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  • Micro-Hyperspectral Imaging System
  • Micro-Hyperspectral Imaging System
  • Micro-Hyperspectral Imaging System
  • Micro-Hyperspectral Imaging System
  • Micro-Hyperspectral Imaging System
  • Micro-Hyperspectral Imaging System
Micro-Hyperspectral Imaging SystemMicro-Hyperspectral Imaging SystemMicro-Hyperspectral Imaging SystemMicro-Hyperspectral Imaging SystemMicro-Hyperspectral Imaging SystemMicro-Hyperspectral Imaging System

Micro-Hyperspectral Imaging System

Micro-Hyperspectral Imaging System

Micro-Hyperspectral Imaging 425  SHARK

First commercially available single-sensor hyperspectral solution covering the full spectral range from 400-2,500 nm.

Features

Optimized for space, airborne, industrial, and scientific applications, all in a miniaturized, lightweight hyperspectral imaging sensor package.

•     Ability to record the entire hyperspectral data cube (468 spectral bands), or record only the bands needed to produce specific data products and solutions.

•     Image and download digital elevation models before flight to improve post-processing orthorectification and geolocation accuracy.

•     Flexible image collection planning captures a targeted area of coverage to optimize the use of memory capacity and helps reduce post-processing   time and complexity.

•     The standard Micro-Hyperspectral Imaging 425 sensor, integrated with Selectable Hyperspectral Airborne Remote Sensing Kit (SHARK), includes a spectrograph, camera, telescope, navigation system, microcomputer, and one TB of resident storage (7 lbs).

Key Benefits

•      Covers 400-2,500 nm

•      Single optical/sensor channel helps reduce the complications of recording and post-processing imagery from two

sensors.

•     Ultra-Low Size, Weight, Power, and Cost (SWaP-C) by using proprietary diamond turned optics systems for aluminum.

•     Ruggedized to help withstand commercial and industrial applications.

•     Processed data on landing to optimize the use of memory.


Technical Characteristics*

Dimension

Unit

Performance

Pixel siaze(μm)

H(spatial)

V(spectral)

15

15

Lens Focal Length

Mm

25

Frame Rate

Hz

125

Used Pixel Array

Spatial

Spectral

640

468

Dynamic Range

Bits

16

Spectral range (μm)

Low

High

400

2500

Spectral resolution (FWHM)

nm

Lens Aperture

F#

3.3

Weight (Sensor)

kg

3.0

Temperature Range

Operating

Storage

5-40 Degrees Celcius

0-60 Degrees Celcius

Humidity

Non-condensing

10%-90%

Power Consumption

Watts

30

Voltage Range

VDC

12-16


* Performance listed is typical. Individual part configuration may vary. Contact our technical team for more information.



Micro-Hyperspectral Imaging 410 SHARK

This Selectable Hyperspectral Airborne Remote Sensing Kit (SHARK) is an integrated coherent hyperspectral imaging (HSI) sensor

system designed specifically for integration with highly compact unmanned aerial vehicles (UAVs) and cost efficient drones.

Features

•     This complete turn-key sensor system solution includes a 400-1,000 nm HSI sensor and a high-efficiency microprocessor control and data-acquisition

subsystem with solid-state data storage.

•     The Micro-Hyperspectral Imaging 410 spectrometer features a high-efficiency reflective and optimally blazed diffraction grating that helps enable optimized throughput and signal-to-noise ratio (SNR) performance combined with exceptional spectral fidelity and spatial resolution.

•     The standard system is designed for a minimum of 30-minute mission durations with extended mission-duration options available.

Key Benefits

•      Covers 400-1,000 nm

•      A compact, lightweight 1.6 lb package.

•     Ultra-Low Size, Weight, Power, and Cost (SWaP-C) by using proprietary diamond turned optics systems for aluminum.

•      Optimized for commercial remote sensing applications.

•     Processes 12-bits of data upon landing to reduce storage.


Technical Characteristics*

Dimension

Unit

Sensor  type

Fully Coherent Line Imaging Spectrograph

Spectrograph

Monolithic Spectrometer

Grating

Diamond turned and Ruled High-Efficient Reflective Blazed

FPA  Detector

CMOS

FPA  Format

1936 X 1216 pixels with 5.86 μ pitch (1364 X 308 utilized)

Spatial Resolution

1364 pixels (1x spatial bin)

Focal length F/#

16mm, f/1.4 standard

Full FOV

28.6 degrees (500 mrad) standard

IFOV

f 366 μrad standard

Spectral Range and Spectral Bin Size

400-1000nm with a 2nm bin size

Typical Spectral readout

8.0 nm (4x spectral pixel bin)

Keystone

4.6 μm (over 1364 X 308 pixels)

Smile

1.5 μm (over 1364 X 308 pixels)

Maximum Frame Rate

>400 Hz (profile dependent)

Data Readout

12-bit

INS

GPS + Mems IMU+Kalman filtered solution

Size(standard lens, processor, data storage, INS)

5.37”X 3.44”X 2.77”with lens and 3.77” X 3.44” X2.77” without lens

Weight (standard lens, data storage, INS)

1.6 lbs (0.68 kg)

Power Consumption (complete system)

<19 W@12 VDC

Temperature range

5 deg. C to 40 deg. C


* Performance listed is typical. Individual part configuration may vary. Contact our technical team for more information.

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