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Key Features TE cooled, low noise CCD camera (HyperScan-VNIR); High resolution, high sensitivity SWIR camera (HyperScan-SWIR) Interchangeable lenses Automated dark frame collection Versatile scan modes for long integration time, high speed, or airborne data collection 2.0 nm FWHM spectral resolution from 400 – 1000 nm (HyperScan-VNIR, 25 µm slit) 5.4 nm FWHM spectral resolution from 950 – 1700 nm (HyperScan-SWIR, 25µ m slit) Built-in second order rejection for easy radiometric / reflectance calculations Versatile mounting configurations for flight, laboratory, and field Intelligent, easy to use control software (HyperVision) IRIG timestamping of image data HyperScan-VNIR & HyperScan-SWIR: (a) side-by-side, (b) showing scanning mirror and fore optic, (c) downward looking, & (d) on tripods. HyperVision GUI showing (three panels): easy-to-use controls (left), waterfall image of fake and real leaves (middle), and spectral profiles (right). (a) (b) (d) (c) Real Fake Fake Real

Key Features - Techexpo

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Key Features• TE cooled, low noise CCD camera (HyperScan-VNIR);

High resolution, high sensitivity SWIR camera (HyperScan-SWIR)

• Interchangeable lenses

• Automated dark frame collection

• Versatile scan modes for long integration time, high speed, or airborne data collection

• 2.0 nm FWHM spectral resolution from 400 – 1000 nm (HyperScan-VNIR, 25 µm slit)5.4 nm FWHM spectral resolution from 950 – 1700 nm (HyperScan-SWIR, 25µ m slit)

• Built-in second order rejection for easy radiometric / reflectance calculations

• Versatile mounting configurations for flight, laboratory, and field

• Intelligent, easy to use control software (HyperVision)

• IRIG timestamping of image data

HyperScan-VNIR & HyperScan-SWIR: (a) side-by-side, (b) showing scanning mirror and fore optic, (c) downward looking, & (d) on tripods.

HyperVision GUI showing (three panels): easy-to-use controls (left), waterfall image of fake and real leaves (middle), and spectral profiles (right).

(a)

(b)

(d)(c)

Real

FakeFake

Real

HyperScan Characteristics

* SWIR-2500 (1,000 – 2,500 nm) also available

&

Pushbroom Hyperspectral Sensors for Airborne, Laboratory, and Field Applications

by

HyperScan-VNIR

Converting light into knowledge

HyperScan-SWIR

Features HyperScan-VNIR HyperScan-SWIRf/# 2 2.3Binning Asymmetric (spectral, spatial) Not availableSpatial resolution 696 pixels 640 pixelsSpectral Resolution (FWHM) 2.0 nm (25 µm slit) 5.4 nm (25 µm slit)Spectral range* 400 - 1,000 nm 950 - 1,700 nmDispersion 1.3 nm / pixel 4.0 nm / pixelNumber of spectral channels 462 188Second order rejection Built-in Not applicableImaging Pushbroom hyperspectralSlit width 25 µm (interchangeable) Dark frame collection AutomaticScanning mode / resolution Scan step down to 5 µradScan angle (total field of regard) Configurable (from -30° to + 30° off center) Keystone / smile distortions < 1 pixel Calibration Radiometric, spectralLenses Interchangeable, apochromat, 8 mm to 70 mm; other lenses can be accommodated

Detector resolution, pixel size 696 × 520, 13.7µm 640 × 512, 25.0 µmFrame rate (max) 20 Hz full frame, 165 Hz binned 109 Hz full frameDetector type TE cooled CCD InGaAsExposure control 10 µs - 17.9 min 10 µs - 1.5 s Detector diagonal 11.9 mm 20.5 mmBinning Asymmetric (from 8 × 1 to 8 × 8) Not availableResolution / dynamic range 12 bits 14 bitsDigital interface Firewire (IEEE 1394) Camera Link

Camera control Firewire Camera LinkMotor control via USB2.0

Real time waterfall and frame displayDark frame collection

ROI selectionHistogram feedbackIRIG timestamping

Length × Width × Height13.6 in (345 mm) × 6.9 in (175 mm) × 11.8in (300 mm)

13.6 in (345 mm) × 6.9 in (175 mm) × 12.0in (305 mm)

Mass 9.5 kg 9.7 kgSide, up, or down looking

Airborne application with locked mirror

Supply voltage, max current 110 - 220 VAC or 12 VDC battery, 5 AmpsImage transfer Firewire Camera LinkMotor Control USB2.0

Sensor mount

Software

Mechanical

Electrical

Detector (others may be accommodated on a custom basis)