IC695CRU320 IC695CRU320-EZ GFK-2514AD Redundancy CPU

For details on the configuration and operation of a Hot Standby CPU redundancy system, refer to the PACSystems Hot Standby CPU Redundancy User’s Manual, GFK-2308.
▪ Supports single and redundant Ethernet remote I/O LANs through Ethernet Network Interface Unit (ENIU) modules
▪ Supports simplex and redundantly controlled PROFINET remote IO (requires firmware version 8.00 or later)
▪ Survives any one single point of failure
▪ Bumpless switching
o Synchronized CPUs
o One scan switching
o Transfer data size up to 2Mbytes; selected in CPU hardware configuration and in variable properties

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Description

Overview


Essential details:IC695CRU320 IC695CRU320-EZ GFK-2514AD Redundancy CPU

DESCRIPTION

For details on the configuration and operation of a Hot Standby CPU redundancy system, refer to the PACSystems Hot Standby CPU Redundancy User’s Manual, GFK-2308.
▪ Supports single and redundant Ethernet remote I/O LANs through Ethernet Network Interface Unit (ENIU) modules
▪ Supports simplex and redundantly controlled PROFINET remote IO (requires firmware version 8.00 or later)
▪ Survives any one single point of failure
▪ Bumpless switching
o Synchronized CPUs
o One scan switching
o Transfer data size up to 2Mbytes; selected in CPU hardware configuration and in variable properties
▪ Supports two redundancy communications links
▪ Online repair of failed component
▪ Online programming
▪ Redundancy Memory Xchange Module
o Manual toggle switch for role switching, which transitions control from the active unit to the backup unit
o Redundancy status LEDs
▪ Application-initiated role switching to switch the active unit to backup status
▪ Redundancy status bits and message logging
▪ Memory error checking and correction (ECC) single bit correcting and multiple bit checking
▪ Background diagnostics

IC695CRU320CA-EL

Product parameter

Hot standby (HSB) redundancy. Two redundant units make up a redundancy system. Each unit requires one Redundancy CPU (IC695CRU320) and a redundancy Memory Xchange module (IC695RMX128/228) configured as a redundancy link.
▪ Contains 64 Mbytes of battery-backed user memory and 64 Mbytes of non-volatile flash user memory.
▪ Provides access to bulk memory via reference table %W.
▪ Configurable data and program memory.
▪ Programming in Ladder Diagram, Structured Text,
Function Block Diagram, and C. Refer to PACSystems RX7i & RX3i CPU Programmer’s Reference Manual, GFK-2950.
▪ Supports auto-located Symbolic Variables that can use any amount of user memory.
▪ Reference table sizes include 32Kbits for discrete %I and %Q and up to 32K words each for analog %AI and %AQ.
▪ Supports most Series 90-30 modules and expansion racks. For a list of supported I/O, Communications, Motion, and Intelligent modules, refer to the PACSystems RX3i System Manual, GFK-2314F or later.
▪ Supports up to 512 program blocks. Maximum size for a block is 128KB.
▪ CPU firmware may be upgraded in the field.
▪ CPU supports firmware upgrades of modules in its backplane.
▪ Two serial ports: an RS-485 serial port and an RS-232 serial port.
▪ Ethernet communications via the rack-based Ethernet
Interface module (IC695ETM001). For details on Ethernet capabilities, refer to PACSystems RX7i & RX3i TCP/IP
Ethernet Communications User Manual, GFK-2224.
▪ Time Synchronization to SNTP Time Server on Ethernet network when used with Ethernet Release 5.0 or later.
▪ Compliant with EU RoHS Directive 2002/95/EC using the following exemptions identified in the Annex: 7(a), 7(c)-I, & 7(c)-III.

APPLICATION

The IC695CRU320 is a Redundancy Processor from the PACSystems RX3i product family. This processor is manufactured by GE Fanuc / Emerson automation that is categorized as Programmable Automation Controllers (PAC).

The IC695CRU320 is especially used in redundant or hot-standby configuration. With this controller configuration, availability is significantly increased. Two (2) controller racks with similar configuration functions as Primary (active) and Secondary (stand-by) rack. When a single rack has failed, primarily due to errors detected by the IC695CRU320 or error of the IC695CRU320 processor itself, active controller duty is automatically transferred to the secondary (stand-by). The secondary rack becomes the primary and the failed rack shift to secondary rack. Additionally, manual switchover is possible.

Controller switchover is performed in Maximum of 1 logic scan with minimum switchover time of 3.133 msec. It supports up to IC695RMX128/228 synchronization links and capable of transferring up to 2Mbytes of data. With the Celeron M processor with 1GHz processing speed and 64MB user memory, this controller is ideally used in large and complex applications with increased level of criticality. Additionally, up to 512 program blocks may be saved to this processor which each block size may reach up to 128 KB.

The IC695CRU320 processor is installed to an RX3i backplane, directly to the Peripheral Component Interconnect (PCI) slot. Other module connections to the bus are also through the PCI 2.2 version or higher. This PCI slot enables rapid transfer and sharing of data within the backplane. The IC695CRU320 also supports Series 90-30 I/O modules for phased migration.

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Superiority products IC695CRU320 IC695CRU320-EZ GFK-2514AD Redundancy CPU

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