Life science research spans multiple scales, from molecular interactions to the complexity of whole organisms. Within this field, scientific cameras are indispensable imaging detectors, with their performance directly determining imaging depth, resolution, and data fidelity. To meet the diverse requirements of life science research, we provide specialised scientific camera solutions featuring high sensitivity, high resolution, and high throughput. These solutions support workflows ranging from single-molecule detection to large-scale automated imaging, and are widely deployed in systems such as microscopy, flow cytometry, high-throughput screening, and digital pathology.
Spectral range: 200–1100 nm
Peak QE: 95%
Readout noise: <1.0 e-
Pixel size: 6.5–16 μm
FOV (diagonal): 16–29.4 mm
Cooling method: Air / Liquid
Spectral range: 200–1100 nm
Peak QE: 83% QE
Readout noise: 2.0 e⁻
Pixel size: 3.2–5.5 µm
FOV (diagonal): >30 mm
Cooling method: Air / Liquid
Spectral Range: 200 - 1100 nm
Peak QE: 95%
Readout Noise: <2.0 e-
Pixel Size: 6.5–11 µm
FOV (diagonal): 14.3–32 mm
Cooling method: Air / Liquid
Spectral Range: 400 - 1000 nm
Peak QE: 95%
Readout Noise: < 3.0 e-
Pixel Size: 6.5–11 µm
FOV (diagonal): 18.8–86 mm
Cooling method: Passive
Spectral Range: 350 - 1100 nm
Peak Quantum Efficiency: 75%
Pixel Size: 3.4 μm
Resolution: 5–12 MP
FOV (diagonal):10.9–17.4 mm
Cooling method: Air
Spectral Range: 400 - 1000 nm
Peak Quantum Efficiency: 92%
Readout Noise: 1.0 e-
Pixel Size: 3.76 / 7.5 μm
FOV (diagonal): 16–25 mm
Cooling method: Air
Spectral Range: 400 - 1000 nm
Peak QE 92%
Readout Noise: < 3.0 e-
Pixel Size: 2.4–3.75 μm
FOV (diagonal): 16–28 mm
Cooling method: Air
Resolution: 4K / 1080P
FOV (diagonal): 5–13 mm
Pixel Size: 1.6–2.9 μm
Integrated Features: autofocus, Wi-Fi, etc.
Interfaces: HDMI, USB 3.0, USB 2.0
Software Compatibility: Mosaic 3.0
Resolution: 5-20MP
FOV (diagonal): 7.7–16 mm
Pixel Size: 1.34–3.45 μm
Live Stitching
Live EDF
Standard software: Mosaic 3.0