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A-B 825-P Motor Relay Used as a protective device for three-phase motors

DESCRIPTION: The Allen-Bradley 825-P is a motor relay used as a protective device for three-phase motors.

It has standard protection features such as thermal overload (thermal model, PTC (positive temperature coefficient), overheat, undercurrent (load loss),

current unbalance and phase loss, overcurrent (load seizure), short circuit, ground fault (residual), ground fault (zero sequence), motor start/run and frequency. This unit requires 110-240VAC power input.

About the 825-P

The 825-P is a protective relay for use with three-phase motors. Manufactured by Allen-Bradley, the device is

It provides standard protections such as thermal overload (thermal modeling), PTC (positive temperature coefficient), overheat, undercurrent (load loss), current imbalance, and phase loss.

overcurrent (load seizure), short dcs-sis.com circuit, ground fault (residual), ground fault (zero sequence), motor start/run and frequency.

For motor start/run protection, this motor relay is capable of starting the motor timer via a protection disable during startup, a startup

notch or pointing device, TCU (Thermal Capacity Utilization) start inhibit, anti-reverse spin timer, emergency start, two-speed protection, reduced voltage start (star-delta), and stall switching to protect the motor.

It can be fitted with RTD-based protection via the 825-PR12D RTD RTD scanner, where up to twelve (12) RTDs can be connected and monitored.

The 825-P is also capable of monitoring event summaries that include information such as relay ID, date and time, trip triggers, and current and voltage amplitudes.

It can also monitor the Serialized Event Record (SER) and motor runtime and history of the last reset and start cycle since the last reset.

Emergency start cycles since the last reset can also be monitored by the unit, which also incorporates a full suite of metering functions.

The 825-P can optionally be fitted with an I/O channel consisting of one (1) 4-20 mA analog output, three (3) control inputs and four (4) contact outputs.

Additional communication interfaces can be installed, including adapters for DeviceNet and Modbus protocols.

The 825-P’s relay outputs also have a 4kV surge strength with a pickup time of < 10ms and provide an insulation voltage rating of 300V AC.

The system has 120V AC/DC (825-PIOD) inputs, a steady state current of 15mA at 2mA and 0.2mA on/off state currents, and on-state and off-state voltages of 15V and 5V respectively.

The system features thermal overload protection and optional voltage-based protection (overvoltage, reactive power, phase inversion, and undervoltage).

The 825-P has a modular construction with a built-in fixed keypad on the front panel and an LCD status display with LED status indicators.

It uses DeviceNet communication options at 125. 250. or 500kbps over distances of 500m, 200m, or 100m and is enclosed in a NEMA 4 (IP65) rated enclosure.

It has an operating temperature of -4 to +140 degrees Fahrenheit, a non-condensing relative humidity of 5% to 95%, and a storage temperature of -40 to +185 degrees Fahrenheit.

It weighs approximately 6.46 kilograms (including power supply and converter modules) and is CE, UL, and CSA listed.

A-B Rockwell 2093-AC05-MP1 Multi-Axis Servo Drive

Descripción

The 2093-AC05-MP1 drive is an Allen-Bradley/Rockwell Automation Kinetix 2000 Series multi-axis servo drive.

It is also an Integrated Axis Module type servo drive. 2093-AC05-MP1 Multi-Axis Servo Drives require clearance on the top and bottom for air-cooling, but not on the left or right sides.

This servo drive can be used with compatible SERCOS fiber optic cables.The 2093-AC05-MP1 Multi-Axis Servo Drive has a three-phase mains input voltage range of 170 to 264 volts AC.

About the 2093-AC05-MP1

The Kinetix 2000 Multi-Axis Servo Drives have output power requirements between 3 – 45 kW (4 – 49 amps) and are designed to provide Kinetix integrated motion solutions for applications.

Kinetix 2000 multi-axis servo dcs-sis.com drives are available in several series, including the 2093-AC05-MPx, 2093-AM0x, 2093-AMPx, 2093-ASP06.

2093-PRSxx, 2093-PRF, 2094-AL09. 2094-AL15S, 2094-AL25S, 2094-AL50S,

2094-AL75S, and 2094-AL75S-C2. 2093-AC05-MPx is a family of Kinetix 2000 multi-axis servo drives.

It includes the 2093-AC05-MP1. 2093-AC05-MP2. and 2093-AC05-MP5.The 2093-AC05-MP1 consists of one specific assembly.

The 2093-AC05-MP1 consists of a specific assembly that includes the Integrated Axis Module (IAM) mounted on the power rails and is a 230 VAC power converter and inverter.

The power rails (PR) consist of copper bus bars and circuit boards with connectors for each module.

The power rail provides power and control signals from the inverter section to the adjacent inverter, which also consists of compatible servo motors (low inertia, food grade, and stainless steel) and compatible linear actuators.

The B&R Bergerac X20CP1586 is a powerful controller for the X20 system

Based on state-of-the-art Intel® ATOM™ processor technology, the X20 CPUs cover a wide spectrum of demands.

They can be implemented in solutions ranging from standard applications to those requiring the highest levels of performance.

The series starts with Intel® ATOM™ processor 333 MHz compatible models – X20CP1583 and X20CP3583. 

With an optimum price/performance ratio, it has the same basic features as all of the larger CPUs.

The basic model includes USB, Ethernet, POWERLINK V1/V2 and removable CompactFlash. 

The standard Ethernet dcs-sis.com interface is capable of handling communication in the gigabit range.

 For improved real-time network performance, the onboard POWERLINK interface supports poll response chaining mode (PRC).

In addition, there are up to three multi-purpose slots for additional interface modules.

 • Intel® ATOM™ 1600/1000/600 Performance with integrated I/O processor

 • Entry-level CPU is Intel® ATOM™ 333 MHz-compatible with integrated I/O processor

 • Ethernet, POWERLINK V1/V2 with poll response chaining and onboard USB

 • 1 or 3 slots for modular interface expansion

 • CompactFlash as removable application memory

 • Up to 512 MB DDR2-SRAM according to performance requirements

 • CPU redundancy possible

 • Fanless

 • Extremely compa

Description:

.Intel Atom 1.6 GHz processor with additional I/O processor

. Onboard Ethernet, POWERLINK with polled response chain and USB.

. 1 slot for modular interface expansion .

.CompactFlash as removable application memory

.512 MB DDR2 memory

.512 MB DDR2 RAM Fanless

The X20CP1586 is a powerful controller for the X20 system. 

ALSTOM GDS1168-6112 Inverter power unit

Brand & Model:

Brand: Alstom (Alstom, now renamed Alstom Group)

Model: GDS1168-6112

Specific Component: GeneralE Board

Alstom Group Overview:

Alstom Group is a multinational company with a global presence in the transportation, power and infrastructure sectors.

Its business areas include rail transportation, power grid equipment, energy conversion and transmission, and more.

Frequency inverter unit:

Frequency inverters are power control devices used to control AC motors by changing the frequency of the motor’s operating power supply to achieve control of the motor’s speed.

Alstom Group’s inverters may be characterized by high efficiency, high reliability and environmental friendliness for a wide range of industrial and commercial applications.

GDS1168-6112 specific model information:

Since the specific GDS1168-6112 model information is not mentioned in detail in the referenced article, it is not possible to provide specific performance parameters, technical specifications or application scenarios.

However, it can be assumed that this model may be a customized inverter unit from Alstom Group for specific needs or industries.

GeneralE board function:

The GeneralE board may be a key component in the GDS1168-6112 inverter unit responsible for functions such as control, monitoring or interfacing with other systems.

Specific functions and features may include data processing, communication interfaces, control logic, etc.

Alstom’s GDS1168-6112 inverter unit may be a customized inverter product for a specific industry or application requirement where the GeneralE board is one of the key components.

ABB AC500 V3 PLC Enhanced connectivity and performance

This means that whether you are looking for new applications to meet new needs such as network security requirements or cloud connectivity, or simply want to leverage and protect your existing 

AC500 investment by switching to new advanced technology, the AC500 V3 has you covered.

AC500 V3 New features and higher performance

The flexibility, scalability and footprint of AC500 V2 have been passed on to the new CPU range. 

Therefore, AC500 continues to be the perfect fit for various applications or will be the natural  successor when you need to introduce new features to existing applications or extend machines and applications to reach for the cloud.

The new V3 features provide even more flexibility and freedom when it comes to connectivity and functions supplied onboard without the need of additional devices as couplers or switches. AC500 V3 is ready for the requirements of IoT and digitalization and secure cloud connectivity via new protocols and functions.

Built-in performance

 • Faster CPUs with more powerful processors

 • More CPU memory allocated freely

 • Modern, state-of-the-art components

 Cyber security

 • Digitally signed firmware updates protected by 

hardware security chip

 • Secure communication protocols: HTTPS, FTPS, OPC UA, MQTT

 • Encrypted communication with engineering system ABB AbilityTM Automation Builder and boot application State-of-the-art features

 • OPC UA for easy connectivity to SCADA systems or operator panels

 • MQTT for lightweight cloud messaging

 • Onboard HTML5 web server technology 

Built-in communication

 • Two Ethernet interfaces for use as switches or  independent ports

 • Onboard Ethernet protocol as Ethernet IP

 • CANopen master interface, CAN2A/2B, J1939

 • KNX and BACnet

 • OPC UA server, OPC DA alarm and event

 • IEC 61850

 • IEC 60870-5-104 Telecontrol

 Reuse & compatibility 

 • Reuse with AC500 platform:- S500/S500-eCo I/O modules – Communication modules

 • Project conversion and code re-use

 Improved engineering and debugging

 • Professional version control with subversion

 • Application project management

 • Object-oriented programming

 • Optimized IEC 61131-3 editors

 • Offline simulation capabilities

2706-LV4R Vacuum Fluorescent Display Human Machine Interface

The 2706-LV4R Message Display Terminal can be installed into the same panel cutout as the DL40. DL20. and DL10 terminals it is designed to replace.

The Allen-Bradley 2706-LV4R is a DL40 Plus message display.

It is a next-generation message display that directly replaces the models in the older Dataliner DL40 / DL20 series.

It has a vacuum fluorescent display (VFD) with adjustable brightness.

It has a four-line configuration with remote I/O and can display up to 20 characters per line*.

It has 128 KB of RAM and a 120 to 240 VAC input power supply.

The 2706-LV4R display supports bi-directional communication with PLCs and SLCs.

For communication, it has an RS-484 port for file transfer and an RS-232 port for uploading and downloading files.

It displays a variety of symbols and characters and can be read from up to 25 feet away*.

Applications developed for the previous DL40/DL20 series are compatible with the DL40 Plus.

It has various features such as embedded variables, message chaining, hidden messages, and data mode selection.

It supports real-time clock and RS-232 message triggering. It provides recovery in case of power failure during message editing.

It has isolated I/O ports and replaceable batteries and supports enhanced point-to-point communication from the message display.

Other enhancements include red, green, or amber message display colors and remote display relay control.

The 2706-LV4R message displays are highly customizable to effectively communicate alarms and messages in industrial environments.

DL40P Series Message Display with 4-line, 20-character VFD and 120 or 240V AC input power and 128K RAM memory.

1791D-0V16PX Expansion Output Module

The 1791D-0V16PX output module is a 1791-channel output expansion module from the Allen-Bradley/Rockwell Automation CompactBlock I/O 16D product line. all 16 of its outputs are potted.

All 16 outputs are current sink outputs.The 1791D-0V16PX Expansion Output Module can be used to add additional output channels to the basic output module.

It can also be used to add output channels to the basic input module.

The 1791D-0V16PX Expansion Output Module uses a DeviceNet network for advanced communication between producer and consumer devices in the system.

The 1791D-0V16PX is an Allen-Bradley part and is part of the 1791D CompactBlock I/O family.

It is a 16-sink current output expansion module with a built-in DeviceNet adapter and power supply.

Its enclosure type is IEC IP20 and the output on-state voltage range is 10 to 30 volts DC, while the output on-state current** is 0.5A.

The 1791D-0V16PX module is suitable for operations involving a large distribution of I/O blocks in close proximity to sensors and actuators.

The module can also work properly with applications in limited operating spaces.

The 1791D CompactBlock I/O products, including the 1791D-0V16PX, are compact in size.

This feature allows these products to be installed in confined areas and shallow enclosures.

Compared to the 1790 CompactBlock LDX I/O module, the 1791D parts have a higher environmental specification.

They help expand the range of applications and reduce wiring costs. Due to the simple control functions of these modules, sense-to-actuate times are faster.

They also come with optional input filters that allow the user to select on-to-off or off-to-on delays.

Output short circuit protection is also a beneficial feature of this series as it keeps the output away from accidental wiring errors.

The 1791D-0V16PX is an expansion block for all basic modules.

It is run from an external 24 Vdc power supply that is independent of the network. The expansion block also comes with a 4 cm ribbon cable to connect it to the base block.

It also has a removable screw-clamp terminal strip that makes it easier to replace I/O blocks without rewiring.

The 1791D-0V16PX can be panel mounted or mounted on DIN rails in any orientation.

COMPACTBLOCK I/O for DEVICENET Allen-Bradley AB has 16 sinking outputs per module.

Mitsubishi M501D Series Gas Turbine

Independent gas turbine output

110 MW class

Combined cycle output

170 MW class/340 MW class/510 MW class

Fuel Diversity

Blast furnace gas (BFG) compatible

Gas turbine for 60 Hz power generation compatible with fuel diversity

In 1984. a 1.090 MW heat recovery combined cycle power plant powered by six 701D gas turbines began commercial operation.

This was the dawn of the current era of combined cycle power generation. the DA Series incorporates F-Class technology into the D Series to improve overall performance.

Features

Integral Design

The gas turbine units are based on a basic structure adopted in the early 1970s that has accumulated a track record of at least 40 years. Its main features are listed below:

Compressor shaft end drive reduces the effect of thermal expansion on alignment

Rotor with simple single-shaft double bearing support

Rotor construction with bolted discs, torque pins in the compressor section and CURVIC couplings in the turbine section to ensure stable torque transmission

Axial flow exhaust structure for advantages in combined cycle plant layouts

Horizontally split housing for on-site removal of the blades with the rotor in place

Compressors

The DA series utilizes high-efficiency compressors with a proven track record. The fixed vanes of the backstage are supported by vane rings to minimize tip clearance of the rotating vanes.

Variable inlet guide vanes ensure operational stability at start-up and enhance performance under partial loads in combined cycle operation.

Combustion chamber

Mitsubishi Power introduced the world’s first commercially available dry low NOx combustor to the D-Series gas turbine in 1984.

The premixed low NOx combustor consists of a pilot burner and eight main burners surrounding it. The combustion chamber has an air bypass mechanism to adjust the fuel-air ratio in the combustion zone.

Turbine

In response to the increase in turbine inlet temperature, the fixed blades of the first three stages and the rotor blades of the first two stages are air-cooled.

The rotor blades of the fourth stage are equipped with Z-shaped shrouds to enhance the vibration strength of the blades.

The fixed blades are supported by blade rings that are independent of each stage to protect the turbine housing from thermal expansion.

Mitsubishi H-100 Series Twin Shaft Gas Turbines

OVERVIEW

The H-100 series units are the world’s largest twin-shaft gas turbines, based on extensive experience in manufacturing gas turbines and the achievements of the H-25 and H-15 series developments.

They achieve high efficiency as part of a combined cycle power plant with heat recovery boilers, cogeneration systems or other combined cycle power plants.

The H-100 series has a simple cycle gas turbine output of 105 MW to 116 MW and a combined cycle output range of 150 MW to 350 MW.

As twin-shaft gas turbines, they are suitable for mechanical drive applications.

Heavy-duty design: Heavy-duty and highly reliable construction designed with ease of maintenance and long-term continuous operation in mind.

High efficiency: high performance in various power generation cycles (simple, combined and cogeneration)

Packaging type: easy to carry and install

The range is suitable not only for power generation but also for mechanical drives.

The world’s largest high-efficiency twin-shaft gas turbine

The H-100 series of gas turbines has been developed for utility and industrial customers in the 50 Hz and 60 Hz regions. The first unit went into commercial operation in 2010.

Mitsubishi Power then continued its efforts to improve the design of the H-100 series gas turbine.

While utilizing advanced elemental technologies and material technologies proven in the H-series gas turbines, we continue to strive for improved performance.

H-100 Gas Turbine

Standalone Gas Turbine Output

100-120 MW class

Combined cycle output

150-170 MW / 300-350 MW class

Stand-alone gas turbine

Fast start-up within 10 minutes

Suitable for power generation and mechanical drive applications

Mitsubishi H-25 Series Gas Turbines

Independent gas turbine output

40 MW class

Combined cycle output

60 MW / 120 MW class

Cogeneration efficiency

80% or more

High reliability

Over 6.3 million hours of total accumulated operating time

Highly Reliable Gas Turbines for Industrial Customers

The H-25 series gas turbine was developed for utility and industrial customers in the 50 Hz and 60 Hz regions.

Its first unit went into commercial operation in 1988.

Mitsubishi Power then continued its efforts to improve the design of the H-25 series gas turbine.

While utilizing advanced elemental technologies and material technologies proven in the H-series gas turbines, we continue to strive for improved performance.

Replacing steam power plants with H-25 gas turbine cogeneration plants

Mitsubishi Power’s H-25 gas turbine is part of the decarbonization solution.

Replacing steam power plants with H-25 gas turbine cogeneration plants has the potential to reduce CO2 emissions and energy consumption.

OVERVIEW

The H-25 series gas turbines are a heavy-duty type with extensive experience in manufacturing gas engines that realize high efficiency.

They achieve high efficiency through heat recovery steam generators, cogeneration systems, or combined cycle power plants.

The H-25 series has a simple cycle gas turbine output of 41 MW and a combined cycle output of approximately 60 MW in a 1-to-1 configuration and approximately 120 MW in a 120-to-1 configuration.

They provide up to approximately 70 metric tons of steam per hour when used in cogeneration applications.

Features

Heavy-duty construction: Highly reliable construction with ease of maintenance and long hours of continuous operation in mind

High Efficiency: High performance in a variety of power generation cycles (simple, combined, and cogeneration)

Fuel flexibility: natural gas, waste gas, light oil, kerosene, bioethanol, etc.

Package type: easy to transport and install

Package design

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