CSTCR6M00G55B-R0 Allicdata Electronics
Allicdata Part #:

490-7865-2-ND

Manufacturer Part#:

CSTCR6M00G55B-R0

Price: $ 0.00
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Murata Electronics North America
Short Description: CER RES 6.0000MHZ 39PF SMD
More Detail: 6MHz Ceramic Resonator Built in Capacitor 39pF ±0....
DataSheet: CSTCR6M00G55B-R0 datasheetCSTCR6M00G55B-R0 Datasheet/PDF
Quantity: 3000
Stock 3000Can Ship Immediately
Specifications
Series: CERALOCK® CSTCR
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: Ceramic
Frequency: 6MHz
Frequency Stability: ±0.15%
Frequency Tolerance: ±0.5%
Features: Built in Capacitor
Capacitance: 39pF
Operating Temperature: -40°C ~ 125°C
Mounting Type: Surface Mount
Package / Case: 3-SMD, Non-Standard
Size / Dimension: 0.177" L x 0.079" W (4.50mm x 2.00mm)
Height: 0.047" (1.19mm)
Description

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Resonators

Resonators allow for the manipulation of waves of sound, light or electromagnetism. In this article, we will be discussing the application field and working principle of the CSTCR6M00G55B-R0. By understanding its application field and principle, we will be better able to understand how this particular resonator operates.

Application Field

The CSTCR6M00G55B-R0 is an extremely versatile resonator. It can be used in both digital and analog application fields, making it suitable for a wide variety of scenarios. It\'s most common use lies in high-speed digital circuits, where it can act as a buffer, filter, or phase shifter. It can also be used in precision analog circuits, providing stable frequency signals. These features make it a popular choice for many types of applications, such as telecom and broadcast, automotive, and medical devices.

Working Principle

At its core, the CSTCR6M00G55B-R0 works on the principle of resonance. Resonance occurs when two waves interact in such a way that their amplitudes reinforce one another. In this case, the two interacting waves are two electrical signals, one driving and one driven. The driven signal\'s frequency is adjusted with feedback to match that of the driving signal. This creates a resonating circuit, and the driving signal is amplified by the resonator.

The CSTCR6M00G55B-R0 is able to achieve this by using a technique called dielectric-loaded electromechanical transponder. It consists of a piezoelectric material sandwiched between two metal plates. When an alternating electric field is applied, the piezoelectric material vibrates and produces an alternating mechanical field. This mechanical field then intertwines with the electric field and adds to its strength, thus creating resonance.

Conclusion

The CSTCR6M00G55B-R0 resonator is a highly versatile device. Its application field includes high-speed digital circuits, precision analog circuits, and a variety of other scenarios. The working principle behind the resonator is based on resonance, which is created by a dielectric-loaded electromechanical transponder. With these two factors in mind, we can better understand and optimize the performance of this particular resonator.

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

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