DS200SI0CG1A6A integrated circuit board

DS200SI0CG1A6A integrated circuit board Model: DS200SI0CG1A6A Brand: GE Series: GE Mark VIe System Brand New Original Provide one-year warranty service Delivery time: In stock

DS200SI0CG1A6A integrated circuit board

DS200SI0CG1A6A Product Introduction

Basic Information
Brand: GE (General Electric)
Model:DS200SI0CG1A6A
Part Number: DS200SI0CG1A6A
Series: Mark VIe Speedtronic Turbine Control System I/O Pack
Country of Origin: United States
Product Type: Discrete Input Module (Contact Input Module), also known as PDIA I/O Pack

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Functional Overview
The DS200SI0CG1A6A is a 24-channel discrete (digital) input module in the GE Mark VIe control system. Its primary function is to collect discrete signals (contact open/close signals) generated by field devices such as sensors,
 switches, and relays, convert them into digital signals that can be recognized and processed by the PLC or control system CPU,
and transmit the processed data to the GE Speedtronic turbine control system or other control equipment, enabling automated control and monitoring.

Key Technical Specifications
Rated Voltage: 24.0 VDC (Nominal)
Maximum Rated Voltage: 28.6 VDC
Maximum Rated Contact Input Voltage: 32 VDC
Number of Input Channels: 24 Discrete Inputs
Operating Temperature Range: -30°C to +65°C
Environmental Adaptability: Passes rigorous environmental testing, capable of long-term stable operation in harsh industrial environments

Compatible Terminal Boards
The DS200SI0CG1A6A can be paired with a variety of GE terminal boards, including but not limited to:
IS200STCIH1A / IS200STCIH2A
IS200STCIH8A
IS200TBCIH2C / IS200TBCIH4C
IS400STCIH1A / IS400STCIH2A / IS400STCIH8A
IS400TBCIH2C

Certifications and Safety

This module is UL certified and can be used in both hazardous and non-hazardous locations. The UL certification covers various classes and divisions, and relevant UL mark documents are available for reference.


Our country’s educational achievements are obvious to all. Almost 100% of the nine-year compulsory education and the number of universities are constantly expanding. Last year, our country’s university graduates reached 8.47 million. The huge educated population meets the talent needs of all aspects of capital-intensive industries; infrastructure On the other hand, we have established the world’s largest road and railway network, known as the “infrastructure maniac”, which ensures the smooth transportation of raw materials and finished products.

As can be seen from the above, there is no shortage of talents in China’s manufacturing industry in the first two stages, but now we have come to the third stage of intelligence-intensive industries. What is needed at this stage is education, including higher education and high-end vocational education, to cultivate talents. R&D personnel, engineers, professional operators and so on, and this is what we are lacking today.

In terms of cultivating R&D personnel and engineers in higher education, my country’s current stage can only be said to be unsatisfactory. There are 985 and 211 universities that provide some talents, which can barely meet the needs of the industry. Although the overall quantity and quality are still not enough, and as the progress deepens, This shortcoming will become more obvious.

Relevant reports show that a bachelor’s degree is the basic academic requirement for talents in artificial intelligence-related positions. Especially in the field of artificial intelligence chips, up to 88.4% of positions require a bachelor’s degree. Most positions in technical fields such as intelligent robotics, machine learning, natural language processing, intelligent language, and computer vision require a master’s degree or above.




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