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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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Single Photon Detector System For Near-Infrared (1.6-2.3 Um Wavelength) Waves With Closed-Cyle Cooling
Single Photon Detector System for Near-Infrared (1.6-2.3 um wavelength) waves with Closed-Cylce (cryogen-free)cooling
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Laser Scanning FLIM Microscopes
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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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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Transducers For Photodiodes
Photodiodes convert incoming electromagnetic radiation into electrical charge carriers. If photodiodes are short circuited an electrical current (photocurrent) proportional to the incident radiation intensity (number of photons per second) is induced. These photocurrents are generally small and cover the range from femtoampere (fA) to microampere (µA). Signal transducers transform this weak photocurrent to robust standard signals for reliable data transmission and simple data acquisition.
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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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Solar Simulator
Sun 3000 Class AAA
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. Photofeedback and digital shutter timer are included.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. A built-in beam imaging accessory assists in system alignment.
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TCSPC Lifetime Kit
DeltaTime
The DeltaTime time correlated single photon counting (TCSPC) lifetime plug-in offers acquisition speed, flexibility, and affordability unavailable in any other multifunctioanl fluorescence solution on the market. DeltaTime seamlessly integrates monochromators, polarizers, and other accessories with the widest array of sources (LEDs, laser diodes, supercontinuum lasers) and detectors (including NIR), providing lifetime coverage from 25ps to 1sec over wavelengths spanning the UV to NIR.
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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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Photon Counting Spectral CT
Kromek ‘s CZT-based detector device solutions for Photon Counting CT.
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Photonic Detectors
Excelitas offers photonic detection solutions covering a very broad spectrum, from Gamma, X-Ray, UV, Visible and into the near Infrared...making it a simple choice to find the right detector for your unique detection application. Product ranges include Silicon and InGaAS PINs and APDs, hybrid receivers and photon counting modules. In addition to our wide offering of off-the-shelf devices, we also specialize in customized solutions for your specific needs.
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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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PAR Quantum Radiometric Probe
LP471PAR02
Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400…700 nm), μmol m-²s-¹ measure, opaline quartz diffuser for cosine correction.
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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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HiCAM
The HiCAM is a gated intensified high-speed high-sensitivity imaging camera. It has an integrated fiber-optically coupled image intensifier, which offers a unique combination of high speed and sensitivity down to single photon level. Because the HiCAM does not need high intensity light sources, it is suitable for use in low-light level conditions.
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Underwater Quantum/PAR Sensors
Photosynthetic radiation is essential for the growth of the photosynthetic organisms such as corals. The wavelength range from 400 to 700 nm is PAR (Photosynthetically Active Radiation) or PPFD (Photosynthetic Photon Flux Density). Apogee quantum/PAR sensors are calibrated to measure the number of photons of light across this range.
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SHORT PULSE LASER SOURCE
id300 SERIES
The id300 short-pulse laser source is an externally-triggered optical source that generates sub-nanosecond laser pulses. Used in combination with a variable optical attenuator, this source cost-effectively approximates a single photon source.
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Single Photon Detector System For Near-Infrared (0.7 - 1.3 Um Wavelength)
Single Photon Detector System for Near-Infrared (0.7 - 1.3 um wavelength) waves with Closed-Cylce (cryogen-free)cooling
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Fluorescence Lifetime Systems
TCSPC, short for time-correlated single photon counting, refers to a powerful analysis method used especially in life sciences and fundamental physics. This technique is used to perform hyper-accurate fluorescence and phosphorescence lifetime measurements. As technology leader in equipment for multidimensional single photon counting, Becker & Hickl has been offering a wide range of high-efficiency TCSPC systems since 1993.
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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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Single Photon Detector System For Near-Infrared (1.6-2.3 Um Wavelength) Waves With Liquid Helium (LHe) Cryostat
Insight Product Company is proud to offer Single Photon Detector System for Near-Infrared (1.6-2.3 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
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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Preclinical Imaging Modalities and Solutions
Bruker offers advanced preclinical imaging solutions for a broad spectrum of application fields, such as oncology, neurology, cardiology, inflammation, infectious diseases, cancer research, functional and anatomical neuroimaging, orthopedics, cardiac imaging and stroke models. Our range of techniques includes MRI (Magnetic Resonance Imaging) , PET (Positron Emission Tomography), SPECT (Single Photon Emission Computed Tomography) micro-CT (Micro Computed Tomography), optical imaging and magnetic particle (MPI) imaging.
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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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TCSPC Lifetime Fluorometer
DeltaPro
The DeltaPro has taken the complexity of time correlated single photon counting (TCSPC) and made it simple and affordable. Any lab can exploit the power of fluorescence dynamics using TCSPC. This system enables the seamless measurement of luminescence lifetimes from picoseconds to 1 second, using our DeltaHub timing electronics.
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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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Steady State and Lifetime Benchtop Spectrofluorometer
FluoroMax
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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Intensified Cameras
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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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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Multiphoton Laser Scanning Microscope
FVMPE-RS
The Olympus FVMPE-RS multiphoton imaging system is purpose-built for deep imaging in biological tissue, aimed at revealing both detail and dynamics. Innovative features for efficient delivery and detection of photons in scattering media enable high signal-to-noise ratio acquisition. This translates to bright images with precise details — even from deep within the specimen. High sensitivity is matched with high-speed imaging to capture rapid in vivo responses. For advanced applications, dual-wavelength excitation extending to 1300 nm is available. Independent control of visible or multiphoton laser light stimulation and the ability to synchronize with patch clamp data are also possible.