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  • Amplified Photodiodes combine a high-sensitivity silicon photodiode with an integrated operational amplifier in a compact TO package. Designed for precise light detection and signal amplification, they deliver reliable performance with low noise and fast response across a wide range of applications.

    Key Features

    • Integrated silicon photodiode with built-in op-amp
    • High transimpedance gain of 10 MΩ for strong signal output
    • Bandwidth up to 10 kHz for responsive detection
    • Supports single or dual rail power supply configurations
    • Positive going pulse output for single supply operation
    • Low noise performance for accurate measurements
    • Compact TO5 package for easy integration
    • Available in multiple window options including flat, lensed, and eye response

     

  • The Image Intensifier Tube OPS.4 is a cost-effective and reliable night vision solution designed for training, situational awareness, and large-scale deployment. Built to meet military standards, it delivers essential image quality with dependable performance across varied environments.

    Key Features

    • MIL-SPEC compliant for dependable field performance
    • Available in two performance levels for flexible integration
    • Essential image quality for training and operational readiness
    • Optimized cost-to-performance ratio
    • Suitable for large-scale deployment such as one soldier one goggle
    • Available in P43 green or P45 white phosphor options
    • Lightweight design for portable and wearable systems
  • The High Speed Photodiodes from Exosens are engineered using epitaxial silicon to deliver ultra-fast signal response with rise times below 1 ns. Designed for high-frequency and time-critical applications, these photodiodes ensure precise detection with minimal carrier transit delay.

    Key Features

    • Ultra-fast rise time of less than 1 ns
    • Epitaxial silicon construction for minimal carrier transit time
    • High-speed signal detection with excellent accuracy
    • Optimized for high-frequency and dynamic applications
    • Low noise and stable performance
    • Compact and easy to integrate into optical systems
    • Suitable for defense, industrial, and scientific applications
    • Reliable performance in demanding environments

     

  • The Infrared Silicon Photodiodes from Exosens are high-performance PiN photodiodes engineered for superior sensitivity in the 800 nm to 1100 nm wavelength range. Built using high resistivity silicon, they deliver full depletion for enhanced detection accuracy, with optimized variants for speed or peak infrared response.

    Key Features 

    • High sensitivity in the 800 nm to 1100 nm infrared range
    • PiN photodiode design using high resistivity silicon
    • Full depletion for improved detection efficiency
    • 3T series optimized for high-speed applications
    • 4X series optimized for enhanced response at 1064 nm
    • Custom silicon thickness for speed or sensitivity tuning
    • उपलब्ध in single element and quadrant geometries
    • Narrow transition widths available for precision sensing
    • Reliable performance across defense, industrial, and scientific applications
  • The Energy Compensated High Dose Gamma Geiger-Muller Tube from Exosens is a halogen-quenched radiation counter designed for accurate gamma detection in high radiation environments. With reduced sensitivity to prevent overload and energy compensation for precise dose measurement, it delivers reliable performance across demanding nuclear and industrial applications.

    Key Features 

    • Energy compensated for accurate ambient and effective dose measurement
    • Flat energy response from 50 keV to 1.25 MeV
    • Reduced gas volume to prevent overload in high gamma flux
    • Halogen-quenched design for stable and long-term operation
    • Wide dose rate range up to 10,000 mGy/h
    • Fast response with low dead time (13 to 55 µs)
    • Suitable for high radiation monitoring systems
    • Ideal for nuclear plants, research reactors, and defense applications
  • The Energy Compensated General Purpose Geiger-Muller Tube from Exosens is an end-window, halogen-quenched gamma radiation counter designed for accurate ambient and effective dose measurements. With energy compensation, it ensures a flat response across a broad energy range, making it reliable for diverse applications in nuclear, industrial, and defense settings.

    Key Features 

    • End-window halogen-quenched design for robust operation
    • Flat energy response from 50 keV to 1.25 MeV
    • Energy compensated for precise ambient or effective dose measurement
    • Baseline gas volume optimized for gamma detection
    • Wide dose rate range from 0.001 to 102 mGy/h depending on model
    • Low dead time ensures fast, accurate counting
    • Suitable for portable, embedded, and fixed monitoring systems
    • Applications include nuclear plants, research reactors, defense, and border surveillance

     

  • The Low Dose Gamma Bare Geiger-Muller Tubes from Exosens are halogen-quenched radiation counter tubes designed for highly sensitive detection in low radiation environments. By using increased gas volume and optimized mixtures, these tubes deliver precise measurements while remaining stable in delicate conditions.

    Key Features

    • Halogen-quenched design for reliable operation
    • Increased volume and gas mix for higher sensitivity
    • Optimized for low radiation detection
    • Low dead time ensures rapid response
    • Wide dose rate range from 0.0002 to 10 mGy/h
    • Robust construction suitable for industrial and nuclear applications
    • Ideal for portable, embedded, and monitoring systems
    • Applications include nuclear power plants, research reactors, and border surveillance
  • The High Dose Gamma Bare Geiger-Muller Tubes from Exosens are halogen-quenched radiation counter tubes designed to operate reliably in high gamma flux environments. Reduced volume and optimized gas mixtures ensure these tubes remain stable without overload, making them ideal for nuclear, defense, and industrial applications.

    Key Features 

    • Halogen-quenched design for consistent operation
    • Optimized for high gamma flux detection
    • Reduced sensitivity to prevent overload
    • Fast response with low dead time (9–15 µs)
    • Wide dose rate range from 0.03 to 10,000 mGy/h
    • Robust and durable for challenging conditions
    • Suitable for portable and embedded radiation monitoring systems
    • Applications include nuclear plants, research reactors, and defense surveillance

     

  • The General Purpose Bare Geiger-Muller Tubes from Exosens are halogen-quenched radiation counter tubes designed for alpha, beta, and gamma detection. These tubes provide reliable baseline gas volume and mixtures for versatile radiation monitoring in industrial, defense, and research applications.

    Key Features 

    • Halogen-quenched design for stable operation
    • Detects alpha, beta, and gamma radiation
    • Available in multiple lengths and sensitivity bands
    • Fast response with low dead time (90–200 µs)
    • Wide dose rate range (10−3 – 102 mGy/h)
    • Low background noise, shielded design
    • Suitable for portable or embedded radiation detection systems
    • Durable and reliable for long-term use
    • Ideal for nuclear, industrial, and environmental monitoring

     

  • The XTM Thermal Module from Exosens is a compact, high-performance thermal imaging camera core designed for security, safety, and transportation applications. Featuring a 640 x 480 pixel uncooled microbolometer, it delivers precise thermal detection in a small, versatile package.

    Key Features

    • Compact and modular design for flexible integration
    • VGA resolution 640 x 480 with 17 μm pixel pitch
    • Long Wave Infrared (8–14 μm) imaging
    • Frame rates up to 60 Hz for smooth real-time imaging
    • Low detector NETD: <50 mK (<30 mK available on request)
    • Multiple interface options: GigE, CameraLink, 16-bit Digital Video
    • Rolling shutter integration type
    • Power-efficient operation (2.7–4.6 W depending on configuration)
    • Rugged design: MIL-STD810G shock and vibration tested
    • Operating temperature range: -40°C to +60°C
  • The SmartIR Thermal Core from Exosens is an ultra-sensitive, SWaP-optimized thermal imaging camera core designed for integration into OEM and subsystem applications. Compact, lightweight, and energy-efficient, it delivers high-quality thermal imaging across a wide range of platforms and operational environments.

    Key Features

    • Ultra-compact and lightweight design for easy integration
    • 17 µm pixel pitch for precise thermal detection
    • Available in VGA 640×480 or 1024×768 resolution
    • Long Wave Infrared (8–14 μm) imaging
    • Max frame rate: 60 Hz for smooth real-time imaging
    • Low power consumption: <1.3 W (640) / <2.5 W (1024)
    • Operating temperature range: -40°C to +70°C
    • Industrial-grade qualification for reliable performance
    • Multiple output options: CL, SDI, Analog, DF40
    • Free SDK and GUI for quick system integration

     

  • The MicroCube Thermal Camera from Exosens is an ultra-compact, ITAR-free thermal camera core designed for SWaP-sensitive applications. Combining low weight, minimal power consumption, and high-resolution imaging, it is ideal for UAVs, handheld systems, and robotic platforms.

    Key Features 

    • Ultra-compact VGA 640×480 thermal core
    • 12 µm pixel pitch with NETD <50 mK (<40 mK on request)
    • Shutterless operation for rapid startup and seamless imaging
    • Extremely low power consumption (<1.2 W)
    • Operating temperature range from -40°C to +70°C
    • MicroCube XP variant with NETD <20 mK and denoising
    • MIL-STD-810G compliant (XP series) for vibration resistance
    • Flexible digital outputs: MIPI-CSI, DF40, UVC
    • Ideal for UAVs, UGVs, robotic platforms, handheld devices, and embedded systems
    • Contour enhancement for superior contrast, DRI, and autofocus precision (XP series)

     

  • The Dione Thermal Camera from Exosens delivers ultra-compact, low-power thermal imaging for defense, industrial, and environmental applications. Optimized for SWaP (Size, Weight, and Power), it provides high-resolution imaging with minimal latency and flexible integration options.

    Key Features

    • SWaP-optimized compact thermal cores for portable systems
    • Multiple resolutions: 320×240, 640×480, 1024×768, 1280×1024
    • 12 µm pixel pitch with NETD <50 mK (<40 mK on request)
    • Shuttered and shutterless options with advanced image correction
    • Ultra-fast startup and short time-to-first-image
    • Flexible digital output: 16-bit DV, MIPI-CSI2, USB, UVC
    • Optional optical mounts: M24, M34, M45 for integration versatility
    • Dione XP series with enhanced dynamic range and sharp contrast
    • Firmware modes: Performance Mode & Contour Detection Mode
    • Ideal for defense, law enforcement, industrial, and life sciences
  • The Surveillance NoxCore HD is a high-definition infrared camera core engineered for advanced surveillance and security applications. Designed with cutting-edge thermal imaging and enhanced situational awareness, it delivers crystal clear imagery and seamless integration for mission-critical environments.

    Key Features

    • High definition infrared camera core for surveillance
    • Advanced NoxEngine technology for superior image processing
    • Enhanced situational awareness with wider field of view
    • Crystal clear thermal imaging with high resolution output
    • Standard interfaces for seamless system integration
    • Compact and energy-efficient design
    • Robust construction for harsh operating environments
    • Made in France with precision engineering
  • The NoxCore TRIF360LW is a high-performance cooled LWIR trifocal infrared camera core designed for advanced surveillance and long-range tracking applications. Built with cutting-edge thermal imaging technology, it delivers exceptional image clarity, flexibility, and seamless integration for mission-critical operations.

    Key Features

    • High-performance cooled LWIR trifocal camera core
    • Advanced NoxEngine technology for superior image processing
    • Trifocal capability for flexible long-range surveillance
    • Crystal clear thermal imaging with enhanced video output
    • Standard interfaces for easy and fast integration
    • Compact and energy-efficient design
    • Robust construction for harsh environments
    • Made in France with precision engineering
  • The Multifocal LW NoxCore is a high-performance long wave infrared camera core designed for precision infrastructure inspection and seamless system integration. Built with advanced radiometric capabilities and robust engineering, it delivers accurate thermal analysis in demanding environments.

    Key Features

    • High-performance LWIR radiometric camera core
    • Advanced NoxEngine technology for enhanced imaging
    • Multifocal capability for flexible inspection applications
    • Embedded radiometry and analysis software
    • Standard interfaces for easy integration
    • Compact design with low power consumption
    • Designed for harsh environments and industrial use
    • Made in France with high-quality engineering

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