Photonics
Science of generating and controlling light and other forms of radiant energy whose quantum unit is the photon.
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Photonics Test Solutions
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Chroma offers precision instruments such as laser drivers, photodetector monitoring, and temperature controllers. These lab class instruments are often intefrated into production solutions for wafer probe test, burn-in and device or module characterization with inspection, metrology, robotics, Industry 4.0 and more.
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Quantum Photonics
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designed for the development of Quantum Light Source (QLS) related applications. Contact Optilab for more information.
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Photonics Module Test System
58625
Test System
Chroma 58625 provides characterization testing for 3D sensing illumination devices. various test modules are combined for validation testing under precise temperature control.
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Optoelectronics and Photonics
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SemiProbe has developed probe stations for a wide variety of optoelectronic and photonic device applications, including light emitting diodes (LEDs), vertical cavity surface emitting lasers (VCSEL) and photo diodes. Testing and handling small, fragile, thin wafers with thousands of die on them poses unique challenges that require innovative solutions.
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Photonics
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Precision fiberoptic and free-space interfaces provide high-speed, low-jitter and low noise signal conversion, and transport of analog and digital signals.
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3U VPX 1 Slot P&G w Reflex Photonics 415-00004 in J2
101V301P03-9005
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Power for 3.3V, 5V and 12V are included, rear connectors are all fully loaded, use with Elma’s slot to slot or slot to I/O bulkhead cable products during system development.
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Lasers
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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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Simulating Optical Design Components
Wave Optics Module
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The Wave Optics Module provides dedicated tools for electromagnetic wave propagation in linear and nonlinear optical media for accurate component simulation and optical design optimization. With this module you can model high-frequency electromagnetic wave simulations in either frequency- or time-domain in optical structures. It also adds to your modeling of optical media by supporting inhomogeneous and fully anisotropic materials, and optical media with gains or losses. It is straightforward to simulate optical sensors, metamaterials, optical fibers, bidirectional couplers, plasmonic devices, nonlinear optical processes in photonics, and laser beam propagation.
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Avalanche Photodiodes
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These avalanche photodiodes (APDs) are silicon photodiodes with an internal gain mechanism. As with a conventional photodiode, absorption of incident photons creates electron-hole pairs. A high reverse bias voltage creates a strong internal electric field, which accelerates the electrons through the silicon crystal lattice and produces secondary electrons by impact ionization. The resulting electron avalanche can produce gain factors up to several hundred.
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Electronic Autocollimators
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The concept of autocollimation as an optical instrument was conceived about a century ago for accurate, non-contact measurements of angles. Recent novel photonics upgrades have created a new breed of Autocollimators, offering intricate measurement capabilities for optics, laser profiling, AR/VR/XR goggles alignment, cameras for auto-driving, VCSEL characterization and many more applications with a single instrument packed with multi-tech technologies.
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Autocorrelator
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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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Optical Fiber Sensing
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Nanning Xionghua Photonics Technology
Optical Fiber Sensing by Xionghua Photonics
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Optics
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Welcome to Thorlabs; below you will find links to optical components and systems, a subset of our entire line of photonics products. All single element optical components can be found under the optical elements link with the exception of optical components that have polarization properties since they have a separate link. Multi-element systems like beam expanders and objective lenses as well as interferometers, fiber collimators, reference cells, modulators, and other optical devices can be found by choosing the optical systems link. Thorlabs also manufactures an extensive line of free-space and fiber optic isolators; stock items ship the same day that they are ordered while our custom orders benefit from our streamlined design and manufacturing process, which minimizes lead time.
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Photon Doppler Velocimeter - MATRIQ
Doppler Velocimeter
The Quantifi Photonics Doppler instrument combines the key optical components for Photonic Doppler Velocimetry (PDV) measurements in a compact instrument to enable streamlined high-channel count PDV test setups.
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Multiple Angle Reflectometry
FilmTek 4000
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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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Light
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Welcome to Thorlabs; below you will find links to light emitters, sources, and controllers, a subset of our entire line of photonics products. Our light sources are conveniently separated into coherent and incoherent sources. The coherent source category includes laser diodes, laser diode modules, tunable lasers, HeNe lasers, and femtosecond lasers, while the incoherent source link brings you to a selection of LEDs, white light, and broadband SLD sources. The Quantum Electronics category includes optical amplifiers, modulators, and gain elements that are frequently used in research and OEM applications. All of our light sources and optical amplifiers are supported by an extensive line of mounts, sockets, TEC controllers, and current controllers.
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Single Photon Detector System For Near-Infrared (0.7 - 1.3 Um Wavelength)
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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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Light Source
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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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Miniature 8-channel photon counter
id150 SERIES
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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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Automated Optical Switch - MATRIQ
Optical Switch
Add optical switching capability to your test system with Quantifi Photonics’ automated optical switches. The fast and reliable optical switch will enable automated sequential testing, saving time and streamlining your test procedures.
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Components for System Integration
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Bh offers a wide range of accessories to improve your photon counting experiment such as experimental control modules, optomechanics or implantable fiber probes for in-vivo applications. For PMTs and MCPs we offer different preamplifiers and a variety of routing devices for multi-detector operation. For a perfect SYNC signal, trigger modules and a SYG are available.
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Interferometer
VFI-1200
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The VFI is the interferometer of choice for industry leading photonics companies around the world. The VFI-1200 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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Optical Modulation Analyzer
OMA
Analyzer
In partnership with Tektronix, we bring you a high-performing and flexible OMA system that will meet your requirements today and into the future.With the market-leading performance of Quantifi Photonics’ IQRX coherent receiver and the scalable architecture of Tektronix’s high-performing oscilloscopes, you’ll get the most out of your investment. Use the stack as a single 70GHz OMA system, or use it as four independent oscilloscopes.Whether you are working with 100G coherent transceivers or 1 Terabit long haul communication systems, our OMA can be configured to suit your exact requirements.
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OEM, Embedded, and Custom Electronics
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Picosecond timingPrecision analog and mixed signal processingDigital delay and pulse generationHigh speed photonics and fiberoptic timing distributionAerospace instrumentation and simulation
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Electro-Optic DSTMS Crystals
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DSTMS and other high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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Photosynthetically Active Radiation Probe
LPPAR01
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The LPPAR01 probe measures the ratio between the number of photons that strike a surfacein one second, in the 400 nm…700 nm spectral range and the surface area (m2). This quantity is defined as PAR: Photosynthetically Active Radiation.
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Photonic Hall Effect
HMS7000
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Classic hall effect measurement system is to read voltage difference made between both diagonal sides, when flowing current and applying magnet field strength, in perpendicular to flowing current direction. - Photonic hall effect measurement is to read various electrical properties by illuminating light of “various range of wavelength” on the sample, in addition to flowing current and applying magnet field strength. - It is great to see “RGB (Red, Green, Blue), Light intensity vs carrier density, carrier mobility, resistivity, hall coefficient”
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Light Analysis
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Welcome to Thorlabs; below you will find links to detectors and instrumentation that measure the various properties of light, a subset of our entire line of photonics products. Thorlabs offers an extensive selection of instruments that measure the properties of light. Our versatile power and energy meters can be used with over 25 different sensors in order to make NIST-traceable power and energy measurements. If the convenience of a meter is not desired, our selection of detectors includes basic photodiodes (uncalibrated and calibrated), photodetectors (biased, amplified, and avalanche), CCD and CMOS arrays, position detectors, integrating spheres, and photomultiplier tubes. The Beam Characterization category contains beam profilers (camera and scanning slit), a wavefront sensor, spectrometers, and interferometers, while the Polarimetery link leads to a selection of instruments used to measure and control the polarization of light.
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Uncooled InAsSb Photovoltaic Detector
P13894-011MA
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Hamamatsu Photonics K.K. has developed an uncooled InAsSb (indium arsenide antimonide) photovoltaic detector that offers high-speed and high-sensitivity detection of infrared light in the 3 to 11 micron wavelength range. This new device (part number: P13894-011MA) extends the upper limit of sensitivity of Hamamatsu’s InAsSb detectors from 8 microns to 11 microns, which will enable users to measure molecules that absorb longer wavelengths of light and thus analyze more compounds with a single device.





























