0.31e⁻ Noise Breakthrough

Solis B518 sCMOS Camera

0.31e⁻ Noise Breakthrough

The EMCCD alternative precisely captures every single photon.

  • Extreme Sensitivity with BSI Technology

    01

    Extreme Sensitivity with BSI Technology

    Features a scientific-grade back-illuminated (BSI) sCMOS sensor with massive 18μm pixels, providing 8x higher sensitivity than standard 6.5μm sensors. This architecture significantly improves light absorption and signal-to-noise ratio, ensuring clear signal capture in extremely low-light environments.

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  • 0.31e⁻ Sub-electron Readout Noise

    02

    0.31e⁻ Sub-electron Readout Noise

    Our deeply optimized CMOS sensor and low-noise circuit design break the noise floor barrier, reducing readout noise to an industry-leading 0.31e⁻. This sub-electron performance provides a superior EMCCD alternative without multiplicative noise or gains aging.

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  • Spatial Photon Number Resolution

    03

    Spatial Photon Number Resolution

    Precise photon-level statistics are achievable thanks to the ultra-low 0.31e⁻ readout noise floor. Imaging noise strictly follows a Poisson distribution, meeting the high-precision requirements for quantum optics, single-atom imaging, and single-molecule microscopy.

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  • Superior Vacuum Deep Cooling

    04

    Superior Vacuum Deep Cooling

    Multi-stage TEC cooling (≥60℃ differential) combined with a professional high-temperature vacuum welding process (leak rate ≤10⁻⁹ Pa·m³/s) eliminates dark current interference. At -30℃, dark current is suppressed to a record 0.007e⁻/pixel/s.

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  • Industry-Leading Uniformity and Linearity

    05

    Industry-Leading Uniformity and Linearity

    Advanced on-board correction algorithms reduce Dark Signal Non-Uniformity (DSNU) to 0.2e⁻, significantly minimizing random signal interference. This ensures excellent light response linearity and stable image details for highly accurate scientific data reproduction.

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Single-Photon sCMOS Camera

Single-Photon sCMOS Camera

We offer free one-on-one consulting and a sample to help you accurately capture true imaging signals in even the most challenging low-light conditions.

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