SVBONY SC571CC Cooled Color Astronomy Camera, IMX571 CMOS APS-C Sensor

SVBONY SC571CC Cooled Color Astronomy Camera, IMX571 CMOS APS-C Sensor

R 36 161.64

Amazon · checked 2 days ago

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Average
R 36 094.59
Lowest seen
R 36 079.64
Highest seen
R 36 161.64
Last change
R 63.00
First indexed
12 Sep 2026
Retailer
Amazon

Description

High-resolution APS-C sensor: SC571CC CMOS Telescope Camera features the IMX571 APS-C BSI sensor with a 23.4×15.7mm area and 26MP resolution; Its 3.76 µm pixels and efficient BSI design capture sharp stars and faint nebulae with clean deep-sky data Dual-stage TEC cooling: APS-C Format Camera lowers the sensor temperature by 35°C below ambient (ΔT = -35°C); reducing dark current and noise. Its all-metal heat-dissipation design ensures stability for long deep-sky exposure Wide telescope compatibility: SVBONY SC571CC Cooled Camera is compatible with APO; Newtonian; RC; and catadioptric scopes; offering image circle and sharp detail at medium-to-long focal lengths 16-bit wide dynamic range: APS-C Camera features a 16-bit ADC; delivering up to 14 stops of dynamic range; It produces smoother tonal transitions; preserves faint details; ensuring ideal deep-sky images Zero Amp-Glow: Astro Camera features a Zero Amp-Glow sensor for clean dark frames during long exposures; Optimized circuits reduce noise stripes; ensuring pure image quality; Ideal for capturing faint nebulae; Ha regions; and molecular clouds Stable USB 3.0 connection: equipped with USB 3.0; SC571CC astronomical camera ensures fast and reliable data transfer without frame drops or interruptions; even when connecting multiple devices or running long deep-sky imaging sessions High QE (>80%) for faint targets: SVBONY SC571CC features a back-illuminated sensor with large pixels to enhance photon efficiency; capturing faint nebulae and Ha regions with clean; detailed deep-sky images—even under light-polluted skies 512 MB DDR3 buffer for stable transfer: the IMX571 Camera’s USB 3.0 interface with 512 MB DDR3 memory reduces frame drops and interruptions when multiple devices are connected; ensuring smooth all-night imaging sequences