ALM-32120-TR2G Allicdata Electronics
Allicdata Part #:

ALM-32120-TR2G-ND

Manufacturer Part#:

ALM-32120-TR2G

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Broadcom Limited
Short Description: IC AMP 2W PA 900MHZ 20MCOB
More Detail: RF Amplifier IC GSM, PCS, W-CDMA, WiMAX 700MHz ~ 1...
DataSheet: ALM-32120-TR2G datasheetALM-32120-TR2G Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Frequency: 700MHz ~ 1GHz
P1dB: 34.4dBm
Gain: 14.3dB
Noise Figure: 2.5dB
RF Type: GSM, PCS, W-CDMA, WiMAX
Voltage - Supply: 5V
Current - Supply: 1.5A
Test Frequency: 900MHz
Package / Case: 20-SMD Module, No Lead
Supplier Device Package: 20-MCOB (7x10)
Description

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RF Amplifiers

The ALM-32120-TR2G is a RF amplifier that offers low power consumption, high linearity, and wide frequency range. It is designed for application in a variety of radio frequency products such as digital video and voice links, communications systems, radar systems, and other RF systems. It is suitable for applications that require high mid-band gain, high gain linearity, and wide frequency range.

The ALM-32120-TR2G feature ultra low power consumption, wide frequency range from 30 MHz up to 4 GHz, up to 21.8dB gain, and single positive power supply. With these features it can provide excellent performance in various RF applications.

Working Principle

The ALM-32120-TR2G is an amplifier that utilizes a switching technique to achieve a high linearity with minimal current consumption. The switching technique is based on the switching of the input signal in order to achieve a high linearity and low power consumption. The input signal is divided into two halves, and then switched off or switched on depending on the inputs. This is done in order to balance the input and output of the amplifier. This switching technique reduces the current consumption to minimal levels and allows for higher order linearity.

In the ALM-32120-TR2G, the input signal is first divided into two halves, and then each half is separately fed into the differential amplifier. The differential amplifier then amplifies both signals separately and adds them together in order to generate the output signal. This technique enables the amplifier to achieve a high degree of linearity with minimal current consumption. Moreover, the amplifier can also work over a wide frequency range from 30 MHz to 4 GHz.

Application Fields

The ALM-32120-TR2G is ideal for a wide range of RF applications. The amplifier is suitable for applications such as digital video and voice links, communications systems, radar systems, and other RF systems. With its low power consumption, wide frequency range, and high gain linearity, it can provide excellent performance for various RF applications. It is also ideal for antenna systems, opto-electronic systems, and digital modulators.

The ALM-32120-TR2G is also suitable for use in automotive applications, such as TV and radio broadcast, cellular and WLAN systems. Due to its high gain linearity and low power consumption, this amplifier can improve the performance of on-board radio equipment while also conserving battery power. It is also suitable for use in base transceiver stations, air interface transceivers, and signal processing systems.

In addition, the amplifier can also be used in medical applications, such as in patient monitoring and imaging systems. The amplifier is capable of providing excellent signal processing for medical applications, such as MRI, ultrasound, and CAT scans. Its wide frequency range allows it to work with different technological advances in medical imaging systems.

Conclusion

The ALM-32120-TR2G is an RF amplifier that offers low power consumption, high linearity, and wide frequency range, making it ideal for a variety of radio frequency applications. With its unique switching technique, the amplifier can provide excellent performance and power efficiency in various applications. Its wide frequency range and high linearity make it suitable for automotive, medical, and other RF applications.

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

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