Eagle XO Open Front CCD High-Resolution Scientific Imaging Camera

Specifications

Sensor Type: CCD
Detection Method: Direct Detection, Indirect Detection
# Pixels (Width): 2048
# Pixels (Height): 2048
Pixel Size (Square): 13.5 um
Bit Depth: 16 bit
Full Frame Rate: 2 fps
X-Ray Energy Range: 1.2 – 20000 eV
Dark Current @ -60°C: 0.0004 e-/pixel/second
Binning: Programmable, up to 64×64 Pixels
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Features


  • Ultimate Sensitivity Performance: The Eagle XO features an open front end with a CF152 (6”) flange for direct interfacing to vacuum chambers, ensuring unmatched sensitivity in scientific imaging.

  • Advanced Cooling Technology: Deep cooled using a Thermoelectric cooler (TEC) to minimize dark current and enable long exposure times, enhancing image quality.

  • Back Illuminated Design: With no coating, the back illuminated sensor optimizes sensitivity and provides a large field of view for high-resolution imaging.

  • High Resolution Imaging: Equipped with 13.5μm x 13.5μm pixels, the Eagle XO ensures ultra-sharp image resolution and a high dynamic range.

  • Flexible Sensor Options: Available in 2048 x 2048 and 2048 x 512 formats, allowing for versatility in scientific applications.

  • Low Dark Current: Achieves a dark current of 0.0004 e/p/s, ensuring minimal noise in long exposure images.

  • Efficient Readout: Offers a readout noise of 2.3 e/p RMS at 75kHz and 9.0 e- rms at 2MHz, providing high-quality data output.

  • High Quantum Efficiency: With a peak quantum efficiency of over 90%, the Eagle XO is ideal for a wide range of spectral responses from 1.2eV to 20KeV.

  • Advanced Synchronization: Features trigger IN and OUT that are TTL compatible for seamless integration into existing systems.

  • Robust Design: Operates in a wide temperature range from -20°C to +55°C and is designed for durability with a weight of 5.0kg.

  • Comprehensive Connectivity: Equipped with a 16-bit digital output and CameraLink data interface for easy integration and data management.

Applications


  • Soft X-Ray Imaging: Ideal for high-resolution direct X-ray detection in synchrotron experiments.

  • Spectroscopy: Supports detailed spectral analysis requiring high sensitivity and stability.

  • Materials Science: Enables precise structural imaging and defect analysis.

  • Scientific Research: Suitable for vacuum-based experiments needing ultimate detection efficiency.