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Photon
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High Purity Germanium (HPGe) Radiation Detectors
Semiconductor based photon radiation detectors have been evolving for over half a century, with ORTEC pioneering commercial availability for a majority of that time. Initial offerings were based around lithium-drifted germanium Ge(Li) and lithium-drifted silicon Si(Li). Ge(Li) was later replaced with more advanced, high purity germanium (HPGe) detectors. ORTEC provides a comprehensive suite of HPGe detector solutions covering an extensive range of energies and for a variety of applications.
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Automated Optical Switch - PXI
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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AFM Optical Platform
OmegaScope
The OmegaScope is a state-of-the-art turn-key solution that combines Optics and ultra-resolution multi-range research AFM. The OmegaScope AFM is an advanced research instrument that provides path for researchers in spectroscopy and photonics. It is available in reflection configurations providing direct top and side optical access. The flexibility of the OmegaScope platform offer almost endless possibilities in correlation of high spatial resolution spectroscopies (Raman, Photoluminescence, Fluorescence) and AFM imaging modes.
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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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Optical Component Test
Keysight photonic measurement solutions offer industry-leading performance for fastest time to market of next generation photonics and for test cost reduction.
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Photon Magnetic Resonance
Numis Poly
The Numis Poly device is a Magnetic Resonance Sounding (MRS) system for the direct detection of shallow groundwater down to 150 m of depth
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Photonic Hall Effect
HMS7000
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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Low Light Sensors
The ever-evolving technologies push the lower limit of measuring the photon energy. Look no further than Newport to find a solution for low light sensing applications. Please see our Low Light Sensor Guide for additional information.
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Imaging
Welcome to Thorlabs; below you will find links to our imaging systems and components. The products below are not only designed specifically for imaging applications, but they can be easily integrated into our entire line of photonics products. This makes it easy to modify or build custom imaging systems. Thorlabs’ Selection of Imaging Systems consists of our Laser Scanning Microscopy systems and OCT Imaging Systems.
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Photon Counting Detector - Single Photon Detection with Picosecond Accuracy
PPD
The PPD Series is a range of miniaturized single-photon counting detectors containing all the electronics necessary to detect single photons with picosecond accuracy.
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Photon Doppler Velocimeter - MATRIQ
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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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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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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Accessories
The proprietary MicroClip™ is a low-profile, low-mass spring loaded mechanical assembly that offers a rugged optical connection that is resistant for shock and vibration and is suitable for harsh environment. The MicroClip ferrule design has proven it can withstand a 1 kg live traffic fiber pull test on a 12-fiber ribbon cable pigtail mated to its LightABLE™ products (40G SR4 and 120G SR12), without any signal performance degradation. This result exceeds by a factor of 2 the requirements of Telecordia GR-468-CORE Fiber Integrity Side Pull Test and confirms the reliability of the Reflex Photonics fiber ribbon interface with the LightABLE and its MicroClip ferrule.
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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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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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Compact Photon Counting X-Ray Detector
HyPix-3000
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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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.
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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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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.
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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.
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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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Atmospheric Sciences
Atmospheric Sciences productsz by Mesa Photonics: portable monodispersed droplet generator, cloud droplet measurement system, heterodyne spectrometer.
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Uncooled InAsSb Photovoltaic Detector
P13894-011MA
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.
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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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Multipurpose X-Ray Diffractometer with Built-In Intelligent Guidance
SmartLab SE
The SmartLab® SE is a highly versatile multipurpose X-ray diffractometer with built-in intelligent guidance. It offers continued refinement of the original ease of use features that enabled the original SmartLab to receive the R&D 100 Award in 2006: automatic alignment, component recognition, cross beam optics and advanced photon counting hybrid pixel array detectors (HPAD).
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Photonics & Telecom
Scientific Computing International
photonic integrated circuit manufacturing delivers unmatched measurement accuracy.
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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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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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Probe Series
CAPELLA Series
MPI Photonics Automation is the industry leading provider of turnkey test solutions for the LED / Mini LED manufacturing industry. With more than 10,000 MPI probers installed worldwide, the CAPELLA series of probers have a proven track record of superior performance and reliability. The CAPELLA series probers support electrical and optical characterization of all LED product types (Vertical chip, Lateral chip, Flip-chip) from wafer to packaged die level. Whether you need a high-performance, cost-effective or specialty prober system, MPI PA has the most comprehensive range of LED wafer/chip probers to meet your exacting requirements.