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Photon
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Photon Counting Spectral CT
Kromek ‘s CZT-based detector device solutions for Photon Counting CT.
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Electronics & Power
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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Photonics
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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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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Avalanche Photodiodes
Excelitas offers Avalanche Photodiodes (APDs) on both Silicon (Si) and InGaAs materials. Si APDs cover the spectral range of 400 nm to 1100 nm and the InGaAs APDs cover 950 nm to 1550 nm. An Avalanche Photodiode (APD) provides higher sensitivity than a standard photodiode and is for extreme low-level light (LLL) detection and photon counting.
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Photon Magnetic Resonance
Numis Lite
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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FLIM Upgrade Kits for LSMs
As technology leader in equipment and techniques for single photon counting, Becker & Hickl offers a wide range of high-grade Fluorescence Lifetime Imaging (FLIM) systems for laser scanning microscopes since 1998. Our techniques have found broad application within the scope of Life Sciences, Clinical FLIM, Diffuse Optical Tomography (DOT), Fluorescence Correlation (FCS, FCCS), Förster Resonance Energy Transfer (FRET) and more.
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Photonic Electric Field Sensor System
Model No. 200-04
SRICO Model No. 200-04 Photonic Electric Field Sensor System has the ability to measure electric field with minimal disturbance to the field. The lightweight fiber-optic cables allow for easy placement of the E-field probe, allowing it to be unencumbered by the use of heavy coaxial cables that may disturb the field being measured. The dielectric E-field probe is electrically passive.
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Avalanche Photodiodes
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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Photonic Networks and Systems
Fraunhofer Institute for Telecommunications
The Photonic Networks and Systems Division develops solutions for high-performance optical transmission systems for use in in-house, access, metro, long-distance and satellite communications networks. The researchers are focusing on increasing capacity as well as improving safety and energy efficiency. The department has the latest measurement technology, very well-equipped system laboratories, powerful simulation tools and the ability to carry out field tests.
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Photonic Device Assembly
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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Electro-Optic OH1 Crystals
OH1 and other high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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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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KNbO3 Crystals
All high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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Ultra-compact Scientific CMOS Camera
Sylent™
The HORIBA Sylent scientific CMOS (sCMOS) uncooled camera line provides end-users with three novel high QE backilluminated sensor models that provide diversified solutions to successfully meet the most demanding photonic applications for the scientific and industrial sectors.
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OCT Spectrometer
Cobra-S 800
The Cobra-S 800 ultra high speed spectrometer heralds a new era in spectral domain OCT. Wasatch Photonics’ newest Cobra OCT spectrometer pairs our industry-proven high throughput spectrometer design with athermal optomechanics and the fastest camera on the market for extremely high resolution imaging at more than 2-3x the speed of conventional OCT spectrometers. We’ve taken our compact, robust Cobra spectrometer to the next level with a revolutionary new design and camera. Capable of line rates approaching SS-OCT, the Cobra-S offers significantly higher speed and better roll-off than any other SD-OCT spectrometer on the market. From bloodflow dynamics and vibrometry to imaging of dermal vasculature and choroidal structures, the premium Cobra-S 800 delivers the speed, clarity, and depth you need.
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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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Underwater Quantum Sensor
LI-192
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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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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X-Ray Components
Photonis designed the Micro Pore Optics detector to be used in X-Ray imaging applications. Its perfectly square, flat channels are optimized to allow X-Ray and UV photons to be focused or collimated due to the total external reflection at a grazing angle (<2°). Micro Pore Optics are installed on a number of international space missions.
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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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*Ultrafast Fiber Lasers
Fundamental building blocks of many photonic systems used in industrial and medical applications as well as for scientific research.
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Electron Multipliers
Electron multipliers are mainly used as positive/negative ion detectors. They are also useful for detecting and measuring vacuum UV rays and soft X-rays. Hamamatsu electron multipliers have a high gain (multiplication factor) yet low dark current, allowingoperation in photon counting mode to detect and measure extremely small incoming particles and their energy. This means our Hamamatsu electron multipliers are ideal for electron spectroscopy and vacuum UV spectroscopy such as ESCA (electron spectroscopy for chemical analysis) and Auger electron spectroscopy as well as mass spectroscopy and field-ion microscopy.
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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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Fused Optical Couplers
Nanning Xionghua Photonics Technology
Fused Optical Coupler by Xionghua Photonics
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Lightwave Detector
N4377A
The N4377A Lightwave Detector is a USB-powered optical-electrical converter with built-in optical power meter capability. If used with a vector network analyzer or a spectrum analyzer it enables frequency domain applications in photonics.
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Solar Simulators
Sun 2000 Class A
The Abet Gen II optical design, patent pending, dramatically increases the percentage of photons reaching the work plane.All electronics are packaged in the lamp house -no clutter of high power cables to deal with. A digital shutter timer allowing both manual and external control is included with every unit.Standard maintenance, lamp or filter replacement, does not require any tools.Locking indicator dials on all the system controls provide for a reproducible and stable setup.
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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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Photonic Components
Fraunhofer Institute for Telecommunications
The Department of Photonic Components is researching optochips and Photonic Integrated Circuits (PICs) for transmission and reception of more than 100 Gbit / s and the sensors. The department provides production and development services for all activitiesfor the German and international industry. If, for example, you already think of a particular optochip concept, the researchers offer additional advice and take over design and production steps. On the other hand, if you would like to start with a target specification, a feasibility study will begin and your own concept will be developed for you. Researchers are always ready and able to carry out initial production volumes in an ISO certified, qualified manufacturing facility. In addition, e-beam services and diffractive optical elements developed according to specifications are offered.
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Discrete Detectors
TRAL test station is a quasi-universal test station designed to measure parameters of discrete (or small linear array) infrared detectors sensitive in a wide spectral range from about 700nm to about 16 000 nm (NIR/SWIR/MWIR/ LWIR detectors or broadband non selective detectors). All main types of infrared detectors can be tested: photonic detectors: photovoltaic/photoreconductive, cooled/non-coooled, thermal detectors, pyroelectric detectors etc.