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DS2020PDMAG6

Stable Power Regulation

The GE DS2020PDMAG6 is engineered to offer stable power regulation. With its ability to supply power within a defined voltage range and multiple current ratings, it can adapt to the diverse power requirements of different components in the Mark V turbine control system. This ensures that each device operates under optimal power conditions, reducing the chances of damage due to over – voltage or under – voltage situations.

Compatibility within Mark V Ecosystem

As part of the Mark V series, the DS2020PDMAG6 is highly compatible with other components in the system. It can seamlessly integrate with control modules, sensors, and actuators within the Mark V setup. This compatibility simplifies system installation and maintenance, as all components are designed to work in harmony, enhancing the overall reliability of the turbine control system.

Reliable Construction

Built with a normal PCB coating, the module is protected against environmental factors such as dust, moisture, and minor electrical interference. This reliable construction ensures the longevity of the DS2020PDMAG6, even in harsh industrial environments. The robust build quality also contributes to its ability to consistently deliver power, minimizing unexpected failures and costly downtimes in industrial operations.
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Part number: DS2020PDMAG6
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Description

Product Overview

The GE DS2020PDMAG6 is a power distribution module meticulously crafted by General Electric for its renowned Mark V turbine control system series. As an integral part of this series, it plays a pivotal role in power – centric industrial automation setups, particularly those involving wind, steam, and gas turbine automated drive assemblies. This module is designed to efficiently manage and distribute power within the complex framework of the Mark V system.

 

Functionally, it ensures that the various components within the turbine control system receive a stable and appropriate power supply. By regulating the power flow, it contributes to the smooth operation of the entire system, minimizing the risk of power – related disruptions. Its design adheres to the high – standards set by GE, integrating with other components in the Mark V series to provide a comprehensive and reliable control solution for turbine operations. Although the Mark V series has been discontinued, the DS2020PDMAG6 still holds value in the industrial marketplace due to its utilization of GE’s patented Speedtronic control system technology, which has a long – standing reputation for performance and reliability.

Technical Specifications

Parameter Name Parameter Value
Product Model DS2020PDMAG6
Manufacturer General Electric
Product Type Power Distribution Module
Series Mark V
Power Supply Voltage Rated at 24 V DC, with an adjustable range from 24 to 28 V DC
Output Current Ratings Available in 3 A, 5 A, 10 A, 20 A, and 40 A options
Weight Approximately 32 pounds before packaging
PCB Coating Style Normal coating to protect components
Communication Interface Not specified in common sources, but likely has interfaces to connect with other Mark V system components for power management coordination
Operating Temperature Range Not provided, but typical for industrial modules is around – 20 °C to + 60 °C
Mounting Method Not detailed, but expected to be suitable for standard industrial rack – mount setups within the Mark V system infrastructure
Mark V Series Grouping Group 6
DS2020PDMAG6

DS2020PDMAG6

Main Features and Advantages

Stable Power Regulation

The GE DS2020PDMAG6 is engineered to offer stable power regulation. With its ability to supply power within a defined voltage range and multiple current ratings, it can adapt to the diverse power requirements of different components in the Mark V turbine control system. This ensures that each device operates under optimal power conditions, reducing the chances of damage due to over – voltage or under – voltage situations.

Compatibility within Mark V Ecosystem

As part of the Mark V series, the DS2020PDMAG6 is highly compatible with other components in the system. It can seamlessly integrate with control modules, sensors, and actuators within the Mark V setup. This compatibility simplifies system installation and maintenance, as all components are designed to work in harmony, enhancing the overall reliability of the turbine control system.

Reliable Construction

Built with a normal PCB coating, the module is protected against environmental factors such as dust, moisture, and minor electrical interference. This reliable construction ensures the longevity of the DS2020PDMAG6, even in harsh industrial environments. The robust build quality also contributes to its ability to consistently deliver power, minimizing unexpected failures and costly downtimes in industrial operations.

Application Field

Power Generation

In power plants, whether they are powered by steam, gas, or wind turbines, the GE DS2020PDMAG6 is a crucial component. For steam turbine power plants, it distributes power to the various sensors and actuators that monitor and control the steam flow, temperature, and pressure. In gas turbine power plants, it powers the components involved in the combustion process control, such as fuel valves and ignition systems. In wind turbines, it supplies power to the pitch control system, yaw drive motors, and monitoring sensors, ensuring smooth and efficient power generation.

Industrial Manufacturing

In industrial manufacturing facilities that use turbines for power generation or as part of their production processes, the DS2020PDMAG6 plays a vital role. For example, in a large – scale manufacturing plant that relies on a steam turbine – driven generator for its power needs, the module ensures a stable power supply to all the production equipment. It can also be used in manufacturing processes that involve gas – fired turbines for heating or mechanical drive, powering the associated control systems and equipment.

Energy – Intensive Industries

Industries such as oil and gas, which are highly energy – intensive, often use turbine – based power systems. The GE DS2020PDMAG6 is used in these industries to distribute power within the turbine control systems. It powers the sensors that detect gas leaks, the valves that control the flow of oil and gas, and the motors that operate pumps and compressors. By providing a reliable power supply, it helps maintain the safe and efficient operation of these critical industrial processes.

DS2020PDMAG6

DS2020PDMAG6

Related Products

GE DS2020PDMAG3

Similar to the DS2020PDMAG6, it is also a power distribution module in the Mark V series. However, it may have different current rating options or a slightly different form factor, making it suitable for applications with different power requirements within the Mark V system.

GE DS2020PDMAG4

Another power distribution module in the same series. It might have variations in terms of communication capabilities or additional features for power monitoring, which could make it more suitable for specific industrial setups where these features are required.

GE DS200 series control modules

These control modules work in tandem with the DS2020PDMAG6. They receive power from the DS2020PDMAG6 and use it to control various functions in the Mark V turbine control system, such as regulating the speed of the turbine or adjusting the fuel supply.

GE Mark V speedtronic system components

Components like sensors and actuators in the Mark V speedtronic system rely on the power distributed by the DS2020PDMAG6. For example, temperature sensors and pressure sensors that provide critical data for turbine control are powered by this module, enabling them to function accurately and transmit data in real – time.

GE replacement power supply units for Mark V

These units can be used as alternatives to the power distribution provided by the DS2020PDMAG6 in case of module failure or when a different power supply configuration is required. However, the DS2020PDMAG6 is designed to be a more integrated and optimized solution within the Mark V system.

Installation and Maintenance

Pre – installation preparation: Before installing the GE DS2020PDMAG6, ensure that the power to the Mark V turbine control system is switched off to avoid electrical hazards. Check the module for any visible signs of damage during transit, such as scratches on the PCB or bent connectors. Familiarize yourself with the installation manual provided by GE, which should include details about the proper mounting method, whether it’s DIN – rail, panel – mount, or another technique suitable for the Mark V system. Verify the compatibility of the DS2020PDMAG6 with other components in the system, especially in terms of power requirements and communication interfaces if applicable.

 

Maintenance recommendations: Regularly inspect the GE DS2020PDMAG6 for any signs of overheating, such as discoloration of the PCB or unusual smells. Clean the module periodically to remove dust and debris, as these can accumulate and affect its performance, especially in terms of heat dissipation. Check the power output regularly to ensure it is within the specified voltage and current ranges. If any issues are detected, such as unstable power output or connection problems, refer to the product manual for troubleshooting steps or contact GE’s technical support team. Keep spare parts, such as replacement connectors or small electronic components, on hand for quick repairs if needed.

Product Guarantee

General Electric offers a comprehensive product guarantee for the GE DS2020PDMAG6. The company stands by the quality of the product, ensuring that it is free from manufacturing defects. With a global network of technical support teams, GE provides timely assistance for installation guidance, troubleshooting, and any other technical issues. In case of any defects during the warranty period, GE will repair or replace the DS2020PDMAG6 free of charge, demonstrating its confidence in the product’s reliability. This guarantee gives customers peace of mind, knowing that they can rely on the DS2020PDMAG6 for their critical industrial applications within the Mark V turbine control system.
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