Can you make a slightly crappier version with a much cheaper visible spectrum sensor? I don't know much (obviously) about how they work, but intuitively it would seem a bit weird to me if they just happened to be restricted to exactly the same part of the spectrum as our eyes as a hardware limitation. Can you ignore data about visible red and higher in firmware, and get a thermal image that's obviously not as good as…
DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
11–20 of 97 posts
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#12Can you make a slightly crappier version with a much cheaper visible spectrum sensor? I don't know much (obviously) about how they work, but intuitively it would seem a bit weird to me if they just happened to be restricted to exactly the same part of the spectrum as our eyes as a hardware limitation. Can you ignore data about visible red and higher in firmware, and get a thermal image that's obviously not as good as…
silicon's bandgap of 1.1 electron volts corresponds to about a 1100-nm wavelength; is that the minimum photon energy a cmos sensor can detect?
if i did this calculation right, the spectral radiance at 1100nm should be a couple million times dimmer than the 700nm radiance at the draper point
You have: h c / boltzmann 700 nm 300 K
You want:
Definition: 68.513185
You have: h c / boltzmann 2000 nm 300 K
You want:
Definition: 23.979615
You have: h c / boltzmann 700 nm tempC(525)
You want:
Definition: 25.751996
You have: h c / boltzmann 1100 nm 300 K
You want:
Definition: 43.599299
You have: exp(43.6-25.8)
You want:
Definition: 53757836
11³/7³ is about 4 and 54/4 is 'a couple' to meso it's not literally impossible to detect but it seems like you would probably need special conditions like a light-tight darkroom or a thermal emitter switching on and off at a particular known frequency for millions of cycles
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#13Can you make a slightly crappier version with a much cheaper visible spectrum sensor? I don't know much (obviously) about how they work, but intuitively it would seem a bit weird to me if they just happened to be restricted to exactly the same part of the spectrum as our eyes as a hardware limitation. Can you ignore data about visible red and higher in firmware, and get a thermal image that's obviously not as good as…
being restricted to ~visible spectrum is a design goal for a camera, since we expect it to produce images that look like what we see. Your usual camera sensor will see a bit further into infrared than humans do (hence why cameras usually contain a filter filtering that out), but not so far that it is in any way useful for things that aren't burning hot. E.g. with cheap digital cameras with bad filters you might see the coals of campfire being slightly tinted wrong, because those get hot enough to be visible, but everything else is not affected, and you'd think a camera was bad if it were
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#14Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#15Awesome project. But $300 is still quite steep for a thing I might maybe use once a year. I really wish these thermal sensors came down in price...
Bought one of these for work (HIKmicro, 160x120/19200pixel) for ~$300. It works, it's quite good compared to any thermal camera I played with 5+ years ago (even the fancy ones).
https://www.amazon.com/HIKMICRO-Resolution-Portable-4%C2%B0F...
It's important to note that camera sensor tech has been advancing quite rapidly these past two decades.
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#16https://store.groupgets.com/products/tcam-mini-rev4-wireless...
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#17For the people saying "this isn't affordable," decent thermal cameras range in the thousands of dollars.
This is a great exercise in building stuff for yourself but not affordable at all.
The thousand of dollars cameras you refer to have very high resolutions which are really not the use case for the curious maker that would be interested in such a project.
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#18I’ve played around with the FLIR lepton a good bit and it can be pretty cool. I think the best current hackable platform is the Tcam. It is about an ESP32 combined with a Lepton. Great if you can use the iPhone app or setup a server to interact with it. https://store.groupgets.com/products/tcam-mini-rev4-wireless...
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#19$523 total? That's not my definition of affordable.
Context matters and thermal imaging is very expensive usually.
Re: DIY-Thermocam: A low-cost thermal imager based on the FLIR Lepton sensor
#20$523 total? That's not my definition of affordable.