Optical Pyrometer Temperature Tracking

Optical pyrometer temperature tracking is a noncontact method for measuring and monitoring high temperatures from the thermal radiation emitted by an object, making it valuable when sensors cannot withstand the environment or contact would disturb the process. The instrument estimates temperature by detecting emitted radiation, often at selected wavelengths, and converting its intensity to temperature using calibration and an assumed or measured surface emissivity; some designs compare target brightness with a calibrated reference. In engineering, this approach supports continuous monitoring of furnaces, molten materials, combustion systems, and moving or inaccessible components, helping identify overheating, improve process control, and protect equipment while reducing sensor wear.

Optical Pyrometer Temperature Tracking - Related Videos

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JoVE Journal - Engineering
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Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping

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Cited by 8 •

2016

We demonstrate use of a fiber optic distributed sensor for mapping the temperature field of mixing air jets. The Rayleigh scattering-based sensor generates thousands of data points along a single fiber to provide exceptional spatial resolution that is unattainable with traditional sensors such as thermocouples.

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JoVE Journal - Engineering

Analyzing the Movement of the Nauplius 'Artemia salina' by Optical Tracking of Plasmonic Nanoparticles

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2014

We use optical tracking of plasmonic nanoparticles to probe and characterize the frequency movements of aquatic organisms.

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JoVE Journal - Engineering
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Three-Dimensional Ultrasonic Needle Tip Tracking with a Fiber-Optic Ultrasound Receiver

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Cited by 7 •

2018

Accurate and efficient visualization of invasive medical devices is extremely important in many ultrasound-guided minimally invasive procedures. Here, a method for localizing the spatial position of a needle tip relative to the ultrasound imaging probe is presented.

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JoVE Journal - Engineering
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Atomic Layer Deposition of Vanadium Dioxide and a Temperature-dependent Optical Model

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Cited by 15 •

2018

Thin films (100-1000 Å) of vanadium dioxide (VO2) were created by atomic-layer deposition (ALD) on sapphire substrates. Following this, the optical properties were characterized through the metal-insulator transition of VO2. From the measured optical properties, a model was created to describe the tunable refractive index of VO2.

Three-dimensional Optical-resolution Photoacoustic Microscopy

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Cited by 27 •

2011

Optical-resolution photoacoustic microscopy (OR-PAM) is an emerging technology capable of imaging optical absorption contrasts in vivo with cellular resolution and sensitivity. Here, we provide a visualized instruction on the experimental protocols of OR-PAM, including system configuration, system alignment, typical in vivo experimental procedures, and functional imaging schemes.

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