RF3867TR7 Allicdata Electronics
Allicdata Part #:

RF3867TR7-ND

Manufacturer Part#:

RF3867TR7

Price: $ 2.81
Product Category:

RF/IF and RFID

Manufacturer: RFMD
Short Description: IC AMP LOW-NOISE DUAL-CH 20-QFN
More Detail: RF Amplifier IC Cellular, CDMA, PCS, DCS, UMTS, WL...
DataSheet: RF3867TR7 datasheetRF3867TR7 Datasheet/PDF
Quantity: 1000
750 +: $ 2.55780
Stock 1000Can Ship Immediately
$ 2.81
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Frequency: 700MHz ~ 3.8GHz
P1dB: 21dBm
Gain: 10dB
Noise Figure: 0.8dB
RF Type: Cellular, CDMA, PCS, DCS, UMTS, WLAN, 802.16/WiMax
Voltage - Supply: 2.5 V ~ 6 V
Current - Supply: 180mA
Test Frequency: 3.3GHz ~ 3.8GHz
Package / Case: 20-VFQFN Exposed Pad
Supplier Device Package: 20-QFN (5x5)
Description

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RF Amplifiers are a type of power amplifier used for wireless radio frequency (RF) signals. The RF3867TR7 is one such amplifier used for a variety of applications, ranging from satellite communication to cell phones. The RF3867TR7 is a power amplifier that uses a radio frequency signal as an input to generate a high-power output.

The RF3867TR7 is a wideband amplifier designed for use in both receive and transmit sections of a wireless transmitting or receiving system. It covers the UHF, VHF, and multiplexing bands, and is designed to provide a higher level of power with less noise and distortion. The RF3867TR7 provides linearity and low noise figure, making it an ideal choice for many communication applications.

The RF3867TR7 amplifier is capable of providing up to 25dB gain over its operating bandwidth. It works by amplifying an RF signal from a low power level to a higher power level. This is accomplished by using a radio frequency (RF) amplifier circuit that amplifies the low-power input signal. The amplifier also filters out unwanted noise and spurious signals, ensuring that only desired signals are transmitted or received. The output power can be adjusted using gain control, providing improved performance in a wide range of applications.

The RF3867TR7 amplifier is also designed with a high linearity, which is important for maintaining signal quality over long distances. The amplifier is able to maintain linearity even when the input signal is at a high level or has high frequency harmonics. This design feature helps to reduce the effect of intermodulation distortion, which is common in many applications. It also minimizes the effect of external interfering signals, allowing for clear and error-free transmissions.

In addition to providing good linearity and low noise figure, the RF3867TR7 amplifier provides excellent gain stability and power efficiency. The amplifier features temperature protection and protection against voltage fluctuations, allowing it to withstand high temperature and input voltage changes. In addition, the amplifier is designed for low EMI (Electromagnetic Interference) emissions, making it suitable for use in a wide variety of applications that require low levels of interference.

The RF3867TR7 amplifier is designed for use in both commercial and government applications. It is used in satellite communications, radio systems, wireless repeaters, cellular networks, broadcast receivers, and more. With its wideband design, the amplifier is suitable for use in both mobile and stationary applications. The amplifier is also used in high-power transmitters used for long-distance communication, where high-power levels and stability are essential for reliable operation.

Overall, the RF3867TR7 is an excellent choice for a wide range of applications requiring high-powered amplification and linearity. The amplifier provides high power gain and low noise figure, as well as low EMI levels, making it ideal for a variety of applications. With its temperature protection and voltage protection, the amplifier provides excellent performance even under difficult conditions, making it an ideal choice for applications ranging from satellite communications to cellphones.

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

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