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GE DIGITAL ENERGY M60

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Description

GE Digital Energy Multilin M60 Motor Protection System

Part Number

M60

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Manufacturer

GE DIGITAL ENERGY

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Category

PRODUCTS - M

Datasheet

pdf file

GE_Digital_Energy_M60_Motor_Management_Relay_datasheet1-293034883.pdf

1162 KiB

Extracted Text

Multilin™ M60 MOTOR PROTECTION SYSTEM Comprehensive Protection for Medium to Large Motors KEY BENEFITS • Advanced motor protection and control elements including a • Increase network availability by reducing failover time to zero ® flexible and powerful thermal model and standard, custom and through IEC 62439-3 “PRP” support voltage dependant overload curves • CyberSentry™ provides high-end cyber security aligned to industry ® • Integrated automation and process control functions standards and services (NERC CIP, AAA, Radius, RBAC, Syslog) • Simplified programming with the EnerVista™ M60 motor settings • Robust network security enabling Critical Infrastructure auto-configurator Protection through user command logging, and dual permission access control • Three independent fiber or copper Ethernet ports for simultaneous/ dedicated network connections with 1 microsecond time • High-end fault and disturbance recording ® synchronization via LAN with IEEE 1588 support • Enhanced motor-learned data provides critical information for • Reduced relay-to-relay wiring and associated installation costs preventative maintenance through high-speed inter-relay communications • Complete IEC 61850 Process Bus solution provides resource optimization and minimizes total P&C life cycle costs APPLICATIONS • Protection and control of most popular construction type • Protection of medium to large synchronous motors when paired medium to large thee-phase induction motors with the SPM Synchronous Motor Protection System • Automation or process control functionality • Stand-alone protection or component in automated substation control system FEATURES Protection and Control IEC 61850 Process Bus Interface • Enhanced thermal model with RTD and current unbalance • Robust communications with up to 8 HardFiber Bricks compensation • Redundant architecture for dependability and security • Stator differential • Mechanical jam/stall Monitoring and Metering • Metering: current, voltage, power, energy, frequency • Short circuit tripping • Advanced recording capabilities deliver a 1024 event recorder, • Under current/under power configurable and extended waveform capture and data logger • Phase reversal • Setting for security audit trails for tracking changes to M60 • Reverse/low forward power protection configurations • Two-speed motor protection • Motor starting characteristics for the last 250 motor starts • Reduced voltage starting • Optional internal RTDs & external RTD module EnerVista Software • CT failure for each CT bank, VT fuse failure • Graphical Logic Designer and Logic Monitor to simplify designing and testing procedures via EnerVista UR Engineer Communications • Service and update notification toolset ensures device documents • Networking interfaces: up to three Ethernet ports 100Mb fiber or and software are up-to-date via EnerVista Launchpad copper, RS485, RS232, RS422, G.703, C37.94 ® • EnerVista Integrator providing easy integration of data in the M60 • Multiple protocols: IEC 61850, DNP 3.0 and Modbus serial/TCP, into new or existing monitoring and control systems IEEE 1588, IEC 60870-5-104 and 103, PRP, SNTP, HTTP, TFTP, EGD • DeviceNet and Profibus protocol options available using the D485 and P485 protocol convertors • Direct I/O: secure, high-speed exchange of data between URs for direct transfer trip (DTT) applications M60 Motor Protection System M60 - Protection, Metering, Monitoring and Control Protection and Control The M60 motor protection system offers comprehensive protection and control solutions for medium to large-sized three-phase motors. The M60 includes advanced automation and communication capabilities, extensive I/O options, and powerful fault recording features that can simplify postmortem fault analysis and help minimize motor downtime. As part of the Universal Relay (UR) family, the M60 provides superior protection and control that includes: Motor Thermal Model The M60 features an enhanced motor The M60 provides protection, control, metering, and monitoring in a single device, easily integrated into existing HMI or SCADA monitoring and control systems. thermal model consisting of the following elements: FlexCurves™ Mechanical Jam • Thermal limit curves - NEMA standard, voltage dependent and customized For applications that require greater The mechanical jam element senses flexibility, FlexCurves can be used to define increased loading associated with • IEC 60255-8 thermal overload curves custom curve shapes. These curves can process or load related faults such as an • Current unbalance biasing be used to protect motors with different overloaded conveyor. A programmable • Independent running and stopped rotor and stator damage curves, allowing delay setting can be used to allow the exponential cooling curves complete protection over the total motor process to attempt to clear itself before • Optional RTD biasing of the thermal capacity. issuing a trip. model to adapt to real-time Acceleration Time temperature measurements Overtemperature Protection The M60 supports up to 16 programmable The M60 protects the motor from • Compensation for hot/cold motor RTD inputs that allow for the configuration overheating in cases of abnormal conditions of the alarm and trip temperature of each loading during motor starts. The motor RTD, detecting RTD shorting conditions, can be tripped if the motor does not The M60 thermal model integrates both and selecting RTD voting that requires reach a running condition within the stator and rotor heating and cooling into more than one RTD to detect an over- programmable motor acceleration time. a single model. temperature condition before it will issue a trip command. Functional Block Diagram ANSI Device Numbers & Functions Device Function Number 27P Phase Undervoltage 27X Auxiliary Undervoltage 32 Sensitive Directional Power 37 Under Power 52 TRIP CLOSE 27P 59N,P 59_2 47 81O 46 Current Unbalance 81U 3 3 3 4 6 47 Phase Sequence Voltage 49 Thermal Overload 51G 50G 50BF Breaker Failure 4 4 50G Ground Instantaneous Overcurrent 50N Neutral Instantaneous Overcurrent 50BF 46 49 67N 37 67P 32 50P 50N 50NBF 50P Phase Instantaneous Overcurrent 2 2 2 4 2 2 4 51G Ground Time Overcurrent 59N Neutral Overvoltage 59P Phase Overvoltage M 59X Auxiliary Overvoltage RTD Metering 59_2 Negative Sequence Overvoltage 66 Starts Per Hour, Time Between Starts 87S 67N Neutral Directional Overcurrent 67P Phase Directional Overcurrent 87S Stator Differential 81O Overfrequency M60MotorManagementSystem 81U Underfrequency --- Mechanical Jam --- Under Power 390 390 390 GEDigitalEnergy.com Motor Protection M60 Motor Protection System TYPICAL CUSTOM CURVE - 6500 HP, 13800 VOLT INDUCED DRAFT FAN MOTOR 10000 1000 1 2 100 3 The M60 percent differential element has enhanced saturation detection algorithms to provide additional 10 security against AC and DC saturation that can occur during faults near the motor. operating at off-nominal frequencies Short Circuit Protection 4 (which can damage the process) or signals Short circuit overcurrent protection 5 1.0 to upstream protection or control to protects damage to the motor during a implement load-shedding actions. locked rotor condition. The M60 comes with up to 8 instantaneous overcurrent RTD Protection (Module Option 5C) elements that can be configured for The M60 RTD option provides 8 protection, alarming, and control during 0.1 0.5 1.0 10 100 programmable RTD inputs per module that locked rotor conditions. MULTIPLE OF PER UNIT CURRENT are used for monitoring the stator, bearing 1 PROGRAMMED FLEXCURVE and ambient temperatures. Each RTD input Start Inhibit 2 RUNNING SAFETIME (STATOR LIMIT) has 2 operational levels: alarm and trip. The 3 ACCELERATION SAFETIME (ROTOR LIMIT) The start inhibit function prevents the M60 supports RTD trip voting and provides 4 MOTOR CURRENT @ 100% VOLTAGE starting of a motor when the motor is too 5 MOTOR CURRENT @ 80% VOLTAGE open RTD failure alarming. Alternatively, hot and does not have a sufficient amount a remote RTD module “RRTD”, which of thermal capacity available to allow a Typical FlexCurve overload curve. supports 12 RTD inputs, can also be used start without being tripped offline. with the M60 for temperature monitoring. RTD Bias Maximum The RRTD provides cost savings compared 100 Breaker Failure Protection 90 with standard RTD wiring. The breaker failure protection element 80 monitors for timely operation of the Two-Speed Motor Protection 70 connected breaker. If a trip command is 60 The two-speed motor protection feature not successful in operating the breaker 50 allows for the protection of motors that and clearing the fault, the breaker failure 40 can operate at two different speeds and element can be used to send trip signals to 30 have different full load capacity levels at upstream breakers to clear the fault. 20 each speed. This feature can be used on RTD Bias Center RTD Bias Minimum 10 Point motors that have two sets of windings Undercurrent Protection 0 on each stator, where each set is used to -50 0 50 100 150 200 250 The undercurrent protection element operate the motor at a different speed. Maximum Stator RTD Temperature ( C) provides the ability to trip the motor due RTD bias curve. to external conditions that can cause the Underpower Protection load being pulled by the motor to drop The underpower protection feature below a preset level. This element is useful provides for sensitive detection of a when the loss of the load results in a loss Stator Differential loss of load condition. The underpower of cooling which will cause the asset to The M60 provides stator differential protection element can be more sensitive overheat. protection for fast clearing of stator phase for detecting loss of load conditions faults. Advanced CT saturation detection caused by process-related problems than Under/Over Frequency Protection algorithms and dual-slope characteristics is possible using a standard undercurrent The under/over frequency protection are incorporated for increased security element. element detects when the motor is during heavy faults. GEDigitalEnergy.com 391 391 391 TIME TO TRIP IN SECONDS RTD Thermal Capacity Used (%) Motor Protection M60 Motor Protection System for each of the last 250 consecutive motor Reduced Voltage Starting FlexLogic starts. Analyzing this diagnostic information The reduced voltage starting feature FlexLogic is the powerful UR-platform for operating parameters that have changed provides the controls for signaling the programming logic engine that provides over these successive starts can indicate motor to switch over from a reduced the ability to create customized protection maintenance requirements before damage voltage (that is used during startup) to the and control schemes, minimizing the occurs and costly repairs are required. full voltage for motor running operation. need and associated costs of auxiliary This feature can issue the command components and wiring. Using FlexLogic, For each motor start, the M60 will provide to switch to full operating voltage, by the M60 can be programmed to provide a record that contains the following detecting: a) if the motor load has reached the required tripping logic along with information: a preset current level, or b) if a time delay custom scheme logic for motor breaker has elapsed (after starting), or c) both of control (including interlocking with internal • Date of each motor start these conditions combined. motor start supervision and synchrocheck), • Motor acceleration time interlocking schemes with adjacent protections (for example, preventing • Motor starting current IEC 61850 Process Bus sympathetic tripping of healthy feeders), • Motor thermal capacity used during The IEC 61850 Process Bus module is and dynamic setting group changes. starts designed to interface with the Multilin • Average motor load HardFiber System, allowing bi-directional Scalable Hardware • Running time after a start IEC 61850 fiber optic communications. The The M60 is available with a multitude HardFiber System is designed to integrate of I/O configurations to suit the most Advanced Motor Diagnostics seamlessly with existing UR applications, demanding application needs. The including protection functions, FlexLogic™, expandable modular design allows for The Multilin M60 provides advanced motor metering and communications. The Multilin easy configuration and future upgrades. diagnostics including a broken rotor bar HardFiber System offers the following detection function. The broken rotor bar benefits: detection is a condition maintenance • Multiple CT/VT configurations allow for • Communicates using open standard function that continuously monitors the the implementation of many protection IEC 61850 messaging motor’s health while in operation. The schemes, including applications with advanced Motor Current Signature Analysis • Drastically reduces P&C design, high-impedance machine grounding (MCSA) continuously analyzes the motor installation and testing labor by • RTD inputs allow biasing of the current signature and based on preset eliminating individual copper motor thermal model, as well as algorithms, will determine when a broken terminations overtemperature protection of the rotor bar is present in the motor. With fully • Integrates with existing M60’s by stator, bearings, and other heat- programmable alarms, the broken rotor bar replacing traditional CT/VT inputs with sensitive components of the motor function will provide early detection of any the IEC 61850 Process Bus module • Types of digital outputs include trip- rotor problems and advise maintenance • Does not introduce new cyber security rated Form-A and Solid State Relay personnel of the impending issue, allowing concerns (SSR) mechanically latching, and for predictive maintenance of the motor and Form-C outputs prevention of catastrophic motor failures. Visit the HardFiber System product page • DCmA inputs are available to monitor on the GE Digital Energy web site for more equipment and process parameters By providing early indication of potential details. rotor problems, serious system issues, such as reduced starting torque, overloads, Monitoring and Metering torque and speed oscillation and bearing Advanced Automation wear, can be avoided. With the advanced The M60 includes high accuracy metering The M60 incorporates advanced automation broken rotor bar detection system, and recording for all AC signals. Voltage, features including powerful FlexLogic advanced warning of impending problems current, and power metering are built into programmable logic, communication, and reduces catastrophic failures, maximizing the relay as a standard feature. Current and SCADA capabilities that far surpass what is motor life and system uptime. voltage parameters are available as total found in the average motor protection relay. RMS magnitude, and as fundamental Fault and Disturbance Recording The M60 integrates seamlessly with other frequency magnitude and angle. UR relays for complete system protection, The advanced disturbance and event including the adjacent motors, feeders and Advanced Device Health recording features within the M60 can other balance of plant protection. Diagnostics significantly reduce the time needed for postmortem analysis of power system The M60 performs advanced motor health events and the creation of regulatory diagnostics and records this information reports. Recording functions include: 392 392 392 GEDigitalEnergy.com Motor Protection M60 Motor Protection System relay fault and event record information. • Sequence of Event (SOE) Role Based Access Control (RBAC) The available three independent Ethernet - 1024 time stamped events Efficiently administrate users and roles ports, redundant Ethernet option and the • Oscillography within UR devices. The new and advanced embedded managed Ethernet switch access functions allow users to configure - 64 digital & up to 40 analog channels provide the means of creating fault tolerant up to five roles for up to eight configurable - Events up to 45s in length communication architectures in an easy, users with independent passwords. • Data Logger and Disturbance Recording cost-effective manner without the need for The standard “Remote Authentication - 16 channels up to 1 sample/cycle/ intermediary communication hardware. Dial In User Service” (Radius) is used for channel authentication. The M60 supports the most popular industry The very high sampling rates and the large amount of storage space available for standard protocols enabling easy, direct Event Recorder (Syslog for SEM) integration into DCS and SCADA systems. data recording in the M60 can eliminate Capture all cyber security related events the need for installing costly stand-alone within a SOE element (login, logout, invalid recording equipment. • IEC 61850 with 61850-90-5 support password attempts, remote/local access, user in session, settings change, FW • DNP 3.0 update, etc), and then serve and classify Cyber Security – • Ethernet Global Data (EGD) data by security level using standard CyberSentry UR • IEC 60870-5-103 and IEC 60870-5-104 Syslog data format. This will enable CyberSentry UR enabled UR devices deliver integration with established SEM (Security • IEEE 1588 for time synchronization full cyber security features that help Event Management) systems. • Modbus RTU, Modbus TCP/IP customers to comply with NERC CIP and • PRP as per IEC 62439-3 ® NIST IR 7628 cyber security requirements. Communications This software option delivers the following Interoperability with Embedded core features: The M60 provides advanced commun- IEC 61850 ications technologies for remote data and AAA Server Support (Radius/LDAP) Use the M60 with integrated IEC 61850 engineering access, making it the easiest to lower costs associated with substation and most flexible motor protection relay Enables integration with centrally protection, control and automation. GE managed authentication and accounting to use and integrate into new and existing Digital Energy’s leadership in IEC 61850 infrastructures. Direct support for fiber of all user activities and uses modern comes from thousands of installed devices industry best practices and standards that optic Ethernet provides high-bandwidth and follows on extensive development communications allowing for low-latency meet and exceed NERC CIP requirements experience with UCA 2.0. for authentication and password controls and high-speed file transfers of management. • Replace expensive copper wiring between devices with direct transfer of Power System Troubleshooting data using GOOSE messaging The M60 contains many tools and reports that simplify and reduce the amount of time • Configure GE systems based on required for troubleshooting power system events. IEC 61850 and also monitor and troubleshoot them in real-time with EnerVista Viewpoint Engineer Direct I/O Messaging Direct I/O allows for the sharing of high-speed digital information between multiple UR relays via direct back-to-back connections or multiplexed through a standard DS0 multiplexer channel bank. Regardless of the connection method, direct I/O provides continuous real- time channel monitoring that supplies diagnostics information on channel health. Direct I/O provides superior relay-to-relay communications that can be used in advanced interlocking and blocking schemes. Analyze motor operating characteristics by recording analog waveforms during system voltage recovery. GEDigitalEnergy.com 393 393 393 Motor Protection M60 Motor Protection System The UR setup software now contains an • Communication with up to 16 UR relays postmortem event analysis and ensure M60 Motor Setting Auto-Configurator in single or redundant rings rather than proper protection system operation. that configures all of the settings simplistic point-to-point configurations EnerVista Launchpad required to protect and control a motor • Connect to standard DS0 channel in six simple steps. Simply entering the EnerVista Launchpad is a powerful banks through standard RS422, G.703 motor nameplate data, the CT and VT software package that provides users with or IEEE C37.94 interfaces or via direct parameters, motor starting data, and all of the setup and support tools needed fiber optic connections application information, will allow the UR for configuring and maintaining Multilin • Built-in continuous loop and channel setup software to generate a complete products. The setup software within monitoring provides real-time setting file customized for protecting and Launchpad allows for the configuration diagnostics of your communication controlling the motor. of devices in real-time by communicating channels with no external or handheld using serial, Ethernet, or modem tester required Viewpoint Monitoring connections, or offline by creating setting Viewpoint Monitoring is a simple-to-use files to be sent to devices at a later time. LAN Redundancy and full-featured monitoring and data Substation LAN redundancy has been recording software package for small Included in Launchpad is a document traditionally accomplished by reconfiguring systems. Viewpoint Monitoring provides a archiving and management system the active network topology in case of complete HMI package with the following that ensures critical documentation is failure. Regardless of the type of LAN functionality: up-to-date and available when needed. architecture (tree, mesh, etc), reconfiguring Documents made available include: the active LAN requires time to switchover, • Plug & Play Device Monitoring during which the LAN is unavailable. UR • Manuals • System Single-Line Monitoring & devices deliver redundancy as specified Control • Application Notes by PRP-IEC 62439-3, which eliminates • Annunciator Alarm Screens • Guideform Specifications the dependency on LAN reconfiguration and the associated switchover time. The • Trending Reports • Brochures UR becomes a dual attached node that • Automatic Event Retrieval • Wiring Diagrams transmits data packets over both main and • Automatic Waveform Retrieval • FAQs redundant networks simultaneously, so in case of failure, one of the data packets will • Service Bulletins reach the receiving device with no time delay. Multi-Language Simplifying Commissioning and Testing UR devices support multiple languages: English, French, Russian, Chinese, Turkish and German. These language options are available on the front panel, in the EnerVista setup software, and in the product manuals. Easily switch between English and an additional language on the local displays without uploading new firmware. EnerVista Software The EnerVista suite is an industry-leading set of software programs that simplifies every aspect of using the M60 relay. The EnerVista suite provides all the tools to monitor the status of your motor, maintain your relay, and integrate information measured by the M60 into DCS or SCADA monitoring systems. Convenient COMTRADE and SOE viewers are an integral part of the UR setup software The internal operation of the M60 elements, logic, and outputs can be monitored in real-time to simplify commissioning and troubleshooting procedures. included with every UR relay, to carry out 394 394 394 GEDigitalEnergy.com Motor Protection M60 Motor Protection System Viewpoint UR Engineer Typical Wiring Viewpoint UR Engineer is a set of powerful tools that allows you to configure and test GE relays at a system level in an easy-to-use graphical drag-and-drop A environment. Viewpoint UR Engineer 52 B provides the following configuration and C commissioning utilities: • Graphical Logic Designer • Graphical System Designer • Graphical Logic Monitor • Graphical System Monitor TC P5a 6G I 1 P1a P5c P1 P1b V P6a P1c P6c I P2a Viewpoint Maintenance P5b P2 P2b V P2c P7a I P3a P7c P3 P3b TC2 P8a V Viewpoint Maintenance provides tools that P3c P8c I P4a P7b P4 P4b V P8b SURGE P4c will create reports on the operating status of H1a Hot Comp H1c the relay, simplify the steps to download fault DB-9 H1b Return RS-232 H2a Hot (front) Comp H2c and event data, and reduce the work required Hot UR COMPUTER H3a Comp 1 1 8 H3c H3b Return TXD 2 2 3 RXD for cyber security compliance audits. Tools H4a Hot RXD 3 3 2 TXD Comp H4c 4 4 20 SGND 5 5 7 SGND Hot H5a 6 6 6 available in Viewpoint Maintenance include: H5c Comp 7 7 4 H5b Return 8 8 5 Hot H6a 9 9 22 H6c Comp Multilin H7a Hot H7c Comp CONNECTOR CONNECTOR M60 Return H7b • Security/Change History Report Hot H8a H8c Comp 1 Power H8b SURGE supply B • Device Health Report B1b CRITICAL B1a FAILURE 9 D B2b CPU B3a DC B3b OUTPUT • Single-Click Fault Data Retrieval F B5b HI 8 CONTROL B6b LO CT/VT POWER G B6a H B8a SURGE 5 B8b FILTER RTD J Fib Fibrree ** TTx1 x1 10BaseFL 10BaseFL K EnerVista Integrator NORMAL NORMAL Optic Optic Rx1 Rx1 L 10BaseFL 10BaseFL TTx2 x2 C COM OM A ALLTERN TERNA ATE TE Rx2 Rx2 1 1 M 8 CT/VT Shielded Shielded EnerVista Integrator is a toolkit that allows 10BaseT 10BaseT N R Remote emote P 6 Device Device D1a D1a RS485 RS485 Inputs/ D2a D2a R outputs D3a D3a com com seamless integration of Multilin devices D4b D4b S D4a D4a IRIG-B IRIG-B Input Input VERTICAL into new or existing automation systems. Co-axial Co-axial BNC BNC IRIG-B IRIG-B Co-axial Co-axial BNC BNC Output Output Included in EnerVista Integrator is: X W V U T S R P N M L K J H G F D B 6 8 5 8 9 1 minimum Input/ VT/CT RTD VT/CT CPU Power * * output Supply GROUND • OPC/DDE Server BUS PROVIDED • Multilin Drivers • Automatic Event Retrieval • Automatic Waveform Retrieval 48 Configurable LED Indicators User Interface Multi-Language The M60 front panel provides extensive Display local HMI capabilities. The local display • English is used for monitoring, status messaging, • Russian fault diagnosis, and device configuration. • French User-configurable messages that combine • Chinese • Turkish text with live data can be displayed when • German user-defined conditions are met. User-Programmable Pushbuttons GEDigitalEnergy.com 395 395 395 VA F5a VA F5c VB F6a VB F6c VC F7a VC F7c 1 IA5 F1a 5C IA F1b IA1 F1c IB5 F2a IB F2b IB1 F2c IC5 F3a IC F3b IC1 F3c IG5 F4a IG F4b IG1 F4c IA5 M1a IA M1b IA1 M1c IB5 M2a IB M2b IB1 M2c IC5 M3a IC M3b IC1 M3c IG5 M4a IG M4b IG1 M4c Motor Protection M60 Motor Protection System Ordering M60 - * 00 - H * * - F ** - H ** - M ** - P ** - U ** - W/X ** For full sized horizontal mount Base Unit M60 Base Unit CPU E RS485 + RS485 (IEC 61850 option not available) J RS485 + multimode ST 100BaseFX K RS485 + multimode ST Redundant 100BaseFX N RS485 + 10/100 BaseT T RS485 + three multimode SFP LC 100BaseFX. Req FW v7xx or higher U RS485 + two multimode SFP LC 100BaseFX + one SFP RJ45 100BaseT. Req FW v7xx or higher V RS485 + three SFP RJ45 100BaseT. Req FW v7xx or higher Software Options 00 No Software Options (see note 1 below) 03 IEC 61850 A0 CyberSentry UR Lvl 1. Req UR FW 7.xx or higher B0 IEEE 1588. Req UR FW 7.xx or higher C0 PRP D0 IEEE 1588 + CyberSentry UR. Req UR FW 7.xx or higher Mount / Coating H Horizontal (19” rack) - Standard A Horizontal (19” rack) - Harsh Chemical Environment Option V Vertical (3/4 size) - Standard B Vertical (3/4 size) - Harsh Chemical Environment Option User Interface F Vertical Front Panel with English Display I Enhanced German Front Panel J Enhanced German Front Panel with User-Programmable Pushbuttons K Enhanced English Front Panel L Enhanced English Front Panel with User-Programmable Pushbuttons M Enhanced French Front Panel N Enhanced French Front Panel with User-Programmable Pushbuttons Q Enhanced Russian Front Panel T Enhanced Russian Front Panel with User-Programmable Pushbuttons U Enhanced Chinese Front Panel V Enhanced Chinese Front Panel with User-Programmable Pushbuttons W Enhanced Turkish Front Panel Y Enhanced Turkish Front Panel with User-Programmable Pushbuttons Power Supply H 125 / 250 V AC/DC (see note 2 below) H RH 125/250 V AC/DC with redundant 125/250 V AC/DC L 24 - 48 V (DC only) L RL 24 - 48 V (DC only) with redundant 24 - 48 V (DC only) CT/VT DSP 8L 8L Standard 4CT/4VT w/ enhanced diagnostics 8M 8M Sensitive Ground 4CT/4VT w/ enhanced diagnostics 8N 8N Standard 8CT w/ enhanced diagnostics 8R 8R Sensitive Ground 8CT w/ enhanced diagnostics IEC 61850 Process Bus 81 8 Port IEC 61850 Process Bus Module Digital I/O XX XX XX XX XX No module 4A 4A 4A 4A 4A 4 Solid State (No Monitoring) MOSFET Outputs 4C 4C 4C 4C 4C 4 Solid State (Current w/opt Voltage) MOSFET Outputs 4D 4D 4D 4D 4D 16 Digital Inputs with Auto-Burnish 4L 4L 4L 4L 4L 14 Form-A (No Monitoring) Latchable Outputs 67 67 67 67 67 8 Form-A (No Monitoring) Outputs 6C 6C 6C 6C 6C 8 Form-C Outputs 6D 6D 6D 6D 6D 16 Digital Inputs 6E 6E 6E 6E 6E 4 Form-C Outputs, 8 Digital Inputs 6F 6F 6F 6F 6F 8 Fast Form-C Outputs 6K 6K 6K 6K 6K 4 Form-C & 4 Fast Form-C Outputs 6L 6L 6L 6L 6L 2 Form-A (Current w/ opt Voltage) & 2 Form-C Outputs, 8 Digital Inputs 6M 6M 6M 6M 6M 2 Form-A (Current w/ opt Voltage) & 4 Form-C Outputs, 4 Digital Inputs 6N 6N 6N 6N 6N 4 Form-A (Current w/ opt Voltage) Outputs, 8 Digital Inputs 6P 6P 6P 6P 6P 6 Form-A (Current w/ opt Voltage) Outputs, 4 Digital Inputs 6R 6R 6R 6R 6R 2 Form-A (No Monitoring) & 2 Form-C Outputs, 8 Digital Inputs 6S 6S 6S 6S 6S 2 Form-A (No Monitoring) & 4 Form-C Outputs, 4 Digital Inputs 6T 6T 6T 6T 6T 4 Form-A (No Monitoring) Outputs, 8 Digital Inputs 6U 6U 6U 6U 6U 6 Form-A (No Monitoring) Outputs, 4 Digital Inputs 6V 6V 6V 6V 6V 2 Form-A (Cur w/ opt Volt) 1 Form-C Output, 2 Latching Outputs, 8 Digital Inputs Transducer I/O 5C 5C 5C 5C 5C 8 RTD Inputs 5E 5E 5E 5E 5E 4 dcmA Inputs, 4 RTD Inputs 5F 5F 5F 5F 5F 8 dcmA Inputs Inter-Relay Communications 7A 820 nm, multimode, LED, 1 Channel 7B 1300 nm, multimode, LED, 1 Channel 7H 820 nm, multimode, LED, 2 Channels 7I 1300 nm, multimode, LED, 2 Channels Ordering Note: 1. To view all available model order codes, options for M60 or to order the UR Classic Front Panel, please visit GE’s On-Line Store at http://store.gedigitalenergy.com/viewprod.asp?model=M60 2. Redundant power supply only available in horizontal unit. If redundant is chosen, must be same type. Maximum 2 per chassis Accessories for the M60 • UR Applications I Learning CD TRCD-URA1-C-S-1 • Multilink Ethernet Switch ML2400-F-HI-HI-A2-A2-A6-F1 IEC is a registered trademark of Commission Electrotechnique Internationale. IEEE is a registered trademark of the Institute of Electrical Electronics Engineers, Inc. Modbus is a registered trademark • Remote RTD Module RRTD of Schneider Automation. NERC is a registered trademark of North American Electric Reliability • Viewpoint Engineer VPE-1 Council. NIST is a registered trademark of the National Institute of Standards and Technology. • Viewpoint Maintenance VPM-1 GE, the GE monogram, Multilin, FlexLogic, EnerVista and CyberSentry are trademarks of General Electric Company. • Viewpoint Monitoring IEC 61850 VP-1-61850 GE reserves the right to make changes to specifications of products described at any time without • D485 DeviceNet Converter D485-C notice and without obligation to notify any person of such changes. • P485 Profibus Converter P485-C Copyright 2013, General Electric Company. GEA-12756F(E) English 396 396 396 GEDigitalEnergy.com 130820 Motor Protection

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Applied Materials

CONSISTENTLY DELIVERS QUALITY SOLUTIONS

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Over the years, the equipment used in our company becomes discontinued, but they’re still of great use to us and our customers. Once these products are no longer available through the manufacturer, finding a reliable, quick supplier is a necessity, and luckily for us, GID Industrial has provided the most trustworthy, quality solutions to our obsolete component needs.

Nidec Vamco

TERRIFIC RESOURCE

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This company has been a terrific help to us (I work for Trican Well Service) in sourcing the Micron Ram Memory we needed for our Siemens computers. Great service! And great pricing! I know when the product is shipping and when it will arrive, all the way through the ordering process.

Trican Well Service

GO TO SOURCE

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When I can't find an obsolete part, I first call GID and they'll come up with my parts every time. Great customer service and follow up as well. Scott emails me from time to time to touch base and see if we're having trouble finding something.....which is often with our 25 yr old equipment.

ConAgra Foods

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