Allicdata Part #: | XVHCCLNANF-16.000000-ND |
Manufacturer Part#: |
XVHCCLNANF-16.000000 |
Price: | $ 0.43 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Taitien |
Short Description: | CRYSTAL 16MHZ 20PF SMD |
More Detail: | 16MHz ±20ppm Crystal 20pF 50 Ohms 4-SMD, No Lead |
DataSheet: | XVHCCLNANF-16.000000 Datasheet/PDF |
Quantity: | 1000 |
1000 +: | $ 0.39690 |
Series: | XV |
Packaging: | Cut Strip |
Part Status: | Active |
Type: | MHz Crystal |
Frequency: | 16MHz |
Frequency Stability: | ±20ppm |
Frequency Tolerance: | ±20ppm |
Load Capacitance: | 20pF |
ESR (Equivalent Series Resistance): | 50 Ohms |
Operating Mode: | Fundamental |
Operating Temperature: | -40°C ~ 85°C |
Ratings: | -- |
Mounting Type: | Surface Mount |
Package / Case: | 4-SMD, No Lead |
Size / Dimension: | 0.197" L x 0.126" W (5.00mm x 3.20mm) |
Height - Seated (Max): | 0.039" (1.00mm) |
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Crystals have a long and fascinating history in human history. They have been used for everything from healing to predicting the future. In recent years, the development of new technologies has given crystallographers new tools and techniques to explore the fascinating properties of crystalline structures. One of the most exciting of these technologies is the XVHCCLNANF-16.000000.
The XVHCCLNANF-16.000000 is a type of X-ray diffraction technology that is used to study the structure and properties of materials. This type of crystallography uses high-energy X-ray beams to bombard samples and then detect the X-rays that are scattered from the samples. By analyzing the angle and intensity of the scattered X-rays, scientists can learn about the arrangement of atoms and molecules within the material being studied.
The XVHCCLNANF-16.000000 is used in a variety of fields, from materials science to nanotechnology. For example, this technology can be used to study the properties of nanostructures, such as those found in semiconductors. This type of X-ray diffraction can also be used to study the crystal structure of various materials, including metals, ceramics, and polymers. In addition, it can also be used to study the electronic structure of materials.
In addition to its use in materials science, the XVHCCLNANF-16.000000 is also used in the field of biochemistry. This type of X-ray diffraction can be used to study the structure of proteins and other biomolecules. By analyzing the diffraction pattern of the X-rays, scientists can learn about the atomic structure of proteins and other biomolecules. This information can then be used for a wide range of studies, including drug design and drug delivery.
The XVHCCLNANF-16.000000 works by using two precisely controlled X-ray beams to bombard samples. The two beams are adjusted so that their paths cross at the sample being studied. As the X-rays interact with the atoms in the sample, the scattered X-rays are detected by a detector, which then records the angle and intensity of the scattered X-rays. By analyzing the diffraction pattern of the scattered X-rays, scientists can learn about the arrangement of atoms in the sample.
The XVHCCLNANF-16.000000 is a powerful and versatile tool for materials science and biochemistry, allowing scientists to analyze the properties of various materials and biomolecules in detail. In addition, this type of X-ray diffraction technology is relatively easy to use and can provide valuable insights into the characteristics of diffraction patterns.
The specific data is subject to PDF, and the above content is for reference
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