
Allicdata Part #: | CA14129_TATIANA-1X4-B-ND |
Manufacturer Part#: |
CA14129_TATIANA-1X4-B |
Price: | $ 3.28 |
Product Category: | Optoelectronics |
Manufacturer: | Ledil |
Short Description: | LENS RECT 4POS 102X25MM 7.8MM HT |
More Detail: | Lens with Integrated Mount Clear 144° x 62° Adhe... |
DataSheet: | ![]() |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
28 +: | $ 2.98687 |
Series: | Tatiana |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Type: | Lens with Integrated Mount |
Moisture Sensitivity Level (MSL): | -- |
Color: | Clear |
Number of LEDs: | 4 |
Lens Style: | Rectangle with Domed Top |
Lens Size: | 102mm x 25mm |
Lens Transparency: | Diffused |
Optical Pattern: | -- |
Viewing Angle: | 144° x 62° |
For Use With/Related Manufacturer: | Cree |
Material: | Acrylic |
Mounting Type: | Adhesive Tape |
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Optics - Lenses
The CA14129_TATIANA1X4-B is an optical element commonly used in optical systems, such as microscopes, magnifiers, and optical systems. It is a four-lens-element optical system. It utilizes an aplanatic design, which was developed by the American physicist Henry Hyde Bennett in 1845, and is a special type of anti-reflective coating applied to the lenses. In this optical system, each of the four lenses has a specific function.
Overview of the CA14129_TATIANA1X4-B
The CA14129_TATIANA1X4-B comprises four lenses, each of which has a specific purpose. The first lens is a diverging lens, which is typically used to direct light onto the eye. This lens reduces the light’s intensity and distributes it across a wide-angle field of view. The second lens is a corrective element, which distorts the light and provides an image that is properly focused. The third lens is an aplanatic lens, which is an anti-reflection coating that reduces reflections from the lens surface and improves image quality. Finally, the fourth lens is a converging lens which focuses the light more accurately.
Application Fields of the CA14129_TATIANA1X4-b
The CA14129_TATIANA1X4-B is typically used in microscope, magnifier and optical systems. Its design allows for a wide field of view and increases the clarity of the object being observed. This device is particularly useful for applications requiring detailed observation of objects such as bacteria, cells, and antivirus samples. Additionally, this device can also be used for analyzing very small objects, such as the DNA of a single strand of hair. This device can also be used for observing extremely small or distant objects, such as stars in outer space. Additionally, this device is frequently used in optics experiments, such as refraction experiments.
Working Principle of the CA14129_TATIANA1X4-B
The working principle of the CA14129_TATIANA1X4-B is based on the principles of refraction and reflection. When light passes through the first lens, it is refracted and its intensity is reduced. This light then passes to the second lens, which further reduces the intensity and distributes the light across a wide field of view. This processed light then passes through the third lens, which further reduces reflections and distributes the light more accurately. Finally, the fourth lens converges the light and focuses it more accurately, resulting in an image that is properly focused.
Advantages of the CA14129_TATIANA1X4-B
The CA14129_TATIANA1X4-B is a highly efficient and low-loss optical element, making it a popular choice for applications in microscopy, magnifiers, and optical systems. Additionally, this device has excellent light-handling characteristics, which increases image clarity and allows for higher magnification without sacrificing image quality. Furthermore, this device has a wide angle of view and a wide depth of field, allowing it to provide a clear image regardless of the distance of the target object. Its aplanatic design further reduces reflections and image distortion, resulting in improved image clarity.
Conclusion
The CA14129_TATIANA1X4-B is an advanced optical system which utilizes a four-lens design with aplanatic coating to reduce reflections and improve image quality. It is a highly efficient and low-loss optical element, which is often used for microscopy, magnifies, and optical systems. This device has excellent light-handling characteristics, which increases image clarity and allows for higher magnification without sacrificing image quality. Additionally, its wide angle of view and its wide depth of field allows it to provide a clear image regardless of the distance of the target object. All these features make this device an ideal choice for applications requiring detailed observation of objects such as bacteria, cells, and antivirus samples.
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