4300-083 Allicdata Electronics
Allicdata Part #:

4300-083-ND

Manufacturer Part#:

4300-083

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Manufacturer: Tusonix a Subsidiary of CTS Electronic Components
Short Description: CAP FEEDTHRU
More Detail: Feed Through Capacitor
DataSheet: 4300-083 datasheet4300-083 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 4300
Packaging: --
Part Status: Active
Tolerance: --
Voltage - Rated: --
DC Resistance (DCR) (Max): --
Operating Temperature: --
Insertion Loss: --
Temperature Coefficient: --
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Description

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Feed Through capacitors (FTs) are electrical components used to provide impedance control in RF circuits. FTs are made of a high-frequency ceramic capacitor, and are used to bypass large currents or high-frequency signals across the capacitor. They are often used in circuits where the frequency response and damping have to be controlled carefully. FTs have become one of the most essential components for constructing all types of radio frequency (RF) and microwave circuitry.

The 4300-083 application field and working principle involves the construction of a capacitor with two electrical connections on each end. A single pole RF feed-through capacitor is a device that facilitates the transfer of pulsating electrical energy from the source to the receiving part of an electrical circuit. The two metal electrodes of the capacitor are connected to a dielectric material which helps in generating the electromagnetic field. The capacitor is constructed in such a way that one of the electrodes acts as the source of electromagnetic signal and the other as a receiver. The capacitance of such capacitors varies considerably according to the type of dielectric material used, the thickness of the insulation used, the size and shape of the electrodes, and other factors.

The use of the 4300-083 FTs is seen in many different applications. It is widely used in electronic and communications systems, such as RFID, telephone networks, and wireless communication systems. In order to improve the accuracy and performance of these systems, feed-through capacitors are often used to reduce electrical noise. The capacitors also help improve the speed and data transfer rate of these systems. Additionally, the low leaf resistance and excellent impedance matching capabilities of the FTs reduce the crosstalk between adjacent systems and help reduce the amount of interference from one system to another.

The working principle of the 4300-083 FT is based on the principle of electrical current being conducted between two metal electrodes. As electric current passes through the dielectric material sandwiched between the electrodes, an electromagnetic field is created, which is responsible for the capacitor\'s properties. The electric field generated by the dielectric material affects the behavior of the electric current, which helps determine the capacitance of the FTs. The electrical properties of the capacitor are also affected by the thickness of the insulation used, the size and shape of the electrodes, and other factors.

The 4300-083 FTs is designed to provide impedance control in low and medium frequency applications. These FTs are widely used in numerous applications, such as in the telecommunications industry, in industrial systems, and in consumer electronics. They are also extremely useful in high frequency applications such as in automotive navigation and wireless communication systems. Because of their low leakage current, these FTs are also ideal for power filtering applications and noise suppression systems.

The 4300-083 FTs is an incredibly versatile component and has a variety of uses. Its ability to provide impedance control in low and medium frequency applications makes it one of the most important components in any RF system. Because of its low leakage current and excellent impedance matching capabilities, these FTs are also valuable in suppressing electrical noise in various systems. Therefore, FTs are essential components in a wide range of RF and microwave circuitry.

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

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