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Page 1: Remote I/O RIO600 Configuration Manual

Remote I/ORIO600Configuration Manual

Page 2: Remote I/O RIO600 Configuration Manual
Page 3: Remote I/O RIO600 Configuration Manual

Document ID: 1MRS757489Issued: 2011-12-23

Revision: AProduct version: 1.0

© Copyright 2011 ABB. All rights reserved

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CopyrightThis document and parts thereof must not be reproduced or copied without writtenpermission from ABB, and the contents thereof must not be imparted to a thirdparty, nor used for any unauthorized purpose.

The software or hardware described in this document is furnished under a licenseand may be used, copied, or disclosed only in accordance with the terms of suchlicense.

TrademarksABB and Relion are registered trademarks of the ABB Group. All other brand orproduct names mentioned in this document may be trademarks or registeredtrademarks of their respective holders.

WarrantyPlease inquire about the terms of warranty from your nearest ABB representative.

http://www.abb.com/substationautomation

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DisclaimerThe data, examples and diagrams in this manual are included solely for the conceptor product description and are not to be deemed as a statement of guaranteedproperties. All persons responsible for applying the equipment addressed in thismanual must satisfy themselves that each intended application is suitable andacceptable, including that any applicable safety or other operational requirementsare complied with. In particular, any risks in applications where a system failure and/or product failure would create a risk for harm to property or persons (including butnot limited to personal injuries or death) shall be the sole responsibility of theperson or entity applying the equipment, and those so responsible are herebyrequested to ensure that all measures are taken to exclude or mitigate such risks.

This document has been carefully checked by ABB but deviations cannot becompletely ruled out. In case any errors are detected, the reader is kindly requestedto notify the manufacturer. Other than under explicit contractual commitments, inno event shall ABB be responsible or liable for any loss or damage resulting fromthe use of this manual or the application of the equipment.

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ConformityThis product complies with the directive of the Council of the EuropeanCommunities on the approximation of the laws of the Member States relating toelectromagnetic compatibility (EMC Directive 2004/108/EC) and concerningelectrical equipment for use within specified voltage limits (Low-voltage directive2006/95/EC). This conformity is the result of tests conducted by ABB inaccordance with the product standards EN 50263 and EN 60255-26 for the EMCdirective, and with the product standards EN 60255-1 and EN 60255-27 for the lowvoltage directive. The product is designed in accordance with the internationalstandards of the IEC 60255 series.

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Table of contents

Section 1 Introduction.......................................................................3This manual........................................................................................3Intended audience..............................................................................3Product documentation.......................................................................3

Product documentation set............................................................3Document revision history.............................................................3Related documentation..................................................................4

Symbols and conventions...................................................................4Symbols.........................................................................................4Document conventions..................................................................4

Section 2 RIO600 overview..............................................................7Overview.............................................................................................7

Module configuration.....................................................................8Configuration and engineering tool for RIO600..................................9

PCM600 and RIO600 connectivity package version.....................9Hardware and software requirements................................................9RIO600 engineering flow..................................................................10

Section 3 Setting up a project........................................................11Handling connectivity packages.......................................................11

Uninstalling connectivity packages .............................................11Installing connectivity packages..................................................11Activating connectivity packages ................................................14

Creating a new project......................................................................15Building the plant structure...............................................................16Inserting IEDs...................................................................................17

Inserting an IED in offline mode..................................................18Inserting an IED in online mode..................................................24

Setting the technical key...................................................................32Editing object properties...................................................................35

Section 4 Using the Parameter Setting tool...................................37Viewing parameters..........................................................................37Reading parameters from the device...............................................38Setting communication and synchronization parameters ................39Writing parameters to the device .....................................................40

Section 5 Using the Signal Matrix tool............................................43Starting the Signal Matrix tool...........................................................43

Table of contents

RIO600 1Configuration Manual

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Exporting SCD files..........................................................................44Importing SCD files...........................................................................46

Section 6 Common Read/Write (CRW)..........................................51Starting Read/Write .........................................................................51

Section 7 Using the Composition Update tool................................55Configuring the device offline...........................................................55Configuring the device online...........................................................59

Section 8 GOOSE engineering......................................................65Creating a project.............................................................................65Importing an SCL file in IET600........................................................66Creating GOOSE datasets ..............................................................68

Defining data attributes................................................................70Configuring GOOSE control blocks..................................................70Configuring a GOOSE Subscriber ...................................................72Exporting SCD files in IET600..........................................................72

Section 9 Troubleshooting..............................................................75Troubleshooting the technical key in online mode............................75Troubleshooting the reading and writing of parameters...................76

Section 10 Glossary.........................................................................79

Table of contents

2 RIO600Configuration Manual

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Section 1 Introduction

1.1 This manual

The configuration manual contains information on how to engineer the deviceusing the different tools in PCM600. The manual provides information for IEC61850 engineering with PCM600 and IET600. For more details on tool usage, seethe PCM600 documentation.

1.2 Intended audience

This manual addresses system and project engineers involved in the engineeringprocess of a project.

1.3 Product documentation

1.3.1 Product documentation setThe installation and commissioning manual contains information on how to installand commission the device. The manual provides an introduction to engineeringtasks and a description of the basic operations.

The configuration manual contains information on how to engineer the deviceusing the different tools in PCM600. The manual provides information for IEC61850 engineering with PCM600 and IET600. For more details on tool usage, seethe PCM600 documentation.

The user manual (online help) contains instructions on how to use the RIO600Configuration Wizard. The Configuration Wizard helps configure RIO600 fordifferent system products and tools with the help of the connectivity package. Seethe product documentation for more information on handling the connectivitypackages in different system products and tools.

1.3.2 Document revision historyDocument revision/date Product version HistoryA/2011-12-23 1.0 First release

1MRS757489 A Section 1Introduction

RIO600 3Configuration Manual

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1.3.3 Related documentationName of the document Document IDRIO600 Installation and Commissioning Manual 1MRS757488

Specific Communication Service Mapping (SCSM) – Mappings toMMS (ISO 9506-1 and ISO 9506-2) and to ISO/IEC 8802-3

IEC 61850-8-1

Download the latest documents from the ABB Web sitehttp://www.abb.com/substationautomation.

1.4 Symbols and conventions

1.4.1 Symbols

The caution icon indicates important information or warning relatedto the concept discussed in the text. It might indicate the presenceof a hazard which could result in corruption of software or damageto equipment or property.

The information icon alerts the reader of important facts andconditions.

The tip icon indicates advice on, for example, how to design yourproject or how to use a certain function.

Although warning hazards are related to personal injury, it is necessary tounderstand that under certain operational conditions, operation of damagedequipment may result in degraded process performance leading to personal injuryor death. Therefore, comply fully with all warning and caution notices.

1.4.2 Document conventionsA particular convention may not be used in this manual.

• Abbreviations and acronyms in this manual are spelled out in the glossary. Theglossary also contains definitions of important terms.

• HMI menu paths are presented in bold.Select Main menu/Settings.

• WHMI menu names are presented in bold.

Section 1 1MRS757489 AIntroduction

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Click Information in the WHMI menu structure.• Parameter names are shown in italics.

The function can be enabled and disabled with the Operation setting.• Parameter values are indicated with quotation marks.

The corresponding parameter values are "On" and "Off".

1MRS757489 A Section 1Introduction

RIO600 5Configuration Manual

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6

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Section 2 RIO600 overview

2.1 Overview

RIO600 is a modular I/O designed to expand the digital I/O of ABB’s Relion®

product family IEDs and to provide I/O for Station Automation device COM600used in power generation plants, utility substations and industrial power systems.

GUID-10936B8E-CD69-425B-A212-BBACE48211EC V1 EN

Figure 1: RIO600

RIO600 is designed to function with ABB IEDs and also with other RIO600 unitsto exchange binary I/O information over Ethernet.

1MRS757489 A Section 2RIO600 overview

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IEC 61850-8-1

IEC 60870-5-104

ABBMicroSCADA

RET615 RET615 RIO600 REF630

IEC 61850-8-1

COM600Web HMI

COM600Web HMI

PCM600Ethernet switch

COM600

RIO600 RED615 RED615

RIO600

RIO600 REF615

COM600

Binary signaltransfer

PCM600Ethernet switch

Line differentialcommunication

GUID-F03EF024-C321-473D-B753-D7D490D99282 V1 EN

Figure 2: Conceptual picture of a typical system setup

Understanding the communication properties of the IED is a prerequisite beforemaking any mechanical or electrical connections to RIO600. The connectiondetails of the IED are available in the respective manuals.

2.1.1 Module configurationRIO600 is designed using a modular architecture, where the I/O controlfunctionality is built on modules. The RIO600 modules can be stacked on astandard DIN rail to achieve the required configuration. The minimumconfiguration required for RIO600 is PSM_H-LECM-DIM8_H or PSM_H-LECM-DOM.

RIO600 consists of four module types.

• Power Supply Module (PSM_H)• Communication Module (LECM)• Digital Input Module (DIM8_H)• Digital Output Module (DOM)

RIO600 can be configured to operate a maximum of 20 binary I/O signals usingone PSM_H module and up to 40 binary I/O signals using two PSM _H modules.

Section 2 1MRS757489 ARIO600 overview

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2.2 Configuration and engineering tool for RIO600

PCM600 with the RIO600 connectivity package is used for configuring RIO600.

• Configuring RIO600 in online and offline mode• Setting the operating parameters for the modules using PST• Performing the I/O mapping across the modules using SMT• Reading and writing the configuration and the parameter file to RIO600

CCT600 or IET600 are used to establish the GOOSE communication between theIEDs configured in PCM600.

2.2.1 PCM600 and RIO600 connectivity package version• Protection and Control IED Manager PCM600 Ver. 2.3 or later• RIO600 Connectivity Package Ver. 1.0 or later

2.3 Hardware and software requirements

Table 1: Requirements

Description RequirementsHardware Pentium III, 800 MHz or higher

128 RAM or higher40 MB free disk space

Software Operating SystemWindows 98 / XP / VISTA / Windows 7Microsoft .NET Framework 2.0PCM600 Ver.2.3 or laterIET600

1MRS757489 A Section 2RIO600 overview

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2.4 RIO600 engineering flow

Create the RIO600 in PCM600, use the

RIO600 Connpack and select online or

offline configuration

Online modeSelect and assign

the HW slot

RIO600 ConnPack scans the ‘powered up’

RIO600 and ascertains the hardware

configuration

Set the parameters of

RIO600 modules

RIO600 ConnPack automatically instantiates one LN GGIO

for every BI module, comprising DOs equaling number of

channels and also creates the datasets comprising all the

BI channel status and health information

Export the SCD file to the

IET600 tool

Enter the GoCB parameters for RIO600

and do subscriber mapping

Export the SCD file to

PCM600

Map the I/O using SMT

in PCM600

Select the write operation and download

the configuration into RIO600

Use the Web client to view parameter

settings and other operational data of the

RIO600 device

No

Yes

GUID-4185D81E-9E1B-4CDF-A04B-BA33C2AA0582 V1 EN

Figure 3: Basic steps in RIO600 GOOSE engineering

Section 2 1MRS757489 ARIO600 overview

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Section 3 Setting up a project

3.1 Handling connectivity packages

Uninstall the old RIO600 connectivity package before installing a new version. Theproduct code has changed in the latest release.

3.1.1 Uninstalling connectivity packages

1. To uninstall a connectivity package version, click Start, click Control Panel.2. In the Control Panel, double-click Add or Remove Programs.3. Select the connectivity package and click Remove.

GUID-A10FAF3F-F32A-4E5F-99EC-B6EFAC770898 V1 EN

Figure 4: Selecting the RIO600 connectivity package

4. In the Add or Remove Programs dialog box, click Yes to confirm theuninstallation.

3.1.2 Installing connectivity packages

Install Microsoft .NET Framework 2.0 and PCM600 Version 2.4Production Build before installing the RIO600 connectivity package.

1. Run the ABB RIO600 Connectivity Package Ver. n.msi installer from theRIO600 connectivity package installation package. (n = version number)

2. In the connectivity package setup, click Next.

1MRS757489 A Section 3Setting up a project

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GUID-77C5FCFB-F605-4904-9605-E8B0F7170B00 V1 EN

Figure 5: Running RIO600 installation wizard

2.1. Click Cancel to exit the installation.2.2. Click Resume to revert back to the installation or Exit Setup to confirm

the cancellation.3. Select I accept the license agreement and click Next.

GUID-A6406B4A-C038-4BE8-A6E6-4CB6A23E817A V1 EN

Figure 6: Accepting the License Agreement before installation

4. Click Browse select the file destination and click Next.

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GUID-9A3AF6D3-8133-424A-A7AF-BC48E868A65E V1 EN

Figure 7: Selecting the folder for installation

5. Click Next to start the installation.

GUID-AF3833E9-54FB-41C1-B70B-98CE07D1AA9F V1 EN

Figure 8: Installation progress

6. After the installation is complete, click Finish to exit the setup program.

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GUID-F5EA0C8E-4DFC-4534-BB76-74B74D268E34 V1 EN

Figure 9: Completing the installation

3.1.3 Activating connectivity packagesThe connectivity package has to be installed before it can be activated.

1. Double-click the Update Manager icon on Windows desktop to activate theappropriate connectivity package.The Update Manager shows the connectivity packages that are compatiblewith the installed PCM600 version.

2. Select the ABB RIO600 Connectivity Package Ver. n (n = version number).Always use the latest version of the connectivity package.

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GUID-8C5FAD25-205D-4DBF-97A5-C17177C8A6F9 V1 EN

Figure 10: Selecting the connectivity package

3.2 Creating a new project

1. Start PCM600.2. To see the projects that are currently available in the PCM database, click

File, point to Open and click Manage Project.The Open/Manage Project window is displayed.

GUID-6A3174B2-48C1-4D34-B01B-2AA21841FE3E V1 EN

Figure 11: Managing projects

3. Select Projects on my computer.• If there are currently any projects or object tools open, close them.

4. Click New Project.The Create New Project dialog box opens.

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GUID-BECFF2D6-C182-4B80-9FA9-9568D425B195 V1 EN

Figure 12: Creating new projects

5. In the Project Name box, give a name for the project.• Optionally, write a description of the project in the Description box.

GUID-AA358B9E-2186-482E-9E33-EE2CAB5E5715 V1 EN

Figure 13: Naming a project

6. Click Create.PCM600 sets up a new project that is listed under Projects on my computer.

3.3 Building the plant structure

1. Create a new plant structure in PCM600.1.1. In the Plant Structure view, right-click and select New/ General.1.2. Select the element like Substation, Voltage level and Bay.

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GUID-0B43053E-C5DB-4B91-BFB7-2BEA7A988B6F V1 EN

Figure 14: Creating a bay

GUID-D847EFFD-27AE-4530-9EF2-F64CA19553B7 V1 EN

Figure 15: Creating a RIO600 IED

RIO600 is available only if the connectivity package has beeninstalled successfully.

2. Rename each level in the structure by the names/identifications used in the grid.2.1. Right-click the level and select Rename.2.2. Rename the levels in the Object Properties view.

3.4 Inserting IEDs

IEDs can be inserted to the project either in offline or online mode.

When the physical device is not available or not connected to PCM600, theengineering is done without any synchronization with the device. The offlineconfiguration in PCM600 can be synchronized with the physical device later byconnecting the device to PCM600. Working in the offline mode has an advantagecompared to online mode in that the preparation for the configuration can bestarted even though the device is not available.

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When the device is already connected to PCM600 and the communication isestablished, PCM600 can read the configuration directly from the physical device.This is useful when an order-specific device is used. The order configuration iswritten to the device at the factory and PCM600 is able to access it.

If the device is not configured or it contains an invalid configuration, select Writeto IED before any other operations in the online mode. If the device has a validconfiguration, select Read from IED directly after the device instance has beencreated to retain the communication parameter’s value. In Parameter Setting tool,the communication parameters are then updated according to the deviceconfiguration. Otherwise, the Parameter Setting tool contains the default data, forexample, the default IP Address 192.168.2.10.

3.4.1 Inserting an IED in offline mode

1. In the Plant Structure view, right-click the bay and select New/Remote I/OIEDs/RIO600.The Configuration mode selection page dialog box opens.

2. Under Configuration mode, select Offline Configuration and click Next.

GUID-C9A317A6-0D51-4745-B3BA-48F0E125FF2B V1 EN

Figure 16: Selecting offline configuration mode

3. In the IED protocol list, select for example IEC 61850 and click Next.

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GUID-E282F5FE-5A08-4F0A-880F-91E305615A05 V1 EN

Figure 17: Selecting IED protocol in offline mode

4. Under PCM600 communication, define the communication parameters andclick Next.

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GUID-E3AB4E96-6F1F-48C5-A1CF-66E8E1869F55 V1 EN

Figure 18: Defining communication parameters in offline mode

4.1. In the Port list, select the port to be used.4.2. In the IP Address box, enter the correct IP address.

5. In the Communication configuration complete dialog box, click Next.

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GUID-2812171F-2C7D-459D-BB0D-67E453929C92 V1 EN

Figure 19: Completing communication parameter configuration in offlinemode

6. In the Composition selection page dialog box, configure the channels andgenerate the order code.As a default, the channels are not configured.

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GUID-42E04DD5-5EFC-412C-8867-272FE98DF340 V1 EN

Figure 20: Selecting composition in offline mode

6.1. In the Position lists, select the correct module types for each usedchannel. The corresponding hardware type and software version choicesare enabled.

6.2. Click Generate to generate an order code based on the selectedcomposition.

7. In the Generating functions dialog box, wait until the function generation isready and click Close.

8. In the Composition selection page dialog box, click Next.9. In the Setup complete dialog box, click Finish.

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GUID-C0081EAA-DD8B-4AC8-9F0D-EFAE0A29A12C V1 EN

Figure 21: Viewing summary page in offline mode

10. In the Set technical key dialog box, click OK to close the configuration setupwizard.The plant structure is updated according to the hardware configuration. Themodule types and the related positions are visible under the HWConfiguration. For example, DIM8GGIO1 represents Position 1 and moduletype DIM8.

1MRS757489 A Section 3Setting up a project

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GUID-500C7771-596F-41B1-BA4B-EDEEF7F6AA3A V1 EN

Figure 22: Updating the plant structure in online mode

In the plant structure, the Application configuration does notcontain any data.

Click Cancel anytime during the configuration setup to remove thecreated RIO600 device from the plant structure. Use Back andNext to navigate between the pages in the setup wizard.

3.4.2 Inserting an IED in online mode

To set up a device in online mode, the device must be connected toPCM600.

1. In the Plant Structure view, right-click the bay and select New/Remote I/OIEDs/RIO600.The Configuration mode selection page dialog box opens.

2. Under Configuration mode, select Online Configuration and click Next.

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GUID-BC49C294-E6BF-4CE4-B436-49FE8E6CA8B1 V1 EN

Figure 23: Selecting online configuration mode

3. In the IED protocol list, select for example IEC 61850 and click Next.

1MRS757489 A Section 3Setting up a project

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GUID-53DD8730-C438-4AAE-AAB9-7355A8769D6E V1 EN

Figure 24: Selecting IED protocol in online mode

4. Under PCM600 communication, define the communication parameters andclick Next.4.1. In the Port list, select the port to be used.4.2. In the IP Address box, enter the correct IP address.

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GUID-B6DF68A8-4E0B-49CB-A447-F735D12B9CEB V1 EN

Figure 25: Defining communication parameters in online mode

5. In the Communication configuration complete dialog box, click Next.

1MRS757489 A Section 3Setting up a project

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GUID-7A4274F5-68C4-4197-89F0-DE07687285BE V1 EN

Figure 26: Completing communication parameter configuration in offlinemode

6. In the Composition selection page dialog box, click Scan to read thehardware configuration from the device.

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GUID-D0DA4662-1588-4DA2-B2D6-0E9E33D26D68 V1 EN

Figure 27: Viewing Composition selection page in online mode

7. In the Generating functions dialog box, wait until the function generation isready and click Close.

8. In the Composition selection page dialog box, click Next.In online mode, the composition selection data is read-only and cannot be edited.

1MRS757489 A Section 3Setting up a project

RIO600 29Configuration Manual

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GUID-667B1763-33CA-4191-B1B4-BE990AC975F2 V1 EN

Figure 28: Viewing device configuration in online mode

9. In the Setup complete dialog box, click Finish.The plant structure is updated according to the hardware configuration.

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GUID-8541E357-5AC7-4E7A-BC84-3BFA04F7C586 V1 EN

Figure 29: Viewing summary page in online mode

GUID-500C7771-596F-41B1-BA4B-EDEEF7F6AA3A V1 EN

Figure 30: Updating the plant structure in online mode

In the plant structure, the Application configuration does notcontain any data.

1MRS757489 A Section 3Setting up a project

RIO600 31Configuration Manual

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Click Cancel anytime during the configuration setup toremove the created RIO600 device from the plant structure.Use Back and Next to navigate between the pages in the setupwizard.

In the plant structure, a tick mark in front of the node anddevice name indicates successful communication betweenPCM600 and the device.

3.5 Setting the technical key

The technical key is used for the unique identification of each device and can bemodified to create a new device.

1. In the Plant Structure, right-click on RIO600 and select Set Technical Keyin IED.

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GUID-C2D6CA5E-4B6A-418C-B667-2044B98F17F6 V1 EN

Figure 31: Setting technical key

2. In the Technical Key Information dialog box, click OK.• Click Cancel or close the dialog box to cancel the setup.

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GUID-35CFFA56-EA03-4DF0-BD9E-0412DCE9422D V1 EN

Figure 32: Viewing technical key information

3. In the Set Technical Key dialog box, define the technical key and click OK.

GUID-2E3289A4-D774-4130-AC03-D9B60D9857CA V1 EN

Figure 33: Selecting user-defined technical key

• Select Technical Key in IED to set IED technical key to PCM600.• Select Technical Key in PCM600 to set PCM600 technical key to IED.• Select User-defined Technical Key to provide technical key to IED as

well as to PCM600.4. Wait until the configuration is complete and click OK.

The technical key can be modified using the Object Properties.

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GUID-611B0353-C964-442D-931D-E40C6C1D7B39 V1 EN

Figure 34: Viewing technical key properties

Do not set the same technical key for more than one devicethrough the Property window or an error appears in theOutput window.

A valid technical key can have maximum of 32 characters.

GUID-FAE06F51-DFE2-42A9-ACE5-D4247CCF5D1B V1 EN

Figure 35: Failing to set technical key

3.6 Editing object properties

The Object Properties window is used to view the parameters set during theconfiguration setup. For example, the IP Address and Technical Key can bechanged directly via the Object Properties of the selected device.

1. In the Plant Structure view, select a device.2. On the View menu, click Object Properties.

The Object Properties window opens.3. Type in the value like a new IP address to the IP Address row.

Some object properties like Configuration Version and IED Type are noteditable.

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GUID-AC0614E4-951A-476B-9DA2-38F305A4E00B V1 EN

Figure 36: Viewing Object properties

The changes in the IP Address and Technical Key do not reflect inthe device but are used to establish a connection between PCM600and the device.

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Section 4 Using the Parameter Setting tool

4.1 Viewing parameters

The device should contain a valid configuration. If the device is not configured orcontains an invalid configuration, select Write to IED.

• In the Plant Structure view, right-click a device and select the ParameterSetting to view the configured parameters for the selected device.

GUID-9B08B99B-5367-4007-8D4A-FBD71EB8A10B V1 EN

Figure 37: Select Parameter Setting

• The Parameter Setting window shows the parameters of all modules.

1MRS757489 A Section 4Using the Parameter Setting tool

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GUID-1BB053C8-4B6F-4C8A-AE5A-7040CC16E454 V1 EN

Figure 38: Viewing Parameter Setting tool

4.2 Reading parameters from the device

1. Click to read parameters from the device.The Read parameters from RIO600 dialog box opens.

GUID-C0262BF3-B922-4FCD-B178-267B4964A053 V1 EN

Figure 39: Reading parameters

2. Under Parameter range, select which parameters are read from the device.

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2.1. All parameters of a device like RIO6002.2. A selected group of parameters like General Parameters2.3. A selected parameter like IRF channel number

3. Under Parameter option, check the box Copy IED values to PC value fieldto update the IED value column after the configured values are read from thedevice.

4. Click OK to read the parameters from the device.

4.3 Setting communication and synchronizationparameters

1. In the Plant Structure view, go to RIO600/IED Configuration/HWConfiguration/LECM to set the communication parameters.

GUID-93006CF0-AED8-4CE8-B67F-C3019156CA0C V1 EN

Figure 40: Selecting LECM to set communication parameters

2. Right-click LECM and select Parameter Setting to display the general,communication and synchronization parameters in the Parameter Setting tool.

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GUID-35367032-5CB6-43E9-82C8-B97E68BC3F14 V1 EN

Figure 41: Viewing parameters display in PST after selecting LECM

3. Change the values of the IP Address, Subnet mask, Default gateway, IPSNTP primary and IP SNTP secondary parameters based on the requiredconfiguration.

4.4 Writing parameters to the device

1. Click to write parameters to the device.The Write parameters to RIO600 dialog box opens.

2. Under Parameter range, select which parameters are written to the device.• All parameters of a device like RIO600• A selected group of parameters like General Parameters• A selected parameter like IP Address

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GUID-C5790BF5-799B-418B-8246-469463BEE1FA V1 EN

Figure 42: Writing parameter(s)

3. Under Parameter options, define if only the changed parameters are writtento the device and if they are read back to the tool.• Select Changed parameters or All parameters.• Click the Read back check box to read back the parameters after

writing them to the device.4. Click OK to write the parameters to the device.

If there are no modified or changed parameters and the selected parameterrange is All parameters, an error message appears.

GUID-FCA4A882-5AFD-4716-939B-157C44E9FA74 V1 EN

Figure 43: Detecting modified parameters

5. Wait until the parameters are written to the device and the device reboots.The Output window message indicates if the parameters are successfullywritten to the device. If the parameters are written successfully but theconfiguration is rejected by the device, a dialog box opens indicating an error.

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GUID-ACC63F51-D685-4A98-A841-7CBAA2DB0688 V1 EN

Figure 44: Failing to update parameter value

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Section 5 Using the Signal Matrix tool

5.1 Starting the Signal Matrix tool

The purpose of SMT with RIO600 is to map signals from other IEDs to theRIO600 binary outputs and thus connect the two devices over the IEC 61850communication link.

In a PCM600 project, the other IEDs see the RIO600 binary inputs in the SMTGOOSE page after the system configuration.

GUID-538E3515-62DA-42BF-B653-D4AA7D2251DA V1 EN

Figure 45: Signal Matrix tool before GOOSE engineering

• In the Plant Structure, right-click a device and select Signal Matrix.

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GUID-F8F63830-25C1-4B94-BF4F-9433C6EC18E6 V1 EN

Figure 46: Selecting Signal Matrix

5.2 Exporting SCD files

After the RIO600 parameters are set, export the System Configuration Descriptionfrom PCM600 for the system configurations tool.

1. In the Plant Structure view, right-click the substation and select Export.

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GUID-BF9999FE-0327-4735-B0A2-3751CD71AF60 V1 EN

Figure 47: Selecting Export

2. In the Information dialog box, click OK.3. In the Export dialog box, select the file destination and click Save.

GUID-AB744550-5769-47BE-87A5-BDC20B146A5D V1 EN

Figure 48: Selecting file destination

4. In the SCL Export Options dialog box, click Export to export the privatesections to the SCD file.

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GUID-324B90A6-628E-4EE8-86D5-75CC9B42ED43 V1 EN

Figure 49: Exporting SCD file

5.3 Importing SCD files

After GOOSE engineering in the system configuration tool, the SCD file can beimported at the substation level.

1. In the Plant Structure view, right-click the substation and select Import.

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GUID-89560C5B-87CC-499D-B96A-978FDCC31CC7 V1 EN

Figure 50: Selecting import

2. In the Import dialog box, locate an SCD file and click Open.3. In the SCL Import Options dialog box, select how to handle the file during

the import and click Import.

GUID-CE14F387-5652-478F-A010-A3D57FE84ED4 V1 EN

Figure 51: Selecting SCD file

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3.1. Select Don't import IEDs of unknown type to protect the existingIEDs in case the SCD file does not match the original configuration inPCM600.

3.2. Select Replace unknown IED types with generic IEC 61850 objecttype, if it is known that the file includes additional IEDs that areneeded. The Generic IEC 61850 IED type is used to integrate theseIEDs into the plant structure.

3.3. Select Ignore PCM Object Type to update the IED object(s) inPCM600 from the IED type(s) in the SCD file, whether or not the IEDtype(s) in the SCD file matches the IED object(s) in PCM600.

3.4. Select Ignore Substation Section to not import the SSD file part of theSCD file.

GUID-5750D3FF-C120-40E9-858D-24D7962A2CC7 V1 EN

Figure 52: Importing SCD file

4. Make connections from the sending devices (publisher) to the receivingfunction blocks (subscriber) with the Signal Matrix tool.

The GOOSE connection can have only one output for any ofthe hardware modules. The PCM600 level validation is donefor a duplicate connection. A DOM to DOM connection is notprovided in the current version.

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GUID-1A8A7742-D028-4AA9-8274-67DE6A12CE54 V1 EN

Figure 53: Detecting duplicate connection

5. In the Plant Structure view, select the device, right-click and select Write toIED.

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Section 6 Common Read/Write (CRW)

6.1 Starting Read/Write

The common read/write is used for both reading from IED and writing to IED.

1. In the Plant Structure view, right-click the device and select Write to IEDor Read from IED.

GUID-991A90CE-EEE1-48B0-BBD1-85DAA0E59E21 V1 EN

Figure 54: Reading configuration from IED

The Common Read/Write window is added to the tool.2. In the Read/Write dialog box, click Yes to proceed.

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GUID-E2848134-3CA9-4C69-BD4B-E57F7659A479 V1 EN

Figure 55: Confirming read operation

• Click No to cancel the Read/Write operation.odai

GUID-5FED9704-9FD2-49F0-8A9C-1964A74CA3C3 V1 EN

Figure 56: Cancelling operation

• To switch between the read and write operations, use the check boxes inthe Common Read/Write window.

GUID-47E0208F-4E32-4A8A-A8AF-6F636B7FAAD2 V1 EN

Figure 57: Switching operation

• To restart the read or write operation, click in the Common Read/Write window.

• If the technical key in both PCM600 and the IED matches, the writingoperation begins. The status progress bar and the comment fields showthe progress

• If there is no GOOSE engineering in the IED (there may be noconfiguration in the IED), the IED Write dialog box appears.

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GUID-67108C5B-8D73-4765-88C0-28684E31BB86 V1 EN

Figure 58: Failing to check IED's GOOSE settings

3. The IED reboots after all the required data is written to the IED.

The procedure is the same when reading data from the IED,except that the IED should not be restarted in between operation.

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Section 7 Using the Composition Update tool

The RIO600 composition is defined with the configuration wizard at the time thedevice is inserted to the project. Later the composition for an existing IED can bemodified with CUT.

7.1 Configuring the device offline

1. In the Plant Structure view, right-click RIO600 and select CompositionUpdate Tool.

GUID-0A6171A6-5A56-45B4-AEDE-6DEDC09A9318 V1 EN

Figure 59: Selecting Composition Update Tool

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The RIO600 - Composition update mode selection page dialog box opens.2. Under Composition update mode selection, select Offline update to

configure the IED in offline mode and click Next.

GUID-A6041BA0-1ABE-4BF2-B6CE-3758426DBE0E V1 EN

Figure 60: Selecting offline update in Composite Update tool

The Composition selection page dialog box opens and shows the existingconfiguration of the selected IED.

3. Add or remove a module or update an existing one.The Generate option is enabled.

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GUID-F94252B3-D2FB-4A68-AA74-5F63C52B2E2F V1 EN

Figure 61: Modifying the current configuration

4. Click Generate to change the composition configuration. A pop-up messageis displayed about the changes in the composition configuration and it is notchanged once the composition configuration is updated.

GUID-EC4AB8BC-64EC-4BC1-A473-05566AFE0123 V1 EN

Figure 62: Detecting change in composition configuration

5. In the Composition Update Tool dialog box, click OK to generate thefunctions.• Click No to abort the operation.

6. In the Generating functions dialog box, wait until the function generation isready and click Close.

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GUID-23BB368C-9D06-4589-82F0-1FD898876273 V1 EN

Figure 63: Viewing generated functions in offline mode

7. In the Composition selection page dialog box, click Next.8. In the Setup complete dialog box, click Finish.9. In the Set Technical Key dialog box, click OK to close the configuration

update wizard.The plant structure is updated according to the hardware configuration.

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Figure 64: Updating plant structure

7.2 Configuring the device online

1. In the Plant Structure view, right-click RIO600 and select CompositionUpdate Tool.The RIO600 - Composition update mode selection page dialog box opens.

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GUID-9163B35B-C49C-4E6E-BBD5-1E16A588F4CB V1 EN

Figure 65: Selecting online mode in Composite Update tool

2. Under Composition update mode selection, select Online update toconfigure the IED in online mode and click Next.The Composition selection page dialog box opens.

3. In the Composition detection page dialog box, click Scan to read theconfiguration from the IED.

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GUID-85E6C8C3-A128-4DA5-8A7E-6F9D46AC5C09 V1 EN

Figure 66: Viewing the composition detection page

4. In the Composition Update Tool dialog box, click OK to generate thefunctions.• Click No to abort the operation.

5. In Generating functions dialog box, wait until the function generation isready and click Close.

6. In the Composition detection page dialog box, click Next.

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GUID-D04062DC-F627-4C48-AEDC-8C83231B1EE0 V1 EN

Figure 67: Viewing the current configuration in online mode

7. In the Setup complete dialog box, click Finish.

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GUID-513EE8B1-FD6F-4209-B775-264033CE774A V1 EN

Figure 68: Viewing the updated summary page in online mode

The plant structure is updated according to the hardware configuration. Thesummary of the configuration wizard selections is displayed. Click Finish toclose the configuration wizard setup and Plant Structure is updated for theselected IED.

GUID-3F92EFC9-CCBE-46C6-BFF9-7A57CB81D2C9 V1 EN

Figure 69: Viewing updated plant structure

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Section 8 GOOSE engineering

8.1 Creating a project

1. Open the IET600 tool and click Manage Projects to create or open a project.

GUID-C1BED8BB-75EF-47FC-AE22-9F69C1736397 V1 EN

Figure 70: Managing projects

2. In the Projects dialog box, click New to create new project.

GUID-33B167B9-D8D8-4182-BFEB-1F5AF216D89D V1 EN

Figure 71: Viewing projects

• Click Open to open an existing project.3. In the Create New Project dialog box, enter a project name and click OK.

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GUID-AA358B9E-2186-482E-9E33-EE2CAB5E5715 V1 EN

Figure 72: Creating New Project

8.2 Importing an SCL file in IET600

1. On the Home menu, click Import.

GUID-D07E0914-E729-4EE0-9D3E-4ADFB3E50CFD V1 EN

Figure 73: Selecting Import

2. In the Import SCL File dialog box, locate the SCD file to be imported inIET600 and click Open.

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GUID-D0A28C9C-A92C-42FC-8961-51EA3DE31B27 V1 EN

Figure 74: Importing SCL file

GUID-AEFF005E-92FB-4451-8C5E-8765E8F01298 V1 EN

Figure 75: Viewing imported SCD file

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8.3 Creating GOOSE datasets

The RIO600 Connectivity Package provides automatically the default GOOSEdatasets. The connectivity package collects all the available inputs and modulehealth data to these datasets. They can be directly taken into use in IET600 bycreating a GOOSE Control Block and linking the available dataset to it. In case theuser wants to create their own datasets, it is recommended to delete the existingones and create a new one.

RIO600 supports maximum of two datasets in the application. If theRIO stack contains more than five binary I/O modules, there aretwo default datasets instead of only one dataset.

1. Select the IEDs tab in the navigation pane.2. Click the IED node to select a Publisher IED.3. Click the Datasets tab in the editor pane.4. To add a new data set, right-click on the area containing the data set names

and select Insert new row.

GUID-72438822-9B69-4BFE-8339-60BF3F2C4DEA V1 EN

Figure 76: Creating new row under Datasets tab

5. In the Create New Dataset dialog box, define a dataset name and click OK.A row representing the new dataset is created under the Dataset tab.

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GUID-97078B14-E3E9-49BE-8416-F1512F100614 V1 EN

Figure 77: Creating New Dataset

GUID-2CF4FF2E-E871-4422-B292-10C5DD25916D V1 EN

Figure 78: Creating new row under Datasets tab

RIO600 supports only unstructured datasets in GOOSE.

A single dataset in RIO600 contains at maximum 150 data attributes.

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8.3.1 Defining data attributes

1. Select the Datasets tab on the editor pane.2. Select a GOOSE dataset.3. Select LD/LN/DObject/DAttr./FC and click Insert to add the data in the

dataset.

GUID-AB500C2C-66B9-4998-B778-86737809AF33 V1 EN

Figure 79: Adding data in dataset

8.4 Configuring GOOSE control blocks

1. Select the IED node on the IEDs tab in the navigation pane.2. Select the GCB Data tab in the editor pane.3. To add a new GOOSE control block, right-click the area containing the

existing GOOSE control blocks and select Insert new row.

GUID-0BC01B59-FC92-458F-A351-779EC6114DAC V1 EN

Figure 80: Creating new row under GCB Data tab

4. In the Create New GCB dialog box, define a GCB name and click OK.

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A new row is created under the GCB data tab.

GUID-2EBD367F-0157-46CA-8512-1D7FDA73B33B V1 EN

Figure 81: Creating New GCB

5. In the Attached Dataset drop-down list, select the previously created dataset.

GUID-A86776E0-205A-4DA6-A832-953F2C021D3A V1 EN

Figure 82: Attaching GCB to defined dataset

Use a unique Multicast MAC address and APP ID.

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8.5 Configuring a GOOSE Subscriber

1. Select the root node on the IEDs tab in the navigation pane.2. Click the GCB Clients tab in the editor pane.

The rows of the GCB client editor show GoCBs that are publishers and thecolumns show the IEDs available as GOOSE clients, that is subscribers.

3. Connect the publishers and subscribers.

GUID-36D86174-D9AE-43EF-B969-E528B1CF9DF3 V1 EN

Figure 83: Making the connection between publisher and subscriberunder GCB Clients tab

8.6 Exporting SCD files in IET600

1. On the Home menu, click Export.

GUID-3DE8A07A-85D0-4FCF-97A2-7AFC24A1873A V1 EN

Figure 84: Selecting Export

2. In the Export SCL File dialog box, select the file destination and click Save.

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GUID-80E4555D-B78E-4F9B-BA1E-F1B0304F67C5 V1 EN

Figure 85: Exporting SCL file

After a successful export, PCM600 can be used for furtheroperations.

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Section 9 Troubleshooting

9.1 Troubleshooting the technical key in online mode

1. Define a unique technical key for each device as duplicate technical keys arenot allowed. If the device is created in online mode and the technical key isalready set to another device instance in the plant structure, a pop-up messageand error appears in the Output window. In online mode, the technical key isretrieved from the device and set to the device instance’s technical key.

GUID-AB758C3D-2812-4664-913B-81B3A2D29B4B V1 EN

Figure 86: Failing to set technical key (pop message)

GUID-FCB2751E-5A38-4EB9-BADF-59FFF54968B6 V1 EN

Figure 87: Failing to set technical key

2. Define the device type and communication parameters correctly. If the deviceis not responding or is connected to other IED type, an error message appearswhen the Scan button is clicked.

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GUID-4412CDB6-8215-4C94-AF11-0CF8EEC6F4D2 V1 EN

Figure 88: Detecting unresponsive IED or incorrect IED type

3. Accept the technical keys suggested by PCM600. If the device’s technicalkey is, for example, “RIO600” or “BAY1” and a new device instance iscreated in online mode, an error message appears. Click Yes to change thetechnical key or No to abort the scan.

9.2 Troubleshooting the reading and writing ofparameters

Common validations while reading and writing parameters

• Ensure that the device is online.• Ensure that the device contains a valid configuration. Composition of IED and

IED object in PCM should match.• Ensure that the composition selection matches with the device. Technical key

in IED and PCM should match.• Ensure that the technical key is correct.

Validations while writing parameters

• Check that the IRF Module number is either zero or corresponds to any of theDOM module positions.

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GUID-5C22FF3A-320A-47DF-A969-57D3083400FA V1 EN

Figure 89: Detecting incorrect IRF module number

• Check that the value of IRF’s parameters does not conflict with the GOOSEconnections in the device.

GUID-B8372066-F5F0-4A81-AE60-5776128D7641 V1 EN

Figure 90: Detecting conflicting with GOOSE connections

• Check that both the IRF module number and channel number are either zero ornon- zero.

GUID-8D0C19D4-538B-4FB4-B845-F5DB1BC3423D V1 EN

Figure 91: Detecting IRF module and channel numbers

• Check that the physical MAC Address is given in XX-XX-XX-XX-XX formatwhere X can be [0-9], [a-f] or [A-F].

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Figure 92: Checking physical MAC Address format

• Check that the Oscillation Suppression Hysteresis of the Digital input moduleis lower than the Oscillation Upper limit.

GUID-B68CE3DA-6815-4F60-99B5-FB85F1AD2E9E V1 EN

Figure 93: Checking Oscillation Suppression Hysteresis

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Section 10 Glossary

CCT600 Communication Configuration tool in PCM600COM600 An all-in-one communication gateway, automation platform and

user interface solution for utility and industrial distributionsubstations

CUT Composition Update tool in PCM600DIM8_H Binary input module - eight channelsDIN rail A standardized 35 mm wide metal rail with a hat-shaped cross

sectionDOM Binary output module - four channelsEMC Electromagnetic compatibilityGOOSE Generic Object-Oriented Substation EventHMI Human-machine interfaceI/O Input/outputIEC International Electrotechnical CommissionIED Intelligent electronic deviceIET600 Integrated Engineering Toolbox in PCM600LECM Communication modulePCM600 Protection and Control IED ManagerPSM_H Power supply modulePST Parameter Setting tool in PCM600RIO600 Remote I/O unitSCD Substation configuration descriptionSMT Signal Matrix tool in PCM600WHMI Web human-machine interface

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Contact us

ABB OyDistribution AutomationP.O. Box 699FI-65101 VAASA, FinlandPhone +358 10 22 11Fax +358 10 22 41094

ABB LimitedDistribution AutomationManejaVadodara 390013, IndiaPhone +91 265 2604032Fax +91 265 2638922

ABBTransmission and DistributionAutomation Equipment (Xiamen) Co. Ltd.ABB Industrial Park, Torch Hi-techDevelopment Zone 361006Xiamen, Fujian, ChinaPhone +86 592 5702288Fax +86 592 5718598

www.abb.com/substationautomation

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