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Teledyne FLIR Neutrino LC, Shutterless MWIR Camera Core

Teledyne FLIR Neutrino LC, Shutterless MWIR Camera Core
Highlights:
  • Sensor Size (W x H): 640 x 512
  • Shutterless
  • Detector Type: High Operating Temperature (HOT) Type 2 Super Lattice (T2SL)
  • Pixel Pitch: 15µm
  • Size (w/o lens): 12.0cm x 7.1m x 11.6cm
  • Spectral Band: 3.4µm – 4.9µm Standard
  • Weight: < 380 grams (<13.4 oz)
  • Frame Rate: 60Hz, programmable up to 60Hz
  • F#: f/5.5 Standard, f/4 & f/2.5 options
  • Continuous Zoom up to 8X

Interfaces and Accessories sold separately.


$0.00
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  • SKU: 425-0640140-0PAAX

Available Options

Teledyne FLIR FLIR Neutrino LC

Shutterless HOT FPA MWIR Camera Core

The new Neutrino LC is a SWaP+C optimized Mid Wave Infrared (MWIR) camera core, setting a new standard for size, weight, performance and cost. Designed for integrators, the Neutrino LC is compact and configurable, weighing in at only 380 grams with a steady power consumption of <4 watts, in a steady state @23 °C. Smaller, lighter, and more reliable than ever, the Neutrino LC delivers superb thermal imagery backed by industry-leading integration support from FLIR.

Teledyne FLIR Neutrino IS series is simply the best technical solution available. With nearly off-the-shelf delivery, industry-leading two-year warranty, real price competitiveness and well-known product support and product reliability, it offers the lowest risk solution. The Neutrino IS is an OEM camera module that is intended to be integrated into a higher level system.

 

Superior Performance, Faster Time to Market

Border Patrol
COMPACT AND CONFIGURABLE

The High Operating Temperature (HOT) FPA offers low power consumption, rugged construction and a wide operating temperature.

  • T2SL HOT 640 x 512/15 μm pixel pitch FPA provides superb imagery, 2x faster time to image, and longer cooler lifetime
  • Small and light at 7.4 x 4.5 x 6.1 cm and 370 grams
  • Low power consumption with <8 W cool down and <4 W steady state @21°C
  • Rugged construction and wide operational temperature range of -40°C to +71°C
  • Quiet and low vibration operation
Thwart Intruders
DESIGNED FOR INTEGRATORS

Small, light, and powerful, the Neutrino LC produces superb thermal imagery using a HOT 640 × 512 15µm FPA, while weighing in at only 370 grams.

  • Built-in support for physical and protocol-level industry standards (e.g. USB2)
  • Full suite of hardware accessories
  • FLIR XIR™ expandable infrared video processing architecture and robust SDK
  • Classified under US Department of Commerce jurisdiction as EAR 6A003.b.4.a
Skyline from Above with FLIR Neutrino
PERFORMANCE, RELIABILITY, AND SUPPORT

The Neutrino LC offers increased reliability and low-vibration linear micro-cooler, faster time to image and FLIR reliability and support.

  • Industry’s most advanced SWaP+C optimized image processing
  • Increased reliability and low-vibration FLIR linear micro-cooler
  • Optional integrated shutter provides faster time to image
  • Comprehensive product documentation
  • Highly-qualified FLIR Technical Services
OVERVIEW
Model: NEUTRINO™ SWAP+C SERIES
Neutrino LC, Shutterless
Spectral Band 3.4 to ≥ 4.9µm Standard
Non-Operating Temperature -57°C to +80°C (-65°F to +176°F)
Resolution 640 x 512 Pixels, 15µm pitch
Sensitivity [NEdT] < 25mK (50% well fill at TBB=30°C flood mode)
Detector Type High Operating Temperature (HOT) Type 2 Super Lattice
f-number f/5.5 Standard, f/4 & f/2.5 options
Weight < 380 grams (<13.4 oz)
Dimensions (L x W x H) 7.4 cm x 4.6 cm x 6.1 cm (2.9" x 1.8" x 2.4")
CONNECTIONS & COMMUNICATIONS
Communication USB or UART (921.6k baud)
Discrete I/O Controls Available One Discrete, custom configurable at factory
USB Yes
External Sync Input/Output Master or Slave
Primary Electrical Connector 80-pin Hirose, DF40C-80DS
User Configurability via SDK & GUI Yes
FPA CONTROL
Direct Injection Snapshot Prog operation Yes
Programmable Integration Time Yes (.01ms - 16ms)
ROIC ISC0403
ROIC Modes Free Run, Readout Priority, & Integration Priority
Well Capacity 7 x 10⁶ electrons
IMAGING & OPTICAL
Color Palettes Yes, RGB888 mode
Invert/Revert Yes
Image Optimization Linear, Histogram Equalization, DDE
Sensor Technology HOT MWIR
Shutter Shutterless With shutter
Parallel (24-bit/16-bit/8-bit) Yes
Cold Aperture Height 19.7mm from FPA
NTSC/PAL (field switchable) Yes
(accessory board required)
Frame Rate Options 60Hz/50Hz (NTSC/PAL), 30Hz/25Hz (averaging enabled)
Symbology Yes, RGB888 mode
Time to Image < 4min 23°C ambient (goal), < 2min 23°C ambient (goal, with shutter)
Camera Link (Expansion Bus Accessory Module) Yes (accessory board required)
Continuous Digital Zoom 1X to 8X zoom
Frame Rate 60Hz, programmable up to 60Hz
ENVIRONMENTAL
Operational Altitude 40,000 ft (~12km)
Operating Temperature Range -40°C to +71°C (-40°F to +160°F)
Humidity (Operating and Storage) Non-condensing between 5% - 95%
Shock Lateral 190 g @ .55 ms; Vertical 320 g @ .55 ms; Axial 550 g @ .8 ms (goal)
Vibration 5.8 grms 3-axis, 1hr each
POWER
Input Voltage +3.3 VDC Camera, +12 VDC Cryocooler
Power Dissipation <8 W cooldown, <4 W steady state @ 23°C

HOT MWIR Camera Technology

MWIR systems provide higher resolution and sensitivity compared to long wave infrared (LWIR) systems due to shorter waveband and cooled detector architecture. Constraints associated with cooled architecture historically limited MWIR technology to military systems or high-end commercial applications. 

Recent advancements in high operating temperature (HOT) MWIR sensor technology improves size, weight, power consumption, and Cost (SWaP+C), increasing demand of MWIR camera systems for industrial, commercial, and defense applications. This growth is translating to increased demand for custom and production optical systems.

Teledyne FLIR has experienced a significant increase in demand for HOT MWIR products, specifically, the MWIR Neutrino® LC and Neutrino SX8 camera modules, particularly with integrated continuous zoom (CZ) optics. In response, Teledyne FLIR launched multiple models of the Neutrino IS series of SWaP+C MWIR camera modules with factory-integrated CZ optics in 2021. These integrated systems shown, leverage the design-for-manufacturing (DFM) process developed and followed within the Optical Systems Group.


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