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HyperScan VNIR & HyperScan VNIR micro
Hyperspectral sensors for stationary (scanning) and airborne applications

Click on photos to enlarge


HyperScan VNIR & HyperScan VNIR micro.

 

HyperVision Instruction Manual

HyperScan-VNIR & HyperScan-SWIR Spec Sheet

Related Product: HyperLight - High intensity lamp for high-speed and hyperspectral imaging
 
  SENSOR CHARACTERISTICS

HyperScan VNIR micro
on a tripod.


HyperScan VNIR
for conveyor belt and manufacturing, inspection applications.


HyperScan VNIR
mounted from above.


Pseudo color image collected
with HyperScan VNIR showing
ability to swap fore optics.


Rooftop scene collected
with HyperScan VNIR
(pseudo color image
created using 3 spectral bands).


HyperVision GUI
with spectral profile.


Quantum Efficiency vs. Wavelength.


Lens Transmission vs. Wavelength.


Grating Efficiency vs. Wavelength.

  HyperScan VNIR - micro HyperScan VNIR
Camera NIR HQE Cam UV HQE Cam HDR Cam ASB Cam AQA Cam NIR HQE Cam UV HQE Cam HDR Cam
Unique features High NIR QE
High frame rate
High UV QE
High frame rate
High dynamic range
High frame rate
Low noise
Asymmetric binning
Low noise
Long integration
High NIR QE
High frame rate
High UV QE
High frame rate
High dynamic range
High frame rate
Spatial resolution 1280 pixels 1024 pixels 696 pixels 1392 pixels 1280 pixels 1024 pixels
Dispersion 2.4 nm / pixel 2.4 nm / pixel 1.3 nm / pixel 0.6 nm / pixel 1.1 nm / pixel 1.1 nm / pixel
# of spectral channels 250 255 465 930 555 565
Scanning mechanism Stage Mirror
Scanning resolution 1 rad 3 rad
Scan angle
(field of regard)
350 -30 to + 30 off center
f/# 2.5 2.0
Spectral Range 400 - 1,000 nm
Peak grating efficiency 32% at 480 nm
Second order rejection Built-in
Imaging Pushbroom hyperspectral
Slit width 25 m (interchangeable)
Dark frame collection Automatic
Keystone / smile <1 pixel
Calibration Radiometric, spectral
Lenses Interchangeable, apochromat, from 8 mm to 70 mm; other lenses can be accommodated
Detector (others may be accommodated on a custom basis)
Peak QE 81% @ 800 nm 67% @ 600 nm 29% @ 615 nm 71% @ 550 nm 61% @ 610 nm 81% @ 800 nm 67% @ 598 nm 29% @ 617 nm
Pixel size 10.8 m 10.6 m 12.9 m 6.45 m 10.8 m 10.6 m
Detector resolution 1280 1024 1024 1024 696 x 520 1392 1040 1280 1024 1024 1024
Bit depth 10 bits 12 bits 12 bits 14 bits 10 bits 12 bits
Exposure control 30.0 s - 1.5 s 10 s - 838 ms 10 s - 17.9 min 10 s - 17.9 min 30.0 s - 1.5 s 10 s - 838 ms
Max frame rate
(full dispersion)
115 Hz 100 Hz 20 Hz 11 Hz 55 Hz 100 Hz
Full well e-
(no binning)
40k 200k 22k 18k 40k 200k
Binning Off chip
Symmetric
Post processing On chip
Asymmetric
On chip
Symmetric
Off chip
Symmetric
Post processing
SNR
(full well e-, no binning)
~200 ~450 ~150 ~135 ~200 ~450
Detector type Thinned, back illuminated CMOS CMOS TE cooled CCD Thinned, back illuminated CMOS CMOS
Detector diagonal 17.9 mm 15.4 mm 11.2 mm 17.9 mm 15.4 mm
Digital interface Camera Link (base mode) Firewire 400 Firewire 800 Camera Link (base mode)
HyperVision Software (Manual)
Camera control Camera Link Firewire Camera Link
Scan control via USB 2.0
GPS / AHRS / IMU Recorded in parallel with image data
Data time stamping via IRIG or GPS source
System monitoring Input voltage monitoring and recording
System temperature monitoring and recording
Display Real time waterfall and frame display
False color and monochrome
Auto-stretch
Data processing Spectral profiles
Custom OKSI ENVI tools for calibration and analysis
IDL / ENVI integration
Miscellaneous features Full system control and display via wireless LAN
Automatic dark field collection
Histogram feedback
IRIG / GPS time stamping
Mechanical
L W H 8.5" 6.1" 6.6" 13.6" 6.9" 11.8" (or less, camera dependent)
Mass ~10 lbs < 21 lbs (camera dependent)
Sensor mount Side, up, or down looking
Airborne application with locked mirror / stage
Electrical
Supply voltage 24 VDC 12 VDC
Max current 4 Amps 5 Amps
Max power 96 Watts 60 Watts
    Please note: Specifications are subject to change without notice.
 

 

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Last modified: April 7, 2010