| Allicdata Part #: | 9B16080003-ND |
| Manufacturer Part#: |
9B16080003 |
| Price: | $ 0.14 |
| Product Category: | Crystals, Oscillators, Resonators |
| Manufacturer: | TXC Corporation |
| Short Description: | CRYSTAL 16MHZ 10PF TH |
| More Detail: | 16MHz ±30ppm Crystal 10pF HC-49/US |
| DataSheet: | 9B16080003 Datasheet/PDF |
| Quantity: | 1000 |
| 1000 +: | $ 0.12600 |
Specifications
| Series: | 9B |
| Packaging: | Bulk |
| Part Status: | Active |
| Type: | MHz Crystal |
| Frequency: | 16MHz |
| Frequency Stability: | ±30ppm |
| Frequency Tolerance: | ±30ppm |
| Load Capacitance: | 10pF |
| Operating Mode: | -- |
| Operating Temperature: | -20°C ~ 70°C |
| Ratings: | -- |
| Mounting Type: | Through Hole |
| Package / Case: | HC-49/US |
| Size / Dimension: | 0.453" L x 0.197" W (11.50mm x 5.00mm) |
| Height - Seated (Max): | 0.145" (3.68mm) |
Description
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Crystals: 9B16080003 Application Field and Working Principle
A crystal is a type of solid material composed of regularly arranged particles. In crystalline form, atoms, ions, or molecules are arranged in a repeatable and ordered pattern, giving rise to characteristic optical, electrical, or mechanical properties. Crystals also have significant applications today in technologies such as oscillators and filters, where their properties are carefully regulated. This article will discuss the application field and working principle of one particular type of crystal, 9B16080003, which is commonly used in consumer electronics. We will examine the different types of crystals and determine the primary uses of the 9B16080003 geometrical structure. Additionally, we will discuss the various techniques used to improve the performance of the 9B16080003 crystal.Types of Crystals
The properties of a crystal are dependent on its geometry, or the way its individual atoms, ions, or molecules are arranged in its crystal lattice structure. Crystals can be classified into three primary types: common crystals, thin film crystals, and piezoelectric crystals.Common crystals consist of two flat surfaces called faces that are kept together by atom groups whose arrangement depends on the crystal\'s geometry. The distance between the faces is relatively short and the atoms are arranged in a hexagonal pattern. Examples of common crystals include quartz, calcium fluoride, silicon, and silver iodide.Thin film crystals, also known as thin film oscillators, are thin and flexible sheets of material composed of either single or multiple layers of silicon or polycrystalline material. These crystals are commonly used in consumer electronics, as they are capable of producing high frequencies and low noise. Examples of thin film crystals include polysilicon, oxide, and gallium arsenide. Piezoelectric crystals are made up of molecules that have a natural ability to generate electrical currents, under certain conditions. These crystals are commonly used in medical and scientific equipment, such as ultrasound scanners, due to their ability to produce and detect oscillations. Examples of piezoelectric crystals include quartz, zinc oxide, and lithium niobate.9B16080003 Geometrical Structure
9B16080003 is a thin film crystal that is composed of a thin substrate made of silicon and is composed of an array of circular cavities. This design allows for a high frequency and low noise operation, making it an ideal choice for consumer electronics applications. The 9B16080003 design consists of a thin layer of silicon that is created by the etching process. The resulting structure is then coated with gold and silver electrodes, which are used to control the crystal\'s frequency. Additionally, the 9B16080003 crystal also contains a thin protective layer of dielectric material, which helps to protect the crystal\'s operation from external interference.Primary Uses
The 9B16080003 crystal is most commonly used in consumer electronics, such as televisions and computers, due to its ability to provide stable and reliable operation. The crystal is also capable of producing high frequencies and low noise, which makes it ideal for signal processing applications. Additionally, the 9B16080003 crystal is commonly used in radios, cell phones, and radar systems, due to its ability to generate and receive signals.Techniques to Improve Performance
There are several techniques that can be used to improve the performance of the 9B16080003 crystal. These techniques include using modified electrodes, differing geometries, and improving crystal homogeneity. Modified electrodes are used to improve performance in weak signals or to reduce the crystal’s power consumption. They can also be used to improve the crystal\'s frequency response. Additionally, differing geometries can be used to change parameters such as the crystal\'s frequency and noise level. Finally, the crystal homogeneity can be improved by annealing and ionizing the crystal. Annealing can be used to reduce internal stresses, while ionizing can be used to remove impurities from the crystal. Both of these techniques will help to improve the performance of the 9B16080003 crystal.Conclusion
The 9B16080003 crystal is a thin film crystal that is commonly used in a variety of consumer electronics applications, due to its ability to produce high frequency, low noise operation. Different techniques can be used to improve the crystal\'s performance, such as using modified electrodes, differing geometries, and improving crystal homogeneity. This article has discussed the application field and working principles of 9B16080003 crystals, and their importance in the use of modern electronics.The specific data is subject to PDF, and the above content is for reference
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9B16080003 Datasheet/PDF