Table of Contents

outdoor thermal imaging devices - hunting, hiking, search and rescue

see also:

  • I don't sell any of these nor do I receive any remuneration if you buy them, and I have not personally reviewed all of them, they are listed here to give you perspective
  • this page was created in 2021 and products and some prices reflect those available in 2021!
  • these devices are fantastic for the main use cases but do have major limitations:
    • cannot see through glass windows as these are highly reflective to thermal IR wavelengths so you can't use them from inside your car either - glass windows act as mirrors with thermal imaging devices
      • thus unlike a near IR night vision device, a thermal clip on scope cannot be added to the rear of an optical rifle scope as this would block the far IR from hitting the thermal imager, but they must either be used instead of a rifle scope or clipped onto the FRONT of the scope in which case they need to be 1x magnification to function well
    • cannot see through fabrics (including polyester, nylon, cotton), clear TPU (0.2mm thick or more), animals, humans, trees, leaves, rocks, tents, hiking tarps, walls, conductive materials such as aluminium foils (eg. space blankets) or concrete
      • may be able to see through PVC (sheet or box), 1-2 layers of a garbage bag, plastic bags and through mesh although image is not as clear and there is also minimal transmission through 0.1mm TPU
      • may be able to see through fog, rain, snow, smoke, hot dust, blowing sand
        • fog impairs thermal visual detail of surroundings as most things become the same temperature so you will need a sensor with sensitivity < 40mk to give good results in these conditions
    • cannot see through water - so you will only see aquatic animals when they are on the surface
    • the thermal images are generally NOT as good as near infra-red devices for identifying the type of animal
      • do not generally display enough facial detail at some distance to identify individual persons other than by their clothing
    • warm blooded animals are much harder to discriminate from surroundings on warm days over 20°C
    • do not detect reptiles well as they are cold-blooded and have similar temperatures to surroundings
    • do not work well at ambient temperatures below 0 deg C as most of the natural environment will have similar temperatures
  • DO NOT point it at the sun, lasers, or bonfires as this could permanently damage the sensor!
    • this is a particular risk when you are at full zoom looking in the sky near the sun, as you will not realise the sun is hitting the sensor just out of your zoomed in section
    • fortunately, uncooled vanadium oxide detectors (VOx microbolometers), which are the majority of the sensors on this page, the burn-in from the sun is generally non-permanent, but may take a few days to recover
  • outdoor hunting thermal devices generally do NOT have software that will allow display of an actual temperature!

Introduction

thermal imaging devices

Important features to consider

Field of View - lens focal length vs sensor size and resolution

The following is as at August 2021, example prices are in $AU:

sensor: 17µm 400×300 17µm 384×288 17µm 640×512 12µm 256×192 12µm 320×240 12µm 384×288 12µm 640×400 12µm 640×512
pixels 0.12mp 0.11mp 0.33mp 0.05mp 0.076mp 0.11mp 0.26mp 0.33mp
35mmFF equiv crop factor 4.7x 4.9x 2.7x 10x 8.5x 7.1x 4.2x 3.9x
examples Guide TrackIR (<50mK) / Nano (<50mK) Pulsar Axion 2 (40mK); Pulsar Helion 2 XQ (<40mK); HikMicro Owl OH (<35mK); HikMicro Owl OQ <35mK HikMicro Lynx LE; Night Tech XD-Mini-II <35mK Pulsar Axion InfiRay E3 (<40mK), Cabin CBL19 (<40mK), FL25R (<40mK); Night Tech XD II (<35mK); HikMicro Lynx LH (<35mK) Guide TrackIR Pro (<50mK) InfiRay E6 v2 (<40mK) E6v3(<25mK), FH25R (<40mK); Night Tech XD Pro-II (<35mK)
10mm lens 18.0° × 13.6° (1.4x) 460m
13mm lens 23.6°×20.7° Infiray DV DL13 smartphone monocular <60mK temp measurements $1394 13.5° x 10.1° 700m Night Tech XD-Mini-II $976
15mm lens 11.7°×8.8° (2.2x) 700m 17.5°×13.1° (1.5x) 700m LH15: $AU1,499
19mm lens 19.0°×14.5° (1.2x) Guide IR510 Nano N1 $AU1885 Pulsar Axion Key XM22 22mm $1895 No Recording! 13.8°×10.4° (1.9x) 900m LH19, CBL19: $AU2299; 22.9°×17.2° (1.1x) 800m Guide TrackIR 19 Pro:
25mm lens 15.4°×11.6° (1.7x) 700m Guide IR510 Nano N2 $AU2265; Guide TrackIR 25: $2500 14.9°×11.2° (1.7x) 900m; OH25: $AU2599; 10.5° × 7.9° (2.5x) 1200m E3: $AU2299; CBL25: $2599; FL25R $AU2799-2999; LH25: $AU2599; 17.5°×13.1° (1.5x) 1000m Guide TrackIR 25 Pro: 17.5°×14° (1.5x) 1300m FH25R: $AU3549-3799
30mm lens Pulsar Axion XM30S 2.5x $3300;
35mm lens 11.1°×8.3° (2.3x) 1000m Guide TrackIR 35: $AU2775 10.66° × 8° (2.5x) OH35: $3299 Thunder TH35 rifle scope $3750; Tracer 35LRF; 17.7°×14.2° (1.4x) 1200m OQ35: $AU4999 7.5°×5.7° (3.5x) 1800m E3: $AU$2,849 XD35-II: $2499 HikMicro Gryphon GH35L fusion $3999 12.5°×9.4° (2.0x) 1400m Guide TrackIR 35 Pro:$AU4795 12.5°×10.0° (2.1x) 1800m iRay Nocpix FH35R E6: $AU3799; E6+ v3 25mK $3899; Night Tech XD-50 II Pro: $AU3899 HikMicro Gryphon GQ35L Fusion $AU5749
38mm lens 10.7°×8° (2.3x) 1200m Axion 2 XQ38 LRF: $3595; Helion 2 XQ38F: $AU3999
40-42mm lens 15.2°×12.3° IAiming 617 rifle scope $AU4200 10.4 x 8.3° (2.5x) iAiming iA-612 rifle scope $5265; 3000m Leica Calonox View $6900
50mm lens 7.8°×5.8° (3.3x) 1400m Guide TrackIR 50: 7.5°x5.6° (3.5x) 1800m Pulsar Helion 2 XQ50F $AU4500 Tracer 50LRF; Pulsar Helion 2 XP50 Pro 640×480 <25mK 2.5x 1800m $AU7850 XD50-II: $3135 8.8°×7.0° (3.0x) 2600m E6: $AU4,299 E6v3 25mK $AU4399; NightTech XD-65 II Pro: $4600; HikMicro Thunder TQ50 <35mK rifle scope

Figures in brackets is the base optical zoom magnification factor compared to naked eye (1x = ~90mm lens on a full frame camera). Figures in meters is approximate maximum human detection range (recognition range is approximately half this)

thermal imaging devices for outdoors

main manufacturers

hand held devices without video/stills recording

handheld devices with video and still recording capability

unspecified NETD monoculars

60mK or more NETD devices

50mK NETD monoculars

40mK NETD monoculars and binoculars

35mK NETD monoculars and binoculars

25mK monoculars and binoculars

<20mK monoculars and binoculars

<15mK monoculars and binoculars

cooled imager devices

thermal plus near IR fusion image devices

thermal rifle scope clip-on monoculars

thermal imaging rifle scopes

optical rifle scopes with embedded thermal image overlay

vehicle roof mounted thermal imagers

thermal imaging drones

More science related to these devices

basic theory

how they work

why can't they measure actual temperature?

why are they not as good at identifying animals at night as a near IR night vision device?

why are they better than near IR night vision devices for detecting animals at a distance?

why are they not so good at detecting animals on warm days?

why are they not so good in very cold situations?

why are they not so good at detecting reptiles?

why can't they see through normal window glass?

how well do they "see" long distances?

Spectral transmittance of the atmosphere over 1 nautical mile at sea level (1.8km) courtesy of Newport.com

how good are the laser range finders?