
( Brand: Meade ), ( Model: 07536 ), ( Part Type: Filter ), ( Filter Type: Ccd Interference-blue ), ( Color: Blue ), ( Size: Inches ), ( Country/region Of Manufacture: Japan )
The 07536 Mead LX90-ACF 1.25" CCD Interference Filter 440nm, manufactured by Meade Instruments, is a high-quality optical filter designed specifically for use with CCD imaging systems. This filter is coated with a 440nm interference material, which is ideal for blocking unwanted light pollution and enhancing the contrast of your images, particularly in Deep Sky and astronomical imaging.
The 1.25" diameter of this filter makes it compatible with a wide range of telescopes and imaging equipment that use this standard filter size. It is designed to be easily installed and removed from your imaging train, with a secure threaded connection that ensures a tight and stable fit.
The filter is made of high-density optical glass, which is carefully polished and coated to provide excellent optical performance. The 440nm coating is applied using a precision process to ensure a uniform and consistent thickness, which helps to reduce scatter and reflection, and to maximize the transmission of the desired wavelengths.
The Meade 07536 1.25" CCD Interference Filter 440nm is a valuable addition to any astrophotography setup. It can help to extend the sensitivity and contrast of your images, and can help to reduce the impact of light pollution on your observations. Whether you are a beginner or an experienced imaging enthusiast, this filter can help you to get the best results from your equipment.
In summary, the 07536 Mead LX90-ACF 1.25" CCD Interference Filter 440nm is a high-quality optical filter that can help to enhance the performance of your CCD imaging system. Its 440nm coating is ideal for blocking unwanted light pollution and enhancing the contrast of your images, and its 1.25" diameter makes it compatible with a wide range of telescopes and imaging equipment. The filter is made of high-density optical glass and is coated with a precision process to ensure excellent optical performance. Overall, this filter is a valuable addition to any astrophotography setup and can help you to get the best results from your equipment.
Pros of buying a 07536 Meade 1.25" CCD Interference Filter 440 nm:1. Enhances image quality: The filter reduces unwanted light pollution and increases contrast, resulting in clearer and sharper images.
2. Compatibility: It is compatible with various telescopes and cameras, ensuring versatility in usage.
3. Durable and scratch-resistant: The filter is coated with a 440nm layer, providing protection against scratches and damage.
4. Improves color accuracy: It filters out unwanted colors, allowing for better color representation in images.
Cons of buying a 07536 Meade 1.25" CCD Interference Filter 440 nm:1. Limited use: The filter is specifically designed for astrophotography and may not be suitable for other purposes.
2. Necessitates additional investment: Using a filter may require upgrading or purchasing compatible hardware, such as a camera with a filter thread.
3. May affect sensitivity: The filter can reduce the overall sensitivity of the camera, resulting in a slight decrease in image brightness.
Conclusion:The 07536 Meade 1.25" CCD Interference Filter 440 nm is an excellent investment for astrophotographers who want to enhance their image quality and reduce light pollution. Its versatility, durability, and ability to improve color accuracy make it a valuable tool in the field. However, potential buyers should be aware of its limited use and the possibility of additional investment in compatible hardware. If these factors are not a concern, this filter is highly recommended for improving astrophotography images.
Manufactured from the finest optical glass, filter has its color spectrum dyed into glass instead of being done with inferior coatings. To: on our name scoped 1 upper right corner.
Filters are anti-reflection coated on both sides of the glass for highest performance. Grab one before they are gone.
Comes in a protective plastic case.