KN3270025 Allicdata Electronics
Allicdata Part #:

KN3270025-ND

Manufacturer Part#:

KN3270025

Price: $ 0.81
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Diodes Incorporated
Short Description: OSCILLATOR XO 32.768KHZ CMOS SMD
More Detail: 32.768kHz XO (Standard) CMOS Oscillator 1.8V Enabl...
DataSheet: KN3270025 datasheetKN3270025 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.72482
Stock 1000Can Ship Immediately
$ 0.81
Specifications
Series: SaRonix-eCera™ KN
Packaging: Tape & Reel (TR) 
Part Status: Active
Base Resonator: Crystal
Type: XO (Standard)
Frequency: 32.768kHz
Function: Enable/Disable
Output: CMOS
Voltage - Supply: 1.8V
Frequency Stability: ±25ppm
Operating Temperature: -20°C ~ 70°C
Current - Supply (Max): 300µA
Ratings: --
Mounting Type: Surface Mount
Package / Case: 4-SMD, No Lead
Size / Dimension: 0.276" L x 0.197" W (7.00mm x 5.00mm)
Height - Seated (Max): 0.061" (1.55mm)
Current - Supply (Disable) (Max): 10µA
Description

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Oscillators are electronic circuits or components that generate a repeating waveform output based on a fixed energy source. The act of oscillation is to repeat the same sequence of waveform over and over again. Oscillators are widely used in many different areas of electrical and electronic engineering, including communications, audio processing, digital and analog computing. The KN3270025 is a type of oscillator that also has a range of practical applications and uses. This article will discuss the KN3270025 oscillator, its application field and working principle.

The KN3270025 is a high frequency, low noise, insensitive to temperature, subminiature oscillator. Designed by the Japanese company Koyanagi, it contains two important components: a quartz membrane and a coil. The quartz membrane is a nonlinear device, meaning it will output different signals based upon input signals of different frequencies. The quartz oscillator is mounted in a metal housing, and the coil is located on the opposite side of the quartz in a cup-shaped receptacle. This arrangement of the two components is essential to the oscillator’s functionality, as the membranes vary in size and shape depending on their respective frequency output. Consequently, the distance between the two components must be very precisely managed for the oscillator to be effective.

The KN3270025 oscillator has a number of practical applications. It is primarily used in high frequency circuits, such as FM receivers, RF transmitters, resonant driver/power amplifiers, and transmitters in communication systems. The oscillator can also be used in audio circuits, such as in car audio systems, and is capable of producing either digital or analog audio signal. Additionally, it is used as an electronic timer in video equipment and can be used to create audio pulses in computers and other electronic devices. The oscillator is also used in circuit boards, as its low noise output is ideal for cutting through the noise interference.

The working principle of the KN3270025 oscillator is based on the interaction between the quartz and coil. The quartz membrane vibrates at a particular frequency, and this frequency is determined by the size and shape of the membrane. This frequency can also be modified by adjusting the internal mass of the membrane. On the other side of the quartz, the coil is sandwiched between two metal plates, which cause a shifting magnetic field. The frequency of this magnetic field is determined by the size of the coil. The resulting interaction between the quartz membrane and the coil results in an oscillating signal, and this signal is used by different types of electronic circuits to create a stable output frequency.

The KN3270025 oscillator is a reliable, low noise, and temperature insensitive subminiature oscillator. Its range of applications include high frequency circuits, such as FM receivers, RF transmitters, resonant driver/power amplifiers, and transmitters in communication systems, audio circuits, such as in car audio systems, and as an electronic timer in video equipment. Its working principle is based on the interaction between the quartz and coil, and the resulting oscillating signal is used to create a stable output frequency.

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

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