DS200TCPDG1BDC From General Electric in the United States

Brand: GE

model: DS200TCPDG1BDC
System: Gas turbine system
Origin: United States

The GE DS200TCPDG1BDC turbine control module is used for various applications, including:

Electric power generation

Oil and Gas

EADS

ship

  • Email:Angela@sauldcsplc.com
  • Phone:+86 18350224834
  • WhatsApp:+8618350224834

Description

DS200TCPDG1BDC Product Introduction

GE DS200TCPDG1BDC Embedded Controller Module
 
GE DS200TCPDG1BDC Embedded Controller Module Product Details:
 
GE DS200TCPDG1BDC is an embedded controller module developed by General Electric (GE) for industrial automation and control systems.
The specific application scope of the product
will depend on the needs of system integration and industrial application, but generally speaking, this type of embedded controller module can be applied to the following categories:
 
Industrial automation: used to master and monitor various automation processes in the factory, such as production lines, machine installation,
manufacturing processes, etc.
Power industry: used for mastering and monitoring tasks in power plants and power distribution systems.
Chemical and process industries: used to monitor and grasp the production process in chemical plants, refineries, and other process industries.
Manufacturing industry: can be used to master and optimize the production process, ensuring the effectiveness of labor and product quality.
Transportation: The application in the traffic signal system, railway system, or other traffic control systems.
Construction automation: used for automation systems in construction, such as building management systems, intelligent construction control systems, etc.
Fire disposal punishment and situation control: application in the pollution fire disposal punishment plant, fire disposal punishment measures, and situation
monitoring and control system.
These are just some potential application areas, in fact, there can be more application scenarios, depending on the effectiveness and personality
of the controller module, as well as the specific needs of the customer.
 
 
General Electric has designed the processor/controller for the DS200TCPDG1BDC Mark VIe system. The Mark VI platform is General Electric”s Speedtronic range,
designed to manage gas or steam turbines.
It has a CIMPLICITY graphical interface and an HMI with software suitable for running heavy-duty turbines.
 
 
This DS200TCPDG1BDC is a single box assembly with a front panel for communication connections, two screws installed on the rear edge, and three grille holes for ventilation. The controller is designed to
be installed at the bottom of the cabinet. For a small setup that is easy to serve a triple redundant system, up to three components can be installed side by side.
 
DS200TCPDG1BDC uses the QNX operating system. It has a 667MHz Freescale 8349 processor. This board is powered by a 12 watt, 18-36 V DC power supply. Even at its maximum rated temperature, t
he board can operate within a temperature range of 0 to 65 degrees Celsius without the need for a fan for cooling. NFPA Class 1. This board can be used for two applications.
Contact Us
 
Mobile phone: 18350224834
 
E-mail: sauldcsplc@outlook.com
 
WhatsApp:+86 18350224834

(1) Use STEP7V5.2 configuration software and enter Hardware Configure to complete S7-300 PLC hardware configuration;(2) Select S7-315-2DP as the main station system, import the GSD (device database) file of NPBA-12 into the STEP7 programming environment, and configure the software to configure NPBA-12 with S7-315-2DP as the main station. DP online, and select the PPO type to use. This design uses PPO4 to set the site network address. In the Profibus structure of the variable frequency drive device, ABB frequency converters use the Profibus-DP communication module (NPBA-12) for data transmission, which is mainly periodic: the host reads the input information from the slave station and sends the output information back to the slave station. , so it is necessary to call two system function blocks SFC14 and SFC15 in the PLC main program to read and write these data to achieve communication control to the frequency converter;(3) Create a data block in the main PLC program for data communication with the frequency converter; establish a variable table for observing the real-time communication effect.4 Inverter operation settingsAfter the frequency converter and PLC are connected to a network using Profibus-DP fieldbus, in addition to programming in the PLC automation system, appropriate parameter settings must also be performed on each frequency converter.After the communication cable is connected, start the inverter and complete the setting of the inverter communication parameters.4.1 Basic settings(1) 51.01—Module type, this parameter displays the module model detected by the transmission device. Its parameter value cannot be adjusted by the user. If this parameter is not defined, communication between the module and the drive cannot be established.(2) 51.02—This parameter selects the communication protocol, “0” selects the Profibus-DP communication protocol.(3) 51.03—This parameter is ProfibuThe PPO type selected by s connection, “3” is PPO4, but the PPO type on the inverter should be consistent with the PPO type configured on the PLC.(4) 51.04—This parameter is used to define the device address number, that is, the site address of the frequency converter. Each device on the Profibus connection must have a separate address. In this design, the two frequency converters are stations 2 and 3 respectively. [1]4.2 Connection of process parametersThe process parameter interconnection completes the definition and connection of the corresponding parameters of the NPBA-12 dual-port RAM connector and the frequency converter, including the connection from the master station (PLC) to the frequency converter and the connection from the frequency converter to the master station (PLC). Set the following connection parameters on the frequency converter.(1) PZD value sent from PLC to transmission inverterPZD1—control word, such as start enable, stop, emergency stop and other control commands of the frequency converter;PZD2—frequency setting value of the inverter.(2) PZD value sent from the transmission inverter to the PLCPZD1—status word, such as alarm, fault and other inverter operating status;PZD2—actual speed value, current actual value, etc. of the frequency converter.5 ConclusionAfter the inverter control system adopts the Profibus-DP fieldbus control mode, the entire system not only has strong reliability and is easy to operate, but also can be flexibly modified according to process needs. After this system was applied in Jigang Baode Color Plate Co., Ltd., it has been running well and has provided a successful example for the future automation equipment (network communication of different manufacturers) of the head office.New technology from Swiss ABB Group: Complete car charging in 15 secondsThis technology can charge a car in 15 seconds   The Swiss ABB Group has developed a new electric bus technology that can complete vehicle charging in 15 seconds . No other company”s battery technology can achieve this performance.ABB has developed a technology called “Flash Charging” that allows an electric bus with 135 passengers to charge at charging points along the route. The charging point has a charging power of 400 kilowatts and is located above the vehicle. The charging point is connected to a moving arm controlled by a laser and can charge the car battery in 15 seconds. Its minimal design will help protect the urban environment and surrounding landscape.The idea behind this design is to give the electric bus enough power to travel to the next charging station after one charge. The end of the line will allow for long periods of full charging, with the car able to travel longer distances on a full charge. In addition to faster charging times, the system uses a carbon-emission-free solution called TOSA to obtain electricity from clean hydroelectric power stations.ABB initially plans to use this technology between Geneva Airport and the Palexpo International Convention and Exhibition Center. If the test is successful, it will be deployed to public transportation systems. This is more cost effective and environmentally friendly.ABB Executive Chief Technology Officer Claes Rytoft said: “With flash charging, we can trial a new generation of electric buses for large-scale transportation in cities. This project will provide greater flexibility, cost-effectiveness and flexibility.” Paving the way for a lower public transport system while reducing pollution and noise.”

IS200TPROH1C From General Electric in the United States
DS200ACNAG1ADD I/O excitation redundant module GE
IS220PAICH2B I/O excitation redundant module GE
DS200TBQCG1AAA Processor/Controller Mark VI System
IS200TREGH1BDC GE power control board
DS200TBQCG1ABB From General Electric in the United States
IS220UCSAH1A Gas turbine system Mark VI
IS215ACLEH1AB From General Electric in the United States
IS215ACLEH1B I/O excitation redundant module GE
IS210AEBIH1A Processor/Controller Mark VI System
IS220PAOCH1BD From General Electric in the United States
IS420PUAAH1A Processor/Controller Mark VI System
IS220PDIOH1B From General Electric in the United States
DS200DDTBG2A From General Electric in the United States
IS215ACLEH1A Processor/Controller Mark VI System
IS200ERIOH1A From General Electric in the United States
IS215UCCAM03A Processor/Controller Mark VI System
IS200EPBPG1ACD I/O excitation redundant module GE
IS200SSCAH2AGD Gas turbine system Mark VI
IS420ESWBH3AX Processor/Controller Mark VI System
IS200TDBSH2ABC High performance processor module GE
IS200EGPAG1BCA GE power control board
IS215UCVGH1A High performance processor module GE
DS200TCPDG1B I/O excitation redundant module GE
IS200GGXDG1AA GE power control board
IS200ISBEH1A High performance processor module GE
IS200EROCH1ADD Processor/Controller Mark VI System
IS200DTAIH1ACC GE power control board
IS200VCRCH1B High performance processor module GE
DS215TCQAG1BZZ01A High performance processor module GE
IS200JPDLG1A From General Electric in the United States
IS200DTAIH1ABB From General Electric in the United States
IS220PPRFH1B Processor/Controller Mark VI System
IS215UCVEH2AE GE power control board
DS200SHVMG1AFE High performance processor module GE
DS200TCEAG1BTF Processor/Controller Mark VI System
DS200TCQAG1AFD GE power control board
IS2020ISUCG High performance processor module GE
DS200FCSAG2A GE power control board
IS400WROBH1A Processor/Controller Mark VI System
IS420ESWBH1A GE power control board
IS410TBCIS2C I/O excitation redundant module GE
IS215VCMIH2C High performance processor module GE
IS200STCIH4A Processor/Controller Mark VI System
IS200TTURH1BED Processor/Controller Mark VI System
IS200ECTBG2A I/O excitation redundant module GE
IS200TBA1H1C Processor/Controller Mark VI System
DS200ITXDG1ABA Gas turbine system Mark VI
IS200GGXDG1 GE power control board
IS200TDBTH6ACD From General Electric in the United States
IS215ACLEH1C I/O excitation redundant module GE
IS220PAOCH1BD High performance processor module GE
DS200TCDAH1BHE From General Electric in the United States
IS200TRLYS1BGG Gas turbine system Mark VI
DS3820PSCB1C1B GE power control board
IS200PMCIH1ABA From General Electric in the United States
IS210DRTH1AA High performance processor module GE
IS230STAIH2A High performance processor module GE
IS230STCIH6A I/O excitation redundant module GE
IS200STCIH6A I/O excitation redundant module GE
IS220PSVOH1B GE power control board
DS200DTBCG1AAA Processor/Controller Mark VI System
IS215UCVEM06A From General Electric in the United States
IS220PDIAH1A GE power control board
IS420YVIBS1B GE power control board
IS210AEDBH4AGD High performance processor module GE
IS200VAICH1DAB High performance processor module GE
IS420UCSBH1A GE power control board
IS215ACLAH1AS GE power control board
DS3800NGDC1B1A I/O excitation redundant module GE
IS220PVIBH1A GE power control board
IS200GGXDG1A High performance processor module GE
IS200PMCIH1AAA6BA00 High performance processor module GE
DS200FHVAG1A Gas turbine system Mark VI
IS200SRTDH2ACB From General Electric in the United States
IS215UCVGH1A Processor/Controller Mark VI System
IS20OSTTCH2A From General Electric in the United States
IS220PRTDH1A GE power control board
IS200ISBEH1A From General Electric in the United States
IS200ICBDH1ABA From General Electric in the United States
IS215ACLEH1C Gas turbine system Mark VI
IS200JPDDG1A High performance processor module GE
DS200RTBAG3AGC High performance processor module GE
IS215VPROH2B From General Electric in the United States
DS200SDCIG2AFB GE power control board
IS215UCVDH7AM GE power control board
IS200ERRRH1A High performance processor module GE
IS400WROGH1A Processor/Controller Mark VI System
DS200DSFBG1ACB I/O excitation redundant module GE
IS400WPDFH2A Processor/Controller Mark VI System