Allicdata Part #: | F9331-ND |
Manufacturer Part#: |
DL-13 |
Price: | $ 11.92 |
Product Category: | Uncategorized |
Manufacturer: | Littelfuse Inc. |
Short Description: | DASH LAMP |
More Detail: | N/A |
DataSheet: | DL-13 Datasheet/PDF |
Quantity: | 1000 |
80 +: | $ 10.83700 |
Specifications
Series: | * |
Part Status: | Active |
Description
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<p>DL-13 is a multi-functional laser system that holds many applications in the biochemical field. Scientists use this technology to study gene expression low-level laser therapy (LLLT) imaging, chromatic aberration, and single cell analysis, as well as other various tasks and research. The laser is particularly advantageous for doing these activities since it is composed of a low energy source that emits at a narrow wavelength range, which allows low numbers of photons to be detected without risking damaging the sample being studied.</p><p>LLLT is an application of laser radiation to human tissue, which has numerous health benefits. For example, it is used to treat chronic pain, diabetic neuropathy, and even skin wounds. It works by stimulating cell energy and reparative mechanisms and helps to reduce inflammation and alleviate discomfort. Thanks to the DL-13 laser, these treatments are now better monitored, as it allows scientists to observe the absorption of the laser radiation by cells and its therapeutic effects in a more comprehensive way.</p><p>The DL-13 laser also has a wide range of chromatic aberration applications. This is a type of optical defect in which a lens cannot focus all wavelengths of light in the same plane. Chromatic aberration occurs when the optical system does not provide the same position for each different wavelength, and the DL-13 laser allows scientists to measure these aberrations more accurately. This technique is especially useful for studying the process of color vision, which requires highly accurate analysis of light wavelength spectra. By using the DL-13 laser, researchers can measure the spatial patterns of chromatic aberrations and determine how a color vision system works.</p><p>Finally, the DL-13 laser is also used for single-cell imaging. This imaging technique uses the individual characteristics of each cell to observe and measure their behaviors. Its low energy emission allows the laser to detect individual cells without damaging them, while its narrow wavelength means that it can differentiate between different types of cells. This is advantageous since it allows researchers to observe and measure unique processes within the cell, such as signal transduction pathways, which are essential for studying diseases and drug activities.</p><p>The DL-13 laser is also advantageous because of its simple working principle and design. The laser is composed of a single gain medium and a focusing lens system, and it works by a process called stimulated emission. This process requires the application of energy through the gain medium, which is composed of ions, molecules, atoms, or other particles. The energy excites these particles, which then emit radiation of the same wavelength, allowing the laser to create its narrow beam of light. The focusing lens system then concentrates the beam, enabling different tasks and activities to be monitored.</p><p>In conclusion, the DL-13 laser makes essential tasks and research possible in many fields, such as low-level laser therapy, chromatic aberration imaging, single-cell analysis, and gene expression. Its simple design and working principle make it particularly advantageous, as it emits at a narrow wavelength with low energy that is therefore not damaging to the sample being studied. The DL-13 laser offers great potential for a variety of applications, and researchers across many disciplines have quickly realized its potential.</p>The specific data is subject to PDF, and the above content is for reference
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