Spectrometers
BaySpec offers wide range of spectrometers from miniature handheld VIS – NIR - SWIR spectrometers, high-sensitivity UV – VIS – NIR – SWIR spectrometers, and CCD / InGaAs cameras. They are designed to meet real-world challenges for best-in-class performance, long-term reliability, compact size, and ultra-low power consumption. All these products provide fully customized OEM and ODM service to meet your spectroscopic needs.
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Product
Fully Customized OEM and ODM Spectroscopic Solutions
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BaySpec offers fully customized original design (ODM) and original manufacturing (OEM) integration of advanced spectroscopic solution. With diverse instruments range from handheld portable spectrometers, high-performance UV-VIS-NIR-SWIR spectrometers, hyperspectral imagers, and portable mass spectrometers. BaySpec’s innovative R&D team designs and develops the spectral instrument around customers’ specifications. BaySpec’s R&D team is made up of experienced engineers who work with the customer to fully understand the scope of the application requirements, whether it is to address a specific wavelength range, or for instrument operation in a particular environment. The design and manufacturing process all take place on-site at the BaySpec facility in San Jose, California, following strict processes of product quality and control. We have the expertise to take an idea and put it into action!
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Product
SERS (Surface Enhanced Raman Scattering) Substrate & SERS Reader – Mini Chemistry Analytic Pack
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The porous carbon SERS substrate provides not only high signal enhancement due to its strong broadband charge-transfer resonance for large chemical enhancement (as opposed to electromagnetic enhancement in traditional metal-based SERS substrates), but also extraordinarily high reproducibility or substrate-to-substrate, spot-to-spot, sample-to-sample, and time-to-time consistency in SERS spectrum (which is not possible with traditional metal-based SERS) due to the absence of "electromagnetic hot spots" by making the entire surface of the substrate "chemically hot", high durability due to no oxidization, and high compatibility to biomolecules due to its fluorescence quenching capability.





