DIY High Resolution Spectrometer (2018)
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DIY High Resolution Spectrometer (2018)
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Re: DIY High Resolution Spectrometer (2018)
#2Re: DIY High Resolution Spectrometer (2018)
#3Re: DIY High Resolution Spectrometer (2018)
#4Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
Re: DIY High Resolution Spectrometer (2018)
#5Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
I'm probably missing something obvious, but could it be done by using a larger number of inexpensive setups?
There's no reason that each camera has to be focused on the same part of the grating, right? 4x cameras, point each at a different region and stitch it in software.
Re: DIY High Resolution Spectrometer (2018)
#6Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
I don't know how long most commercial imaging sensors typically go, but you'd also have to do some work to remove the IR filter that's typically added by the manufacturer. There are a number of tutorials for this.
Re: DIY High Resolution Spectrometer (2018)
#7Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
That's a beautiful link, thanks for that. I'm probably missing something obvious, but could it be done by using a larger number of inexpensive setups? There's no reason that each camera has to be focused on the same part of the grating, right? 4x cameras, point each at a different region and stitch it in software.
Re: DIY High Resolution Spectrometer (2018)
#8Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
Re: DIY High Resolution Spectrometer (2018)
#9Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
The linked project uses a 4000px wide image sensor and the second example in the article is a solar spectrum like what you want. It's not as sharp, but it's remarkably good given that the diffraction grating was a fragment of a DVD and the opening was a 3D printed slit.
940-1240nm isn't "uv to ir" like you described, though. That's just pure deep infrared. You'd have to test to see if the camera's image sensor was sensitive in those regions with any filters removed, but I doubt you'd get much signal in the deep IR region. Good sensitivity that far outside of the visible range requires a specialized sensor. Some security cameras designed for "invisible IR" will have such a sensor inside, so you could start by looking there.
Re: DIY High Resolution Spectrometer (2018)
#10Anyone know of active DIY higher-er resolution spectrometer projects using image sensors? Is it possible to create a sharp image of 940-1240nm 3000 pixels across with less then $3000 in parts? I want to learn how to make a broader(uv to ir) but crappy-er version of this: https://solarsystem.nasa.gov/resources/390/the-solar-spectru...
That's a beautiful link, thanks for that. I'm probably missing something obvious, but could it be done by using a larger number of inexpensive setups? There's no reason that each camera has to be focused on the same part of the grating, right? 4x cameras, point each at a different region and stitch it in software.
It's more complicated to use multiple cameras on one grating because you'd need far more light shielding.