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Hitachi Energy Cold Shrink Fittings and Terminals JS-A and CST (12-42 kV)

Cold Shrink Fittings JS-A 12-42 kV

Application

Cold-shrinkable joints for 12-42 kV XLPE-insulated single- or three-core cables with aluminum or copper conductors.

Standards

– GB/T 12706.4

– IEC 60502.4

Characteristics

– The body of the cold shrink fitting is made of liquid silicone rubber, which is water-repellent and erosion-resistant. High elasticity and shrinkage capacity ensures a strong and stable active pressure between the rubber and the cable, which can cope with the expansion or contraction of the cable diameter in the process of changing

Expansion or contraction of the cable diameter under load cycling.

– The strain relief cone, insulation and conductive layers are pre-molded together in www.ge-drive.com a one-piece design, eliminating the need for installation tools. This solves problems such as poor bonding between the separate layers and ensures safe operation.

– Unique multi-layer waterproof construction. Waterproof armored tape and resin outer jacket solutions are available

Cold shrink termination CST 12-42 kV

Applications

Cold shrink cable termination for 12-42 kV XLPE and EPR insulated single or three core cables with aluminum or copper conductors.

Suitable for installations at high altitudes, in humid or heavily polluted environments.

Standard

– GB/T 12706.4

– IEC 60502.4

Features

– Cold-shrinkable cable terminations are made of liquid silicone rubber, which is resistant to aging, UV, humidity, tracking and erosion. The high elasticity and shrinkage capacity ensures a strong and constant active pressure between the rubber and the cable, which can cope with the

expansion or contraction of the cable diameter during the load cycle.

– The geometric field control in the stress cone is integrated into the termination body, effectively dispersing the high electrical stresses at the stripping location of the cable screen.

CST 12-42 kV

– The terminations are supplied in kits for single or three-core cables. The kits include copper tape and a constant force spring for the ground connection. 3-core cable kits also include crutch seals and cold-shrink protective hoses.

Uniop eTOP507 7-inch TFT color display LED backlighting

The UniOP eTOP Series 500 HMI products combine state-of-the-art features and top performance with an oustanding design.

They are the ideal choice for all demanding HMI applications including factory and building automation.

The eTOP507 features a bright 7” TFT widescreen (16:9) display with a fully dimmable LED backlight.

The JMobile software offers full vector graphic capabilities and plenty of connectivity options.

• 7” TFT color display, LED backlight

• 800×480 pixel (WVGA) resolution, 64K colors

• Resistive touchscreen

• 2 Ethernet ports with switch function

• 2 USB Host ports

• SD Card Slot

• Connection to fieldbus systems and I/O using optional plug-in modules

• Slim design. Mounting depth less than 50mm

Highlights

The eTOP Series 500 HMI panels have been designed to run the JMobile software.

• JMobile runtime included. Full compatibility with JMobile Studio.

• Full vector graphic support. Native support of SVG graphic objects. Trasparency and alpha blending.

• Full object dynamics: control visibility and transparency, move, resize, rotate any object on screen. www.ge-drive.com Change properties of basic and complex objects.

• TrueType fonts

• Multilanguage applications. Easily create and manage your applications in multiple languages to meet global requirements.

Far East languages are supported. Tools available in JMobile Studio support easy third-party translations and help reducing development and maintenance costs of the application

• Data display in numerical, text, bargraph, analog gauges and graphic image formats.

• Rich set of state-of-the-art HMI features:

data acquisition, alarm handling, scheduler and timed actions (daily and weekly chedulers, exception dates), recipes, users and passwords, e-mail and RSS feeds,rotating menus

• Includes support for a wide range of communication drivers for Factory and Building Automation systems.

• Multiple drivers communication capability.

• Remote monitoring and control. ClientServer functionality. Mobile clients supported.

• Remote maintenance and support with VNC-based functionality.

• Off-line simulation of the HMI application with JMobile Studio.

• Powerful scripting language for automating HMI applications. Script debugging improves efficiency in application development.

• Rich gallery of symbols and objects

• Project templates

• Optional plug-in modules for fieldbus systems, I/O and controllers.

• Display backlight dimmable to 0%

Uniop eTOP307 7-inch TFT widescreen display

The UniOP eTOP Series 300 combines state-of-the-art features and performance with an oustanding design. They are the ideal choice for HMI applications including factory and building automation.

The eTOP307 features a bright 7” TFT widescreen (16:9) display with LED backlight and full vector graphic capabilities. A great high-resolution display with the appealing 16:9 look comes in the most compact device.  Connections include Ethernet and USB.

• 7” TFT color display, LED backlight

• 800×480 pixel (WVGA) resolution, 64K colors

• Advanced vector graphics

• Resistive touchscreen

• 64 MB user memory

• 10/100 Ethernet interface

• USB interface

• Connection to bus systems using optional plug-in modules

• Slim design. Mounting depth less than 50mm

Highlights

The eTOP Series 300 HMI panels are fully compatible with UniOP Designer www.ge-drive.com 6 software.

• Powerful and intuitive programming with the UniOP Designer 6 software.

• Supports more than 150 communication drivers.

• Built-in Ethernet port for communication with devices, programming the HMI from Designer and retrieving data from computers.

• USB host port for the connection of flash drives. Flash drives can be used for upgrading applications and firmware.

• Optional plug-in modules for fieldbus systems and networks. Compatible with TCM and SCM modules.

• Dual-driver communication capability.

• Vector graphic capabilities including the support of multiple layers and object transparency.

• Data display in numerical, text, bargraph, analog gauges and graphic image formats. Dynamic object properties supported.

• Data acquisition and trend presentation. Trend data can be transferred to an host computer using the Ethernet connection.

• Recipe data storage. Recipe data can be transferred to an host computer using the Ethernet connection or copied to flash drives via USB connection.

• Multilanguage applications. Far East languages are supported. The number of runtime languages is limited only by the available memory. All text information in the application can be exported to files in Unicode format for easier translation.

• Powerful macro editor to configure touchscreen operation

• Alarms and historical alarm list. Alarm and event information can be printed or transferred to an host computer.

• Eight level password protection.

• Report printing to serial printer. Reports are freely configurable using Designer.

• Ethernet-based UniNet network to share data between UniOP HMIs and to serve data using UniNet OPC Server.

Uniop ERT-16 Industrial PLC Workstation

The ERT-16 fulfills the need for a powerful yet cost effective operator interface system. Displays are sixteen

lines of a pixel based LCD in monochrome color. These pixel addressable displays allow graphic capabilities with our Designer for Windows software package. Each page can contain 16 lines. Each line can contain up to 40 characters. Brightness control is provided to adjust the display for easy viewing under nearly any condition.

Display Variables

PLC internal variables can be shown on any of the many display pages. The number of variables that can be viewed at one time is limited only by the display size. UniOP also provides scaling (linear conversion) of the displayed data. The final value can then be shown in several useful formats including bargraph, date, time,decimal, bit,exadecimal, floating point, and string. Data entry with valid range verification is also available for each data type.

Data Entry

The ETT-VGA gives the user eight configurable function keys and seven user-definable LEDs. The analog touchscreen adds the ability to create touchcells as small as a single character or as large as the entire screen.

Security

An eight-level password protection scheme protects critical system www.ge-drive.com features from undesired access.

Alarms

UniOP can monitor and display up to 1024 alarms. Attributes and unique messages for each alarm can be defined. Operator acknowledgment can also be required. The last 256 alarm events detected by the PLC are retained in an internal event list. This list can be viewed on screen or printed on a serial printer to obtain a permanent record.

Adaptability

Custom display screens are developed using the UniOP Designer™ for Windows™ programming software.

Your completed project file can be downloaded to the display through the serial port and permanently stored in a Flash EPROM.

Graphic Capabilities

The ERT-16 allows you to display bitmap graphics. These bitmap graphics can be created with any Windows™ based software package capable of BMP format.

Keyboard Macro Editor

A feature that allows you to configure your touchcells to do a variety of functions locally in the UniOP. For example: turning pages, setting attributes, setting LEDs, writing to PLC, going to alarm list, uploading or downloading a recipe set and many more. This can save many hours of ladder logic programming.

Recipes

This feature allows you to create a recipe with up to 255 parameter sets for each page of the project file.

UniOP has a total of 16K reserved for recipe storage. You can upload or download a parameter set from or to the PLC. Once a parameter set has been downloaded to the PLC, the data contained within the parameter set can be modified.

UniNET Network

The UniNET network allows you to design networks of varying configurations; from two panels with one PLC to multiple panels with multiple PLCs. Data can be written to or retrieved from the PLCs in many different locations at one time. The UniNET network creates a bridge between UniOP panels which allows data to be shared by all PLCs in the network, regardless of the type or manufacturer.

ERT-16 Features

● NEMA 4/12 compliant enclosure

● CE approved

● UniNET network capabilities

● Keyboard Macro Editor

● Recipe configuration

● One RS-232 / RS-422 / RS-485 / 20mA current loop serial port, speeds up to 38,400 baud for direct PLC connection

● One RS -232 port for PC or printer communications

● 512 KB internal memory standard Flash EPROM

● Optional 512 KB memory upgrade (1 MB total memory)

● Real time clock with battery back-up

● Unlimited number of variables per page

● 1024 prioritized alarms

● Historical event list (last 256 events)

● Eight-level password protection

● Print reports, alarm list, and event list to serial printer

Uniop ePAD03 HMI with graphic display

Compact low-cost HMI with graphic display. The ePAD03 and ePAD04 panels are defining a new standard for entry-level HMI products. They are the ideal replacement for the successful MD00 Series.

These products are also available with extended operating emperature range for use in extreme environmental conditions.

• Monochrome graphic display 120×32 pixels

• Downloadable fonts

• Scalable text

• 4 user programmable function keys with slidein legends

• 5 user programmable LED indicators

• Dual-driver communication

• Connection to industrial bus systems and Ethernet with optional www.ge-drive.com modules

• IP65 front panel protection

• Version with extended operating temperature available

Highlights

The ePAD03 and ePAD04 HMI panels are compact low cost products yet extremely rich in functionality. The ePAD03 and ePAD04 are the ideal replacement for panels of the MD00 Series.

They generally outperform the equivalent products and can be used in all cases except when the 20 mA current loop interface is needed.

The products support the rich common functionality of the UniOP operator panels:

• Powerful and intuitive programming with the UniOP Designer 6 software

• Dual-driver communication capability

• Support of more than 130 communication drivers for industrial devices

• Optional modules for fieldbus systems (Profibus DP, CANopen, DeviceNet, Interbus) and Ethernet. Ethernet modules allow connection to field devices as well as programming the HMI from Designer.

• Scalable fonts for effective presentation of information.

• Display dynamic data in numerical, text, bargraph and graphic image formats

• Recipe data storage. Recipe data can be transferred to an host computer using the Ethernet connection.

• Multilanguage applications. The number of runtime languages is limited only by the available memory. All text information in the application can be exported in Unicode format for easier translation.

• Powerful macro editor to configure keypad operation

• Alarms and historical alarm list. Alarm and event information can be printed or transferred to an host computer using the Ethernet connection.

• Eight level password protection.

• Ethernet-based UniNet network to share data between UniOP HMIs and to serve data using UniNet OPC Server.

Uniop CP02R-04 Compact HMI devices

Compact HMI devices with 9 function keys/numerical keypad and display with 20 characters per line

Show up to 2 or 4 rows, 20 characters ofinformation

Choice of Vacuum Fluorescent orMonochrome LCD

Up to 16 user programmable function keyswith slide-in legends and LED indicators

Connection to industrial bus systems andEthemet with optional modules

IP65 front panel protection

Version with extended operating temperatureavailable

Highlights

The CP02 HMI panels are part of the UniOP family of entry-level www.ge-drive.com products. They support the rich common functionality of the UniOP operator panels:

• Powerful and intuitive programming with the UniOP Designer 6 software

• Support of more than 130 communication drivers for industrial devices

• Optional modules for fieldbus systems (Profibus DP, CANopen, DeviceNet, Interbus) and Ethernet. Ethernet modules allow connection to field devices as well as programming the HMI from Designer.

• Dual-driver communication capability

• Display dynamic data in numerical and text formats

• Recipe data storage. Recipe data can be transferred to an host computer using the Ethernet connection.

• Multilanguage applications. The number of runtime languages is limited only by the available memory. All text information in the application can be exported in Unicode format for easier translation.

• Powerful macro editor to configure touchscreen operation

• Alarms and historical alarm list. Alarm and event information can be printed or transferred to an host computer using the Ethernet connection.

• Eight level password protection.

• Report printing to serial printer. Reports are freely configurable using Designer.

• Ethernet-based UniNet network to share data between UniOP HMIs and to serve data using UniNet OPC Server.

Hitachi Energy Cable Accessories and Connectors GIS Plug-in Terminals

Cable accessories and connectors

GIS Plug-In Terminals

(2# and 3# connections)

TP-A 42 kV, 800 A 7 and TP-A 42 kV, 1250 A

GIS plug-in terminals (2# interface)

TP-A 42 kV, 800 A

Applications

GIS plug-in cable termination for XLPE-insulated single- or three-core cables with www.ge-drive.com 42 kV copper or aluminum conductors.

Suitable for standard bushings in 2# inner cone GIS switchgear or transformers according to EN 50181.

Standards

GB/T 12706.4

IEC 60502.4

Features

– The cable termination consists mainly of a plug-in contactor, a stress cone and a tail pipe.

– Plug-in contactor

– Compression cone connection, safe and reliable

– Easy to install, rigid fixing, no special tools required

– Stress cone

– Compact and portable

– 100% routine testing

– Electrical and safety reliability

– For installation tools, please contact us

Standard Sleeves

GIS plug-in terminal (3# connector)

TP-A 42 kV, 1250 A

Applications

GIS plug-in cable termination for 42 kV single- or three-core cables with XLPE insulation on copper conductors.

Standard bushing for 3# tapered GIS switchgear or transformers according to EN 50181.

Standards

GB/T 12706.4

IEC 60502.4

Features

– The cable termination consists mainly of a plug-in contactor, a stress cone and a tail pipe.

– Plug-in contactor

– Spring contact connection, safe and reliable

– Inclined bolts for easy installation and secure fixing, no special tools required

– Stress cone

– Compact and portable

– 100% routine testing

– Reliable electrical and safety performance

ABB 560BOR01 RTU560 Product Family Binary Outputs

Applications

The module 560BOR01 controls 16 binary process signals via relay contacts. The output signals can be assigned to process functions according to configuration rules.

The module 560BOR01 can process the following types of signals:

– Single or double command (SCO or DCO) with 1- or 2-pole output, no checksum (n select 1).

– Single or dual commands (SCO or DCO) with 1.5 or 2-pole outputs, without checksum (1 out of n).

– Regulating step command (RCO), 1 or 2 poles

– Digital setpoint command, 8 or 16 bit, no strobe (DSO8 or DSO16)

– Digital setpoint command, 8 or 16 bit, with strobe (DSO8 or DSO16)

– Bit String Output, 1. 2. 8 or 16 bits (BSO1. BSO2. BSO8 or BSO16)

Modules allow switching voltages up to 150 V DC or up to 2 A continuous current.

Features

Binary outputs

The binary outputs utilize relay contacts.

The 16 outputs are divided into two groups. Each of the 8 outputs has a common circuit. The groups are isolated from each other and from the internal electronics.

The relay coil supply voltage (24 VDC) is switched by an internal relay (R17).

The relay coil supply voltage (24 VDC) is monitored internally before and during the command output.

Command outputs to the process equipment can be executed either directly or in conjunction with the command output monitoring module.

The command output monitoring module is responsible for checking the output circuits (1 out of n times). For more details, refer to the Command Output Monitor datasheet.

The following modules with command output monitoring functions are supported:

– 23BA23 (60 VDC maximum)

The 1.5-pole command output can only be used in conjunction with the command output monitoring module. When using the 1.5-pole command output, the

One of the output relays of the 560BOR01 switches the command to the intermediate relay. Process voltage of the intermediate relay

The process voltage of the intermediate relay is switched by the command output monitoring module.

For 2-pole commands, two output relays are required for each command.

Alternatively, using additional booster relays connected to the command output monitoring module 23BA23.

Direct switching of process relays with high switching capacity on electrical devices (disconnectors, circuit breakers) (see data sheet 23BA23).

The module 560BOR01 performs several command monitoring functions before and during command output.

These tests ensure correct output. These tests can be further refined with the Command Output Monitoring module.

If the command monitoring reveals a fault, the command is canceled. Release relay R17 will only energize the output relay if the test is successful.

A faulty drive or a faulty release relay R17 will result in a complete failure of the command output module.

Power Input

Power required by the module is supplied through the RTU560 backplane.

I/O Controller (IOC)

The microcontroller on the module handles all critical tasks for the parameterized processing functions. www.ge-drive.com In addition, it communicates interactively with the RTU I/O bus.

All configuration data and processing parameters are loaded by the communication unit via the RTU I/O bus.

The module is equipped with a serial interface to the RTU560 I/O bus on the backplane.

The binary output unit performs the following processing functions for individual signal types:

– Control of command output duration

Command monitoring function:

– Checking of output relays on the module (m out of 16)

– Monitoring of the output bit pattern by reading back the output status

– Monitoring of the switching voltage before and during output (24 V DC coil voltage)

– Command output duration monitoring

During initialization and operation, the module performs a series of tests. If a fault occurs, it will be reported to the communication unit.

All fault conditions affecting the function of the module are signaled as common faults by the red LEDs. Module faults are detected by the communication unit.

ABB HMI560 New Module 560HMR01 Integrated Human Machine Interface

HMI560: New module 560HMR01

Integrated HMI for a reliable and convenient system overview

The new 560HMR01 makes station control on RTU racks very simple and convenient: The integrated PC module offers a wide range of monitoring, diagnostic and maintenance functions.

RTU560 communication module with 32-bit CPU

– 6 serial communication interfaces (RS-232 or RS-485) for remote communication

– 2 Ethernet interfaces (10/100BaseT)

– 1x USB port

– 1x serial peripheral bus

– Battery buffered real-time clock

New HMI module for the RTU560 product line ABB’s RTU560 product line offers the 560HMR01. www.ge-drive.com an integrated human-machine interface (HMI) board that requires no extra space, no extra power supply, and no external PC.

The 560HMR01 comes with firmware and Windows 7 operating system in a rugged, space-saving design.

The integrated HMI functionality provides extensive diagnostic and maintenance capabilities to ensure reliable system operation.

Advantages

– Plug and play: pre-installed operating system for immediate use of the integrated HMI

– Integrated solution: no separate PC or laptop required

– Reusable redundant power supply for the RTU560

– Easy wiring: all connectors are located on the front panel

– Monitor, keyboard and mouse can be connected to the RTU560

– Maintenance-free: no rotating parts (ventilators and hard disk drives)

– Space saving: 90% less space required compared to a 19-inch industrial PC

– Cost-optimized solution for station monitoring, control and diagnostics

Features of the 560HMR01

The 560HMR01 provides an integrated HMI that makes system monitoring easier and more efficient.

The integrated HMI board eliminates the need for a PC or laptop.

Local monitors, keyboards, mice, printers and speakers can be connected to the HMI board via USB, VGA and audio interfaces.

The rugged design of the module ensures maintenance-free operation with maximum reliability.

Existing power supplies in the rack can be reused and redundant power supplies are also supported.

In addition, the 560HMR01 provides a battery-buffered real-time clock that maintains the current time even when the power is turned off.

Firmware and operating system are installed in the module’s internal data memory.

560HMR01 Application Examples

Reliable and efficient monitoring of the entire system is very easy with the new 560HMR01.

In combination with the integrated HMI, users benefit from a wide range of diagnostic and maintenance functions.

Application-specific screens provide active monitoring functions, including

– Station monitoring with user and access management

– System overview with monitoring of system events and status information for RTUs, sub-RTUs or connected IEDs

– Event list with sorting and filtering

– Alarm list with configurable acknowledged and unacknowledged alarms

– Project tool editor for image and symbol customization and project-specific elements

The new 560HMR01 in combination with the integrated HMI is therefore the ideal solution for precise and reliable station monitoring of substation automation systems.

Kollmorgen EtherCAT® Bus Coupler

EtherCAT® Bus Coupler

The EtherCAT® Bus Coupler connects Real-Time Ethernet systems via modular, expandable electronic terminal blocks. A complete unit consists of a Bus Coupler, a set of Bus Terminals and a terminal.

Features
The EtherCAT Coupler connects the real-time Ethernet system EtherCAT with modular, expandable electronic terminal blocks. A unit consists of a Bus Coupler, a set of terminals and a terminal.

The Bus Coupler recognizes the connected Bus Terminals and automatically assigns them to the EtherCAT process image. The Bus Coupler is connected to the network via the upper Ethernet interface. The lower RJ 45 socket can be used to connect other EtherCAT devices in the same strand.

In an EtherCAT network, the EtherCAT Coupler can be installed anywhere in the Ethernet signaling section (100BASE-TX) – except directly on the switch.

EtherCAT (Ethernet Control Automation Technology) is an Ethernet solution for industrial automation characterized by excellent performance and particularly simple operation. etherCAT enables Ethernet star topologies to be replaced by simple line structures. In addition, EtherCAT can also be www.ge-drive.com wired in the “classic” way using switches for the integration of additional Ethernet devices. The master does not require special plug-in cards and can be realized on any existing Ethernet controller using very simple interfaces. EtherCAT is therefore also ideally suited for small and medium-sized control applications and will open up new fields of application for distributed I/O.

For EtherCAT, stand-alone I/O systems with protection class IP 20 are available as EtherCAT Terminals. Unlike the Bus Terminals, in which the fieldbus signals are realized in a Bus Coupler on a terminal bus that is internally independent of the fieldbus, the EtherCAT protocol remains fully intact within the individual terminal.

The EtherCAT coupler supports the operation of all Bus Terminals. As far as the user is concerned, the analog inputs/outputs are handled no differently than in the other series. The information is processed as a byte array in the process image of the controller.

Analog and multifunction Bus Terminals can be adapted to each specific application. Depending on the type, the registers of the analog Bus Terminals contain temperature ranges, gain values and linearization characteristics. The Bus Terminals store settings permanently in a fail-safe manner. In addition, the Bus Terminals can be optionally controlled via the control system. With function blocks (FB), the programmable logic controller (PLC) handles the configuration of the entire periphery during the startup phase. If required, the controller can upload the configuration data created centrally in order to manage and store them centrally. As a result, no new adjustments are required when changing bus terminals. The controller automatically sets the required settings at power-up.

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