520R25HT20M0000 Allicdata Electronics
Allicdata Part #:

520R25HT20M0000-ND

Manufacturer Part#:

520R25HT20M0000

Price: $ 1.27
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: CTS-Frequency Controls
Short Description: OSC TCXO 20.000MHZ CLP SNWV SMD
More Detail: 20MHz TCXO Clipped Sine Wave Oscillator 3V 4-SMD,...
DataSheet: 520R25HT20M0000 datasheet520R25HT20M0000 Datasheet/PDF
Quantity: 1000
3000 +: $ 1.14307
Stock 1000Can Ship Immediately
$ 1.27
Specifications
Frequency Stability: ±2.5ppm
Current - Supply (Disable) (Max): --
Height - Seated (Max): 0.032" (0.80mm)
Size / Dimension: 0.098" L x 0.079" W (2.50mm x 2.00mm)
Package / Case: 4-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 2mA
Operating Temperature: -10°C ~ 60°C
Series: 520
Voltage - Supply: 3V
Output: Clipped Sine Wave
Function: --
Frequency: 20MHz
Type: TCXO
Base Resonator: Crystal
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Oscillators such as the 520R25HT20M0000 are heterostructure devices used primarily as frequency-control elements in oscillator circuits. They exhibit stable operation over a wide range of operating conditions and are suitable for use as a single oscillator, as well as in combination with other oscillators as part of an oscillatory system. This article explores the application field and working principle of the 520R25HT20M0000.

The 520R25HT20M0000 can be used as a timebase generator, frequency synthesizer, clock generator, and other components part of an oscillatory system. It is capable of generating stable frequency control elements over a wide range of conditions. It can be used as an essential building block of an oscillatory system or as a standalone unit. The 520R25HT20M0000 possesses a number of features that make it suitable for robust performance and easy system integration.

The 520R25HT20M0000 oscillator relies upon a heterostructure of aluminum gallium arsenide and aluminum gallium indium phosphide to generate a stable frequency control element. This heterostructure acts as a multiplication layer, whereby the frequency of the output is determined by the amount of current applied to the device. The 520R25HT20M0000 device also incorporates a frequency-limited emitter follower stage which serves to limit the frequency range of the output. This stage limits the frequency range and can be used to set the frequency to an specific value.

The 520R25HT20M0000’s operation is based on negative resistance characteristics produced by the heterostructure when a current is applied. This current produces a frequency that is expressed as a voltage across two resistors. This voltage serves to control the frequency of the device. Furthermore, the 520R25HT20M0000 includes a feedback amplifier which adds an additional gain stage to the resonator, thus resulting in even more stable operation.

The 520R25HT20M0000 is capable of providing frequency control over a wide range of conditions. It does this by incorporating features such as a frequency-limited emitter follower stage, and a feedback amplifier with extra gain stages. This ensures that the device can be used to generate a stable frequency control output over a wide range of operating conditions. Additionally, the 520R25HT20M0000 incorporates features that make it suitable for easy system integration.

In conclusion, the 520R25HT20M0000 is a heterostructure device used primarily as frequency-control elements in oscillatory systems. It is capable of generating stable frequency-control elements with a wide range of operating conditions, and features which make it suitable for robust performance and easy system integration. The device operates by relying upon a heterostructure of aluminum gallium arsenide and aluminum gallium indium phosphide to generate a stable frequency control element and a frequency-limited emitter follower stage which serves to limit the frequency range of the output. The 520R25HT20M0000 is suitable for applications such as timebase generators, frequency synthesizers, clock generators, and other components part of an oscillatory system.

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

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