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Adjustable High Frequency Reference Ballast
HCS-109A
HCS-109A Adjustable High Frequency Reference Ballast also called High Frequency Current Source. Comparing to IEC Test Method, HCS-109A is an Equivalent Test Method which is economic solution. HCS-109A equipped with Spectrophotometer & Integrating Sphere Test System. It can also measure the photo, color and electricity parameters for high frequency fluorescent lamp.Specifications: • Input voltage: 200V~240V, 50/60Hz • Input Power: 80 W max • Output Current: 130mA~400mA (Adjustable), accuracy: +/- 1% • Output Frequency: 25kHz< +/-2.0% (Adjustable), accuracy: +/- 0.3kHz • Output current total harmonic wave distortion: THD<2.5% (HF current wave)
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Photoluminescence Microspectrometers
Photoluminescence Microspectrometer: an instrument designed to measure the fluorescence, photoluminescence, and emission spectra of microscopic samples with excitation in the UV, visible and NIR regions. our revolutionary technologies that include a range of microspectrophotometer, UV-Vis-NIR microscope, Raman microspectrometer, NIST traceable standards, accessories and software solutions.
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High Performance Fluorescent X-ray (XRF) Coating Thickness Gauge
FT150 Series
Hitachi High-Technologies Corp.
The FT150 is a high-end fluorescent X-ray coating thickness gauge equipped with the polycapillary X-ray focusing optics and Vortex silicon drift detector. The improved X-ray detection efficiency enables high throughput and high precision measurement. Furthermore, new design to secure wide space around sample position gives exellent operability.
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WDXRF Spectrometers
Zetium
X-ray fluorescence spectrometry (XRF) is capable of elemental analysis of a wide range of materials, including solids, liquids and loose powders. Designed to meet the most demanding process control and R&D applications, the Zetium XRF spectrometer leads the market in high-quality design and innovative features for sub-ppm to percentage analysis of Be to Am.
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Water Treatment Plant Analyzer
Aqualog® is the only instrument to simultaneously measure both absorbance spectra and fluorescence Excitation-Emission Matrices. EEMs are acquired up to a 100 times faster than with other instruments. Dedicated software automates traceable Quinine Sulfate Unit calibration and correction of inner-filter effects and Rayleigh and Raman scattering lines, enabling rapid export to modeling algorithms like PARAFAC.
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Handheld XRF Analyzers
XRF stands for X-ray fluorescence. It’s a powerful, nondestructive technique for measuring elemental composition from magnesium (Mg) to uranium (U), from parts per million to 100%. Handheld XRF analyzers are portable devices that can be used on location for immediate, lab-quality results to help you determine the next course of action and where it’s needed.
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FLIM Camera Systems
The Excelitas pco.flim camera system consists of the pco.flim camera and pco.flim laser, with a complete frequency synthesizer, which is required for the generation of the modulation signals in the frequency domain. The pco.flim series features a high frequency modulated CMOS image sensor that enables pixel-wise measurements of sample luminescence lifetime distributions in frequency domain suitable for fluorescence lifetime imaging. At a maximum speed of 10 Hz, full luminescence lifetime distributions can be measured at 1 Mpixel resolution. With flexible coupling and easy setup, the pco.flim is an ideal choice for wide-field FD-FLIM instruments and suitable for a variety of biomedical applications requiring a large frame and high-speed acquisition.
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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Fluorescent Powder Color Detector
Useful testing tool for detecting the color of fluorescent powder tubing;- Safe and reliable;- Mini design more portable;- Safe on button design with accidental turn -on protection;- Use only 4AA batteries.
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NanoFluorescence Microscope
NFM
The NFM is a specialized optical microscope system custom-designed for imaging individual single-walled carbon nanotubes (SWCNTs) through their intrinsic short-wave infrared fluorescence. It is ideal for SWCNT studies in physics, chemistry, biomedicine, and environmental research. The NFM is the new, more affordable replacement for our pioneering NM1 Fluorescence Microscope.









