File:CD-ROM_Photodetector.jpg · Wikimedia Commons · See Wikimedia Commons
photodetector
Sign in to saveAlso known as photosensor, light sensor, optical sensor
thumb|upright=1.3|A photodetector salvaged from a CD-ROM drive. The photodetector contains three [[photodiodes, visible in the photo (in center).]]
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~15 min read
Article
18 sectionsContents
- History
- Classification
- Based on mechanism of operation
- Based on device structure
- Properties
- Subtypes
- Photoemission or photoelectric
- Semiconductor
- Photovoltaic
- Thermal
- Photochemical
- Polarization
- Graphene/silicon photodetectors
- Applications
- Advancements and future trends
- See also
- References
- External links
thumb|upright=1.3|A photodetector salvaged from a CD-ROM drive. The photodetector contains three [[photodiodes, visible in the photo (in center).]]
Photodetectors, also called photosensors, are devices that detect light or other forms of electromagnetic radiation and convert it into an electrical signal. They are essential in a wide range of applications, from digital imaging and optical communication to scientific research and industrial automation. Photodetectors can be classified by their mechanism of detection, such as the photoelectric effect, photochemical reactions, or thermal effects, or by performance metrics like spectral response. Common types include photodiodes, phototransistors, and photomultiplier tubes, each suited to specific uses. Solar cells, which convert light into electricity, are also a type of photodetector. This article explores the principles behind photodetectors, their various types, applications, and recent advancements in the field.