PT7C5028C1-5GDE Allicdata Electronics
Allicdata Part #:

PT7C5028C1-5GDE-ND

Manufacturer Part#:

PT7C5028C1-5GDE

Price: $ 0.00
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Diodes Incorporated
Short Description: XO CLOCK
More Detail: Ceramic Resonator -40°C ~ 85°C Surface Mount
DataSheet: PT7C5028C1-5GDE datasheetPT7C5028C1-5GDE Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Type: Ceramic
Frequency Stability: --
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: Die
Size / Dimension: --
Height: --
Description

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Resonators are one of the most essential components of electronic circuitry, as they are used to control the behaviour of electrical signals and generate resonant frequencies. The PT7C5028C1-5GDE is a type of resonator device that is common in electronic circuitry, and this article will discuss its application field and working principle.

Overview

The PT7C5028C1-5GDE is used in a variety of electronic circuitry and is commonly used in frequency control and filtering applications. It uses the principle of coupling between two resonator elements, which results in a change in oscillation frequency when the mutually injected energy becomes resonant. In this way, the PT7C5028C1-5GDE can be used to accurately control frequencies either over a wide range or within a given frequency range.

Application Fields

The PT7C5028C1-5GDE is commonly used in signal generators, radio receivers, oscillators, signal conditioners, signal synthesizers, automatic response machines, frequency multipliers, signal processors, signal converters, signal transmitters, modulators, and noise reduction systems. It is also used in harmonic balancers, frequency meters, frequency transceivers, signal inverters, frequency discriminators, detector circuits, frequency counters, signal attenuators, signal detectors, frequency converters, and digital signal processors.

The PT7C5028C1-5GDE is also used in many medical applications such as medical devices and measurement instruments. In addition to its medical applications, it can be applied in the fields of industrial automation, navigation, and precision navigation and timing. Other applications include the automotive industry, surveillance systems, security systems, telecommunications, aeronautics, and television systems.

Working Principle

The PT7C5028C1-5GDE is composed of two resonator elements that produce a controlled frequency oscillation when externally excited by an electric field or a circuit. The elements are made from a material that has the characteristics of the PT7C5028C1-5GDE\'s multilayer structure. This multilayer structure allows for the resonator to have characteristics that are readily adjustable over a wide frequency range. The PT7C5028C1-5GDE also contains a temperature compensation layer, which is located between the two resonator elements to adjust the temperature coefficient of the elements, allowing for accuracy in frequency adjustments over a wide range of temperatures.

When the two resonator elements are excited by an external electric field, they respond by generating a sinusoidal oscillation, which can be controlled by adjusting the amplitude, frequency and phase of the resonator. The frequency of the oscillation depends on the coupling between the two resonator elements and can be easily adjusted over a wide range by adjusting the applied electric field.

The PT7C5028C1-5GDE is a type of electronic component that is widely used in a variety of electronic circuits, as it is capable of accurately controlling oscillating frequencies within a wide range. The working principle of the device is based on the coupling between two resonator elements, which in turn results in an adjustable frequency oscillation depending on the applied electric field. The PT7C5028C1-5GDE also contains a temperature compensation layer, which helps in maintaining accuracy over a wide range of temperatures.

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

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