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Honeywell TC810R1024
Honeywell TC810R1024
Honeywell TC810R1024
Honeywell TC810R1024
Honeywell TC810R1024
Honeywell TC810R1024
· Product image is representative; revision or series may vary. Contact us to request a specific version.

TC810R1024

Relay Modules
In Stock

Product Information:

Relay Modules with FlashScan

Wide viewing angle of LED

SEMS screws with clamping

plates for wiring ease

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Technical specifications for TC810R1024

  • Manufacturer:
    Honeywell
  • Product Category:
    DCS System
  • Estimated shipping dimensions:
    11.5 x 10.2 x 5.4 cm
  • Weight:
    0.75 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Normal operating voltage:
    15 to 32 VDC
  • Maximum current draw:
    6.5 mA (LED on)
  • Average operating current:
    230 μA direct poll; 255 μA group poll
  • Temperature range:
    32°F to 120°F (0°C to 49°C)
  • Humidity range:
    10% to 93% non-condensing
  • Product Type:
    Relay Modules
  • Stock:
    30

Information

Overview Manuals Principle Applications Key Benefits

Features:

  • Relay Modules with FlashScan
  • The built-in type recognition function can automatically identify these devices in the control panel
  • SEMS screws with clamping plates for wiring ease
The TC810R1024(CDN) addressable relay module provides dry contact outputs for activating various auxiliary devices such as fans, dampers, and control equipment. Its addressable nature allows for manual or panel-programmed activation of the dry contacts in selected modes.

FlashScan is a communication protocol that significantly improves communication speed between analog smart devices. These devices communicate in groups. When a device in the group receives a new message, the control panel's CPU stops polling the entire group and instead focuses on processing the single message from that device. Ultimately, its response time is more than five times faster than other designs.

The TC810R1024 Honeywell Relay Modules may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
Honeywell TC810R1024 Relay Modules Manuals(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.
Each TC810R1024 (CDN) uses one of 159 possible module addresses in the SLC loop (99 in the CLIP loop). It responds to periodic polling of the control panel and reports its type and status, including the open/normal/short circuit status of its Notification Device Circuit (NAC). An LED flashes each time a poll is received. Upon receiving a command, it activates its internal relay.
The TC810R1024(CDN) TC810R1024(CDN) may be programmed to programmed to operate dry con- operate dry contacts for applications such as door holders or tacts for applications such as door holders or Air Handling Unit Handling Unit shutdown, and to reset four-wire smoke detect shutdown, and to reset four-wire smoke detector power.

Ask our team:

  • What intrinsic sensing capabilities distinguish the TC810R1024 in high-accuracy thermal monitoring applications? The TC810R1024 offers ultra-stable temperature measurement with high linearity, enabling precise detection of minute thermal fluctuations in critical industrial or laboratory environments. Q2. How does the TC810R1024 ensure exceptional signal fidelity under electrically noisy conditions? Through its advanced shielding and differential sensing design, the TC810R1024 maintains low noise susceptibility, providing consistent output even in high-interference industrial settings. Q3. Why is the TC810R1024 ideal for integration into real-time process control systems? Its fast thermal response time and low thermal mass allow the TC810R1024 to deliver immediate temperature feedback, supporting dynamic control loops and rapid thermal regulation. Q4. How does the TC810R1024 maintain accuracy across extended operational temperature ranges? The TC810R1024 incorporates precision thermistor elements with calibrated compensation, ensuring linear response and minimal drift across broad ambient temperature variations. Q5. What design features of the TC810R1024 enhance long-term operational reliability? The TC810R1024 is encapsulated in thermally conductive and chemically resistant materials, mitigating environmental degradation and extending functional lifespan in industrial deployments. Q6. How does the TC810R1024 facilitate seamless interfacing with digital or analog control architectures? Its standardized electrical characteristics and output compatibility allow the TC810R1024 to interface directly with ADCs, controllers, or data acquisition systems without additional signal conditioning. Q7. In what ways does the TC810R1024 improve system safety and predictive maintenance capabilities? By providing high-precision temperature data, the TC810R1024 enables early detection of thermal anomalies, allowing proactive intervention and minimizing the risk of component overheating. Q8. How does the TC810R1024 optimize energy efficiency in temperature-critical systems? Accurate temperature feedback from the TC810R1024 allows precise thermal management, reducing excessive heating or cooling cycles and thereby minimizing energy consumption. Q9. Why is mechanical robustness significant in the TC810R1024’s deployment? Its encapsulated design protects the TC810R1024 from mechanical shock, vibration, and environmental contaminants, ensuring consistent measurement integrity in industrial environments. Q10. How does the TC810R1024 contribute to enhanced overall system performance and reliability? By delivering high-resolution, rapid-response, and stable thermal measurements, the TC810R1024 ensures reliable process monitoring, optimized thermal control, and prolonged equipment service life.
    The TC810R1024 provides ultra-stable temperature measurement and high linearity, enabling precise detection of minute temperature fluctuations in critical industrial or laboratory environments.
  • How does the TC810R1024 ensure excellent signal fidelity in electrically noisy environments?
    Thanks to its advanced shielding and differential sensing design, the TC810R1024 maintains low noise sensitivity, providing stable output even in highly disruptive industrial environments.
  • Why is the TC810R1024 ideal for integration into real-time process control systems?
    Its fast thermal response time and low heat capacity enable the TC810R1024 to provide instant temperature feedback, supporting dynamic control loops and rapid temperature regulation.
  • What design features of the TC810R1024 enhance its long-term operational reliability?
    The TC810R1024 is packaged in thermally conductive and chemically resistant materials, mitigating environmental degradation and extending its lifespan in industrial applications.
  • In what ways does the TC810R1024 improve system safety and predictive maintenance capabilities?
    By providing high-precision temperature data, the TC810R1024 enables early detection of thermal anomalies, allowing for proactive intervention and minimizing the risk of component overheating.
  • Why is mechanical strength critical for the application of the TC810R1024?
    Its package design protects the TC810R1024 from mechanical shock, vibration, and environmental contamination, ensuring consistent measurement reliability in industrial environments.
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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.