Description
IS200TFBAH1ACBS3- Temperature Feedback Module is available in stock which ships the same day.
IS200TFBAH1ACBS3- Temperature Feedback Module comes in UNUSED as well as REBUILT condition.
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IS200TFBAH1ACBS3 Other names:
Controller module IS200TFBAH1ACBS3
IS200TFBAH1ACBS3 Input/Output Module
Editable controller IS200TFBAH1ACBS3
Function description:
IS200TFBAH1ACBS3 is a temperature feedback module manufactured and designed by General Electric, belonging to the Mark VIe series used in GE distributed turbine control systems. A temperature feedback module is a component or device used to provide temperature related information feedback. It can be used for various applications that require temperature monitoring and control, such as industrial processes, electronic systems, environmental monitoring, etc. This module usually consists of temperature sensors, signal conditioning circuits, and output interfaces. Temperature sensors are responsible for measuring the temperature of the environment or objects, and can be based on different technologies, including thermocouples, resistance temperature detectors (RTDs), or thermistors.
The signal conditioning circuit processes the temperature signal from the sensor and converts it into a format suitable for further processing or display. This circuit may include amplification, filtering, linearization, and other necessary adjustments to ensure accurate temperature measurement. The output interface of the module may vary depending on application requirements. It may include analog outputs, such as voltage or current signals proportional to temperature, or digital outputs, such as serial communication protocols (such as I2C or SPI) or standard interfaces (such as USB or Ethernet). These outputs allow temperature information to be utilized by other systems, displayed on screens, logged into data collection systems, or transmitted to remote locations.
The General Electric IS200TFBAH1ACBS3 product belongs to its professional EX2100 series, although the original product centric documentation surrounding this IS200TFBAH1ACBS3 PCB can only be classified as sparse at best. Nevertheless, the useful functional product codes of General Electric and a thorough visual inspection of the IS200TFBAH1ACBS3 board itself can still provide a wealth of valuable information for potential buyers or researchers. This EX2100 excitation control system series PCB is more suitable for defining as a temperature feedback board through its factory specified functional description, and uses three important product revisions to make it different from the original IS200TFBAH1ACBS3 mother EX2100 printed circuit board model.
Hardware tips and specifications
As mentioned above, there are not many original and factory printed instruction manuals specifically for this IS200TFBAH1ACBS3 PCB. That being said, the personalized IS200TFBAH1ACBS3 product number of this product does reveal a lot of information about its hardware, starting from the IS200 series label. The IS200 series label at the beginning of the product number has dual naming responsibility for the IS200TFBAH1ACBS3 PCB; It can be identified as a domestically manufactured GE product or as a GE product without special assembly versions. More specifically, this printed circuit board is produced at General Electric’s factory in Salem, Virginia. The IS200 series label of this product is followed by an instance of TFBA function abbreviation, which was created for the convenience of conversation or promotion, to replace the lengthy IS200TFBAH1ACBS3 product number. The TFBA function abbreviation also outlines the functionality of this IS200TFBAH1ACBS3 PCB as a temperature feedback board component.
In the IS200TFBAH1ACBS3 product number, the TFBA function abbreviation is followed by the H1 series grouping label, which is similar to the IS200 series label and has a dual naming function for the product. The H1 series grouping label identifies this TFBA product as a conformal coated printed circuit board and is a member of the EX2100 excitation control system series product group released by GE Industrial Systems. The last three alphanumeric characters in the IS200TFBAH1ACBS3 part number provide a detailed description of the extensive, triple revision history of this printed circuit board, which includes two functional revisions and one single art drawing revision.
Function and Features:
Temperature feedback modules typically provide multiple features and functions to ensure accurate temperature monitoring and control. Here are some common features of such modules:
Temperature sensing: This module includes a temperature sensor, which may be based on different technologies such as thermocouples, RTDs, or thermistors. These sensors can accurately measure the temperature of the environment or objects.
Signal conditioning: The module includes signal conditioning circuits for processing raw temperature signals from sensors. This circuit can perform amplification, filtering, linearization, and other adjustments to ensure accurate and reliable temperature measurement.
Measurement range: The module specifies the temperature measurement range, within which the module can provide accurate readings. The scope may vary depending on the specific module and its expected application.
Accuracy and precision: This module aims to provide precise temperature measurements within a specified accuracy range. Accuracy refers to the degree to which the measured temperature is close to the actual temperature, while accuracy refers to the level of consistency and repeatability of the measurement.
Compatibility and Integration: The temperature feedback module is designed to be compatible with various systems, such as process control systems, data acquisition systems, or microcontrollers. They can be easily integrated into existing settings or incorporated into custom designs.
common problem:
What is the purpose of the temperature feedback module?
The temperature feedback module is used to monitor and provide feedback on temperature related information. It helps to accurately measure temperature, provide output signals or data for temperature control systems, and can monitor and regulate temperature sensitive processes and systems.
How accurate is the temperature feedback module?
The accuracy of the temperature feedback module may vary depending on the specific module and its design. Accuracy is usually specified by the manufacturer and expressed as a percentage or temperature range. Higher quality modules can provide accuracy of several degrees Celsius or even a fraction of a degree.
Is the temperature feedback module compatible with different systems?
Yes, the temperature feedback module is designed to be compatible with various systems. They can be integrated with process control systems, data acquisition systems, microcontrollers, or other devices that require temperature monitoring and control.
Are all three important product revisions of this printed circuit board backward compatible?
No. Only the first two A and C functional revisions belonging to this IS200TFBAH1ACBS3 product are considered backward compatible with each other.
Why does the TFBA function abbreviation of this IS200TFBAH1ACBS3 board not match its temperature feedback board function description?
The last misaligned A number in the TFBA functional abbreviation of this product only represents the component status of the product and does not change the expected functionality of the product.
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admin –
IS200TFBAH1ACBS3 is a temperature feedback module manufactured and designed by General Electric, belonging to the Mark VIe series used in GE distributed turbine control systems. A temperature feedback module is a component or device used to provide temperature related information feedback. It can be used for various applications that require temperature monitoring and control, such as industrial processes, electronic systems, environmental monitoring, etc. This module usually consists of temperature sensors, signal conditioning circuits, and output interfaces. Temperature sensors are responsible for measuring the temperature of the environment or objects, and can be based on different technologies, including thermocouples, resistance temperature detectors (RTDs), or thermistors.
The signal conditioning circuit processes the temperature signal from the sensor an