LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera

Published on Aug. 15, 2023, 3:37 p.m.

The LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera is a high-quality thermal imaging camera perfect for contractors, building inspectors, and anyone needing an accurate and reliable thermal imager. With its upgraded 210x160 resolution, wide temperature range, and array of helpful features, this camera provides detailed thermal images to pinpoint faults and issues. This review covers the key features, image quality, durability, applications, and value of the LYCEBELL thermal imager.

Overview

The LYCEBELL 210x 160 IR thermal camera features a 3.5” color LCD display with 210x160 resolution for clear, detailed thermal images. The temperature range spans an impressive -4°F to 626°F (-20°C to 330°C) to accommodate most inspection needs. The camera also has a 6GB memory, high temperature audible alarm, flashlight, and sturdy IP54-rated housing. It comes with a carrying case, USB cable, and user manual.

  LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera

Key Features

  • 210x160 resolution
  • Temperature range: -4°F to 626°F
  • 3.5” color LCD display
  • 4 color palettes
  • 6GB memory
  • High temperature audible alarm
  • Flashlight

Technical Background

Thermal imaging technology utilizes infrared radiation to capture the temperature distribution of target objects and convert it into visible images. This technology is based on the thermal radiation characteristics of objects, thus it is not affected by light, fog, or other visual obstacles, making it suitable for applications under various lighting conditions. Thermal imaging technology finds widespread applications in industries such as industrial, medical, construction, and security, for fault detection, heat monitoring, medical diagnosis, and more. Thermal imagers detect infrared radiation and map images based on the radiation levels at different temperatures, effectively detecting temperature differences in target objects, thus assisting users in quickly and accurately locating issues or anomalies.

Image Quality

The upgraded 210x160 resolution provides a significant jump in image detail and accuracy compared to lower resolution models. Tiny temperature variations show up clearly, and you can zoom in on images to inspect areas closely. The LCD screen renders crisp, vivid images in real time. Users can choose between 4 color palettes to best suit the inspection. Overall, the image quality rivals higher-end industrial thermal cameras.

Technical Parameter Analysis

  • Resolution: The resolution of a thermal imager is a critical indicator of its image clarity. Higher resolution means clearer details in the image, allowing for more accurate identification of temperature differences in target objects. The LYCEBELL 210x 160 IR thermal imager utilizes a high resolution of 210x160 pixels, providing users with clear and detailed thermal images.
  • Sensitivity: Sensitivity refers to the smallest temperature variation a thermal imager can detect. Higher sensitivity means the thermal imager can capture even the slightest temperature differences more accurately, thus enhancing the accuracy and reliability of its applications. The LYCEBELL 210x 160 IR thermal imager boasts a high sensitivity of 0.07℃, enabling it to rapidly and accurately reflect temperature changes in target objects.
  • Temperature Range: The temperature range of a thermal imager determines its suitability for different temperature environments. The LYCEBELL 210x 160 IR thermal imager features a wide temperature measurement range, from -4°F to 626°F (-20°C to 330°C), suitable for various industrial and commercial applications.

Functional Features

  • Image Enhancement Technology: The LYCEBELL 210x 160 IR thermal imager employs advanced image processing technology to enhance image quality in real time, allowing users to observe the temperature distribution of target objects more clearly. Unlike traditional thermal imagers, the LYCEBELL 210x 160 IR also offers multiple color modes such as rainbow and iron red, helping users to better understand the images intuitively.
  • Ease of Use: The LYCEBELL 210x 160 IR thermal imager features a simple and intuitive user interface, enabling users to operate the device easily and quickly to obtain the desired thermal imaging data. Additionally, it is equipped with a high-brightness LED flashlight and built-in speaker, providing users with additional assistance in low-light environments.
  • Connectivity and Compatibility: The LYCEBELL 210x 160 IR thermal imager supports USB connectivity and has strong compatibility, allowing for data transmission and sharing with PC, smartphones, and other devices. Furthermore, it also supports connection with thermocouple probes, expanding its application range in temperature measurement.

  LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera

Durability

The IP54 rating means the camera housing resists dust and splashing water from any direction. It can withstand a 3m (9 foot) drop thanks to the rugged rubberized housing. The camera feels solid and durable in hand. The lens has a protective cover when not in use. Overall, the construction instills confidence for using this imager in harsh job site conditions.

  LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera

Applications

This thermal camera excels in building inspections, HVAC, electrical, plumbing, home repairs, and automotive applications. It quickly identifies missing insulation, air leaks, moisture issues, electrical faults, pipe leaks, overheating equipment, and many other problems. The alarm and flashlight are helpful for alerts and lighting up dark areas. Wide compatibility with thermocouple probes extends the camera’s measurement uses.

Pros

  • Excellent image quality and temperature range
  • Durable construction
  • Intuitive operation
  • Helpful audible and visual alerts
  • Affordable for most budgets

Cons

  • Shorter battery life in cold temperatures
  • No analysis software included

Value

Considering the high image resolution, temperature range, durability, and features, the LYCEBELL thermal imager provides excellent value at under $400. Image quality and features compete with models double the price or more. The included accessories and case add even more value. For professional-grade thermal inspections without the professional price tag, this camera hits the sweet spot.

  LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera

Conclusion

The LYCEBELL 210x 160 IR Infrared Thermal Imaging Camera delivers highly detailed, accurate thermal images and measurements for building, electrical, and mechanical applications. The rugged design and user-friendly operation make inspecting and diagnosing faults efficient and reliable. For anyone needing an affordable thermal camera that doesn’t compromise on quality, the LYCEBELL model is an outstanding choice.

Future Prospects

With the continuous advancement of technology, thermal imaging technology is expected to achieve more innovations and breakthroughs in the future. In the future, we can anticipate that thermal imagers will play a broader role in medical diagnosis, smart manufacturing, military security, and other fields. Meanwhile, as the cost of thermal imaging technology gradually decreases, its application in the consumer market will also be further popularized. Market forecasts indicate that the global thermal imaging market will continue to grow, and more innovative products and application scenarios will emerge in the coming years.

Specifications

  • Pixel Resolution: 210x160
  • Temperature Range: -4°F to 626°F
  • Battery Life: 24 hours
  • Charging Time: 2.5 hours
  • Screen Size: 3.5” LCD
  • Storage: 6GB
  • Thermal Sensitivity: 0.07°C
  • Image Frequency: 9Hz
  • Weight: 494g

Box Includes

  • LYCEBELL 210x 160 Thermal Camera
  • Storage Bag
  • USB Charging Cable
  • User Manual

How To Use

  1. Charge the camera fully before first use.
  2. Turn on the camera and select desired color palette.
  3. Point camera at target area and view image on display.
  4. Adjust emissivity for accurate temperatures.
  5. Use hot/cold spot tracking to inspect areas.
  6. Save images and video to memory card.
  7. Transfer files to computer for analysis.