
( Brand: Andor ), ( Manufacturer Part Number: DU-897 ), ( Part Type: Camera )
The Andor DU-897 iXon3 DU-879 Back-Thinned EM-CCD Scientific Microscope Camera is a cutting-edge imaging solution designed for high-performance confocal, super-resolution, and single-molecule fluorescence microscopy applications. This advanced camera embodies the latest in electron-multiplying charge-coupled device (EM-CCD) technology, ensuring exceptional sensitivity, low read noise, and high dynamic range.
The heart of the camera is the back-thinned EM-CCD sensor, which features a large 488 x 488 square pixel array. The back-thinned design reduces smear effects and enhances the camera's ability to capture fast-moving or faint signals, making it ideal for demanding microscopy tasks. The iXon3 platform, built upon the proven iXon series, offers an array of powerful features such as low read noise, high quantum efficiency, and flexible gain settings to cater to a broad range of imaging requirements.
With a pixel size of 16 x 16 m, the Andor DU-897 iXon3 DU-879 offers outstanding resolution, enabling detailed analysis of even the smallest structures. The camera's high-speed readout capability (up to 200 frames per second) allows for real-time imaging and rapid data acquisition, helping to streamline your research workflow.
The camera is equipped with a dual-use USB 3.0 and Camera Link Full interface, providing flexibility in connecting to various microscope setups. It supports a wide voltage range (3.3V to 12V) and offers several cooling options, including Peltier and liquid nitrogen, to maintain optimal temperature stability for optimal performance.
In summary, the Andor DU-897 iXon3 DU-879 Back-Thinned EM-CCD Scientific Microscope Camera is a powerful and versatile imaging tool that combines advanced EM-CCD technology with exceptional sensitivity, high resolution, and rapid readout speeds. Ideal for a wide range of scientific research applications, this camera is a valuable asset for any microscopy laboratory dedicated to pushing the boundaries of scientific discovery.
The Andor DU-897 iXon3 DU-879 back-thinned EMCCD scientific microscope camera is a high-performance imaging solution designed for advanced research applications. Here are some pros and cons of purchasing this camera to help you make an informed decision:
Pros:1. High quantum efficiency: The back-thinned EMCCD technology ensures a high quantum efficiency, which means it can detect more photons, resulting in better signal-to-noise ratio and improved imaging quality.
2. Fast readout speed: The readout speed of this camera is fast, allowing for rapid data acquisition, making it suitable for time-lapse and live-cell imaging applications.
3. Low noise: The low noise level of the camera contributes to improved image quality, making it ideal for applications that require high-resolution and low-noise images.
4. Wide dynamic range: The camera's wide dynamic range allows for the capture of images with a broad range of intensities, making it suitable for applications that require capturing both weak and strong signals.
5. Versatility: The camera is compatible with various microscopy techniques such as fluorescence, brightfield, and darkfield, making it a versatile imaging solution for a wide range of research applications.
Cons:1. High cost: The Andor DU-897 iXon3 DU-879 camera is a high-end camera, and its price reflects its advanced features and performance. This may be a barrier for researchers with limited budgets.
2. Complex setup: The camera requires a complex setup and calibration process, which may be challenging for researchers who are not familiar with the microscopy imaging system.
3. Requires specialized software: The camera works best with specialized software, which may be an additional cost for the user.
4. Requires cooling: The camera requires cooling to perform optimally, which may increase the overall cost of the imaging system due to the need for a cooling system.
In conclusion, the Andor DU-897 iXon3 DU-879 camera is a high-performance imaging solution suitable for advanced research applications. Its high quantum efficiency, fast readout speed, low noise, and wide dynamic range make it an ideal choice for researchers who require high-resolution and low-noise images. However, its high cost, complex setup, and requirement for specialized software and cooling may be barriers for some researchers.
Recommendation: If the researcher has a budget for a high-end camera and requires a versatile imaging solution that can provide high-resolution and low-noise images, then the Andor DU-897 iXon3 DU-879 camera is a recommended choice. However, if the researcher has a limited budget or is not familiar with the microscopy imaging system, then it may be advisable to consider a more affordable and user-friendly option.
It also comes with a short data transfer cable approx. For single particle work and many other applications, the quantum efficiency of this EMCCS sensor cannot be beat by scams cameras. The PCI card is CCI-23 PCI 2.2 type and has been tested with a Star tech expansion box Windows 7, 64-bit. It cools properly to 80 and all functions work exactly as it should.
No condensation is noted at room temp or cooled, so the seal still intact. Condition: This unit is fully tested with both Andor IQ and manager software. I expect it to work with newer versions of Windows, but don't have the ability test. Details: Only what is pictured included.
C-mount laser blocking filter included as a dust cap and unsure of transmission specs. Fully tested and ready for use. This camera is exceptionally sensitive and works well for fluorescence, spinning disc con focal, TIRF, etc.