Infrared Detector

An infrared detector is a device that senses infrared radiation, electromagnetic energy beyond the visible spectrum, and converts it into a measurable signal for engineering systems. Its operation typically relies on photon absorption in a semiconductor, which changes electrical conductivity or generates charge, while thermal detectors measure radiation-induced heating and temperature change. These devices support thermal imaging, motion sensing, spectroscopy, remote temperature measurement, and optical communications across industrial, scientific, and consumer applications. Detector material, wavelength range, sensitivity, response time, and noise performance determine how effectively an infrared system identifies targets or measures thermal and chemical information.

Infrared Detector - Related Videos

Education

JoVE Science Education - Chemistry
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Infrared Spectroscopy

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2023

Source: Vy M. Dong and Zhiwei Chen, Department of Chemistry, University of California, Irvine, CA This experiment will demonstrate the use of infrared (IR) spectroscopy (also known as vibrational spectroscopy) to elucidate the identity of an unknown compound by identifying the functional group(s) present. IR spectra will be obtained on an IR spectrometer using the attenuated total reflection (ATR) sampling technique with a neat sample of the unknown.

Research

JoVE Journal - Engineering

Characterizing Far-infrared Laser Emissions and the Measurement of Their Frequencies

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Cited by 4 •

2015

We describe the generation of far-infrared radiation using an optically pumped molecular laser along with the measurement of their frequencies with heterodyne techniques. The experimental system and techniques are demonstrated using difluoromethane (CH2F2) as the laser medium whose results include three new laser emissions and eight measured laser frequencies.

Assembly, Tuning and Use of an Apertureless Near Field Infrared Microscope for Protein Imaging

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Cited by 3 •

2009

The assembly of a nearfield infrared microscope for imaging protein aggregates is described.

In-situ Tapering of Chalcogenide Fiber for Mid-infrared Supercontinuum Generation

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Cited by 5 •

2013

We describe a method for in-situ tapering of As2S3 fibers to achieve efficient mid-infrared supercontinuum generation. By tapering while monitoring the supercontinuum’s spectrum, the spectral width can be maximized for a fiber taper. In-situ fiber tapering can be applied to optimize the performance of other fiber-based devices.

Gas Chromatography: Overview of Detectors

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2025

Detectors in gas chromatography (GC) help identify and quantify the components of a mixture by translating chemical properties into measurable signals, which are displayed on a chromatogram. Detectors can be categorized into two main types: destructive and non-destructive. A non-destructive detector allows a sample to be analyzed without altering or consuming it, meaning the sample can be collected after detection for further analysis. Examples include thermal conductivity detectors and...

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