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Hitachi Energy New Generation Digital Substation

The term “digital substation” currently applies to substations using process bus technology. Process buses replace hard-wired connections with Ethernet communication.

Distributed intelligent electronic devices (IEDs) interconnected via a communication network based on IEC 61850 perform operation and control.

IEDs can measure and communicate variables such as current or voltage, or switching devices such as relays.

However, IEDs communicate digitally over serial or Ethernet networks for protection, measurement, metering, or monitoring.

Digital substations can use other communication methods, but IEC-61850 is the modern global communication protocol.

IEC 61850 is more than just a protocol, or even a set of protocols, it is a comprehensive standard that

It is a comprehensive standard that was designed from the ground up to operate on modern network technologies. It provides functionality not found in traditional communication protocols.

It provides interfaces to communication services and supports Generic Object Oriented Substation Events (GOOSE), Sampled Measured Values (SMV), logging and other services.

These unique features of IEC 61850 help to significantly reduce the costs associated with power system design, installation, commissioning and operation.

Asset Performance Management (APM) Solution Collects Data from Digital Substations

The Asset Performance Management (APM) solution collects data from digital substations and combines data collection, integration, visualization, and analytics to

APM encompasses concepts such as condition monitoring, predictive forecasting, and reliability-centered maintenance (RCM).

Digital Substation APM collects data from the substation’s IED and combines this data with other relevant asset data.

Combining data collection with a deeper understanding of an asset’s operating characteristics can provide significant value to operations and maintenance personnel by supporting predictive methods.

Hitachi Energy Shielded Detachable Connectors

Applications

Separable cable connectors with shield are used for 12-24 kV XLPE-insulated single- or three-core cables with aluminum or copper conductors. They are suitable for use in standardized bushings with an A-type outer cone according to EN 50181.

Standards

– GB/T12706.4

– IEC 60502.4

Features

– Elbow cable connectors CSEB and straight cable connectors CSS-B are made of EPDM rubber with three layers: conductive inner layer, insulating layer and conductive outer layer.

The three layers of rubber are vulcanized to make the interface between the layers as perfect as possible. It has good UV, ozone and tracking resistance and is suitable for outdoor use.

The capacitance test points of the connectors are covered by conductive rubber caps to ensure complete shielding.

– Supplied in a three-phase kit including crimped cable lugs, terminal block, installation tool and ground wire, designed to ensure reliable installation

– Single- or three-conductor cable grounding kit must be used (can be ordered separately)

Pre-assembled shielded detachable connectors

Applications

Preformed shielded breakaway connectors for 12kV XLPE insulated single or three core cables with aluminum or copper conductors. Suitable for EN 50181 Type C interface

Standard

– GB/T12706.4

– IEC 60502.4

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

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

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 

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.

Uniop ePAD03 HMI with graphic display

Highlights

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 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 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

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.


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.

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