
( Brand: Cvi Laser For Ciphergen Biosystems ), ( Manufacturer Part Number: S6-00525 ), ( Part Type: Mirror Laser )
The CVI 337nm S6-00525 Mirror from Ciphergen Biosystems is a high-quality laser component designed for use in various scientific and research applications. This mirror is specifically designed to work with 337nm nitrogen lasers, offering efficient and reliable performance.
The mirror is made of high-reflectivity coated quartz, which ensures a high degree of reflectance to maximize the output of the laser. The coating is highly durable, resisting degradation over time and maintaining its reflectivity even after extensive use.
The mirror's surface is perfectly polished to achieve a high degree of flatness and parallelism, ensuring that the laser beam is not distorted as it passes through. This results in a highly collimated beam that maintains its shape and direction, which is essential for precise and accurate experimentation.
The CVI 337nm S6-00525 Mirror from Ciphergen Biosystems is designed to be robust and reliable. It is built to withstand high temperatures and pressures, making it suitable for use in a variety of environments. The mirror is also easy to install and maintain, with a simple mounting system that allows for easy alignment and adjustment.
In summary, the CVI 337nm S6-00525 Mirror from Ciphergen Biosystems is a high-quality, high-performance laser component designed for use with 337nm nitrogen lasers. Its durable coating, perfectly polished surface, and robust construction make it a reliable and long-lasting addition to any scientific or research setup.
Pros of buying CVI 337nm S6-00525 Mirror Ciphergen Biosystems Laser (Nitrogen):1. High-quality and reliable: Ciphergen Biosystems is a well-known brand in the field of bio-imaging, and their products are known for their high quality and reliability.
2. Versatile: This laser can be used for various applications such as fluorescence microscopy, flow cytometry, and confocal microscopy, making it a versatile tool for research labs and biotech companies.
3. High power and precision: The laser has a power output of 100 mW, which is sufficient for most applications. It also has a wavelength of 337 nm, which is ideal for excitation of fluorescent proteins such as GFP, CFP, and YFP.
4. Long-lasting: The laser uses nitrogen as a coolant, which provides a long lifespan compared to other types of lasers.
Cons of buying CVI 337nm S6-00525 Mirror Ciphergen Biosystems Laser (Nitrogen):1. Expensive: The price of this laser is quite high, which may be a prohibitive factor for some research labs and biotech companies.
2. Requires specialized knowledge: Operating and maintaining this laser requires specialized knowledge, which may not be readily available in all research labs and biotech companies.
3. Limited applications: While this laser is versatile, it may not be suitable for all applications. For example, it may not be suitable for applications where a different wavelength is required.
Conclusion:The CVI 337nm S6-00525 Mirror Ciphergen Biosystems Laser (Nitrogen) is a high-quality, reliable, and versatile tool for research labs and biotech companies. However, its high price and requirement for specialized knowledge may be prohibitive factors for some. If the budget allows and the necessary expertise is available, this laser can be a valuable addition to any research lab or biotech company.
Recommendation:If you are looking for a high-quality, versatile, and reliable laser for fluorescence microscopy, flow cytometry, and confocal microscopy, the CVI 337nm S6-00525 Mirror Ciphergen Biosystems Laser (Nitrogen) is a good option to consider. However, make sure to consider the price and your expertise before making the purchase. It is also recommended to consult with a professional to ensure that this laser is suitable for your specific application.
This listing is For one Cvi laser mirror P/N s6 For Ciphergen Biosystems.
The winning bidder pays 5 sins in the us lower 48 states via USPS small flat rate box. I have none. This was For use in their sled ms unit which utilized a 337nm nitrogen laser.