416F30023AST Allicdata Electronics
Allicdata Part #:

416F30023AST-ND

Manufacturer Part#:

416F30023AST

Price: $ 0.00
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: CTS-Frequency Controls
Short Description: CRYSTAL 30.000 MHZ SERIES SMT
More Detail: 30MHz ±20ppm Crystal Series 200 Ohms 4-SMD, No Lea...
DataSheet: 416F30023AST datasheet416F30023AST Datasheet/PDF
Quantity: 1000
0 +: $ 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 416
Packaging: Tape & Reel (TR) 
Part Status: Discontinued at Digi-Key
Type: MHz Crystal
Frequency: 30MHz
Frequency Stability: ±30ppm
Frequency Tolerance: ±20ppm
Load Capacitance: Series
ESR (Equivalent Series Resistance): 200 Ohms
Operating Mode: Fundamental
Operating Temperature: -10°C ~ 60°C
Ratings: --
Mounting Type: Surface Mount
Package / Case: 4-SMD, No Lead
Size / Dimension: 0.063" L x 0.047" W (1.60mm x 1.20mm)
Height - Seated (Max): 0.018" (0.45mm)
Description

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Crystals

Crystals are commonly used in a variety of applications, such as watches, radios, televisions and computers. One type of crystal in particular, the 416F30023AST, has recently become popular because of its versatile capabilities and robust performance. In this article, we will explore the different application fields and working principles of the 416F30023AST.

Application Fields of 416F30023AST

The 416F30023AST can be used in a variety of different applications, including radio transmitters and receivers, digital signal processors, oscillators, frequency synthesizers, electronic counters, and timing circuits. It has also been used for various telecommunication and navigation systems, including cellular phones and Global Positioning System (GPS).

Due to its robust performance and high stability, the 416F30023AST is widely used in computer motherboards, radar and communication receivers, consumer electronics, and industrial automation. In addition, it is employed in toys and consumer products such as chronographs, alarm clocks, and portable multimedia players.

The 416F30023AST provides a high quality XTAL frequency as a clock oscillator within 5MHz - 55MHz range. This makes it suitable for high end CPU, FPGA, and ASIC applications. It also has high stability against temperature and has low power consumption, making it ideal for applications requiring a smaller form factor.

Working Principle of 416F30023AST

The 416F30023AST crystal utilizes a fundamental frequency oscillation principle to generate a semiconductor surface acoustic wave (SAW). This wave is then amplified and sent to the resonator. The amplification process causes the oscillations to reach their maximum amplitude before gradually declining. The generated SAW frequency is then processed and the oscillator output is generated.

The resonator used in the 416F30023AST is typically a quartz crystal. It is made up of a number of layers of quartz crystal, which are electroded and then cut with special diamond saws. This allows the crystal to produce oscillations at its fundamental frequency. The frequency is determined by a number of factors, including the number of layers, the thickness of each layer, and the electrical characteristics of the electrodes.

The 416F30023AST also has excellent frequency stability over temperature, ensuring consistent performance even under extreme conditions. This is achieved by the use of a combination of electrical and mechanical adjustments. The crystal is first fine-tuned by the use of an external resistor or capacitor, which then adjusts the frequency according to the desired result. It also has an internal adjustment option, which can be adjusted to compensate for frequency drift.

Conclusion

The 416F30023AST is a versatile and robust crystal with a wide range of applications. It is used in radio transmitters and receivers, digital signal processors, oscillators, frequency synthesizers, electronic counters, and timing circuits. It also has excellent frequency stability over temperature and low power consumption, making it suitable for high-end CPU, FPGA, and ASIC applications. Finally, it utilizes a fundamental frequency oscillation principle to generate a semiconductor surface acoustic wave, which is then amplified and sent to the resonator.

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

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