CMS_322_RTP Allicdata Electronics
Allicdata Part #:

CMS_322_RTP-ND

Manufacturer Part#:

CMS_322_RTP

Price: $ 1.16
Product Category:

Optoelectronics

Manufacturer: Visual Communications Company - VCC
Short Description: LENS 5MM MOISTURE-SEALED LENS
More Detail: Lens Cap Red Fresnel Ring Panel Mount
DataSheet: CMS_322_RTP datasheetCMS_322_RTP Datasheet/PDF
Quantity: 852
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: $ 1.04580
10 +: $ 0.84798
25 +: $ 0.65218
100 +: $ 0.58685
250 +: $ 0.52164
500 +: $ 0.44339
1000 +: $ 0.36515
2500 +: $ 0.34776
Stock 852Can Ship Immediately
$ 1.16
Specifications
Series: --
Part Status: Active
Lead Free Status / RoHS Status: --
Type: Lens Cap
Moisture Sensitivity Level (MSL): --
Color: Red
Number of LEDs: 1
Lens Style: Round with Convex Top
Lens Size: 7.62mm Dia
Lens Transparency: Clear
Optical Pattern: Fresnel Ring
Viewing Angle: --
For Use With/Related Manufacturer: General Purpose
Material: Polycarbonate
Mounting Type: Panel Mount
Description

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Optics and lenses have long been studied for their application in various technological fields. The CMS_322_RTP (Requires Two Photon Excitation; Rotating Toroidal Polarization) application field is a fairly recent development that uses lenses to detect weak signals from living tissues. By combining two lasers, it is possible to generate amplitudes of both light polarization components, and the CMS_322_RTP uses this phenomenon to detect signals. This article will discuss the working principle of this application field and how it can be applied.

The working principle of the CMS_322_RTP application is based around the use of rotating toroidal polarization. This is the process by which light is modulated so that it comes out with two polarized components: one vertical and one horizontal. By using two lasers, both polarized components can be created, and they work together to create a signal that can be detected. The lasers must be of different colors, as the colors are used as distinguishing features, helping to differentiate one signal from another.

Once the two lasers are set in place, they are fired in rapid succession to generate the two polarized components of the signal. Since these signals are weak, they must be detected through the use of a lens. Depending on the type of lens used, several types of signal, e.g. amplitude, phase differences, etc., can be detected. By accurately detecting these signals, it is possible to get information on, e.g. light levels, the size of a cell, etc.

The main advantage of the CMS_322_RTP application field is the fact that it can be used to detect weak signals from living tissues, making it ideal for use in molecular and cellular biology. It is a non-invasive technique, meaning that it does not damage the tissue being examined. It also allows researchers to study biological molecules, cells and tissues without disturbing their normal functioning. Additionally, it has been suggested that the CMS_322_RTP application field can be used to study the effects of light on living tissues.

Another advantage of the CMS_322_RTP application field is its scalability. It can be used to detect a wide range of signals or to recognize small samples, making it potentially very useful in a number of applications. It can also be adapted to suit different requirements, making it a powerful and versatile tool in different research fields.

The CMS_322_RTP application field is relatively new but has already made a major impact in the field of optical research. It has allowed researchers to detect weak signals from living tissues without disturbing normal functioning, and has also opened up the possibility of studying the effects of light on living tissues. By combining two lasers and using a lens to detect the signals, researchers can now conduct detailed studies on molecules, cells, and tissues. One of the main advantages of the CMS_322_RTP application field is its scalability, and its ability to adapt to different requirements. It has already been successfully used in a number of different research areas, and this is likely to increase as the application field continues to develop.

The specific data is subject to PDF, and the above content is for reference

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