Nouveaux produits

InGaAs camera with sensitivity in the spectral range 400 nm - 1700 nm

InGaAs camera with sensitivity in the spectral range 400 nm - 1700 nm

LASER COMPONENTS has developed an ultrathin LTO detector (Lithium Tantalate - LiTaO3) design that minimizes noise while increasing responsivity by four times using sub-pixel binning. The LTO infrared detectors operate well within room temperature with no depoling concerns and require no temperature stabilization, typical for DLaTGS detectors. These pyroelectric detectors operate within single channel voltage mode without the need for cooling.

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Infrared Detectors for FTIR Spectroscopy

Infrared Detectors for FTIR Spectroscopy

The C16741-40U from Hamamatsu is an InGaAs camera with sensitivity in the visible to near infrared region from 400 nm to 1700 nm. It has a USB 3.1 Gen 1 interface port which supports 12 bit image acquisition and exposure time adjustment.

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CMOS Image Sensors

CMOS Image Sensors

Emerald™ Gen2 is a new CMOS image sensor family that is available in 8.9-Megapixels (4,096 x 2,160) or 12-Megapixels (4,096 x 3,072), in monochrome or color, and in two-speed grades, standard and high. The high-speed models provide superior performance for demanding applications that require sharp images at very high speeds, such as food sorting, inspection, and Intelligent Traffic Systems.

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Large Spatial Resolution Snapshot Multispectral Camera for the SWIR spectral range

Large Spatial Resolution Snapshot Multispectral Camera for the SWIR spectral range

The CICADA Multispectral camera is specially designed to allow high integration of SWIR multispectral systems. The CICADA stands out for its high raw spatial resolution (1.3MP). This lightweight (70g) and very small footprint (34x38x35mm) camera splits the image into 9 spectral bands on the SWIR range (1100-1700nm). Made by hybridization of a custom Bayer-like mosaic filter on a commercial InGaAs Sensor, it allows extracting the spectrum on each point of the image.

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Low Vπ LiNbO3 phase-modulator for high-power laser applications

Low Vπ LiNbO3 phase-modulator for high-power laser applications

Exail launches a new low Vπ LiNbO3 phase-modulator, designed for high-power laser applications. This new modulator, dedicated for Coherent Beam Combination (CBC) and Spectral Beam Combination (SBC), offers stability over time, temperature and vibration, while minimizing power consumption thanks to its ultra-low Vπ (up to 16 GHz). Specifically designed to handle up to 300 mW optical input at 1060 nm, this modulator is ideally suited for high-power lasers generation.

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Nouvelle collaboration entre Opton Laser International et Sirah Lasertechnik

Nouvelle collaboration entre Opton Laser International et Sirah Lasertechnik

Opton Laser International annonce sa collaboration avec Sirah Lasertechnik, fabricant de lasers accordables à colorants ou Ti :Sa. Lasertechnik, fabricant leader de lasers accordables à colorants ou Ti :Sa et parfait complément à la gamme de lasers accorables à OPO déjà proposée par Opton Laser.

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Sortie de la version 6.2 de COMSOL Multiphysics

Sortie de la version 6.2 de COMSOL Multiphysics

COMSOL annonce la sortie de la version 6.2 de COMSOL Multiphysics®, qui ajoute des fonctionnalités dédiées aux modèles de substitution pilotés par les données pour des applications de simulation autonomes performantes et la création de jumeaux numériques multiphysiques.

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An innovative software for wavefront measurement

An innovative software for wavefront measurement

Phasics (www.phasics.com/en) announces the release of PhaseStudio, a new software designed to transform the landscape of wavefront measurement.

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Uncooled Detector for Infrared and THz Radiation

Uncooled Detector for Infrared and THz Radiation

PR No1 from LASER COMPONENTS is a pyroelectric receiver that aims at uniting high-quality detector technology with high-end electronics.

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Compact single-shot CEP-meter

Compact single-shot CEP-meter

Madeira (UltraFast Innovations) is a single-shot phasemeter that facilitates single-shot measurements of the carrier-envelope-phase (CEP) of few-cycle femtosecond laser pulses. The ability to characterize the CEP of few-cycle pulses is the backbone of attosecond metrology and key to achieving sub-cycle temporal resolution in a broad range of ultrafast laser applications.

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