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GJR2389800R1210 81ET03N-E

Temperature Input Module
In Stock

Product Information:

Input Module for 16 ---fold

Temperature Sensors

The module can be plugged into

any PROCONTROL station

with redundant 24 V supply

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Technical specifications for GJR2389800R1210 81ET03N-E

  • Manufacturer:
    ABB
  • Product Category:
    DCS System
  • Spare Part Number:
    GJR2389800R1210
  • Estimated shipping dimensions:
    1.3 x 25.4 x 20.3 cm
  • Weight:
    0.6 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    sweden
  • Place of shipment:
    Xiamen, Fujian, China
  • Operating voltage:
    UD 4.9 ... 5.1 V, typical 5.0 V
  • Power consumption at UD = 5.0 V:
    600 mA
  • Power dissipation:
    3.0 ... 3,4 W, depending on operating voltage
  • Sensor voltage for thermocouples:
    -10 ... +60 mV
  • Processing time:
    typ. 630 msec, max. 640 msec
  • Stock:
    30

Information

Overview Manuals Principle Primary Applications

Features:

  • Temperature Input Module
  • Control Systems Procontrol P14 Controllers
  • Connects the cabinet to a channel of the PROCONTROL remote bus
Their core function is to act as an intelligent bridge between field devices and the system bus, flexibly receiving analog signals (such as pressure and temperature) and binary switching signals. This series of modules features extremely high channel density and self-diagnostic capabilities. Each channel can typically be independently configured with filtering, calibration, and limit alarm functions, ensuring accurate and real-time acquisition of field data, providing a solid foundation for decision-making throughout the control system.

It incorporates comprehensive monitoring mechanisms that can detect transmitter power short circuits, line breaks, and internal hardware faults in real time, issuing immediate alarms via front panel indicator lights or the system bus. The module supports hot-swapping technology, allowing maintenance and replacement without interrupting system operation. Furthermore, its robust electrical design enables stable operation in harsh power plant environments with strong electromagnetic interference and extreme temperatures, making it a key component for ensuring the safe operation of energy infrastructure.

The GJR2389800R1210 81ET03N-E ABB Temperature Input Module may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
ABB GJR2389800R1210 81ET03N-E Temperature Input Module info(Datasheets), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
Its operating principle is based on distributed processing and standard bus communication: The module first receives raw electrical signals from field sensors through a monitored input interface and performs analog-to-digital conversion (ADC) or jitter suppression using an onboard microprocessor. The processed data undergoes engineering quantity conversion and verification according to preset logic, and is then encapsulated into standard telegrams with parity bits. Finally, this data is uploaded to the system bus via the PROCONTROL station bus interface for use by the controller or host; simultaneously, the module continuously executes a cyclic self-test program to ensure the integrity and authenticity of each transmitted signal.
Power Plant Instrumentation: It is a core component in thermal and nuclear power plants, used to monitor critical process temperatures in boilers, turbines, and exhaust systems.
Safety and Limit Signals: Each of its 16 channels can generate up to four independent limit signals, making it ideal for triggering alarms or protective shutdowns when temperatures exceed preset safety thresholds.
High-density signal acquisition: Each module is equipped with 16 functional units (channels) for large-scale data acquisition, while maintaining independent passive isolation for each measurement circuit to prevent ground loops.

Ask our team:

  • What is the fundamental operational role of the GJR2389800R1210 81ET03N-E within an industrial automation or PROCONTROL system architecture? The GJR2389800R1210 81ET03N-E is a specialized communication and interface module designed to facilitate structured data exchange between control system components and external devices. It acts as a gateway, enabling efficient and deterministic transmission of process information across system layers. Q2: How does the GJR2389800R1210 81ET03N-E ensure high-integrity data communication in electrically and mechanically demanding environments? The GJR2389800R1210 81ET03N-E incorporates galvanic isolation, advanced signal conditioning, and electromagnetic compatibility (EMC) design techniques. These features mitigate noise interference, suppress transient disturbances, and preserve data fidelity during high-speed communication. Q3: In which industrial application scenarios is the GJR2389800R1210 81ET03N-E most effectively utilized, and what operational advantages does it provide? The GJR2389800R1210 81ET03N-E is widely deployed in power generation facilities, process industries, and large-scale manufacturing systems, where reliable communication between distributed control units is essential. It enhances system coordination, supports real-time monitoring, and improves overall operational efficiency. Q4: What communication interfaces and protocols are typically supported by the GJR2389800R1210 81ET03N-E, and how do they contribute to system interoperability? The GJR2389800R1210 81ET03N-E commonly supports industrial communication interfaces such as serial links (e.g., RS232/RS485) and system-specific bus protocols. These interfaces enable seamless integration with controllers, operator stations, and diagnostic equipment, ensuring compatibility across heterogeneous automation environments. Q5: How does the GJR2389800R1210 81ET03N-E manage bidirectional data flow and synchronization between subsystems? The GJR2389800R1210 81ET03N-E is designed to handle full-duplex or half-duplex communication, allowing simultaneous transmission and reception of data. Its internal buffering and synchronization mechanisms ensure that data packets are accurately sequenced and delivered without loss or latency issues. Q6: What diagnostic and monitoring capabilities are embedded within the GJR2389800R1210 81ET03N-E to enhance system reliability? The GJR2389800R1210 81ET03N-E includes built-in diagnostic features that monitor communication status, detect transmission errors, and identify interface anomalies. These capabilities support proactive fault detection and simplify maintenance procedures in complex automation systems. Q7: What environmental and electrical characteristics define the operational envelope of the GJR2389800R1210 81ET03N-E? The GJR2389800R1210 81ET03N-E is engineered to operate under industrial conditions, with tolerance to wide temperature ranges, humidity, and mechanical vibration. Its robust electrical design ensures stable performance under fluctuating supply conditions and in high-noise environments. Q8: What is the underlying working principle that governs how the GJR2389800R1210 81ET03N-E processes and transmits data within an automation network? The GJR2389800R1210 81ET03N-E operates by receiving raw data signals from connected devices, conditioning and encoding these signals into structured communication frames, and transmitting them over the system bus or communication interface. Incoming data is decoded and synchronized before being forwarded to the control processor, ensuring accurate and real-time information exchange across the automation system.
    The GJR2389800R1210 81ET03N-E is a specialized communication and interface module designed to facilitate structured data exchange between control system components and external devices. It acts as a gateway, enabling efficient and deterministic transmission of process information across system layers.
  • How does the GJR2389800R1210 81ET03N-E ensure high-integrity data communication in electrically and mechanically demanding environments?
    The GJR2389800R1210 81ET03N-E incorporates galvanic isolation, advanced signal conditioning, and electromagnetic compatibility (EMC) design techniques. These features mitigate noise interference, suppress transient disturbances, and preserve data fidelity during high-speed communication.
  • In which industrial application scenarios is the GJR2389800R1210 81ET03N-E most effectively utilized, and what operational advantages does it provide?
    The GJR2389800R1210 81ET03N-E is widely deployed in power generation facilities, process industries, and large-scale manufacturing systems, where reliable communication between distributed control units is essential. It enhances system coordination, supports real-time monitoring, and improves overall operational efficiency.
  • How does the GJR2389800R1210 81ET03N-E manage bidirectional data flow and synchronization between subsystems?
    The GJR2389800R1210 81ET03N-E is designed to handle full-duplex or half-duplex communication, allowing simultaneous transmission and reception of data. Its internal buffering and synchronization mechanisms ensure that data packets are accurately sequenced and delivered without loss or latency issues.
  • What is the underlying working principle that governs how the GJR2389800R1210 81ET03N-E processes and transmits data within an automation network?
    The GJR2389800R1210 81ET03N-E operates by receiving raw data signals from connected devices, conditioning and encoding these signals into structured communication frames, and transmitting them over the system bus or communication interface. Incoming data is decoded and synchronized before being forwarded to the control processor, ensuring accurate and real-time information exchange across the automation system.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.