A2I20D020NR1 Allicdata Electronics
Allicdata Part #:

A2I20D020NR1-ND

Manufacturer Part#:

A2I20D020NR1

Price: $ 19.94
Product Category:

RF/IF and RFID

Manufacturer: NXP USA Inc
Short Description: AF7IC 2GHZ 20W TO270WB17
More Detail: RF Amplifier IC W-CDMA 1.4GHz ~ 2.2GHz TO-270WB-17
DataSheet: A2I20D020NR1 datasheetA2I20D020NR1 Datasheet/PDF
Quantity: 1000
500 +: $ 18.12330
Stock 1000Can Ship Immediately
$ 19.94
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Frequency: 1.4GHz ~ 2.2GHz
P1dB: --
Gain: 35dB
Noise Figure: --
RF Type: W-CDMA
Voltage - Supply: 28V
Current - Supply: --
Test Frequency: 2.2GHz
Package / Case: TO-270-17 Variant, Flat Leads
Supplier Device Package: TO-270WB-17
Description

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Radio-frequency (RF) amplifiers are an essential component of modern electrical systems. A2I20D020NR1 amplifiers are an example of the advancements in the field of RF amplifiers. With their high efficiency and low noise performance, these amplifiers can provide reliable signal amplification in a variety of applications. In this article, we will discuss the application fields and working principles of the A2I20D020NR1 amplifier.

Application Fields of A2I20D020NR1 Amplifier

Due to its low noise and high efficiency, A2I20D020NR1 amplifiers find use in a number of applications. These amplifiers are particularly popular for radar systems, satellite communication systems, radio transceivers, cable TV systems, and cellular telephone systems. Additionally, A2I20D020NR1 amplifiers are frequently employed in instrumentation systems, medical imaging systems, and military systems.

Working Principle of A2I20D020NR1 Amplifier

The working principle of A2I20D020NR1 amplifiers is based on the principles of RF engineering. The basic components of an A2I20D020NR1 amplifier are an input stage, an output stage, and a power supply. The input stage of the amplifier is used to receive the input signal from the source, while the output stage is used to amplify the signal. A power supply is also needed to power the amplifier.

In order to amplify the signal, the amplifier utilizes a three-stage process. The first stage is the input stage, which is responsible for converting the input signal into electric current. The current then passes through the second stage, which is the amplifier\'s output stage. Here, the current is amplified to the desired level. Lastly, the power supply is used to provide the necessary electrical power to keep the amplifier running.

The A2I20D020NR1 amplifier has a typical efficiency of 90%, which means that it can provide maximum signal gain without wasting significant amounts of energy. The amplifier also has a low noise level, which is important for any RF system since the slightest bit of noise can interfere with the signal. Additionally, the amplifier is designed to handle high frequencies, making it well-suited for applications such as satellite communication systems and radio transceivers.

Conclusion

A2I20D020NR1 amplifiers offer many advantages over other types of RF amplifiers. These amplifiers are designed to handle high frequencies while providing low noise operation. Their high efficiency ensures maximum signal gain without wasting energy. Additionally, these amplifiers can be used in a variety of applications, including radar systems, satellite communication systems, radio transceivers, cable TV systems, and cellular telephone systems. By understanding the application fields and working principles of the A2I20D020NR1 amplifier, engineers can better utilize these devices in their projects.

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

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