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Thermal Sensitivity | < 0.04°C |
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Field of View | 24° × 18° |
Temperature Range | -20°C to 650°C |
Image Frequency/Frame Rate | 30 Hz |
Image Frequency | 30 Hz |
Battery Life | up to 4 hours |
Battery Operating Time | up to 4 hours |
Accuracy | ±2°C or ±2% of reading |
Digital Zoom | 1-4x continuous |
Laser Pointer | Yes |
Laser Distance Meter | Yes |
Storage Media | SD Card |
Operating Temperature Range | -15°C to 50°C |
Storage Temperature Range | -40°C to 70°C |
Connectivity | Wi-Fi, USB, Bluetooth |
Thermal Sensitivity/NETD | < 0.04°C @ 30°C |
Temperature Range (Low) | -20°C to 120°C |
Weight | 1.2 kg |
Digital Camera | 5 MP |
Battery Type | Li-ion |
Spectral Range | 7.5 - 14 µm |
Display | 4-inch LCD touchscreen |
Comprehensive safety guidelines covering FCC compliance, interference, RF exposure, and laser hazards.
Step-by-step guide to registering your FLIR camera online for warranty and benefits.
Identifies and explains the components visible on the front of the camera.
Identifies and explains the components visible on the rear of the camera.
Overview of the camera's screen layout and primary display components.
Explains how to navigate the camera's menu system using the navigation pad and buttons.
Detailed instructions for charging the camera's battery using various methods.
Guide to manually adjusting focus for optimal image clarity and temperature readings.
Procedure for capturing and saving thermal images from the camera.
Explains automatic and manual adjustment of image parameters for better analysis.
How to add, remove, and configure various measurement tools like spots and boxes.
Setting critical parameters like emissivity, distance, and humidity for accurate measurements.
Detailed technical specifications for the FLIR E53 camera with a 24° lens.
Detailed technical specifications for the FLIR E75 camera with a 14° lens.
Detailed technical specifications for the FLIR E75 camera with a 24° lens.
Explains emissivity as a key parameter for accurate thermal measurement and how to determine it.
Details the NUC process for compensating detector element sensitivity.
Explains the fundamental formula used for calculating object temperature from camera output.