Deep UV
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UV SHG Cavity Compact Frequency Quadrupling Module
SolsTiS ECD-X-Q
SolsTiS ECD-X Q extends the range of the SolsTiS platform into the deep UV providing unrivalled power and tuning. SolsTiS ECD-X-Q is used in combination with the ECD X doubling cavity (wavelength ranges between 210–250 nm) or the EMM mixing module (wavelength ranges between 250–300 nm).
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DUV Lithography Systems
ASML's deep ultraviolet (DUV) lithography systems dive deep into the UV spectrum to print the tiny features that form the basis of the microchip.
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Intensified Cameras - Ultra-Sensitive CMOS Cameras from Deep UV to NIR Spectrum
iCameras
The cameras are equipped with a high-resolution sensor with high frame rate for excellent quality of image production, which is well‐suited to detect high speed moving objects or ultra-fast phenomenon.The mechanical architecture of the iCamera is small, compact and light-weight, especially designed for easy integration into any system.The iCamera features an exceptional sensitivity based on high QE image intensifier - ultra-fast gating technology down to a few nanoseconds, which allows it to be coupled with a laser source to perform high fidelity active imaging.
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photonSPECTRAL
Photonfocus has developed outstanding solutions for numerous fields of application in order to meet the growing demand for imaging applications in invisible light spectra. The photonSPECTRAL platform offers highly sensitive cameras with wavelengths ranging from deep UV to short-wavelength infrared light (SWIR), as well as innovative systems for the hyperspectral range. Our vast expertise in this area is also reflected in our leading market position: Photonfocus launched a UV-suitable CMOS camera with global shutter for machine vision applications.
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LED Phosphorescence Light Sources
SpectraLED
Innovative and affordable pulsed light source for phosphorescence measurements from deep UV to NIRThe SpectraLED is a novel light source designed specifically for the measurement of phosphorescence lifetimes. These phosphorescence sources are based on LED technology and the emission wavelengths range from the deep UV to the NIR.
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M2 & BPP Systems
The M2 factor wil define the beam propagation characteristics compared to ideal Gaussian beam propagation. According to ISO Standard 11146 rightfully offers the laser beam characterization as "M2 times diffraction limited beam", as such, a perfect beam will have an M2 of 1. 1 will be the best achievable value and no beam could have an M2 less than 1. Our conceptual design is based on sub-assemblies allowing to change the sensing head in the M2 device, offering multiple wavelengths heads up to 2.7 microns from deep UV (knife-edge technology) and camera based technology with built-in automatic filter wheel for adjustment. For focused beams, the same measuring head could be attached to a device for meauring highly divergent or highly convergent beams - FocusGage-BA, wherein the Laser Analyzing Electronic Autocollimator offers the capability of divergence measurement with Coming Soon M2 definition. M2Beam is the cornerstone of those measuring devices.
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Photodiodes
Opto Diode manufactures high quality standard and custom photodiodes. Our wide range of standard device feature low dark current and low capacitance. The silicon detectors are ideal for general purpose applications, laser monitoring, position sensing, measuring photons, electrons, or X-rays, or for detecting sun and rain applications. The devices operate from the deep UV to the near-infrared wavelengths.
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Deep Cooled UV/Vis/NIR and VUV Scientific Cameras
Syncerity Scientific Cameras
HORIBA Scientific offers a complete line of spectroscopic multi-channel detectors for scientific research. For spectral detection from UV to near-IR, two dimensional CCDs offering a faster acquisition option over single point detectors with relatively high sensitivity. Coupled with HORIBA’s range of aberration corrected flat field imaging spectrographs, OEM packages can be assembled for a variety of applications.
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Deep Cooled UV-VIS/NIR Scientific Cameras
TE and cryogenically cooled CCD and EMCCD scientific cameras for ultra sensitivity from 200 nm to 1100 nmHORIBA Scientific offers a complete line of spectroscopic multi-channel detectors for scientific research. For spectral detection from UV to near-IR, two dimensional CCDs and indium gallium arsenide linear arrays offer a faster acquisition option over single point detectors with relatively high sensitivity. Coupled with HORIBA’s range of aberration corrected, flat field imaging spectrographs, custom spectroscopy packages can be assembled for a variety of applications.
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Fluorometers
Our Fluorometers can accommodate any size work-area, and are available as compact or benchtop models, or as large modular systems, to suit your requirements. In addition, our Fluorometers can be coupled to become modular Fluorometer systems, or supercontinuum white-light laser-powered lifetime Fluorometers!HORIBA’s Fluorometers offer incredibly fast lifetime determinations down to picoseconds, deep UV absorbance and fluorescence excitation from as short as 200 nm in the UV, all the way to near-IR wavelengths of 1000 nm.
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Laser Power Sensors
Make accurate laser power measurements, from the deep UV to the infrared, with these calibrated, traceable sensors.
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Ambient Pressure Photoemission Spectroscopy With Nitrogen Environment
The APS04-N2-RH incorporates a tuneable deep ultra-violet (UV) source outputting 3.4 - 7.0 eV, for absolute work function and highest occupied molecular orbital (HOMO) measurements, a surface photovoltage spectroscopy (SPS) module outputting 400 - 1000 nm for Voc and Eg measurements, together with a 50 x 50 mm scanning area for planar relative work function measurements (Fermi level).
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UV Vis
UV-VIS is a fast, simple, reliable, yet relatively inexpensive method of determining analyte concentrations. It can be supported by IR sensing technology for unparalleled analysis of multiple components in a range of applications.
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UV Meters
A comprehensive range of UV light meters with optimized solutions for almost every UV application. The following product table lists UV radiometers for measuring UV-A, UV-B and UV-C irradiance (W/m²). In addition to our versatile UVC radiometers, the innovative MDC4 LED UV meter series with centroid wavelength determination offers unique capabilities.
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Deep Learning Accelerators
ADLINK’s Deep Learning Accelerators provide GPU- and VPU-accelerated inferencing with embedded, small, and standard form factors. ADLINK’s Deep Learning Accelerators offer high performance, power efficiency and longevity support required of AI applications at the edge, delivering actionable insights at the right place at the right time for industrial automation, transportation, smart city, military and aerospace applications and more.
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UV Chamber
In PV modules, many different components are exposed to the sunlight. Therefore, the IEC 61215 defines a UV preconditioning test (MQT 10) to test whether these components can withstand the UV radiation of the sun. In our test chamber, the UV radiation is up to five times the sun intensity to accelerate the test, as requested in the UV preconditioning test.
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Vacuum UV Measurement
As a spectrometer, we have been manufacturing various vacuum ultraviolet spectroscopy systems mainly based on the Seya Hokaoka type spectrometer since 1977 when the company was established.The newly developed KV series is a system that can measure up to 120 nm with a nitrogen gas purge only by using a special optical element and a spectroscope of newly developed optical arrangement, eliminating the need for a vacuum pump and the like.
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UV Test Chamber
Wewon Environmental Chambers Co, Ltd.
* UV test chamber simulates damaging effects of long term outdoor exposure of materials and coatings by exposing test samples to varying conditions of the most aggressive components of weathering – ultraviolet radiation, moisture and heat. * UV test chamber use fluorescent lamps to provide a radiation spectrum centered in the ultraviolet wavelengths. Moisture is provided by forced condensation, and temperature is controlled by heaters. Based on your testing sample’s size, We has two options uv test chambers for choice.
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UV Radiometers
A UV meter is used when the effect of UV radiation on a biological or chemical process, or the negative or positive effect of UV radiation on human health, needs to be quantified and documented.
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UV TOCONs
SiC based UV sensor with integrated amplifier and 0 – 5 V voltage output. Measures intensities from 1.8pW/cm² up to 18W/cm². Spectral response for broadband UV or filtered for UVA, UVB, UVC or UV-Index. Also available for blue light (GaP chip) or visible light (Si chip) measurement. Available in TO5 housings or as miniature sensor probes (stainless steel or plastic). Special TOCONs for hydrogen flame sensing (TOCON_F) and for fire detection (TOCON_N) available. Also available for operating temperatures up to 120°C (standard is 85°C). Please learn more about the sglux TOCONs here: TOCON selection guide and here: TOCON User Guide.
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On-Camera Deep Learning
Firefly DL
Deep learning is a powerful tool for system designers to quickly automate complex and subjective decision making and deliver higher quality products and improved productivity. Deploy your trained neural network to the FLIR Firefly DL with Neuro technology and reduce system cost and complexity by making decisions on-camera without host PC. With its very small size, low weight and power consumption, the Firefly DL camera is ideal for embedding into mobile, desktop, and handheld systems.
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UV Radiation Detector
*UV Index measurement from 0-20 (0.5 increment) UVA and UVB*4 digits*Alarm clock : 30 second alarm sound*Alarm chime enable / disable*Clock function : Month, Date, Hour, Minute, Second*Hour format : 12/ 24 selectable*4 years calendar*LC display test
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UV & WH Meter
Apollo 3.0
Radiometer/photometer measuring UV and visible light via a single wireless sensor. Available as a single kit (1 Reader and 1 Sensor) or double kit (1 Reader and 2 Sensors). Each sensor measures both UV and White Light.
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Deep Ultraviolet Observation System for Microscope
U-UVF248
Model Capable of High-magnification/High-contrast Deep Ultraviolet (DUV) Observation. A Semiconductor / FPD Inspection Microscopes.
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UV Testing Machine
Dongguan Kejian Instrument Co., Ltd.
1. Meet ISO,ASTM, DIN,JIS,SAE,BS,ANSI,GM,U.S.GOVT(ASTMG153,ASTMG154,,ASTMD4329,ASTMD4977,ASTMD4587,SAEJ2020,ISO4892)2. QUV condensation device simulates the effect of humidity of outdoor,meeting 100% humidity.3. Electronic-eye irradiance control system4. Use blackboard temperature sensor providing precise temperature and recuring test result.5. Perform humidifying, condensation and water spraying circulating test.6. Irradiance is calibrated by CR-10 calibrator and automatic calebration procedure.(Paten technology)7. Specimen size and quantity: 75mm×300mm 24pcs, 75mm×150mm 48pcs
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UV Index Radiometric Probes
LPUVI02… Series
The radiometer LPUVI02 measures the global effective irradiance on a flat surface (Watt /m² effective), according to the requirements of the WMO for the measurement of UV-index.
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UV Man Spectrometer
UV Raman (with laser wavelengths below 400nm) can be used to probe specific sample properties, and benefit from experiment properties different from typical visible Raman measurements – for example, greatly increased Raman scattering efficiency, modified laser penetration within the sample, and resonance coupling to different chemical moeities. However, UV analyses come with a number of technical challenges, that require considered instrument design to allow UV Raman to be a truly useful tool for the researcher.
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Multibeam Echosounder - Deep Water
HydroSweep MD/30
The HydroSweep MD/30 is a deep water multibeam echosounder ideally suited for seabed mapping in medium and deep waters down to 7,000 m water depth. The HydroSweep MD/30 utilizes operating frequencies between 24 and 30 kHz to map the acquire bathytric depth information as well as sidescan and backscatter data.
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UV Absorption O3 Analyzer
Model T400
Teledyne Advanced Pollution Instrumentation
The Model T400 UV Absorption analyzer uses a system based on the Beer-Lambert law for measuring low ranges of ozone in ambient air.A 254 nm UV light signal is passed through the sample cell where it is absorbed in proportion to the amount of ozone present. Periodically, a switching valve alternates measurement between the sample stream and a sample that has been scrubbed of ozone. The result is a true, stable ozone measurement.





























