8Y26000005 Allicdata Electronics
Allicdata Part #:

8Y26000005-ND

Manufacturer Part#:

8Y26000005

Price: $ 0.55
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: TXC Corporation
Short Description: CRYSTAL 26MHZ 12PF SMD
More Detail: 26MHz ±10ppm Crystal 12pF 4-SMD, No Lead
DataSheet: 8Y26000005 datasheet8Y26000005 Datasheet/PDF
Quantity: 1000
3000 +: $ 0.49613
Stock 1000Can Ship Immediately
$ 0.55
Specifications
Series: 8Y
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: MHz Crystal
Frequency: 26MHz
Frequency Stability: ±15ppm
Frequency Tolerance: ±10ppm
Load Capacitance: 12pF
Operating Mode: --
Operating Temperature: -30°C ~ 85°C
Ratings: --
Mounting Type: Surface Mount
Package / Case: 4-SMD, No Lead
Size / Dimension: 0.079" L x 0.063" W (2.00mm x 1.60mm)
Height - Seated (Max): 0.022" (0.55mm)
Description

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Crystals – 8Y26000005 Application Field and Working Principle

Crystals are a type of solid with an ordered lattice structure and many associated properties that make them suitable for use in a wide variety of applications. Ferroelectric crystals such as 8Y26000005 are used in a range of scientific and telecommunications fields, and represent an important technology in electronic communication systems. This article will explore the application field and working principle of 8Y26000005 to better understand how this crystal is used and how it works.

Crystals as Ferroelectric Materials

Crystals are most commonly understood as quartz, but some crystals are composed of ferroelectric materials, where there is a net spontaneous electric polarization. 8Y26000005 is one such ferroelectric crystal, and its properties make it particularly suitable for use as a component in telecommunication systems. Ferroelectric crystals have a piezoelectric effect, which means that when a mechanical stress is applied across certain crystal axes, a voltage is produced.
The piezoelectric effect is the most significant property of 8Y26000005, and it makes the crystal applicable for use in sending and receiving electrical signals at high frequencies. The crystal responds rapidly to varying electrical signals, which makes it suitable for use as a component in transceivers for transmitting and receiving microwave signals. 8Y26000005 is also used in electronic devices as an oscillator component, where it is paired with a filter component and a transistor to generate a set frequency with high accuracy.

Characteristics and Properties of 8Y26000005

The 8Y26000005 crystal has some unique characteristics and properties, which make the crystal useful in specific applications. Firstly, 8Y26000005 is known for its low phase noise and low noise floor, which makes it suitable for use as a baseband oscillator in high frequency receiving and transmitting systems. Additionally, the crystal has high frequency stability and temperature stability, meaning it can send and receive electrical signals through a wide range of environmental conditions. 8Y26000005 is also known for its low-power consumption, making it suitable for operation in battery-powered systems.

Application Field of 8Y26000005

As a ferroelectric material, 8Y26000005 crystals are used in various telecommunications applications. 8Y26000005 is also suitable for use in low-power radio-frequency oscillators due to its high frequency stability, temperature stability, and low power consumption. Additionally, 8Y26000005 can be used in receivers and transceivers for microwave communication systems, as it is able to respond rapidly to low-level signals and provide accurate signal output.
8Y26000005 is also used in satellite navigation systems such as GPS, and in ultrasonic flaw detectors where its low noise floor makes it particularly suitable. 8Y26000005 is also used in television and radio systems to provide stable and accurate signal modulation. Additionally, 8Y26000005 is used in medical ultrasound systems due to its ability to provide accurate signal output at high frequencies.

Working Principle of 8Y26000005

8Y26000005 crystals rely on the piezoelectric effect to transmit and receive signals. When 8Y26000005 is tested for the piezoelectric effect, a voltage across certain crystal axes is generated. This phenomenon is known as‘electrostriction’. When a voltage is applied to the crystal, it vibrates at the applied frequency. The crystal then produces an output voltageand currentat the same frequency as the applied signal. 8Y26000005 crystals also have a reverse piezoelectric effect, meaning when the crystal is mechanically deformed by applied stress, it will produce a voltage across certain crystal axes.
This capability is used in the oscillator design of 8Y26000005, where the crystal is used to maintain a constant frequency due to its high frequency stability. The crystal is connected to a power source, and the voltage across the crystal oscillations is maintained at a constant. 8Y26000005 is then used to provide a reference signal to other components in the oscillator, such as the transistors. The oscillations of the crystal along with the reference signal can be used to accurately generate a signal of a set frequency with high accuracy.

Conclusion

Ferroelectric crystals such as 8Y26000005 are an important component in electronic communication systems. 8Y26000005 is particularly suitable for use in low-power radio-frequency oscillators, receivers and transceivers for microwave communication systems, and medical ultrasound systems due to its low phase noise, low noise floor, and high frequency stability. 8Y26000005 relies on the piezoelectric effect to transmit and receive electrical signals at high frequencies, and it is used in oscillator designs to provide a reference signal for other components in order to generate a set frequency with high accuracy.

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

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