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Triple Monochromator/ Spectrograph
Omni-λTripple Series
Omni-λ 500 Triple Monochromator/ SpectrographThe Triple Monochromators/Spectrographs include three 500 mm focus monochromators which are with fine alignment. The first two monochromators as the dispersion subtraction are used to reduce the stray light. The third monochromator as dispersion sum configuration is used to improve the resolution. And each unit can work well as the monochromator, and the two unit can also be used as the double monochromator. The first and the second monochromator are the side entrance and double exits, the third monochromator is the double entrances and double exits, it is easy to connect the CCD and PMT, the single channel detectors. There are three import gratings in each monochromator, and the spectral range is located in deep UV region, the middle UV and visible region. Each grating reflectivity can be up to 70% in their spectral region. Mainly used in high grade Raman spectroscopy measurement, such as UV-resonance Raman spectroscopy.
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High Speed Spectroscopy Camera
SynapsePlus CCD
Superfast electronics (up to thousands of spectra per second). Very low read noise. Best linearity in its class. Different chip types to suit every spectroscopy need. Open Electrode (OE) 1024 x 256 pixels, Front-illuminated UV enhanced (FIUV) - 2048 x 512 pixels, Front-illuminated visible (FIVS) - 2048 x 512 pixels, Back-illuminated UV enhanced (BIUV) - 1024 x 256 and 2048 x 512 pixels, Back-illuminated visible (BIVS) - 1024 x 256 and 2048 x 512 pixels, Back-illuminated deep depletion (BIDD) – 1024 x 256 pixels.
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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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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 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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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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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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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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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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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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Laser Power Sensors
Make accurate laser power measurements, from the deep UV to the infrared, with these calibrated, traceable sensors.
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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.