GE Fanuc IC695CPK330-CA High-Availability CPU New
GE Fanuc IC695CPK330-CA High-Availability CPU New
GE Fanuc IC695CPK330-CA High-Availability CPU New
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GE Fanuc IC695CPK330-CA High-Availability CPU New

  • Manufacturer: GE Fanuc

  • Part Number: IC695CPK330-CA

  • Condition:New with Original Package

  • Product Type: Central Processing Units

  • Country of Origin: USA

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

Product Overview

The GE Fanuc IC695CPK330-CA constitutes the premier high-performance processing center for the PACSystems RX3i programmable automation controller (PAC) platform. This kit bundles the core CPE330 controller hardware alongside a dedicated external Energy Pack backup capacitor system. It manages large-scale processing loops, complex motion control tracking, and heavy data coordination tasks across modern industrial facilities.

The controller runs on a 1 GHz Intel Celeron M processing engine, delivering logic execution speeds more than twice as fast as legacy CPU320 processors. The hardware platform natively supports dual high-speed backplane interfaces—including both a PCI-based high-speed bus and a standard serial bus—to facilitate rapid data throughput to adjacent I/O modules.

We supply this master controller kit exclusively in 100% brand new, original, and factory-sealed condition. This guarantees uncompromised internal volatile memory sectors, pristine network interfaces, and a complete manufacturer operating lifespan. We ship this premium hardware via express global couriers like FedEx and DHL to minimize project implementation lag.

Technical Specifications

The table below logs the precise processing, memory, networking, and physical properties for the IC695CPK330-CA hardware assembly. All values utilize standard ASCII formatting.

Parameter Specification Details
Manufacturer GE Fanuc / Emerson Automation Solutions
Model Number IC695CPK330-CA
Product Line PACSystems RX3i
Component Classification Central Processing Unit (CPU) with Energy Pack
Central Processing Engine 1 GHz Intel Celeron M Processor
Boolean Instruction Speed Approx 0.2 microseconds per instruction
User Volatile RAM Capacity 64 MB (Battery/Energy Pack backed)
Non-Volatile Flash Capacity 64 MB for long-term program storage
Supported Programming Languages Ladder Logic, Structured Text (ST), Function Block (FBD), C
Logical Memory Program Size Up to 512 blocks (Maximum 128 KB per block)
System Hot-Standby Redundancy Full native dual-CPU redundancy support
Gigabit Ethernet Port Configuration 1 x 10/100/1000 Mbps standalone port
Switched Ethernet Port Configuration 1 x 2-port embedded switch (10/100/1000 Mbps)
Supported Networking Protocols SRTP, Modbus TCP/IP, OPC-UA Server, EGD, PROFINET
Integrated Local Interfaces 1 x USB-A 2.0, 1 x RS-232, 1 x RS-485
Removable Media Slot 1 x High-speed CFast (CompactFlash) card slot
Discrete Addressing Allocation 32 Kbits input (%I), 32 Kbits output (%Q)
Analog Addressing Allocation 32 K words input (%AI), 32 K words output (%AQ)
Baseplane Logic Current Draw 1.0 Amp at 5 VDC
Module Baseplate Footprint Occupies 1 single slot in RX3i rack
Environmental Temperature Window 0 to +60 degrees Celsius
Physical Module Dimensions 233 mm x 89 mm x 31 mm
Gross Boxed Shipping Weight 3.0 kg (Includes CPU and Energy Pack components)

Engineering Advantages

  • Multi-Bus High-Speed Architecture: The module incorporates a dual-bus backplane connection design. It utilizes a high-speed PCI bus for fast-throughput data transfers to advanced Ethernet or motion modules, while maintaining compatibility with standard serial-based modules in the same rack.
  • Onboard OPC-UA Corporate Integration: An integrated OPC-UA Server engine allows the CPU to transmit plant-floor data registers directly to enterprise ERP software, MES layers, and localized SCADA nodes. This built-in protocol eliminates the need for intermediate translation PCs or external software middleware.
  • Dual-CPU Hot-Standby Redundancy: The internal firmware supports synchronized, high-availability mirrored configurations. If the primary processor loses power or encounters an error, the standby controller assumes full process control over the synchronization link within milliseconds, preventing facility downtime.
  • Energy Pack Maintenance-Free Backup: The accompanying Energy Pack capacitor system supplies standby power to save active memory parameters into non-volatile flash storage during unexpected power failures. This capacitor design replaces short-lived lithium batteries, cutting routine maintenance overhead out of control panels.

FAQs

  • Is the IC695CPK330-CA kit a brand new original item or a renewed surplus component?
  • We sell this controller kit strictly as a 100% brand new, authentic, original factory unit. It arrives completely sealed within its genuine manufacturer box, ensuring that internal capacitor circuits, processing boards, and software keys are unused.
  • What are the functional differences between the standalone gigabit Ethernet port and the internal 2-port switch?
  • The single standalone RJ-45 port (10/100/1000 Mbps) establishes dedicated connections to supervisor SCADA servers or corporate networks. The internal 2-port switched interface lets you daisy-chain down to PROFINET I/O blocks or other field devices without installing an external industrial network switch.
  • Does this controller require standard lithium backup batteries to hold its program registers?
  • No. The "CA" kit configuration includes an external Energy Pack. This component utilizes industrial-grade storage capacitors to flush the active 64 MB user RAM contents over to the non-volatile flash memory during a power crash, eliminating standard battery replacement cycles.
  • Can I write and execute custom C-code scripts directly on this processor module?
  • Yes. The processor firmware concurrently compiles and runs standard Ladder Logic, Function Block Diagrams (FBD), Structured Text (ST), and C routines. This versatility allows developers to implement advanced algorithmic calculations and mathematical filtering methods that standard PLC languages cannot process efficiently.
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