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Multilin 750/760 Feeder Protection System Digital Relay

Feeder Protection System

The 750/760 Feeder Protection System is a digital relay for the management, primary protection and control of distribution feeders.

The relay is easy to use, provides comprehensive protection functions for feeders and backup protection for busbars, transformers and transmission lines, with simple construction and low product life cycle costs.

Key Benefits

– Easy-to-use feeder protection system, supported by an industry-leading suite of software tools

– Accurate built-in metering – eliminates the need for auxiliary metering and reduces costs

– Improved uptime of auxiliary equipment – I/O monitoring

– Reduce troubleshooting time and maintenance costs – IRIG-B time synchronization, event reporting, waveform capture, data logger

– Minimizes replacement time – Drawer construction

– Simplifies testing – Built-in analog capability

– Cost-effective access to information. Supports industry protocols such as DNP and Modbus. Includes an optional 10MB Ethernet port for system integration

– Complete asset monitoring – analog inputs/outputs, full metering (including demand and energy metering)

– Leading-edge technology – flash memory dcs-sis.com for product field upgrades

– Extended life – optional conformal coating for chemical and humid environments

– Global availability ensures compliance with international norms and standards

Applications

– Primary protection and control of distribution feeders for solidly grounded, high impedance grounded or resonant (Peterson coil) grounded systems

– Busbar blocking/interlocking schemes

– High-speed fault detection for arc-flash mitigation

– Load shedding schemes (bus transfer scheme applications)

– Load shedding schemes based on voltage and frequency elements

– Backup protection for transmission lines, feeders and transformers

– Distributed generation (DG) interconnection protection

PQM Power Quality Analyzer

Production site. Due to the increase in electronic loads such as computers, ballasts or switching actuators, the quality of the power system is very important.

With PQM’s power analysis option, it is possible to display any current or voltage phases and calculat    e the harmonics contained therein.

By understanding the distribution of harmonics, measures can be taken to prevent transformers, motors, capacitors and neutrals from overheating and circuit breakers from tripping unexpectedly.

Redistribution of network loads dcs-sis.com can also be determined.PQM provides waveform recordings and graph printouts to help diagnose problems.

Applications

. Distribution room, transformer, generator, capacitor bank and motor measurements .

. Medium and low voltage networks .

. For commercial, industrial and energy distribution applications .

. Configurable control of load shedding/heavy loads, power factor, etc.

power factor, etc.

Power quality analysis

Measurement/control

.A, V, W, var, VA, varh, Wh, power factor, Hz, imbalance

.A, W, var, VA, overshoot

. Load Shedding

. Power factor control .

. Pulse Accumulator Input

. Pulse output kWh, kvarh or kVAh

Monitoring

Harmonic analysis up to 63 levels, including THD and TIF

. Event logging

. Waveform capture

. Sequence Data Logging

. Trigger Trace Storage

Communication

. Ports: RS232 front panel, dual RS485 rear panel

.ModBus RTU protocol .

. . mini RTU: 4 logic inputs and 4 logic outputs .

. 1 analog input and 4 analog outputs .

. Local and remote display of all variables .

. Communicates with GE Multilin Relay 269/565 (MOD 508).

Emerson CSI 6500 Machinery Health Monitor

The CSI 6500 Equipment Condition Monitoring System is fully compliant with API 670 and is designed to protect and monitor critical rotating machinery.

Special features of the system include the ability to integrate data from protection functions into DeltaV and Ovation process automation systems in three simple steps;

Transient analysis with real-time display, logging, pause and playback; and superior PeakVue processing for early detection of bearing and gear damage.

Subrack Configuration:

– The 19″ subrack is used only for the 6 U version of the protection function and the standard 3 U version of the protection function.

– The 19″ subrack is used only for the forecasting function and has a mounting height of 6 U with front or rear sensor connection terminals.

A compact version with a mounting width of 7.5″ is also available.

– Only the 19″/6 U subrack is available for combined protection and forecasting functions.

n The machine monitoring function is fully compliant with API 670.

n Standard 19″/6 U subrack for cabinet mounting

n System design ensures that no more than two channels are affected in the event of a card failure; cards can be replaced during operation

n Internal clock synchronized to the system master clock

n Redundant ModBus connections, TCP or serial connections for integrating the Protection Monitor into third-party control systems.

The CSI 6500 Equipment Condition Monitoring System is fully compliant with API 670 and is designed to protect and monitor critical rotating machinery.

Special features of the system include the ability to integrate data from protection functions into DeltaV and Ovation process automation systems in three simple steps;

Transient analysis with real-time display, logging, pause and playback; and superior PeakVue processing for early detection of bearing and gear damage.

Subrack Configuration:

– The 19″ subrack is used only for the 6 U version of the protection function and the standard 3 U version of the protection function.

– The 19″ subrack is used only for the forecasting function and has a mounting height of 6 U with front or rear sensor connection terminals.

A compact version with a mounting width of 7.5″ is also available.

– Only the 19″/6 U subrack is available for combined protection and forecasting functions.

n The machine monitoring function is fully compliant with API 670.

n Standard 19″/6 U subrack for cabinet mounting

n System design ensures that no more than two channels are affected in the event of a card failure; cards can be replaced during operation

n Internal clock synchronized to the system master clock

n Redundant ModBus connections, TCP or serial connections for integrating the Protection Monitor into third-party control systems.

Additional ModBus outputs for forecast parameters

n 16 or 32 trip relay output slots

n Dual channel speed/keypad

n 12 slots for 3 U dual-channel vibration or position monitoring modules with a total of 24 inputs

n 4-20 mA outputs and buffered signal outputs on front and rear panels

n Configurable external alarm output disable and limit increase for each channel

n External power supply unit, no slots required

In every factory, 5% of rotating machines cause production to stop.

 Although your critical machines are fitted with vibration shutdown protection systems to prevent catastrophic failure, is your plant really protected?

What about the shocking repair costs, missed production targets and unfulfilled customer promises associated with tripped or missed trips?

As much as 50% of mechanical failures that lead to downtime are caused by the process, while 90% are predictable or even controllable.

Real-time machine health feedback integrated with process automation allows you to run your plant with confidence.

The CSI 6500 Machinery Health Monitor is designed for process automation and protection system upgrade projects.

Housed in a single chassis, the CSI 6500 combines proven predictive and protective features to provide a complete online machinery monitoring solution.

Emerson is a global leader in integrated process automation technologies and predictive technologies for plant-wide fixed and rotating asset management.

Fully compliant with API 670 standards, the CSI 6500 integrates protection, prediction, real-time performance monitoring, and process automation.

The CSI 6500 is part of Emerson’s PlantWeb digital architecture, which provides enterprise-wide information for real-time decision making.

Emerson CSI 6500 ATG Protection System

The CSI 6500 ATG enables protection and predictive capabilities via a system communications card, in addition to Emerson’s unique PeakVue™ technology.

technology, which breaks through the complexity of mechanical analysis to provide a simple, reliable indication of equipment health.

PeakVue filters traditional vibration signals through a single trend, focusing only on shock.

This focus provides a better indicator of the overall asset health of pumps, fans, motors, or any other type of rolling bearing machine.

Familiar Features

System setup is accomplished through Machine Studio configuration software. The user interface has a similar look and feel to other Emerson software modules, making it familiar and easy to use.

Familiar and easy to use. While connected, users can access integrated predictive features.

View Problems in Real Time

The system comes with ATG View, dcs-sis.com a mobile application that receives data from the CSI 6500 ATG via Ethernet and/or a wireless router.

Authorized users can view protection status and health data from anywhere on the plant’s Wi-Fi network, either from a PC or a device of their choice.

Supported devices include Apple iOS and Android phones and tablets.

The ATG view allows reliability professionals to see the overall health of the system, alarm status, external inputs such as bypasses and outputs such as trips and whether they are active.

The CSI 6500 ATG displays all available information for critical devices, such as primary values, trending data, status data, and predictive data (e.g., PeakVue values).

OPC server helps you integrate with third-party systems

For easy integration with third-party systems, the CSI 6500 ATG is the first protection system to include a secure embedded OPC UA server.

The CSI 6500 ATG system meets traditional API 670 certification and is certified for installation in demanding environments that require Class 1 Div2/ATEX Zone 2 certification.

Studies have shown that repairing a machine after it has failed is 50% more costly than predicting failure and planning for the cost of repair.

For users whose budgets are not large enough to purchase both a protection system and a predictive system, obtaining predictive data from the protection system is an incremental step toward improving insight into the health of assets.

ATG View provides asset health information to users anywhere in the plant network.

ABB EasyLine Continuous Gas Analyzer EL3020

Integral air inlet

The integral air inlet (option) is available in two versions. It includes

– Microfilter and flow sensor module

– or microfilter, solenoid valve, pump, coarse filter, capillary tube and flow sensor module.

Electrical interface

Electrical interfaces for outputting measured values and communicating with external systems include Electrical interfaces for communicating with external systems include:

– Integrated Ethernet-10/100BASE-T interface (for service and configuration and configuration) Integrated Ethernet-10/100BASE-T interface dcs-sis.com (for service and configuration purposes) Functional range and ordering

– Analog output module with 2 analog outputs,

– Analog output module with 2 analog outputs, digital input/output module with 4 digital inputs and 4 digital outputs and

Digital input/output module with 4 digital inputs and 4 digital outputs and

– Modbus modules with RS485 and RS232 interfaces.

Housing design

The EL3020 Gas Analyzer is designed in a 19-inch housing with 3 height units and IP20 protection.

Description of Analyzer Performance Characteristics

The performance characteristics of the analyzers are defined according to the international standard IEC 1207-1:1994 “Performance statements for gas analyzers”.

They are based on N2 as a companion gas. When measuring other gas mixtures, compliance with these characteristics can only be ensured if their composition is known.

Measurement principle

Non-dispersive infrared absorption photometers in the λ = 2.5-8 µm wavelength range can measure up to 4 compositions using 1 or 2 beam paths and 1 or 2 receivers per beam path in one gas path or two independent gas paths.

Measure up to 4 components in one gas path or two independent gas paths with 1 or 2 receivers per beam path.

Impact Effects

Flow rate effects

Flow rates in the range of 20-100 liters/hour: within the detection range

Correlated gas effects/cross sensitivity

Analyzer configuration must be aware of sample gas composition.

Selective measures to reduce associated gas effects (optional): Installation of interference filters or filter units, internal electronic cross-sensitivity correction of one sample component by other sample components measured by the gas analyzer.

DS200SDCCG5A Drive Control Board

Hardware Tips and Specifications

This SDCC Abbreviated DriveControl Board requires its own series-specific hardware components and specifications in order to achieve its intended series functionality.

The GE Drive Control Board DS200SDCCG5A is equipped with 3 microprocessors and RAM that can be accessed by multiple microprocessors simultaneously.

These microprocessors are assigned to specific tasks within the drive control process, and the microprocessors are fitted with the firmware and hardware required to perform their respective tasks.

For example, a DS200SDCCG5A dcs-sis.com microprocessor is equipped with processing functions that perform the mathematical calculations involved in the common motor control function.

The DS200SDCCG5A board is also equipped with five EPROM connectors for storing configuration software. Four of the EPROM modules store factory-assigned configuration parameters.

The remaining EPROM module stores configuration parameters assigned by the user or service personnel.

The DS200SDCCG5A board described here also contains connectors and standoffs for connecting Mark V Series Auxiliary Cards.

You can secure these cards with screws inserted into the standoffs and then connect cables from the auxiliary cards to the board.

With these cards, you can connect to a LAN or add signal processing capabilities to the board.

Finally, this DS200SDCCG5A DriveControl Board contains jumpers for configuring the board, however these jumpers are set at the factory and should not be moved to change the behavior of the board.

Before making a final decision to purchase this DS200SDCCG5A DriveControl, it is important to understand the status of this DS200SDCCG5A printed circuit board, i.e., that it is a DriveControl that has been previously revised.

This status may alter the original performance specifications and functionality of the original Mark V Series DriveControl DS200SDCCG5 as presented in the General Electric Instruction Manual material.

The DS200SDCG5A is a fairly simple control card with 5 EEPROMs on board to store various software configurations for the PCB.

The 5A version does not have a large installed base compared to previous models in the Mark V series.

This DS200SDCCG5A drive controller card has the normal Mark V series assembly version, although it is part of the relatively uncommon Mark V series Group 5 product.

ABB UNITROL® 1000 FLEX System Standard Controller for Synchronous Motors

UNITROL® 1000 FLEX systems are pre-packaged solutions for applications requiring single or dual channel controllers. All systems come standard with the UNITROL® 1020 FULL, utilizing the best solution for the best price and flexible project adjustment limits.

After a quick transition to standard applications, the solution is gathering all the functionality required for excitation systems. The pre-packaged solution allows you to design the excitation system in the most flexible and cost-oriented way.

All versions are designed on a common mechanical basis with various IO and power mode options.

The system is available as a single- or dual-channel UNITROL 1020 FULL device.

By integrating the most complete product in ABB’s excitation portfolio, the standard system is ideally suited for integration into your control cabinet.

UNITROL 1020 FULL Features

All regulation types available: AVR/FCR/PF/VAR/Limiter

Automatic synchronization

MODBUS TCP communication

Rotating diode monitoring (RDM)

Reactive load distribution via RS48

Product Description

With the rapid transition to standard dcs-sis.com applications, this solution brings together all the functionality required for excitation systems. The pre-packaged solution allows you to design your excitation system in the most flexible and cost-effective way.

All versions are designed on a common mechanical basis and offer different input/output and power supply mode options.

The systems are available as single or dual channel UNITROL1020 FULL devices. By integrating the most complete range of products from ABB’s excitation portfolio, the standard system can be perfectly integrated into your control cabinet.

ABB APC03 Series Powerful and Compact Automatic Capacitor Banks

ABB APC03 series is a powerful and compact range of automatic capacitor banks that provide the ideal power factor correction solution for industrial and commercial applications. 

APC03 series is easy to install, operate and service while ensuring exceptional reliability, efficiency and safety. 

The key feature of APC03 series is the CLMD03 dcs-sis.com power module, the latest evolution of CLMD capacitor.

APC03 series improves the power factor in a wide variety of applications including:

 • Buildings

 • Mining

 • Steel industry

 • Chemical

 • Pulp and paper

 • Cement

 • Plastics

 • Printing

 • Food industry

Exceptional reliability and safety

Reliability and safety are key issues for capacitors. With CLMD capacitor, ABB provides the most reliable, durable and fail-safe dry capacitors on the market. It is the result of a state-of-the-art and unique protection technology.

CLMD03 Power Module and CLMD technology

CLMD03 power module is the latest evolution of CLMD capacitor. 

CLMD03 power module is all-in-one pre-wired power module, which includes capacitor – CLMD03 type, contactor, fuses and discharge resistors. CLMD03 power module provides all advantages of CLMD dry capacitor technology in a compact case,delivering high performance within a small footprint.

CLMD03 power module offers a number of exceptional properties such as: high voltage withstand capability, excellent peak current handling capacity, high capacitancestability, long life even under high electrical stress, very low losses and exceptional reliability 

and safety.

Total service approach

ABB offers a total service approach that goes well beyond supplying equipments. ABB is able to support customers through every step of their project, from identification of the needs till installation and commissioning of the equipment. ABB also offers a comprehensive equipment maintenance and repair service everywhere in the world.

ABB Endura AZ20 Oxygen Monitor Combustion Gas Analysis

Advanced design and precision manufacturing

 —robust, long-life probe for process temperatures up to 800 °C (1472 °F)

 —proven cell design from over 50 years experience

 —fast response to process variations

 —stable and accurate oxygen measurement

 Unique integrated auto-calibration system

 —easy compliance for emission monitoring regulation

 —reduced installation costs; eliminates requirement for expensive external calibration panel

 —reduced maintenance costs

 Probe lengths up to 4.0 m (13.1 ft.) and industry-standard flange configurations

 —suitable for a wide range of applications

 —extensive installation dcs-sis.com options

 Easy cell release

 —fully site-serviceable probe

 —easy access to internal components

 Advanced transmitters

 —easy configuration, monitoring and intuitive HMI

 —HART communications

 —cell performance logging and diagnostics

Introduction

The Endura AZ20 is the latest in a long line of high-quality, combustion gas analyzers from ABB.

The sensor, based on a zirconium oxide cell, is mounted at the tip of the probe that is inserted in the flue duct. The resulting direct, in situ measurement provides accurate and rapid oxygen reading for combustion control optimization and emissions monitoring.

Probe Lengths up to 4.0 m (13.1 ft.)

A wide range of probe insertion lengths from 0.5 to 4.0 m (1.7 to 13.1 ft.) enable installation to the optimum measuring point for accurate oxygen measurement within the duct; even in the largest flue gas ducts and stacks.

A comprehensive range of mounting flanges provide simple installation when plant-wide standard flanges are required or when replacing existing probes.

The transmitter can be probe- or remote-mounted at distances of up to 100 m (328 ft.), thus providing versatile system options for all applications. The probe-mounted transmitter option provides the lowest cost of installation. However, the remote-mounted transmitter provides flexibility when the operationally ideal probe location does not provide easy access for the user.

ABB High Voltage Induction Motors

ABB High Voltage Induction Motors

ABB’s more than 130 years of motor manufacturing experience is the foundation of our industry-leading domain expertise.ABB high voltage induction motors combine the benefits of high reliability, availability and efficiency with customized design options to suit the most demanding industry sectors and applications. Our energy-efficient solutions enable industry to reduce its environmental impact.

ABB’s global support network makes maintenance easy throughout the product lifecycle, helping our customers optimize their cost of ownership. Proven product design and product testing ensure safe operation in the most demanding applications.

Modular motors

High voltage modular design dcs-sis.com motors offer the most reliable and optimized solution for the wide variability of most industrial applications in safe or explosive hazardous areas.

Power range: up to 23 mw

Voltage range: up to 13.8 kV

Shaft height: 355-1000 (mm)

Number of poles: 2-24

Cooling: IC01.IC31.IC611.IC616.IC666.IC81W, IC86W

Protection: IP23.IP24(W), IP55 to IP66 (Optional)

Operation: DOL, VSD

Operating environment: Safe area, Hazardous area

Core Applications.

Pumps, fans, blowers, compressors, conveyors, mills, propellers

Rib-cooled motors

ABB’s high voltage rib-cooled design motors set the benchmark for the industry, delivering more watts per kilogram than has previously been achieved with rib-cooled motors, which also allows for simple configurability and built-in maintainability.

Standards: IEC/NEMA

Power range: up to 2240 kW / 3000 HP

Voltage range: up to 11.5 kV

Shaft height: IEC 315-560/NEMA 5000-5800

Number of poles: 2-12

Cooling: IC411.IC416 / TEAC, TEFC

Protection: IP55. up to IP66

Operation: DOL, VSD

Operating environment: Safe area, Hazardous area

Core applications.

Pumps, fans, blowers, compressors, hoists, conveyors, extruders, mills, cutting, saws

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