Photonics
Science of generating and controlling light and other forms of radiant energy whose quantum unit is the photon.
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Photonics
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Put our eye-safe, unique, highly differentiated photonics components on your lidar roadmap.
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Photonics Wafer Probing Test System
58635
Test System
The advancement of the photonics device technology continues to enable broader and more demanding applications in the industry.
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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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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 / Light Measurement
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A multidisciplinary domain that involves the generation, control, manipulation, and detection of light.
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Electronics & Power
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Excelitas Technologies offers a wide range of high-performance electronics, power and energetics technologies to drive your most demanding photonic systems. Our Electronics & Power offering includes Capacitor Chargers, Spark Gaps and Transformers, High-Voltage DC Power Supplies and Atomic Frequency Standards. Our Energetics portfolio includes Electronic Safe & Arm devices, Detonators, Ignition Safety devices, and Rocket Motor Initiators.
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Spectral Response SystemsQuantum Efficiency SystemsIPCE Measurement Systems
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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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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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Laser Scanning FLIM Microscopes
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DCS-120 laser scanner: Compact - Flexible - Precise. As technology leader in equipment and techniques for single photon counting, Becker & Hickl offers the DCS-120 systems that are complete laser scanning microscopes for fluorescence lifetime imaging (FLIM) since 2007. The systems use bh’s multi-dimensional TCSPC FLIM technology in combination with fast laser scanning and confocal detection or multi-photon excitation.
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Steady State and Lifetime Benchtop Spectrofluorometer
FluoroMax
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The FluoroMax® series represents HORIBA's industry-leading fluorometer performance in a convenient, affordable, easy-to-use benchtop model. The FluoroMax family, with its unique all reflective optics and photon counting was the first to bring the sensitivity of a modular fluorometer to a tabletop fluorescence instrument.
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Single Photon Detector System For Near-Infrared (1.6-2.3 Um Wavelength) Waves With Closed-Cyle Cooling
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Single Photon Detector System for Near-Infrared (1.6-2.3 um wavelength) waves with Closed-Cylce (cryogen-free)cooling
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Photon Magnetic Resonance
Numis Lite
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The Numis lite device is a Magnetic Resonance Sounding (MRS) system for the direct detection of shallow groundwater down to 50 m of depth.
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Carbon-Fiber Reinforced-Polymer Optical Breadboards And Benches
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Advanced Photonic Sciences LLC
Carbon fiber optical breadboards provide a similar thermal stability to Super Invar but at a lower cost and are inherently non-magnetic. For ages, steel breadboards have been the only choice; however, structures made from carbon fiber reinforced polymer (CFRP) have been used in the aerospace and space industries for many years due to their low weight, high strength, excellent thermal stability and low resonant frequencies. APS now brings this advanced technology to the world of photonics in the United States and Canada with carbon fiber breadboards from CarbonVision. Four grades of carbon fiber breadboard are offered: the economic EC-Series, the advanced AD-Series, the all-carbon AC-Series, and the slim SL-Series.
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Inline Optical Power Meter - PXI
Power 1600 Series
Power Meter
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.
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Intensified Cameras
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Excelitas offers a broad range of single to multi-channel image intensified cameras through our renowned pco.dicam series. With extreme short exposure times down to 2.5 ns, our pco.dicam cameras offer the ability to precisely address ultra-fast processes far beyond the capabilities of any other camera type. Featuring state-of-the art scientific CMOS sensor technology, our pco.dicam intensified cameras combine high resolution, fast frame repetition rates, 16-bit dynamic range and extreme sensitivity for efficient single photon detection.
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Scientific CMOS Camera
Prime 95B
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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 Counting Modules
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Single photon counting modules. So-called single photon counting modules are used to count single photons. These photon counters, sold under the brand name COUNT®, offer phenomenally low dark count rates with the best low noise characteristics.
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Compact Photon Counting X-Ray Detector
HyPix-3000
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Rigaku’s HyPix-3000 is a next-generation two-dimensional semiconductor detector designed specifically to meet the needs of the home lab diffractionist. One of the HyPix-3000’s unique features is its large active area of approximately 3000 mm² with a small pixel size of 100 μm², resulting in a detector with high spatial resolution. In addition, the HyPix-3000 is a single photon counting X-ray detector with a high count rate of greater than 10⁶ cps/pixel, a fast readout speed and essentially no noise.
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Analysis Software for FLIM, PLIM
SPCImage
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*Analysis of Single-Decay, FLIM and PLIM Data*Analysis by Iterative Convolution and Fit Procedure or by First Moment of Photon Distribution*Calculations of Decay Parameters and Lifetimes by Various Decay Models*Calculation of FRET Efficiencies*Display of Lifetime and FRET Images*Display of Lifetimes, Amplitudes, Intensities or Ratios*Export of Lifetime Data and Images
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Test Equipment
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Southern Photonics designed and manufactured all the test equipment currently being manufactured by Coherent Solutions, as well as equipment for non-telecoms applications. This includes FBG strain interrogators, optical pulse phase analysers, OSNR meters, optical power meters, optical spectrum analysers, optical gas sensors… you get the idea. All test equipment we build is robust and easy to use. The picture shows some of what we can do – anything from prototype benchtop test gear (as in the combination ASE source and laser combiner on top of the stack) to field test equipment (the portable fast OSA on the bottom).
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Femtosecond Autocorrelators - Pulse Measurement Systems
Reef
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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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Sensor
VL53L1
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The VL53L1 is a state-of-art Time-of-Flight (ToF) laser-ranging miniature sensor. Housed in a miniature and reflowable package, it integrates a SPAD (Single Photon Avalanche Diodes) array, physical infrared filters and optics to achieve the best ranging performance in various ambient lighting conditions, with range of cover glass options.Unlike conventional IR sensors, VL53L1 uses ST’s latest generation direct ToF technology which allows absolute distance measurement whatever the target color and reflectance. It provides accurate ranging up to 4m and can work at fast speed (60Hz), which makes it the fastest miniature ToF sensor on the market.With patented algorithms and ingenious module construction, VL53L1 is also able to detect different objects within the Field-of-View with depth information (histogram) at 60Hz. Scene browsing and multi-zone detection is now possible with VL53L1, thanks to software customizable detection array for quicker “touch-to-focus” or mini depth-map use cases.
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Photonic Device Assembly
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Although the lion’s share of photonic device assembly is still for discrete components and devices, the recent developments in photonics integration illustrate well the ensuing dramatic evolution of the photonics market. In transitioning from the use of bulky macro-systems to micro-optical components to integrated optics, the photonics sector is experiencing what has become true for the electronics market since the 1970’s.
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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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Spectral Sensitivity Measurement
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It is a device which measures the spectral sensitivity characteristics and quantum efficiency of various solar cells by irradiating solar cells with monochromatic light of constant energy and constant photon without wavelength dependence. We are constantly monitoring irradiation light quantity with our real real time light quantity monitor control system and are not influenced by fluctuation of light source, so it is a well-established control system with excellent measurement stability and measurement reproducibility.
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Optical Sensors
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Many measurements are much easier to make with light. Southern Photonics designs and manufactures optical sensor systems for a wide range of applications including gas sensing and strain sensing.
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Underwater Quantum Sensor
LI-192
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The LI-192 Underwater Quantum Sensor measures PAR from all angles in one hemisphere. The LI-192 works in air or underwater at depths up to 560 meters. The measurements are cosine corrected and typically expressed as Photosynthetic Photon Flux Density (PPFD). For simultaneous measurements of downwelling and upwelling PAR, two sensors can be mounted on the 2009S Lowering Frame.
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Spherical Underwater Quantum Sensor
LI-193
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The LI-193 Spherical Quantum Sensor measures PAR in air or underwater from all directions at depths up to 350 meters. This sensor is useful for studies of phytoplankton, which uses radiation from all directions. The measurement is referred to as Photosynthetic Photon Flux Fluence Rate (PPFFR) or Quantum Scalar Irradiance.
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Atomic Force Microscope (AFM)
CombiScope
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The CombiScope Atomic Force Microscope (AFM) is an advanced research instrument that provides the entry path for researchers in biology, spectroscopy and photonics. If you work with transparent samples either in air or in liquid towards nano-scale structures and (near-field) nano-optical properties investigation, the CombiScope is the right solution for you. It perfectly combines inverted optical and atomic force microscopies and unleash all the power of both techniques providing the instrument adjustment and measurement automation, high resolution and high speed. Plus it can be easily upgraded to our Raman spectrometers.





























