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850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter
Experience cutting-edge performance with our 850nm Bandpass Narrowband Filter featuring over 95% transmission rate!
850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter
Item #: 84748324

850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter

Item #: 84748324

TTD 239

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Experience cutting-edge performance with our 850nm Bandpass Narrowband Filter featuring over 95% transmission rate!
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What Stands Out

Narrow Bandpass Range
Covers an effective wavelength range of 840nm-860nm, ensuring precise filtering for applications requiring narrow bandwidth, thus enhancing signal clarity and performance.
Compact Size
With dimensions of 15x1.5mm, this bandpass filter is designed for easy integration into compact optical systems, making it ideal for space-constrained environments.
High Quality
Constructed with superior materials for excellent optical performance, this filter minimizes unwanted wavelengths, ensuring high transmission efficiency and optimal performance in scientific and industrial applications.

Product Details

Shop 850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter online at a best price in Trinidad and Tobago. B083LDKM5S
Item Weight0.1 lbs (50 grams)

Who Should Buy?

Suitable For
  • Optical Experiments

    Ideal for scientists conducting experiments requiring precise wavelength filtering around the 850nm range.

  • Laser Applications

    Useful in laser systems where specific wavelengths between 840nm to 860nm need to be isolated.

  • Camera Integration

    Beneficial for photographers or videographers using cameras designed to capture specific wavelengths for enhanced imaging.

Not Suitable For
  • General Use

    Not suitable for casual users with no specialized optical needs requiring specific wavelength filtering.

Product Description

850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter

Have any Query? Chat with us

Customer Questions & Answers

  • Question: What is an 850nm bandpass filter used for?

    Answer: An 850nm bandpass filter is primarily used in optical systems to selectively transmit light within the 840-860nm wavelength range while blocking other wavelengths. This is particularly beneficial in applications like biomedical imaging, optical fiber communication, and various scientific research settings where it's crucial to isolate specific wavelengths for accurate measurements. For example, if you're conducting fluorescence microscopy, using this filter can enhance image clarity by eliminating background noise.
  • Question: What are the specifications of the 850nm bandpass filter?

    Answer: The 850nm bandpass filter usually has a specific bandwidth, often around 20nm, which allows light to pass only from 840nm to 860nm. The dimensions, such as 15x1.5mm, indicate its physical size, making it suitable for various setups including laboratory equipment and cameras. This filter is typically made with high-quality optical materials to ensure minimal light loss and distortion, which is essential for maintaining the integrity of the captured data in experiments or imaging tasks.
  • Question: How can I use a narrow bandpass filter in my experiments?

    Answer: You can incorporate a narrow bandpass filter like the 850nm filter in your experimental setups by mounting it in front of detectors or in optical paths. This will allow you to focus on specific wavelengths emitted by fluorescence or other light sources, significantly improving the accuracy of your results. For instance, if you are analyzing cellular specimens using fluorescence, this filter will enable you to specifically capture the emissions from fluorophores that emit light in the desired range, providing clearer data.
  • Question: What is the difference between a bandpass filter and other filter types?

    Answer: A bandpass filter is designed to transmit a specific range of wavelengths while rejecting others, unlike low-pass or high-pass filters that allow either longer or shorter wavelengths, respectively. This characteristic makes bandpass filters like the 850nm filter ideal for isolating signals in applications like spectroscopy, where precision is critical. For instance, distinguishing between multiple spectral lines in an experiment is achievable using a bandpass filter, significantly enhancing signal analysis and clarity.
  • Question: Can this filter be used in conjunction with other optical components?

    Answer: Yes, the 850nm bandpass filter can be effectively used with other optical components such as lenses, mirrors, and beam splitters to create customized optical setups. Combining it with lenses can help focus the transmission onto a sensor, while using it with beam splitters can help separate light paths. This versatility leads to enhanced performance in applications like multi-photon microscopy, where precise wavelength separation is necessary to gather accurate imaging data.
  • Question: What materials are typically used to construct bandpass filters?

    Answer: Bandpass filters, including the 850nm model, are usually made from high-quality optical glass or specialized thin film coatings. The choice of materials is crucial as they ensure optimal light transmission and minimize reflection and absorption. Thin film technology allows for the achievement of various transmission characteristics, enabling the filter to perform accurately in various settings, including laboratories and industrial applications where light quality is paramount.
  • Question: Is there a difference in performance between different brands of bandpass filters?

    Answer: Yes, performance can significantly vary between brands due to differences in design, manufacturing quality, and materials used. High-end brands typically offer better control over wavelength selectivity and transmission rates. When selecting a bandpass filter, it’s essential to consider parameters like optical density and transmission efficiency. Choosing a reputable brand can lead to improved accuracy and reliability in sensitive experiments, making your analytical results more trustworthy.
  • Question: What applications benefit from using an 850nm bandpass filter?

    Answer: An 850nm bandpass filter is widely used in applications such as fluorescence microscopy, optical communications, and environmental monitoring. In fluorescence microscopy, it helps isolate specific signals emitted by fluorophores, improving image quality. In optical communications, it allows for the effective separation of signals in fiber optics, ensuring data integrity. Furthermore, it plays a role in biology and environmental sciences, where precise wavelength analysis is crucial for sample evaluation and monitoring.
  • Question: How do I clean and maintain my bandpass filter?

    Answer: To maintain optimal performance, regularly clean your bandpass filter using a lens cleaning solution and lint-free cloth. Avoid harsh chemicals or scrubbing the surface, as these can scratch or damage the coating. Proper cleaning techniques help preserve the filter's transmission quality, ensuring it delivers accurate results in your applications, whether in scientific research or industrial settings. Ensuring the filter is free from dust and fingerprints can significantly enhance your results.
  • Question: Where can I buy the 850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter?

    Answer: You can purchase the 850nm 840nm-860nm 15x1.5mm Bandpass Filter Narrow Band Filter from Ubuy in Trinidad and Tobago. Ubuy offers a wide selection of optical filters, ensuring you get quality products suited for your specific needs, whether you're in research, education, or industry. Their platform provides a user-friendly shopping experience, making it easier to find the right filter for your applications.

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