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TN460U Compact Ultra-high Temperature Thermal Camera With Open Network Protocols

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Product Spotlights

Raythink's TN460U Thermal Camera excels in ultra-high temperature monitoring (>2000°C) within a compact, rugged design for easy industrial integration. Its core strength lies in open network protocol support (e.g., ONVIF, Modbus TCP) for seamless connection to control systems. Delivering high-precision, non-contact temperature measurement, it enhances safety by enabling remote monitoring of hazardous processes, improves quality control, and optimizes efficiency in demanding applications like metals, glass, cement, and power generation.
Negotiable MOQ: 100 Sets (Price negotiable depending on order volume and customization)
Key Specifications
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Model:
TN460U
Product Type:
Thermal Imaging Camera
Max Temperature Range:
>2000°C
Payment & Shipping
Payment Methods:
Port of Shipment:
China
Delivery Detail:
7 days
Model TN460U
Product Type Thermal Imaging Camera
Max Temperature Range >2000°C
Size & Design Compact, Portable
Network Protocols Open Standard Protocols Supported
Primary Application Industrial High-Temp Process Monitoring
Brand Raythink
Key Function High-Precision Non-Contact Temperature Measurement

Raythink Technology Co., Ltd., a dedicated manufacturer of advanced thermal imaging solutions, proudly presents the TN460U Compact Ultra-high Temperature Thermal Camera. Engineered for demanding industrial environments, this camera delivers unparalleled performance in monitoring processes exceeding 2000°C. With our extensive market reach spanning North America, South America, Eastern Europe, Southeast Asia, Africa, Oceania, Mid East, Eastern Asia, Western Europe, Central America, Northern Europe, Southern Europe, and South Asia, we understand the diverse needs of global industries. The TN460U addresses the critical challenge of safe, accurate, and reliable ultra-high temperature measurement, offering real-time insights that enhance process control, quality assurance, and safety protocols.

Core Advantages:

  • Exceptional Temperature Capability: Precisely measures targets from ambient to well beyond 2000°C, ideal for foundries, glass manufacturing, metal processing, and power generation.
  • Compact & Rugged Design: Its small footprint and robust construction allow for easy integration into tight spaces and harsh industrial settings where space is limited and conditions are challenging.
  • Open Network Protocol Integration: Seamlessly connects to existing control and monitoring systems using standard open protocols (e.g., ONVIF, Modbus TCP, others available), ensuring effortless data flow and interoperability.
  • High Thermal Sensitivity: Detects minute temperature differences critical for identifying hotspots, process anomalies, and potential failures before they escalate.
  • Advanced Imaging & Analysis: Features high-resolution thermal imaging, multiple measurement modes (point, area, line), customizable alarms, and intuitive software for comprehensive analysis and reporting.
  • Enhanced Safety: Enables remote monitoring of hazardous high-temperature processes, significantly reducing the need for personnel to be exposed to dangerous environments.

Key Technical Specifications:

Parameter Specification
Spectral Range Optimized for High-Temp Measurement (e.g., SWIR/MWIR)
Temperature Range Customizable, typically from 150°C to >2000°C
Frame Rate High Frame Rate for Fast Processes
Accuracy ±1% of reading or ±2°C, whichever is greater (Typical)
Field of View (FOV) Various lens options available
Outputs Thermal Video, Analog/Digital Data, Alarm Signals
Enclosure Rating Robust housing for industrial environments (IP rating available)
Cooling Uncooled Microbolometer (or Cooled option)

The TN460U delivers tangible benefits across various sectors:

  • Metals & Foundries: Monitor furnace linings, molten metal levels, casting temperatures, and detect slag.
  • Glass Manufacturing: Control forming, annealing lehr temperatures, and detect defects.
  • Cement & Lime Kilns: Optimize burning zone temperature, monitor refractory wear, and track material sintering.
  • Power Generation: Inspect boilers, superheaters, turbines, and electrical components.
  • Chemical Processing: Monitor reactors, flare stacks, and critical high-temp reactions.

Trusted Global Manufacturing Expertise: As Raythink Technology, we leverage our position as a manufacturer and our proven track record serving diverse industrial markets across six continents – including established regions like North America, Western Europe, and Eastern Asia, as well as rapidly developing markets in Southeast Asia, Africa, and South America. This global perspective ensures the TN460U is designed for reliability and performance under the most demanding conditions worldwide. Choosing the TN460U means investing in a solution backed by direct manufacturing quality control and a deep understanding of industrial thermal imaging needs. Experience the difference of precise ultra-high temperature monitoring combined with seamless system integration. Contact Raythink today to discuss how the compact TN460U can enhance safety, efficiency, and product quality in your specific application.

Frequently Asked Questions (FAQ):

  • Q: What makes the TN460U suitable for temperatures above 2000°C?
    A: The TN460U utilizes specialized detectors and optics optimized for the intense infrared radiation emitted at ultra-high temperatures. It often employs spectral filtering (e.g., in the SWIR or MWIR bands) and advanced calibration techniques to ensure accuracy and sensor protection in these extreme conditions.
  • Q: What specific 'open network protocols' does it support?
    A: The TN460U typically supports industry-standard protocols like ONVIF for video streaming and device management, and Modbus TCP for direct integration with PLCs and SCADA systems. Support for other protocols like PROFINET, EtherNet/IP, or MQTT may be available or customizable.
  • Q: How does the compact size benefit industrial installation?
    A: Its small size allows for installation in confined spaces near the process (e.g., on furnace viewports, near kiln inlets/exits, on machinery) where larger cameras cannot fit. This proximity often provides a better field of view and reduces the need for complex mounting solutions.
  • Q: Can it withstand harsh industrial environments?
    A: Yes, the TN460U is built with a robust housing designed for industrial settings. It often features high IP ratings for dust and water resistance and may include optional air or water purge fittings for lens protection in dirty or high-heat areas. Specific ratings depend on configuration.
  • Q: What software is provided for analysis?
    A: Raythink provides dedicated thermal analysis software offering real-time monitoring, temperature profiling, alarm configuration, data logging, reporting tools, and image/video recording capabilities. Compatibility with third-party software via open protocols is also a key feature.
  • Q: Is calibration service available?
    A: Yes, as the manufacturer, Raythink offers calibration services to ensure the TN460U maintains its specified accuracy over time. Calibration intervals and procedures depend on usage intensity and environmental conditions.
  • Q: What cooling options are available?
    A> The TN460U is commonly offered with an uncooled microbolometer detector for reliability and lower maintenance. However, configurations utilizing cooled detectors (like Stirling coolers) for higher sensitivity or faster response in specific ultra-high temp applications may be available upon request.
  • Q: How is the camera protected from the extreme heat it measures?
    A> Protection strategies include specialized high-temperature lenses, spectral filtering to block excessive radiation, internal heat shielding, robust housings, and often active cooling (air or water purge) systems directed at the lens and front window to prevent overheating and damage.
Product Tags: Ultra-High Temp Thermal Imager , Compact Thermal Imaging Camera , Open Network Thermal Camera

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Main Markets
North America, South America, Eastern Europe, Southeast Asia, Africa, Oceania, Mid East, Eastern Asia, Western Europe, Central America, Northern Europe, Southern Europe, South Asia