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Fanuc IC695CBL002 CPU Cable Replacement Cable

The IC695CBL002 cable is a replacement cable used to connect the CPU unit to the energy pack of GE Fanuc’s RX3i PACSystem.

The cable comes with a 7-pin keyed connector and is 1 metre (36 inches) long. The system operates on 120/240 volts DC,

125 Vdc or 24 Vdc, and compatible energy packs can be mounted on DIN rail.

The GE Fanuc IC695CBL002 cable is a replacement cable used to connect the RX3i PACSystems Series CPU to the optional energy pack.

The cable is made of the best materials for typical industrial use and is coated to provide the necessary protection for use in harsh environments.

The IC695CBL002 cable connects to the connectors located at the bottom of the CPU and energy pack.

These components are manufactured in accordance with the EU RoHS Directive 2011/65/EU and they are powered by a voltage range of 120/240 volts DC,

125 Vdc or 24 Vdc. The IC695CBL002 cable has a 7-pin keyed connector and is 1 metre (36 inches) long.

Custom lengths are available for GE accessory cables like this one, but 1 metre is the standard length for this type of www.cniacs.com application.

The PACSystems RX002i Energy Pack, compatible with the IC3CBL695 cable, can be mounted on a DIN rail like the EN50022 rail.

but can also be mounted on a panel where other equipment is placed. The catalogue number of the compatible Energy Pack module is IC695ACC402.

The supported CPU is the GE IC695CPE330 CPU.The primary purpose of the IC695CBL002 CPU cable is to connect the CPU to the Energy Pack.

In the event of a system power failure, the energy pack provides additional backplane power. the CPU can automatically switch to the energy pack to keep the system running.

The power pack will maintain power long enough for the CPU to save valuable data or user memory.

The contents of the CPU are then saved to the system’s non-volatile memory.

Fanuc IC695CEP001 CEP Carrier Assembly

The IC695CEP001 CEP carrier assembly is manufactured by GE Fanuc and has a voltage range of 19.2 to 30 volts DC.

The power rating is 0.22 watts (24 amps) at 5.25 volts DC.

This PROFINET CEP bracket has two Ethernet RJ-45 ports and a Micro-B USB port for firmware.

The IC695CEP001 module is a GE Fanuc CEP carrier module used in GE RX3i systems.

The CEP carrier module is designed for PROFINET communications and has a copper RJ-45 Ethernet port.

The module has 2 Ethernet port connectors with 10/100 Base-TX sockets.

The CEP bracket is a powerful system component with standard functions.

The CEP tray is a powerful system component with standard features such as complete programming and configuration options via Proficy Machine Edition software, and support for multiple network topologies.

USB port for all necessary firmware upgrades, improved troubleshooting and advanced remote node module scanning.

The IC695CEP001 CEP carrier operates over a voltage range of 19.2 to 30 volts DC.

It produces www.cniacs.com 25.0 watts (22.24 amps) of power at a nominal voltage of 5 volts DC.

The system allows one I/O module per station, for a total of 1024 bytes of I/O data per station.

In addition, the GE Fanuc IC695CEP001 carrier module allows up to 512 bytes of I/O data per station for input and output data.

The module supports PROFINET version 2.3 (Class A) and requires Proficy Machine Edition version 8.0 SIM 5 or higher.

The CEP carrier also has 32 input status bits and 32 output control bits.

The IC695CEP001 CEP carrier module is part of a high-speed running I/O LAN system.

The physical characteristics of the IC695CEP001 carrier module include the following dimensions: 177.2 x 51 x 35 mm (7 x 2 x 1.3 inches).

The component operates over a temperature range of 0 to 60 degrees Celsius (32 to 140 degrees Fahrenheit).

Fanuc IC695CHS007 PACSystem RX3i Universal Backplane

The IC695CHS007 is a general purpose backplane that is part of the PACSystem RX3i platform, currently part of Emerson Automation and formerly manufactured by GE Intelligent Platforms (GE IP). The backplane has one (1) slot for the IC695 power supply (slot 0) and PCI/serial based IO slots (slots 1-5) and PCI only slot (slot 6). The backplane supports IC695. IC694. and IC693 I/O and option modules or RX3i and 90-30 series modules. The modules are equipped with isolated 24 VDC terminal blocks, grounding points, and internal ground strips.IC695CHS007 is a general purpose backplane for the PACSystem RX3i family of programmable automation controllers (PACs). This backplane is a seven (7) slot backplane reserved for power and I/O modules. It natively supports any IO and option modules of the PACsystem RX3i series as well as the 90-30 series I/O and option modules.

IC695CHS007 Slot 0 is reserved for the IC695 power supply. Slots 1-5 are dual connector slots that support Peripheral Component Interconnect (PCI)-type connectors used by PACSystem components, such as the IC695 module, and serial connectors www.cniacs.com used by the 90-30 series of modules, specifically the IC693 and IC694 modules. Slot 6. the rightmost and last slot, is PCI-only and is compatible with RX3i modules only.

The IC695CHS007 is ideal for applications with limited mounting space or for the implementation of remote I/O architectures. The module comes with a 24 VDC terminal strip located at the left end of the rack. Backplane grounding points and an integrated ground strip are provided for connecting the shielding and grounding connections of the rack-hosted module. The slot number is also clearly printed on this rack so that the module can be installed accordingly.

There are two (2) versions of this IC695CHS007. specifically the initial version, IC695CHS007-AA, and the subsequent version, IC695CHS007-BA, which include mechanical enhancements, specifically the chassis’ backplane PCI connectors.

This IC695CHS007 is for horizontal casting only. Other mounting orientations may affect airflow and ultimately system performance. This rack mounts directly to the chassis panel through the mounting holes provided in the chassis.

PAC8000 Modular I/O 8101-HI-TX 8-Channel Analogue Transmission Module

– 8 single-ended 4-20 mA input channels

– Non-Flammable Field Circuitry

– HART Direct

– HART variable and status reporting

– 2-wire or 4-wire transmitter

– Open and short circuit detection

– Requires 24 VDC bus field power

Inputs

Number of channels

– 8. single-ended

Nominal Signal www.cniacs.com Range (Scale)

– 4 to 20 mA

Full signal range

– 1 to 23 mA

Line Fault Detection

– Short circuit current – > 23.5 mA

– Open circuit current – < 0.5 mA

Output voltage (@ 20 mA)

-13.5 V (min.)

Output current

– 32 mA (max)

Accuracy (over temperature range)

– ± 0.1% of range

Resolution

– 16 bits

Repeatability

– 0.05 of range

Isolation

– Any channel to rail bus – 100 V ac

– Between channels – none

Configurable parameters

Alarms

– High, High-High, Low and Low-Low

Alarm deadband (hysteresis)

– User-defined values

Hitachi Energy Communication Unit 520CMD01

Applications

The 520CMD01 Communication Unit is the CMU module of the RTU520 product family.

Its main tasks are

– Managing and controlling the RTU520 I/O modules via the serial I/O bus.

– Reading process events from the input modules.

– Sending commands to the output modules.

– Communication with the control system and the local HMI system via the serial interface (RS232) and the Ethernet 10/100BaseT interface.

– Communicates with sub RTUs, IEDs or multimeter devices via interface (RS485).

Communicates with sub-RTUs, IEDs, or multimeter devices through an interface (RS485).

– Manages the time base station and synchronisation I/O modules of the RTU520 product line.

– Handles the dialogue between the RTU520 product line via the LAN interface and the RTU520 product line via the LAN interface and a web browser.

The communication unit is mounted on a DIN rail together with the power supply and I/O modules.

The communication unit handles www.cniacs.com communication protocols based on Ethernet and UART characters.

The unit is available in two versions

– R0001: Real-time clock without battery buffer (RTC)

– R0002: Real-time clock with battery buffer (RTC)

Features

A real-time operating system is implemented by applying the ARM9 controller AT91SAM9260.

520CMD01 is responsible for interface management, event processing, time base and internal database.

The 520CMD01 is responsible for interface management, event processing, time base and internal database. The controller acts as a master for the serial I/O bus (WRB).

System-related configuration files are stored on a non-volatile flash memory card (Removable SD Card™).

to ensure that the system configuration is valid after a power-on reset (PoR).

An optional battery-buffered RTC is used to maintain accurate time in the event of a power failure.

The communication unit provides the following interfaces:

– Communication Port 1 (CP1): RS232C serial interface with RJ45 connector.

– Communication ports 2 and 3 (CP2 and CP3): RS485 serial interface with RJ45 connector.

– Ethernet Interface (E1): 10/100BaseT with RJ45 connector.

– Interface X1 for power supply to the power supply unit 520PSD01.

– Interface X2 for communication with the RTU520 I/O module.

– USB 2.0 device interface for diagnostics and maintenance.

– WRB I/O bus interface for local communication with the I/O module.

Hitachi Energy 520PSD01 Power Supply Unit

DIN rail mounted base module RTU520:

Input voltage: 24 VDC, 20 W

Natural convection cooling

Reverse voltage protection

LEDs for monitoring the output voltage

Available with up to 16 RTU520 IO modules

Efficiency: 85 per cent

Features

The Power Supply Unit 520PSD01 has the following features and functions:

– Natural convection cooling

– Electronic power limiting at the outputs

– Short-circuit protection at the output

– Input overvoltage protection

– Reverse voltage protection on inputs

– Potential-free isolation between inputs and outputs

– LEDs to monitor output voltage

When interacting with the 520CMD01. the www.cniacs.com input voltage (24 VDC) passes through the I/O module.

During power-up, the 520CMD01 switches the 24 V output voltage to the active voltage of the I/O module.

Applications

The Power Supply Unit 520PSD01 generates or switches 24 VDC, ±15 VDC, and 5 VDC for RTU520 systems.

The output power is sufficient to power an RTU520 with up to 16 I/O modules. The input voltage to the power supply unit is 24 VDC.

Mark VIe Series IS215SECAH1A Solar Conversion Module

Hardware Tips and Specifications

While there is not a great deal of factory-released original manual IS215SECAH1A information available online, there is not a great deal of original manual information about the printed circuit board, but some useful material suggests that its status as a solar MACC-BPPB-WEMD component is a strong starting point. Additional information on the series and individual product status of the IS215SECAH1A boards can be obtained by careful visual inspection with a supplementary breakdown of the individualised IS215SECAH1A product numbers. For the uninitiated, two of the more obvious hardware components integrated into the IS215SECAH1A PCB substrate can be recognised in the standard issue Ethernet ports, which are placed longitudinally across each other on the large printed circuit board. Although the IS215SECAH1A board itself contains no other Ethernet ports, the centre of the BPPB board to which it is attached has two identical Ethernet ports. The drive manager has access to eight other ports that connect to this IS215SECAH1A board. These ports are all female and are attached to the edges of the IS215SECAH1A board during factory installation by using screw brackets to improve connection efficiency.

In addition to the various female ports available to users of the IS215SECAH1A board, a series of integrated circuits are integrated into the design of this SECA module. Each of them should be labelled with an individual reference mark, and some of them appear to carry their own factory-applied reference labels with individual component specifications. The final obvious standout hardware feature for the IS215SECAH1A’s circuit board assembly is its series of factory drilled holes. These factory-drilled holes, which are used for mounting purposes, are insulated for complete surface and internal voltage protection, and they are present on the IS215SECAH1A board in a total of five.

While a litany of pertinent information about the IS215SECAH1A printed circuit board is apparent from a simple visual inspection, additional facts about the www.cniacs.com product can be obtained through a simple breakdown of the unique IS215SECAH1A part number, including its special assembly version, SECA functional acronym, and its chemically applied conformal PCB coating protection. Coating Styles.

Mark VIe Series IS420YAICS1B Analogue I/O Module

This IS420YAICS1B modular assembly from General Electric was originally designed and manufactured with the specific functional role of analogue I/O packages in mind for placement within the larger Mark VIe family of turbine control systems.

As its full extended series name implies, the Mark VIe family to which this IS420YAICS1B modular assembly belongs is in the popular, General Electric-compatible wind,

management and control systems for gas and steam turbines.

This is an upgrade to the heavily relied upon Mark V series, which only has specific applications in gas and steam turbine components.

It is a fact that the Mark VIe series, to which this IS420YAICS1B product belongs, is also recognised as the ideal General Electric Mark product family.

This is because it is one of the final GE www.cniacs.com Mark product families to be developed, utilising the patented Speedtronic control system technology that first appeared in the Mark I family introduced in the mid to late 1960s.

Hardware Tips and Specifications

Analogue I/O Pack IS420YAICS1B is part of the Mark VIe series manufactured by General Electric.

This I/O pack allows connection between up to two Ethernet and one terminated analogue I/O board.

The kit can handle up to 10 analogue inputs, two of which can be configured as ±1 mA or 4-20 mA current inputs, and the remaining eight as ±5 V or ±10 V inputs, or 4-20 mA current loop inputs.

The kit can send and receive data over dual RJ45 Ethernet connectors.

For convenience, this IS420YAICS1B I/O package consists of two components; a general processor board and a data acquisition board, as described in the IS420YAICS1B instruction manual that accompanies our manual tab above.

The diagnostic fault detection process for this IS420YAICS1B product is handled entirely through its data acquisition board.

The relevant terminal boards employed in the ruggedly supported modular components of the YAIC analogue I/O kit are the TBAISIC and STAIS2A terminal boards, which are also considered components of the larger Mark VIe turbine control system family.

This IS420YAICS1B device is not actually an original development for its specific Mark VIe Turbine Control System family of features;.

This must be regarded as an IS420YAICS1 parent analogue I/O package, and notably it does not take advantage of the uniquely important Class B functional product revisions of this IS420YAICS1B product.

Mark V-Series DS200SIOBH1ABA Printed Circuit Boards

This DS200SIOBH1ABA General Electric printed circuit board was originally manufactured for General Electric’s Mark V series.

The Mark V series offered by General Electric has specific applications in the management and control systems of gas, steam and wind turbines and is known as the Mark V Turbine Control System Series.

The Mark V series, to which this DS200SIOBH1ABA printed circuit board belongs, is considered to be General Electric’s legacy series.

as it has been discontinued in the years since its original production. Although it is a legacy series of General Electric.

The Mark V series, to which the DS200SIOBH1ABA www.cniacs.com PCB belongs, is one of the most recently developed product lines, utilising GE’s patented Speedtronic technology.

This technology was first introduced in the late 1960’s with the introduction of the Mark I. This DS200SIOBH1ABA PCB is one of the most recently developed product lines. This DS200SIOBH1ABA printed circuit board, or PCB for short, is better known by its official functional product description.

This DS200SIOBH1ABA printed circuit board, or PCB for short, is better defined as a SC2000 VME I/O board by its official functional product description, as shown in the original General Electric and Mark V series instruction manual documentation.

Given this, this DS200SIOBH1ABA printed circuit board is not the original SC2000 VME I/O board that existed in the Mark V turbine control system family; it would be missing this DS200SIOBH1ABA printed circuit board.

This would be missing the extensive revision history of this DS200SIOBH1 parent product DS200SIOBH1ABA PCB.

Mark VI Control System IS215VCMIH2C VME Communications Interface Card

The IS215VCMIH2C has four built-in port connections placed on its front panel.

These include an RS-232C serial port, D-plug connector, and three IONet 10Base2 Ethernet ports.

Each IONet connector is associated with three LEDs labelled TX/RX/CD.

The board has additional LEDs labelled Status, Fail, Run and 1. 2. 4 and 8.

The former is located above the reset switch (button) and the latter is located directly below the serial port.

Each control module in a Mark VI system typically contains an IS215VCMIH2C, these unique VCMI cards are used to execute data through the control system’s application software in communication with the main processor module.

Due to the critical nature of the VCMI modules, it is recommended that additional spares are kept on the shelf to avoid machine downtime situations.

The IS215VCMIH2CA is a VME communications interface card that is part of the GE Speedtronic Mark VI gas turbine control system. This PCB is used as a link between the I/O board and the controller.

It is also used as a communication interface to the IONet or system control network. A four-port connector is integrated into the front panel of the IS215VCMIH2CA.

An RS-232C serial port, a D-plug connector, www.cniacs.com and three IONet 10Base2 Ethernet connectors are among the features.

Three LEDs labelled TX/RX/CD are connected to each IONet port.Status, Fail, Run, and 1. 2. 4. and 8 are among the many LED indications on the board.

The former is located above the reset button (pushbutton) and the latter is located directly below the serial port. The design includes a TI 32-bit digital signal processor chip. There are three transformer assemblies in total.

The VMEbus host controller card contains more than 50 integrated circuits, including an oscillator chip, which reduces high-frequency noise on the board through the use of inductive beads.

The board has two backplane connectors, a 12-pin vertical connector and a range of other conductive connectors.

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