PACSystems RX3i GE Fanuc IC695CPL410 CPU Controller Module
PACSystems RX3i GE Fanuc IC695CPL410 CPU Controller Module
PACSystems RX3i GE Fanuc IC695CPL410 CPU Controller Module
/ 3

PACSystems RX3i GE Fanuc IC695CPL410 CPU Controller Module

  • Manufacturer: GE Fanuc

  • Part Number: IC695CPL410

  • Condition:New with Original Package

  • Product Type: CPU Controllers

  • Country of Origin: USA

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

GE Fanuc IC695CPL410 PACSystems RX3i CPU Controller

Configured for high-speed logic execution and edge processing in industrial automation systems, the GE Fanuc IC695CPL410 (IC695CPL410 CPU Controller) provides direct physical/electrical execution. It operates on a 1.2 GHz AMD G-series quad-core processor running the VxWorks real-time operating system to execute complex motion, HMI, and sequential control tasks. The module utilizes 64 MB of user memory, processes up to 768 program blocks, and interfaces directly with field networks and panel layouts via a rackless form factor operating on an 18 to 30 VDC supply.

Hardware Specifications

Parameter Specification
Model IC695CPL410
Brand GE Fanuc / Emerson
Origin USA
Weight 0.3 kg (0.65 lbs)
Dimensions 168 mm x 150 mm x 55 mm
Operating Temp 0 deg C to +60 deg C
Power Consumption 20 W maximum
Processor 1.2 GHz AMD G-series quad-core
Operating System VxWorks
User Memory 64 MB
Program Block Capacity Up to 768 blocks
Input Voltage 18 to 30 VDC
Security Hardware Secure Boot, Trusted Platform Module (TPM)
Local Display Integrated OLED panel
Mounting Type Panel-mounted / Rackless

Backplane Bus Communication Velocity and Firmware Integration

The IC695CPL410 provides deterministic data synchronization across internal system buses and Ethernet communication channels, supporting backplane bus communication velocity demands without relying on traditional rack backplanes. Integrated I/O density scaling capabilities allow direct device-level data analytics and real-time processing while preserving deterministic logic execution. Firmware flash compatibility within the Emerson PAC Machine Edition software environment ensures consistent system configuration, application updating, and hardware protection via embedded Secure Boot and Trusted Platform Module (TPM) features.

Frequently Asked Questions

Q: How does the rackless physical design of the IC695CPL410 alter power and mounting connections compared to standard RX3i rack CPUs?

A: The IC695CPL410 bypasses the traditional PACSystems RX3i universal backplane slot requirements, mounting directly to panel enclosures or DIN rails. Power inputs route through direct 18 to 30 VDC terminal blocks, drawing up to 20 W maximum without requiring power draw from a backplane power supply module.

Q: What mechanisms protect system integrity and program execution on this controller?

A: Cybersecurity and runtime validation rely on hardware-based Secure Boot and an integrated Trusted Platform Module (TPM). These hardware security features authenticate firmware signatures during startup, preventing unauthorized code execution and ensuring system integrity before initializing system tasks.

Q: How is local system status monitored without an active network connection?

A: The front panel includes an integrated OLED display that presents real-time controller status, system diagnostics, and operational parameters directly at the device level, facilitating field troubleshooting without external programming terminal connections.

Field Installation Guidelines

Mount the IC695CPL410 vertically on a flat panel surface using appropriate mounting hardware, maintaining a minimum of 50 mm clearance on all sides to promote adequate convective heat dissipation. Connect the 18 to 30 VDC power conductors to the designated terminal block, ensuring solid low-resistance connections. Grounding must follow single-point industrial earth grounding standards; attach a dedicated grounding strap from the chassis earth terminal to the main panel ground bus. Isolate DC power supply cables and Ethernet communication lines from AC power leads and high-voltage motor wiring to eliminate electromagnetic noise coupling.

You may also like