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科學儀器 Science / 物理光電 PhySical
超光譜相機
 
No. FR-SC-HC
   

超 光 譜 相 機

WIDEFIELD HYPERSPECTRAL CAMERA

Giving complete information on your target with full resolution images at any wavelength, Photon etc’s Hyperspectral Imager will change your view of spectral analysis.

Thanks to a unique and patented design based on volume Bragg gratings, the Hyperspectral Imager delivers a series of monochromatic images at user-specified wavelengths. This optimized hyperspectral cube allows for spectral analysis of each and every pixel of a full resolution image, meaning no more fastidious x-y scanning of the samples, or limiting exposure time of remote sensing acquisition. Resulting in more than just an increase in efficiency, the Hyperspectral Imager provides data on both spectral and spatial content, allowing you to perform new analyses and push the boundaries of your most demanding applications. With narrow resolutions and an operating range of 400 nm to 2.3 μm, our Hyperspectral Imager will boost the power of your Raman imaging, vegetation cover monitoring, or faint galaxy observation. First developed for faint object observation in astronomy, this hyperspectral imaging technology has been expanded for use in a large number of applications, where it has introduced new possibilities for measurement and analysis.









汎叡科技代理的超光譜相機採用最新技術

與以往超光譜相機不同

以往的技術將相機晶片的畫素Y軸每一條分配給不同的光譜

類似線性掃描的方式

需要搭配電動平台移動物體掃描

現在汎叡科技所引進的最新技術

不需要配合特殊平台

相機本身就可以完成多光譜掃描

依照客戶需要的波常範圍

標準產品型號如下 :

V-EOS : 波長範圍400~1000nm ; 帶寬2mm

S-EOS : 波長範圍1000~2500nm ; 帶寬4mm

詳細規格

Spectral Window 400 to 2500 nm
Bandwidth (FWHM) 0.3 to 4 nm
Tuning Range 250 to 1300 nm
Peak Transmission up to 60%
Damage Threshold

> 100 kW/cm2 average power

> 5 GW/cm2 peak power @ 1064 nm, 8 ns
Aperture Diameter ≤ 10 mm
Dimensions (L x W x H) 24" x 12" x 12"
  61 cm x 30.5 cm x 30.5 cm
Operating Temperature 10 to 40°C
Storage Temperature 5 to 50°C
Software PHySpec included or ActiveX drivers
Computer Connection USB 2.0 (compatible 1.1)
Power Supply 100 - 240 V, 50 - 60 Hz
Absolute Wavelength Precision 0.1 nm (for FWHM = 0.3 nm)
Wavelength Relative Resolution 0.05 nm (for FWHM = 0.3 nm)




 
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