High dynamic range camera iKon-M 934
industrialfor scientific applicationsfor microscopes

High dynamic range camera - iKon-M 934 - Andor Technology - industrial / for scientific applications / for microscopes
High dynamic range camera - iKon-M 934 - Andor Technology - industrial / for scientific applications / for microscopes
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Characteristics

Technology
high dynamic range
Applications
industrial, for scientific applications, for microscopes
Function
security, inspection
Spectrum
NIR, visible, UV
Sensor
CCD
Resolution level
1024 x 1024
Resolution
1 Mpx
Other characteristics
high-sensitivity, low-noise

Description

Andor’s iKon-M 934 low noise CCD camera series are designed to offer the ultimate in high-sensitivity, low noise performance, ideal for demanding imaging applications. These high resolution 1024 x 1024 CCD cameras boast up to 95% QEmax, high dynamic range, and 13μm pixels. • 100 °C UltraVac™ TE Cooling • Up to 95% QE and extra-low noise floor • 5 MHz readout for dynamic performance • Sensor formats up to 1MegaPixel • ‘Deep depletion’ near-IR version available • Dedicated photovoltaic inspection model available Andor’s iKon-M 934 series cameras are designed to offer the ultimate in high-sensitivity, low noise performance, ideal for demanding imaging applications. These high resolution 1024 x 1024 CCD cameras boast up to 95% QEmax, high dynamic range, 13 μm pixels and exceptionally low readout noise. The iKon-M benefits from negligible dark current with industry-leading thermoelectric cooling down to -100°C. The ‘Deep Depletion’ sensor option offers ultimate performance for NIR applications, the new Dual AR coating extends the QE performance significantly across the UV/visible region of the spectrum for the broadest possible spectral coverage from one sensor. Fringe Suppression Technology™ radically minimizes etaloning effects in the NIR. Rapid vertical shifts combined with fast kinetics acquisition mode, comprehensive trigger modes and custom coated wedge window options, render the deep Depletion models ideal for NIR optimized Bose Einstein Condensation applications.

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