates complex programs and data logging.
  • Modular Design: Easy integration with RX3i I/O modules (e.g., IC695PSD040F power supply, IC695CRD210 communication module).

Application Fields and Cases

Industries: Manufacturing, energy, water/wastewater, and automotive.

Scenarios: Machine control, process automation, and SCADA systems.

Case Study: A German automotive plant adopted the IC695CPE330 for its assembly line control. The module’s dual Ethernet ports synchronized real-time data from 50+ robots and sensors, reducing cycle time by 15%. Its redundancy feature ensured zero downtime during firmware updates, maintaining 99.99% uptime over 12 months.

Competitor Comparison

Compared to similar CPU modules:

  • Faster Processing: 400 MHz vs. 300 MHz in comparable models.
  • Dual Network Ports: Native Ethernet/IP and ControlNet (vs. single-port alternatives).
  • Larger Memory: 512 MB vs. 256 MB standard in mid-range CPUs.
  • Redundancy Flexibility: Hot standby without external hardware (vs. add-on redundancy kits required by some competitors).

Selection Recommendations

  • Processing Needs: Choose the IC695CPE330 for high-speed applications (e.g., robotics, packaging).
  • Network Requirements: Ideal for systems needing both Ethernet/IP (IoT) and ControlNet (legacy devices).
  • Redundancy: Opt for redundant pairs (two IC695CPE330 modules) for fail-safe operations.
  • Memory Demands: Suitable for projects with complex logic (e.g., 100+ function blocks).

Precautions

  • Cooling: Ensure adequate airflow; avoid temperatures >50°C to prevent thermal throttling.

  • Firmware Updates: Regularly update firmware via Proficy Machine Edition for security and feature enhancements.

  • Grounding: Properly ground the module to prevent ESD damage.

  • Redundancy Setup: Follow GE Fanuc’s guidelines for configuring hot standby (e.g., identical firmware versions, shared backplane).

Popular Product

General Electric IC695CPE330 CPU Module

Manufacturer:General Electric

Product Number:IC695CPE330

Payment Methods:T/T, PayPal, Western Union

Condition:New & In Stock

Warranty:1 Year

Lead Time:1-3 Working Days

Certificate:COO

Courier partners:DHL, UPS, TNT, FedEx and EMS.

Business hours:7*24

Contact Sales

Product Description

The GE Fanuc IC695CPE330 is a high-performance CPU module designed for the PACSystems RX3i series, delivering advanced control capabilities for industrial automation. As a key component of GE Fanuc’s PACSystems architecture, the IC695CPE330 features a 32-bit RISC processor, 512 MB of user memory, and dual communication ports (Ethernet/IP and ControlNet) for seamless integration with PLC networks. Supporting ladder logic, structured text, and function block programming, this module enables real-time data processing, machine-to-machine communication, and complex motion control. Its compact design and rugged construction make it suitable for harsh industrial environments, while built-in redundancy support ensures continuous operation in critical applications.

Product Parameters

Parameter Specification
Brand GE Fanuc
Model IC695CPE330
Type CPU Module (RX3i Series)
Processor 32-bit RISC (400 MHz)
Memory 512 MB user memory (non-volatile)
Communication Ports 2 × Ethernet/IP (10/100 Mbps), 1 × ControlNet
I/O Capacity Up to 8,192 I/O points (rack-mounted)
Programming Languages Ladder logic, structured text, function blocks
Power Supply 24 VDC (1.2 A max)
Operating Temperature 0–60°C (32–140°F)
Redundancy Support Hot standby (with IC695CPE330 redundant pair)
Dimensions 100 mm (W) × 160 mm (H) × 120 mm (D)
Weight 0.75 kg (1.65 lbs)

Advantages and Characteristics

  • High-Speed Processing: 400 MHz processor with 0.15 μs/step execution time for rapid control responses.
  • Dual Network Connectivity: Ethernet/IP and ControlNet ports enable flexible integration with IoT platforms and legacy systems.
  • Redundancy Ready: Supports hot standby redundancy, reducing downtime in critical operations (e.g., oil refineries).
  • Large Memory Capacity: 512 MB user memory accommodates complex programs and data logging.
  • Modular Design: Easy integration with RX3i I/O modules (e.g., IC695PSD040F power supply, IC695CRD210 communication module).

Application Fields and Cases

Industries: Manufacturing, energy, water/wastewater, and automotive.

Scenarios: Machine control, process automation, and SCADA systems.

Case Study: A German automotive plant adopted the IC695CPE330 for its assembly line control. The module’s dual Ethernet ports synchronized real-time data from 50+ robots and sensors, reducing cycle time by 15%. Its redundancy feature ensured zero downtime during firmware updates, maintaining 99.99% uptime over 12 months.

Competitor Comparison

Compared to similar CPU modules:

  • Faster Processing: 400 MHz vs. 300 MHz in comparable models.
  • Dual Network Ports: Native Ethernet/IP and ControlNet (vs. single-port alternatives).
  • Larger Memory: 512 MB vs. 256 MB standard in mid-range CPUs.
  • Redundancy Flexibility: Hot standby without external hardware (vs. add-on redundancy kits required by some competitors).

Selection Recommendations

  • Processing Needs: Choose the IC695CPE330 for high-speed applications (e.g., robotics, packaging).
  • Network Requirements: Ideal for systems needing both Ethernet/IP (IoT) and ControlNet (legacy devices).
  • Redundancy: Opt for redundant pairs (two IC695CPE330 modules) for fail-safe operations.
  • Memory Demands: Suitable for projects with complex logic (e.g., 100+ function blocks).

Precautions

  • Cooling: Ensure adequate airflow; avoid temperatures >50°C to prevent thermal throttling.

  • Firmware Updates: Regularly update firmware via Proficy Machine Edition for security and feature enhancements.

  • Grounding: Properly ground the module to prevent ESD damage.

  • Redundancy Setup: Follow GE Fanuc’s guidelines for configuring hot standby (e.g., identical firmware versions, shared backplane).

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