


( Brand: Thorlabs ), ( Type: Laser ), ( Manufacturer Part Number: FL635-10 ), ( Country/region Of Manufacture: Germany ), ( Intended Use/discipline: Physical Laboratory )
The Thorlabs FL635-10 1-35-10 Laser Line Filter is a high-performance optical filter designed for precise wavelength selection. This filter is specifically engineered to pass 635 nm light with a full width at half maximum (FWHM) of 10 nm, making it an excellent choice for applications that require narrowband filtering in the red region of the visible spectrum.
The FL635-10 filter features a 1 mm thick, dielectrically coated, fused silica substrate, ensuring robustness and durability in a variety of laboratory and industrial environments. The 1-35-10 nomenclature indicates that the filter has a 1 mm thick, 35 mm wide, and 10 mm long rectangular shape, providing ample surface area for efficient light transmission.
The Thorlabs FL635-10 Laser Line Filter is designed to provide high optical throughput and low absorption, ensuring optimal signal-to-noise ratio in your experiments. The filter has been AR-coated on both sides for minimal reflection and excellent transmission, making it an ideal solution for applications such as laser spectroscopy, fluorescence microscopy, and laser alignment.
The filter's narrowband passband ensures minimal interference with adjacent wavelengths, resulting in reduced background noise and improved signal clarity. The Thorlabs FL635-10 1-35-10 Laser Line Filter is an excellent choice for applications that require precise wavelength selection and high-quality optical filtering in the red region of the visible spectrum.
Pros of buying Thorlabs FL635-10 1-35-10 laser line filter CWL 635 nm FWHM 10:1. High Quality: Thorlabs is a renowned manufacturer known for producing high-quality optical components. This filter is no exception, offering excellent transmission and blocking characteristics.
2. Wide Bandwidth: The filter has a wide bandwidth of 10 nm, allowing it to pass a broad range of wavelengths around 635 nm. This can be beneficial if the source's spectral linewidth is not perfectly centered at 635 nm.
3. Large Acceptance Angle: The filter has a large acceptance angle, which means it can withstand deviations in the incident angle of the light. This makes it more versatile in applications where the light source's polarization or angle might change.
4. Durable: Thorlabs' filters are known for their durability and long-term performance, ensuring reliable operation under various conditions.
Cons of buying Thorlabs FL635-10 1-35-10 laser line filter CWL 635 nm FWHM 10:1. Cost: As a high-quality optical filter, this product may be more expensive than some other alternatives. This could be a limiting factor for budget-conscious users.
2. Size and Weight: The filter is relatively large and heavy, which could be a disadvantage in portable or space-constrained applications.
Conclusion:The Thorlabs FL635-10 1-35-10 laser line filter CWL 635 nm FWHM 10 is a high-quality optical filter offering excellent transmission and blocking characteristics, a wide bandwidth, and a large acceptance angle. The product's durability and long-term performance make it an excellent choice for demanding applications. However, the filter's cost and size may be limiting factors for some users.
Recommendation:If you need a high-performance laser line filter with a wide bandwidth and large acceptance angle, the Thorlabs FL635-10 1-35-10 laser line filter CWL 635 nm FWHM 10 is an excellent choice. While the cost and size might be a concern for some, the product's performance and reliability make it a worthwhile investment for applications requiring high-quality optical filtering.
Shipping Buyer pays for all shipping costs. This unit will arrive in the condition shown. Warranty This item is guaranteed to be as described. Power cords and power adapters are never included unless specifically mentioned.
THORLABS FL635-10 1-35-10 1 LASER LINE FILTER CWL 635 2 NM FWHM 10: This lot is for one Thorlabs Laser Line Filter nm. Orders are shipped to the cardholders billing address.