
( Brand: Newport ), ( Manufacturer Part Number: KPX208 ), ( Part Type: Mirror Laser Reflector )
The Newport BD.1 Convex Mirror AVLIS Laser Optics Reflector KPX208 is a high-quality, sophisticated, and versatile optical component designed for a wide range of laser applications. This reflector, manufactured by Newport Corporation, a renowned global leader in photonics technology, is engineered to deliver exceptional performance and reliability.
The KPX208 features a 480-750nm wavelength range, making it an ideal choice for UV-visible laser applications. The convex mirror design ensures efficient light collection and reflection, reducing the overall system size and weight while maintaining high optical throughput. The mirror's surface is polished to an exceptionally high standard, ensuring excellent surface quality and minimizing scattering losses.
The AVLIS (Atomic Vapor Laser Isotope Separation) process is used in the manufacturing of this reflector, which guarantees a high-purity, low-defect optical surface. This process results in a reflector with superior durability and resistance to thermal stress, ensuring long-term stability and consistent performance.
The Newport BD.1 Convex Mirror AVLIS Laser Optics Reflector KPX208 is designed with a 1-inch diameter and a focal length of 254mm, providing a beam diameter of approximately 1.7mm at the focal point. The reflector is coated with a highly reflective aluminum coating, ensuring maximum efficiency and minimal absorption losses.
In conclusion, the Newport BD.1 Convex Mirror AVLIS Laser Optics Reflector KPX208 is a top-tier optical component designed for precise and efficient laser beam manipulation. Its superior quality, advanced manufacturing process, and wide wavelength range make it an excellent choice for a variety of high-performance laser applications.
1. Wide Bandwidth (480-750nm): The wide bandwidth allows for versatility in applications, as it can accommodate a broad range of lasers within the visible spectrum.
2. High Quality Reflection: Convex mirrors are known for their ability to provide high-quality, distortion-free reflections, making them ideal for laser applications.
3. AVLIS Technology: The AVLIS (Atomically Vapor-Deposited Low-Index Structure) technology ensures low-loss optical coatings, resulting in high efficiency and minimal distortion.
4. Durable: Newport products are known for their durability, which is crucial in high-intensity, long-term laser applications.
Cons:1. Price: The KPX208 is a high-end product and may be expensive for some budgets.
2. Customization: Since it is a standard mirror, there may be limited options for customization according to specific application requirements.
3. Requires Proper Handling: The mirror's high-quality coating requires careful handling to avoid scratches or damage.
Conclusion:The 480-750nm Newport BD.1 Convex Mirror AVLIS Laser Optics Reflector (KPX208) is a high-quality, versatile product suitable for a wide range of laser applications within the visible spectrum. Its durability, high-quality reflection, and low-loss AVLIS technology make it a valuable investment for those who can afford it. However, its high price and limited customization options may make it less ideal for budget-conscious users or those with specific, non-standard requirements.
Recommendation:If you are looking for a high-quality, versatile, and durable laser mirror for your application within the 480-750nm spectrum, the Newport BD.1 Convex Mirror AVLIS Laser Optics Reflector (KPX208) is a recommended choice, provided you can accommodate its price. If budget is a concern, you may want to consider other, more affordable options, or negotiate with the manufacturer for a possible discount.
20 shipping within USA.
If you are interested more in the program it came from, here is a link. This is in excellent-new condition, there are not scratches on the mirror surface. Up for offer is a new from old stock bd.
It is 2 diameter with a convex radius on hr side 400mm fl and can be used as secondary mirror or to expand your beam. 1 mirror that covers 480nm-750 nm at normal incidence.