Photonics
Science of generating and controlling light and other forms of radiant energy whose quantum unit is the photon.
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HiCATT
The High-speed Intensified Camera Attachment (HiCATT) is designed for use with a high-speed camera. It increases the sensitivity of your camera and enables low-light imaging at frame rates up to 1 MHz (10 Mhz in burst)The technology in the HiCATT expands the dynamic range of your high-speed camera. At low light levels, even single photons can be detected. While at high light levels, overexposure can be prevented by very short exposures (down to 3 ns). These short exposures yield sharp images of fast moving objects.
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Scientific CMOS Camera
Prime 95B
The Prime 95B Scientific CMOS camera allows you to overcome many difficult imaging challenges by converting nearly every available photon to useful signal through an incredible 95% Quantum Efficiency by using the first available scientific CMOS sensor with back-side illumination. The result is the most sensitive CMOS camera available for scientific imaging.
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Single Photon Detector System For Near-Infrared (0.7 - 1.3 Um Wavelength)
Insight Product Company is proud to offer Single Photon Detector System for Near-Infrared (0.7-1.3 um wavelength) with Liquid Helium (LHe) Cryostat. Insight Product Co. offers superconducting single photon detectors and ultra-low noise registration systems for the near infrared range. All systems operate in continuous mode, no gating required.
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High-power Laser Diode Assembly
The laser diode is one of the most common devices used throughout photonics. The micro-assembly process calls for the placement and bonding (align-&-attach) of single emitters, or multiple laser diodes (stacked or complete bars), the placement, active alignment and bonding of necessary micro-optical elements, subsequent device testing, and ultimately packaging and quality control. ficonTEC’s machine systems are capable of all the steps necessary for assembling laser diodes, even high-power devices. Multiple in-line systems can be configured to address entire process segments.
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Raman Spectroscopy
Raman is a spectroscopic technique that uses laser light to interact with molecular excitations and determine what a substance or element is composed of. It relies upon the inelastic scattering of photons which produces a weak signal, making the collection of information challenging particularly when the substance to be measured is at distance or can only be given short exposure times. Our Raman spectrometers are particularly effective at making Raman measurements due to their configuration which delivers a higher throughput/etendue than standard instruments.
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Hybrid Photon Counting Detectors
MYTHEN2 Series
MYTHEN2 detectors guarantee noise-free performance, maximum resolution, and outstanding signal-to-noise ratios for an extended energy range from 4 to 40 keV. These systems include two module sizes: 1K with 1280 strips, and 1D with 640 strips. Their compact size, symmetrical sensor position, and DCS4 control unit make the MYTHEN2 series suitable for any diffractometer geometry — from portable instruments to large systems.
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Fluorescence Lifetime Spectrometer
S-FL
The technique of Time Correlated Single Photon Counting (TCSPC) has been developed and introduced more then 25 years ago. The technique is now widely accepted to be the most sensitive fluorescence detection technique with the inherent temporal resolution required for fluorescence decays.
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SEM- Based Dectors
ScintiFast™
ScintiFast™ is El-Mul’s flagship scintillator technology enabling the next generation of detectors with shorter response time and higher sensitivity. Recently released, ScintFast™ has the highest available photon yield for the nanosecond scintillator category. ScintiFast™ is the scintillator of choice for detectors in SEM-based tools for the semiconductor market as well as in Time of Flight Mass Spectrometry instruments.
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Radiometric Probe for Photons Flow
LPPAR03… Series
The probe LPPAR03 measures the ratio between the number of photons that strike a surface in one second, in the 400 nm…700 nm spectral range and the surface area (m²). This quantity is defined as PAR: Photo-synthetically Active Radiation.
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Single Photon Counting Camera
LINCam
Photon counting is the only way to get as much information brought by light as it is physically possible. Here we present the system allowing to detect not only arrival time of individual photons but also a position as straightforward as camera. Standing on the shoulders of night vision technology LINCam allows to extend any simple wide-field microscope to the powerful fluorescence lifetime imaging system.
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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.
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Atmospheric Sciences
Atmospheric Sciences productsz by Mesa Photonics: portable monodispersed droplet generator, cloud droplet measurement system, heterodyne spectrometer.
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Photonic Application Suite
N7700A
The N7700A Photonic Application Suite is a collection of advanced and basic software tools for making optical measurements, controlling fiber optic instruments, and analyzing measurement results. Many components are free and some can be licensed.
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Photodiodes
Opto Diode manufactures high quality standard and custom photodiodes. Our wide range of standard device feature low dark current and low capacitance. The silicon detectors are ideal for general purpose applications, laser monitoring, position sensing, measuring photons, electrons, or X-rays, or for detecting sun and rain applications. The devices operate from the deep UV to the near-infrared wavelengths.
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Interferometer
VFI-2000
The VFI is the interferometer of choice for industry leading photonics companies around the world. The VFI-2000 is an interferometric inspection system specifically designed for checking the surface quality and flatness of your cleaved or polished fibers. The VFI offers the perfect combination of a superb image quality with ease of use, and the reliability and robustness that our customers have come to expect from Arden products, resulting in fiber end face measurements that you can trust.
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IndiRAM CTR With Quantum Characterizer
The IndiRAM CTR Raman/PL system with Quantum Emitter Microscope is a multi-purpose system capable of performing Quantum Emitter Characterization, Raman, Photoluminescence as well as Optical Emission Spectroscopy. The system consists of a Pulse Laser along with a single photon counting module (SPCM), a Pulse Synchronization unit, Motorized Scanning stage and a research grade microscope (Upright or Inverted) for TCSPC measurements. Along with these, it also contains a High throughput Spectrometer with a TE Cooled CCD and an optics box assembly to perform Raman/PL and OES Spectroscopy and Microscopy. obtained after the multiple set of experiments gives the lifetime function.
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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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Enviro-Mechanical
Photon Kinetics helps fiber and cable manufacturers ensure long-term durability and installation-ready strength. Our testing systems validate the environmental and mechanical robustness of fiber designs—confirming compliance with both international standards and region-specific requirements before product launch.
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Autocorrelator
Our autocorrelator is designed for those who do not require the sophisticated pulse characterization provided by our FROG Scan systems. Mesa Photonics' autocorrelators are built around the same advanced servo motor used in our FROG Scan systems and can be upgraded later to a complete FROG Scan or FROG Scan Ultra by purchasing a conversion kit. The servo motor precision corresponds to 1 fs temporal steps.
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Femtosecond Autocorrelators - Pulse Measurement Systems
Reef
The autocorrelation technique is the most common method used to determine laser pulse width characteristics on a femtosecond time scale . Del Mar Photonics autocorrelators have been specifically designed to measure the width of pulses from femtosecond lasers.
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Miniature 8-channel photon counter
id150 SERIES
Intended for large-volume OEM applications, the id150-1x8 is the only multichannel solid-state single photon detector on the market. It consists of a CMOS silicon chip packaged in a standard TO8-16pin header with a transparent window cap. The chip combines 8 in-line single photon avalanche diodes that can be accessed simultaneously for parallel processing. square in center-to-center A fast active quenching circuit is integrated within each pixel in order to operate each diode in photon counting regime. The chip is mounted on a printed circuit board on top of a single-stage thermoelectric cooler (TEC). A thermistor can be used to measure the temperature of the chip. Only two low power supplies of +5V and -25V are needed for operation in photon counting mode. The fast active quenching circuit leads to a dead time of less than 50ns per channel. An outstanding timing resolution of less than 60ps allows high accuracy measurements.
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Multiple Angle Reflectometry
FilmTek 4000
Scientific Computing International
Fully-automated wafer metrology optimized for photonic integrated circuit manufacturing. Delivers unmatched measurement accuracy, with a 100x performance advantage over the best non-contact method and 10x that of the best prism coupler contact systems. Designed to enable optical component manufacturers to increase functional yield of their products, reliably and at lower cost.
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Optical Component Test
Test and characterize modern optical components, including photonic integrated circuits (PICs) and silicon photonics, with unmatched speed, precision and accuracy. Accelerate and improve your design or optimize your production with Luna’s suite of component analyzers and testers.
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Testing for Si Solar Cells Using High Performance CCD
EL Imaging Tester
EL Testing for Si Solar Cells using High Performance CCD. The determination of luminescence (photo emissions) in solar cells is an important characterization tool. Typical solar cells often have defects which limit the efficiency or lifetime of a cell. Many of these defects are visualized with Luminescence Imaging. By using this technique, the manufacturing process can be optimized to produce better cells. Luminescence Imaging takes advantage of the radiative inter-band recombination of excited charge carriers in solar cells. The emitted photons can be captured with a sensitive CCD camera to obtain an image of the distribution of the radiative recombination in the cell. This distribution is determined by the local excitation level, allowing the detection of electrical losses, thus mapping the diffusion length of minority carriers as the emitted light is low intensity and in the near infra-red range, the CCD camera has a high sensitivity wavelength from 900 to 1100 nm with little thermal noise. This CCD camera provides excellent resolution of 1024 x 1024 pixels with a large 1μm pixel size, multi-megahertz readout speed, and robust USB 2.0 connectivity. The EL CCD Camera is the ultimate high-performance CCD camera for electroluminescence and photoluminescence imaging for Photovoltaic (PV) Cells and Modules. This camera combines low noise electronics and optimal sensitivity in NIR.
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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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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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Laser Diode Reliability Burn-In / Life-Test System
58602
Chroma 58602 is a high density, precision multi source measurement Unit (SMU) module with temperature control and exchangeable interface developed for burn-in, reliability and life test of optoelectronic components including laser diodes, VCSELs, VCSEL Arrays, silicon Photonics, photo-diodes and other similar components.
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WDMs / Wavelength Division Multiplexers
Nanning Xionghua Photonics Technology
WDMs / Wavelength Division Multiplexers by Xionghua Photonics
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Optical Fiber Sensing
Nanning Xionghua Photonics Technology
Optical Fiber Sensing by Xionghua Photonics
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Inline Optical Power Meter - PXI
Power 1600 Series
Quantifi Photonics’ Power 1600 Series inline optical power meters provides quick and accurate inline power monitoring. Seamlessly integrate the power meter into your new or existing PXI test setup and save space, lower your costs and improve testing efficiency.





























