GE IS220PDIAH1A 336A4940CSP1 is a high-performance discrete input module launched by General Electric (GE), belonging to the Mark VIe control system series, mainly used for the acquisition and processing of discrete signals in the field of industrial automation. This module has high reliability, strong anti-interference ability, and flexible adaptation characteristics. It can stably receive switch signals from on-site equipment (such as on/off signals output by sensors, limit switches, buttons, etc.), and convert them into digital signals recognizable by the control system, providing core data support for monitoring, logical judgment, and precise control of industrial production processes. Its typical application scenarios cover industries with extremely high requirements for control accuracy and system stability, such as power generation (thermal power, hydropower, new energy), petrochemicals, metallurgy, and rail transit.
Basic overview of module
GE IS220PDIAH1A 336A4940CSP1 is a high-performance discrete input module launched by General Electric (GE), belonging to the Mark VIe control system series, mainly used for the acquisition and processing of discrete signals in the field of industrial automation. This module has high reliability, strong anti-interference ability, and flexible adaptation characteristics. It can stably receive switch signals from on-site equipment (such as on/off signals output by sensors, limit switches, buttons, etc.), and convert them into digital signals recognizable by the control system, providing core data support for monitoring, logical judgment, and precise control of industrial production processes. Its typical application scenarios cover industries with extremely high requirements for control accuracy and system stability, such as power generation (thermal power, hydropower, new energy), petrochemicals, metallurgy, and rail transit.
Core technical parameters
Number of input channels
16 channels
Single module supports parallel acquisition of 16 discrete signals, improving signal processing efficiency
Input signal type
Dry contact/wet contact
Compatible with passive dry contacts (only providing on/off status) and active wet contacts (with DC voltage signal), suitable for various field devices
Rated input voltage
24VDC (typical value)
Wide voltage adaptability range, actual working voltage can be compatible with 18-32VDC, to cope with voltage fluctuations in industrial sites
input current
Each channel ≤ 5mA (under rated voltage)
Low power design to reduce overall module energy consumption
response time
≤ 1ms (typical value)
Quickly capture signal changes to meet the requirements of high-speed control scenarios
isolation method
Channel to channel optoelectronic isolation, module to backplane optoelectronic isolation
Isolation voltage ≥ 2500Vrms, effectively suppressing electromagnetic interference (EMI) and common mode interference, ensuring signal transmission stability
Working temperature range
-40℃~70℃
Adapt to harsh industrial environments and operate stably under extreme high and low temperature conditions
Storage temperature range
-40℃~85℃
Meet the environmental needs of long-term inventory or transportation processes
Installation method
Mark VIe standard rack installation
Modular design, supporting hot plugging (some scenarios require adherence to operating standards), facilitating maintenance and system expansion
communication interface
Communicate with the controller through the backplane bus
Compatible with GE Mark VIe system bus protocol, enabling high-speed data exchange with the main controller
Functional features and advantages
1. High reliability and stability
This module adopts GE industrial grade hardware design standards, and the core components have been strictly screened to have anti vibration (in accordance with IEC 60068-2-6 standard) and anti impact (in accordance with IEC 60068-2-27 standard) characteristics, which can resist complex environmental interference in industrial sites. At the same time, the module is equipped with overvoltage and overcurrent protection circuits, which can automatically cut off the circuit when the input signal is abnormal, avoiding module damage and ensuring the safe operation of the entire control system.
2. Flexible signal adaptation capability
Supports both dry and wet contact signal types, and can adapt to different types of on-site sensors without the need for additional adapter devices. For wet contact input, the module can automatically recognize voltage signals within the range of 18-32VDC, without the need for manual parameter adjustment, simplifying the on-site debugging process. In addition, the independent signal processing circuit for each channel ensures signal independence during multi-channel parallel acquisition, avoiding crosstalk between channels.
3. Efficient signal processing and communication
The module response time is ≤ 1ms, which can quickly capture the status changes of on-site equipment, especially suitable for control scenarios with high real-time requirements (such as emergency stop signal acquisition of generator sets, precise positioning control of production lines, etc.). By communicating with the main controller through the Mark VIe system backplane bus, the data transmission rate is high and the latency is low, ensuring fast issuance of control instructions and real-time uploading of on-site data.
4. Convenient diagnosis and maintenance
The front of the module is equipped with LED status indicator lights, and each channel corresponds to independent "power", "signal normal", and "fault" indicator lights. Operation and maintenance personnel can intuitively judge the working status of the module and each channel through the indicator lights, and quickly locate the fault point. At the same time, the module supports online diagnostic function, which can monitor the working parameters, communication status, and fault information of the module in real time through the control system software, reducing maintenance costs.
System compatibility and installation requirements
1. System compatibility
The GE IS220PDIAH1A 336A4940CSP1 discrete input module is designed specifically for GE Mark VIe distributed control systems and is fully compatible with Mark VIe system controllers (such as IC698CMX series), I/O racks, and system software (such as ControlST). It can be directly integrated into existing Mark VIe systems for expansion or upgrade without the need for significant adjustments to the system architecture.
2. Installation requirements
-Installation environment: Keep away from strong electromagnetic radiation sources (such as high-power frequency converters and high-voltage cables), avoid humid, dusty, and corrosive gas environments, and it is recommended to install in a control cabinet with protective measures.
-Rack requirements: It needs to be installed on a GE Mark VIe standard I/O rack, ensuring good grounding of the rack (grounding resistance ≤ 4 Ω) to enhance the module's anti-interference ability.
-Wiring specifications: It is recommended to use shielded twisted pair cables for input signal cables, with the shielding layer grounded at one end; When wiring, it is necessary to distinguish between the positive and negative poles of the power supply and the signal channel to avoid module damage caused by reverse connection.
-Hot plugging instructions: Supports hot plugging, but the "module offline" operation needs to be performed in the system software first to avoid impact on the system during the plugging process.
Typical application cases
In the control system of thermal power units, the GE IS220PDIAH1A module is often used to collect relevant discrete signals of the boiler combustion system, such as the operation/stop status of the coal feeder, the ignition success signal of the fuel spray gun, the abnormal speed signal of the air preheater, and the opening and closing status of the safety valve. These signals are collected by the module and transmitted to the main controller. The controller makes logical judgments based on the signal status to achieve precise control of the combustion system, ensuring the stable operation of the boiler and the power generation efficiency of the unit. In addition, the high reliability and anti-interference ability of the module also ensure the accuracy and stability of signal acquisition in harsh environments such as high temperature and high vibration of boilers.





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