Here, we report, for what we believe to be the first time, on the modification of a low cost sensor, designed for the smartphone camera market, to develop an ultraviolet (UV) camera system. This was achieved via adaptation of Raspberry Pi cameras, which are based on back-illuminated complementary metal-oxide semiconductor (CMOS) sensors, and we demonstrated the utility of these devices for applications at wavelengths as low as 310 nm, by remotely sensing power station smokestack emissions in this spectral region. Given the very low cost of these units, ≈ USD 25, they are suitable for widespread proliferation in a variety of UV imaging applications, e.g., in atmospheric science, volcanology, forensics and surface smoothness measurements
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Recent advances in smartphone technologies have opened the door to the development of accessible, hi...
As part of a wider study into the use of smartphones as solar ultraviolet radiation monitors, this p...
Here, we report, for what we believe to be the first time, on the modification of a low cost sensor,...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
We report on the development of a low-cost spectrometer, based on off-the-shelf optical components, ...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
This research evaluates a smartphone complementary metal oxide semiconductor (CMOS) image sensor's a...
This research evaluates a smartphone complementary metal oxide semiconductor (CMOS) image sensor's a...
Recent advances in smartphone technologies have opened the door to the development of accessible, hi...
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Recent advances in smartphone technologies have opened the door to the development of accessible, hi...
As part of a wider study into the use of smartphones as solar ultraviolet radiation monitors, this p...
Here, we report, for what we believe to be the first time, on the modification of a low cost sensor,...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
We report on the development of a low-cost spectrometer, based on off-the-shelf optical components, ...
Recently, we reported on the development of low-cost ultraviolet (UV) cameras, based on the modifica...
This research evaluates a smartphone complementary metal oxide semiconductor (CMOS) image sensor's a...
This research evaluates a smartphone complementary metal oxide semiconductor (CMOS) image sensor's a...
Recent advances in smartphone technologies have opened the door to the development of accessible, hi...
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Smartphones have the potential to monitor ultraviolet radiation within the terrestrial solar spectru...
Recent advances in smartphone technologies have opened the door to the development of accessible, hi...
As part of a wider study into the use of smartphones as solar ultraviolet radiation monitors, this p...