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Waveshare Long-wave IR Thermal Imaging Camera Module Basic version (45° FOV) 80×62 Pixels for Raspberry Pi with 40PlN GPIO Header — image 1
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WAVESHARE

Waveshare Long-wave IR Thermal Imaging Camera Module Basic version (45° FOV) 80×62 Pixels for Raspberry Pi with 40PlN GPIO Header

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Thermal Cameras for premium buyers

The Waveshare Long-wave IR Thermal Imaging Camera Module Basic version (45° FOV) 80×62 Pixels for Raspberry Pi with 40PlN GPIO Header by WAVESHARE is a premium thermal cameras designed for premium buyers. It features Model No. / Name: Long-wave IR Type and Thermal Resolution: 80 × 62.

₹10,662
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Total: ₹10,662
Buying tip: A top-tier option — the best features and quality available in this category.
Estimated delivery: 17 Aug31 Aug
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Quick Specs

Model No. / Name: Long-wave IR Type
Thermal Resolution: 80 × 62
Shipping Weight: 0.03 kg
Shipping Dimensions: 7 × 5 × 2 cm

Ideal For

Photography and videographySecurity monitoringLive streaming
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SKU: robu-2030857Category: Thermal Cameras

About This Product

The Waveshare Long-wave IR Thermal Imaging Camera Module Basic version (45° FOV) 80×62 Pixels for Raspberry Pi with 40PlN GPIO Header by WAVESHARE is a premium thermal cameras designed for premium buyers. It delivers reliable performance at an accessible price.

Key Specifications

  • Model No. / Name: Long-wave IR Type
  • Thermal Resolution: 80 × 62
  • Shipping Weight: 0.03 kg
  • Shipping Dimensions: 7 × 5 × 2 cm

Why Buy from Pricio?

Pricio sources this product directly, cutting out multiple middlemen. Every order includes free shipping, a 15-day return policy, and secure payment via Razorpay.

This is a long-wave IR thermal imaging camera that adopts the hybrid technology of microbolometer and thermopile pixel, features 80x62 array pixels. It will detect the IR distribution of objects in the field of view, turn the data into surface temperature of the objects by calculation, and then generate thermal images, for easy integration into miscellaneous industrial or intelligent control applications. Four versions are available: options for HAT version with Raspberry Pi 40PIN GPIO header and USB version with Type-C port. Also provides basic version and wide angle version with 45° / 90° FOV.

Applications:

  1. High precision long-term non-contact temperature online monitoring
  2. IR thermal imaging devices, IR thermometers
  3. Smart home, intelligent building, intelligent lighting
  4. Industrial temperature control, security & safety, intrude/motion detection
  5. Small Target Thermal Analysis, Heat Trend Analysis and Solutions

Features:

  1. Adopts the hybrid technology of microbolometer and thermopile, 80x62 array pixels
  2. Continuous operation and thermal imaging video stream due to shutterless design
  3. Noise Equivalent Temperature Difference (NETD) 150mK RMS@1Hz refresh rate
  4. Up to 25FPS (Max) thermal imaging video stream output
  5. Comes with online resources and manuals (Python demo for Raspberry Pi, Android/Windows host computer and user manual, etc.)

Useful Link:

https://www.waveshare.com/wiki/Thermal_Camera_HAT

Specifications:

  1. Power supply: 5V
  2. Operating current: 61mA@5V
  3. Wavelength range: 8~14μm
  4. Operating temperature: -20~85℃
  5. Target temperature: -20~400℃
  6. Refresh rate: 25 FPS (Max)
  7. Noise equivalent difference temperature: 150mK
  8. Measuring Acctracy: ±2℃ (ambient temp. 10~70℃)

Package Includes:

1 x Thermal Camera HAT

1 x 40PIN female header

1 x FPC 15 PIN cable 0.3mm pitch ~100mm

1 x Screws pack

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.