Hamamatsu - ORCA-Fusion BT Digital CMOS camera: C15440-20UP

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Hamamatsu - ORCA-Fusion BT Digital CMOS camera: C15440-20UP

The ORCA-Fusion BT camera is the pinnacle of scientific CMOS (sCMOS) performance. The specifications are without compromise: ultra-low readout noise, CCD-like uniformity, fast frame rates and back-thinned enabled high QE.

Effective no. of pixels: 2304 (H) × 2304 (V)
Readout speed: 89.1 frames/s
Readout noise: 0.7 electrons
Dynamic range: 21 400:1

The ORCA-Fusion BT camera is the pinnacle of scientific CMOS (sCMOS) performance. The specifications are without compromise: ultra-low readout noise, CCD-like uniformity, fast frame rates and back-thinned enabled high QE. But the beauty of the ORCA-Fusion BT is what this combination of exceptional photon detection and collection can do for you. See the dimmest whisper of signal, acquire visually stunning, high S/N images from the fewest photons, capture previously unresolved temporal events and perform computational methods with confidence. The ORCA-Fusion BT is the camera that makes the difficult experiments easy and previously impossible experiments possible.

ORCA-Fusion BT advantages versus other BT CMOS cameras

Exclusive industry leading BT sCMOS performance with trusted Hamamatsu quality and reliability

  • Extremely low readout noise
  • High QE, across a wide range of wavelengths
  • CCD-like uniformity; minimal high readout noise pixels
  • High dynamic range
  • 3 readout speeds
  • Lightsheet readout mode
  • 5.3 Megapixels
  • Both USB 3.0 and high speed CoaXPress interfaces

ORCA-Fusion BT advantages versus EM-CCD cameras

A practical and functional replacement for expensive EM-CCDs with uncompromising sensitivity, speed and versatility

  • Resolution
  • Binning versatility
  • No amplification or excess noise
  • High dynamic range
  • Large field of view

Applications

  • Wide-field fluorescence microscopy
  • Time-lapse imaging
  • Spinning disk confocal microscopy
  • Lightsheet microscopy
  • Super resolution precision localization
  • Genetically encoded voltage imaging
  • Optogenetics
  • Single molecule tracking
  • Computational imaging
  • Quantum computing

Time-lapse live cell imaging by low light excitation

Sample: H9c2, Objective lens: Apo TIRF 60XC (NA1.49), ND: 8, Interval: 15 sec

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