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Photon
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Spectral Response SystemsQuantum Efficiency SystemsIPCE Measurement Systems
QE system provides electronics and software designed for fully automated measurement of external quantum efficiency of solar cells. All systems include probes and a fixed plate sample stage for samples up to 150 mm x 150 mm. The main system components include: custom designed software, measurement electronics, and computer system (Windows 8 operating system). The measurement involves focusing monochromatic light to a spot on the device under test, then accurately measuring the photon flux and current from the test cell. The system utilizes a dual beam configuration with lock-in detection, providing an absolute accuracy of ±3%. The QE system uses a grating monochrometer with silicon/InGaAs/Ge detectors. The system includes automatic order sorting filters and two light sources for monochromatic illumination (a Xenon- arc lamp and a halogen lamp). A single lock-in amplifier is used to measure both the reference detector and test device. The main system comes with all the hardware needed to measure quantum efficiency, a fixed plate sample stage and probes.
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SWIR Cameras
Our SWIR or Short-Wave Infrared imaging covers the wavelength range from 900nm to 1700nm. A large number of applications that are difficult or impossible to perform using visible light are made possible, with great results, using short-wave infrared (SWIR) imaging thus enabling the user to "See Beyond the Visible". SWIR is similar to visible light in that photons are reflected or absorbed by an object, providing the strong contrast needed for higher resolution imaging– unlike thermal images, that rely on radiated photons. At NIT, we offer unique SWIR cameras and sensors, see below for more information on our products.
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SparkFun Photodetector Breakout
MAX30101 (Qwiic)
The SparkFun Photodetector Breakout is an updated version of the SparkFun Particle Sensor Breakout includes the MAX30101, a highly sensitive optical sensor and successor to the MAX30105 and MAX30102. The MAX30101 Breakout utilizes a photon detector to measure the amount of returning light that is reflected back from the LEDs. This is useful for various applications like particle (i.e. smoke) detection, proximity measurements, and even photoplethysmography. To make it even easier to use this breakout, all communication is enacted exclusively via I2C, utilizing our handy Qwiic system. However, we still have broken out 0.1" spaced pins in case you prefer to use a breadboard.
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Hybrid Picosecond Photon Detectors
HPPD Series
technology.The HPPD is our latest development in TCSPC detector technology that combines the benefits of conventional PMT design (wide spectral response and large active area)with the advantages of solid state APD technology (good detection efficiency, negligible after-pulsing and exceptional temporal resolution). Hybrid detectors are becoming thefirst choice for FLIM and short lifetime determination.
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Optoelectronic Subsystems and Modules
We offer many packaging and customization options for our optoelectronic subsystems and photonic modules. From standard to custom products, Opto Diode provides fast prototyping and highly reliable devices to meet your most critical photonic needs.
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Photonics Wafer Probing Test System
58635
The advancement of the photonics device technology continues to enable broader and more demanding applications in the industry.
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Optical Fiber Sensing
Nanning Xionghua Photonics Technology
Optical Fiber Sensing by Xionghua Photonics
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Fiber Optic Sensor Systems
Fraunhofer Institute for Telecommunications
Fiber-optic and photonic measuring systems open up innovative measuring and control technology concepts for a wide variety of applications. They play a major role in optimizing energy efficiency and are important technological innovation drivers for new and future-oriented markets.In the Department of Fiber Optic Sensor Systems of the Fraunhofer Heinrich Hertz Institute, the focus of application-oriented research is on the development of a new generation of photonic sensors. These are characterized by extreme miniaturization, high network and communication capability as well as extremely low power consumption or even a self-sufficient power supply.In the Department of Fiber Optic Sensor Systems at the Fraunhofer Heinrich Hertz Institute is focused applied research on the development of a new generation of photonic sensors. These are characterized by extreme miniaturization, high network and communication skills as well as an extremely low power consumption, or even a self-sufficient energy supply.
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Diode Laser Spectroscopy
Diode Laser Spectroscopy by Mesa Photonics: Herriott Cell and OEM laser diode controller boards.
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LED
light-emitting diode (LED) is a two-lead semiconductor light source. It is a pn junction diode, which emits light when activated. When a suitable voltage is applied to the leads, electrons are able to recombine with electron holes within the device, releasing energy in the form of photons.
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Lasers
We design and manufacture advanced photonics tools for use in science, industry and education. Our lasers have enabled breakthroughs in quantum technology, biophotonics and chemical sensing and have been used by sectors as diverse as aerospace, defence, oil and gas, healthcare, food and drink. Known for their reliability and ease-of-use, our products such as SolsTiS, Sprite and Firefly are the tools of choice for researchers and innovators everywhere.
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Fiber Optic Circulators
Nanning Xionghua Photonics Technology
Fiber Optic Circulators by Xionghua Photonics
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Terahertz Generators and Detectors
Terahertz generators and detectors are produced and optically prepared at the facilities of Rainbow Photonics in Switzerland.
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Hi-Q W-Band Ultra Low Phase Noise Analyzer
OE8000W
HI-Q® W-Band phase noise test system utilizesmicrowave photonics techniques for automatedmeasurement of ultra-low phase noise W-bandoscillators.
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Electro-Optic DAST Crystals
DAST and other high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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MPI Fully Automatic Probe Systems
MPI Advanced Semiconductor Test
Addressing the RF and High Power communication devices and discrete passive components production test market requirements, MPI introduced the TS2500 200 mm fully automatic probe system series. The system is based on industry leading production equipment from the Photonics Automation Division and incorporates decades of experience in RF and High Power measurement techniques from the MPI’s Advanced Semiconductor Test (AST) Division in combination with other AST products such as RF Probes, related calibration technology, and High Power accessories.
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Photonics / Light Measurement
A multidisciplinary domain that involves the generation, control, manipulation, and detection of light.
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Motion Control
Welcome to Thorlabs; below you will find links to our selection of Motion Control products, a subset of our entire line of photonics products. Thorlabs’ motion control products are separated into manual and motorized linear and rotation stages, multiaxis platforms, actuators, and controllers. The manual and motorized stages can frequently be configured into 1-, 2-, or 3-axis solutions. Since many of the stages are available in either manual or motorized versions, creating a custom system is easy. For nanopositioning applications like waveguide and fiber coupling, our line of multiaxis flexure stages are ideal. Both the motorized stages and the multiaxis platforms are supported by a complete line of controllers for the various motors and piezoelectric actuators. In addition, we support custom and OEM motion control applications with an extensive line of manual, motorized, and piezo actuators as well as threaded adjustment screws.
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Test Targets & Charts
APPLIED IMAGE is a world leader in the field of IMAGE EVALUATION Test Targets and Test Charts. Some of the specialized test charts include camera image evaluation ISO, NIST, ANSI, and MIL standard image evaluation applications; photonic and optophotonic applications; test charts for copiers and scanner; DATAcapture and BARcode Scanning testing; Security & Identification Image Capture; and all other type of imaging industries that require quality evaluation of thier image capture systems.
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PPID-2000 Photosynthetic Photon Intensity Distribution Test Unit
Hangzhou Everfine Photo-E-Info Co., LTD
It is mainly used for testing plant lighting products. With the EVERFINE GO-R5000 goniophotometer system, it can realize the measurement of plant photosynthetic photon intensity distribution (μmol/s/sr) in the whole space. In addition, the device can also realize the test of photosynthetic photon flux, far red light photon flux, photosynthetic radiation efficiency and other parameters, referring to DLC, ASABE, DIN, GB, CQC and CSA related international plant lighting standards .
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PAR Quantum Radiometric Probe
LP471PAR
Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400nm…700 nm), μmol m-²s-¹ measure, cosine correction diffuser.
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Light Source
A light source essentially is an optical transmitter that is paired with an optical receiver, both of which are connected to electrically based devices or systems. So, the source converts electrons to photons and the detector converts photons to electrons.
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Analysis Software for FCS and cross-FCS
Burst-Analyzer
*FCS Fit with User-Defined Model Functions*Identification of Single-Molecule Photon Bursts in Parameter-Tag Data*Analysis of Fluorescence Intensity and Lifetime within Photon Bursts*One- and Two-Dimensional Histograms of Burst Parameters*Filtered Histograms of Burst Parameters*Discrimination of Different Fluorescent Species or FRET States*Determination of FRET Efficiencies*Exclusion of Artifacts in Intensity Traces
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Single Photon Detector System For Near-Infrared (1.3-1.6 Um Wavelength) Waves With Closed-Cyle Cooling
Insight Product Company is proud to offer Single Photon Detector System for Near-Infrared (1.3-1.6 um wavelength) waves with Closed-Cylce (cryogen-free)cooling .
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Raman Probes
As with Raman spectrometers, a Raman probe is used to measure the inelastic scattering of light from a sample. Raman scattering is produced when the energy levels of photons are shifted up or down as a result of excitation by a monochromatic source (usually a laser). The change in vibrational frequency is used to determine the composition of a target substance.
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In-Process Test OTDR
8000i
The 8000i In-Process Test OTDR is the most recent addition to Photon Kinetics' family of innovative solutions for optical fiber cable testing. The 8000i's "cable test optimization" provides the balance of OTDR dynamic range and dead zone performance that's proven to be most effective for accurate characterization of typical fiber cable lengths. Dynamic range has been maximized to reduce measurement time, while resolution has been tuned to ensure that typical cabled fiber defects are detected. The 8000i delivers this optimized measurement capability at a more economical price than our full featured, final QC 8000 OTDR, which makes it a perfect fit for "in-process" testing on ribbonizing or loose tube production lines.
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Photoreaction Evaluation System
Lightway (PQY-01)
This system can measure the number of photons absorbed, which is necessary for calculating the quantum yield of photoreactions.
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KNbO3 Crystals
All high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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Photonics for Measuring Laser Output
Ray gt Photonic
raygt photonics for measuring laser output assist international research laboratories and laser technology manufacturers with precise positioning and output data.
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Kelvin Test Contactor/Probe HEad
cPython
cPython™ Kelvin contactors and probe heads provide superior electrical and thermal performance with significant cost savings. This makes cPython Kelvin ideal for lab and high-volume production test of analog and mixed signal integrated circuits – for applications such as power control, A-D and D-A converters, audio, video, power amplifiers, photonics, optical MEMS and sensors.cPython Kelvin probes are electrically isolated and mechanically independent force and sense paths for true Kelvin contact for taking accurate measurements, even under high current conditions. These robust probes provide hundreds of thousands of insertions or touchdowns, and a bandwidth up to 26 GHz.