KPT6GCGMSA-8-4P Allicdata Electronics
Allicdata Part #:

KPT6GCGMSA-8-4P-ND

Manufacturer Part#:

KPT6GCGMSA-8-4P

Price: $ 63.07
Product Category:

Uncategorized

Manufacturer: ITT Cannon, LLC
Short Description: KPT 4C 4#20 PIN PLUG
More Detail: N/A
DataSheet: KPT6GCGMSA-8-4P datasheetKPT6GCGMSA-8-4P Datasheet/PDF
Quantity: 316
1 +: $ 57.33630
5 +: $ 53.76800
10 +: $ 46.34220
25 +: $ 43.66830
50 +: $ 41.29180
Stock 316Can Ship Immediately
$ 63.07
Specifications
Series: *
Part Status: Active
Description

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KPT6GCGMSA-8-4P is a type of quartz crystal cavity resonator with high frequency and wide temperature range. It is commonly used in microwave and radio frequency circuits. These components provide a stable, efficient way to generate complex signal patterns in electronic circuits. This article will discuss the application field and working principle of the KPT6GCGMSA-8-4P.

The KPT6GCGMSA-8-4P is a surface-mount quartz resonator, and is used in circuits such as digital and analog filters, oscillators, impulse generators, cable amplifiers, radio receivers, transmitters, telecommunication systems, and navigation systems. It is also an ideal component for use in precise, high-precision measuring and timing applications. The KPT6GCGMSA-8-4P is typically deployed in combination with other components such as condensers, capacitors, resistors, and transistors. In addition, it can be used to create a notch filter to suppress unwanted signals.

The design of the KPT6GCGMSA-8-4P ensures that it has little or no temperature change over a wide temperature range. Its low mass and high contact surface area provide excellent thermal characteristics. Its impedance characteristics provide a high attenuation and near-perfect sine-wave response. Additionally, its robust construction makes it highly resistant to shocks and electrical vibrations.

The working principle of the KPT6GCGMSA-8-4P is based on the concept of resonant frequency, which is the frequency at which an electrical device is able to vibrate in response to an alternating current. This frequency is determined by the device\'s physical characteristics, such as its size, mass, and shape. When an alternating current is applied to the device, it creates a vibrational energy that causes the crystalline structure inside the device to resonate. This produces an electrical signal that is then amplified by the device\'s transistors.

The KPT6GCGMSA-8-4P\'s resonance frequency is determined by its design characteristics, such as the capacitance, inductance, and capacitance-to-inductance ratio. The capacitance-to-inductance ratio is a measure of the device\'s ability to store electrical energy. Electrical energy is stored in the device in the form of electrical fields, and these electrical fields increase when the frequency of the applied alternating current is increased. When the electrical fields are maximized, the resonance frequency of the device is also maximized.

The KPT6GCGMSA-8-4P\'s output signal is generated by the combination of its capacitance and inductance, as well as the capacitance-to-inductance ratio. When the signal is at maximum amplitude, it produces a high-frequency oscillation that is used to drive transistors in the circuit. This oscillation creates a wide variety of signals, which can be used to produce complex signal patterns in electronic circuits. In addition, the device\'s frequency range and stability make it suitable for use in highly precise timing and measuring systems.

In summary, the KPT6GCGMSA-8-4P is a surface-mount quartz resonator that provides excellent temperature stability and a wide range of signal frequencies for use in electronic circuits. It is suitable for use in digital and analog filters, oscillators, impulse generators, cable amplifiers, radio receivers, transmitters, telecommunication systems, and navigation systems. Its resonance frequency is determined by its capacitance, inductance, and capacitance-to-inductance ratio. The device\'s output signal is also determined by these three parameters, as well as by the device\'s frequency range and stability. These characteristics make it an ideal component for use in highly precise and high-precision measuring and timing applications.

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

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