Nano Optic Devices

Nano Optic Devices

Nanotechnology, 2953 Bunker Hl Ln, Santa Clara, California, 95054, United States, 11-50 Employees

nanoopticdevices.com

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Who is NANO OPTIC DEVICES

Nano-Optic Devices llc develops innovative optical equipment. The key technology of NOD is Digital Planar Hologram (DPH), which allows managing and guiding beams of light with any require...

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  • 2953 Bunker Hl Ln, Santa Clara, California, 95054, United States Headquarters: 2953 Bunker Hl Ln, Santa Clara, California, 95054, United States
  • 2007 Date Founded: 2007
  • 11-50 Employees: 11-50
  • dollar-icon Revenue: $1 Million to $5 Million
  • tech-icon Active Tech Stack: See technologies

industries-icon Industry: Nanotechnology

SIC SIC Code: 3827 | NAICS Code: 333314 | Show More

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Nano Optic Devices Org Chart and Mapping

Employees

Tom Amato

Director of Operations

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Frequently Asked Questions Regarding Nano Optic Devices

Answer: Nano Optic Devices's headquarters are located at 2953 Bunker Hl Ln, Santa Clara, California, 95054, United States

Answer: Nano Optic Devices's phone number is +16*********

Answer: Nano Optic Devices's official website is https://nanoopticdevices.com

Answer: Nano Optic Devices's revenue is $1 Million to $5 Million

Answer: Nano Optic Devices's SIC: 3827

Answer: Nano Optic Devices's NAICS: 333314

Answer: Nano Optic Devices has 11-50 employees

Answer: Nano Optic Devices is in Nanotechnology

Answer: Nano Optic Devices contact info: Phone number: +16********* Website: https://nanoopticdevices.com

Answer: Nano-Optic Devices llc develops innovative optical equipment. The key technology of NOD is Digital Planar Hologram (DPH), which allows managing and guiding beams of light with any required predesigned characteristics (phase, polarization, direction) using CMOS process. DPH inside the spectrometer consists of millions of grooves - lines ranging in width from several dozens to several hundred nanometers. Lines are fabricated at the surface of a planar waveguide by means of Electron-Beam or Nano Imprint Lithography. Light propagating in the hologram resonantly interacts with the grooves. Various positions of grooves program Digital Planar Hologram to perform various operations, like the zeros and ones encode a variety of computer programs. In NOD spectrometers-on-chip the DPH serves as a diffractive device performing a spectral decomposition of input light by focusing the different spectral components at the different places along the chip output where the linear detector array is installed. The first device created by Nano-Optic Devices is Nano Spectrometer which demonstrates unique characteristics: unprecedented resolution, miniature size and robustness.

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