GVD1213-001 Allicdata Electronics
Allicdata Part #:

GVD1213-001-ND

Manufacturer Part#:

GVD1213-001

Price: $ 8.04
Product Category:

Discrete Semiconductor Products

Manufacturer: Sprague-Goodman
Short Description: CAPACITOR
More Detail: Varactor Single 30V Surface Mount SOT-23
DataSheet: GVD1213-001 datasheetGVD1213-001 Datasheet/PDF
Quantity: 1000
1000 +: $ 7.30800
Stock 1000Can Ship Immediately
$ 8.04
Specifications
Series: --
Part Status: Active
Capacitance @ Vr, F: 10pF @ 4V, 50MHz
Capacitance Ratio: 4.1
Capacitance Ratio Condition: --
Voltage - Peak Reverse (Max): 30V
Diode Type: Single
Q @ Vr, F: 1800 @ 4V, 50MHz
Operating Temperature: -55°C ~ 125°C (TJ)
Mounting Type: Surface Mount
Package / Case: TO-236-3, SC-59, SOT-23-3
Supplier Device Package: SOT-23
Description

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Variable capacitance diodes, also known as varicaps, varactors, or simply capacitance diodes, are components that can be found in a great number of electronic circuits. These components have become invaluable tools in many modern electronics applications. One such component that is widely used is the GVD1213-001, a semiconductor diode device that features a wide range of features and benefits that make it ideal for a variety of uses. In this article, we will discuss the application field and working principle of the GVD1213-001.

Application Field of the GVD1213-001

The GVD1213-001 is a variable capacitance diode designed for use in wideband digital television tuners, receivers, and transmitters. It offers high performance, low power consumption, and robustness in harsh operating environments. This makes it well suited for digital television applications. It can also be used in RF and IF applications, such as phase locked loops, frequency synthesizers, and phase shifters. Additionally, it can be used in atomic clock and navigation systems, as well as in radio astronomy. In industrial and military applications, the GVD1213-001 can be used for frequency tuning, DC offset control, and more.

The GVD1213-001 is also suitable for a range of automotive applications. It is used in powertrain control systems, ABS braking systems, airbags, and infotainment systems. Additionally, it is used in industrial applications, including factory automation, robotics, and machine vision.

Working Principle of the GVD1213-001

The GVD1213-001 uses the varicap principle to achieve its high performance. A varicap is a special type of diode with a reverse-biased voltage-dependent capacitance. In other words, the capacitance of the diode is determined by the applied reverse voltage, which allows the diode to be tuned to a specific frequency. This makes the GVD1213-001 an ideal component for digital television applications, as it provides a low noise, high-frequency signal with almost no distortion.

The GVD1213-001 is a variable capacitance diode that is built using advanced manufacturing techniques. The diode is constructed from two semiconductor layers, which are formed by depositing an active semiconductor material such as gallium arsenide onto a substrate wafer. The wafer is patterned to form a grid of spaced-apart islands, each of which is covered with an oxide layer. The oxide layer is then patterned and etched to create the Schottky barrier structure. This Schottky structure is responsible for the variable capacitance of the diode, which is determined by the applied voltage.

The GVD1213-001 is also designed to have low insertion losses, which is key to its performance in digital television applications. Its performance is also improved by its high breakdown voltage, which allows it to be used in high-voltage industrial and military applications. Additionally, the GVD1213-001 offers a wide operating temperature range, which makes it ideal for use in extreme environments.

Conclusion

In conclusion, the GVD1213-001 is a high-performance variable capacitance diode that is ideal for use in a variety of applications. Its wide operating temperature range, low insertion losses, and high breakdown voltage make it suitable for use in digital television, RF and IF applications, industrial and military applications, and more. Its use of the varicap principle provides a low-noise, high frequency signal with little distortion, making it an invaluable component in many modern electronics applications.

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

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