RFVC2065 Allicdata Electronics
Allicdata Part #:

RFVC2065-ND

Manufacturer Part#:

RFVC2065

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: RFMD
Short Description: IC MMIC VCO BUFFERED AMP
More Detail: RF IC Module
DataSheet: RFVC2065 datasheetRFVC2065 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: *
Packaging: Tray 
Part Status: Obsolete
Package / Case: Module
Supplier Device Package: Module
Description

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RFVC2065 is an integrated circuit (IC) designed for radio frequency (RF) applications. It is part of a family of RF transceivers and other components designed for specific radio systems. The RFVC2065 is a component of the Radio Frequency Integrated Circuits (RFICs) category of integrated circuits. This IC is used in applications that require higher levels of RF functionality. It is also being used for applications that require higher levels of efficiency, power, miniaturization, cost and ease of implementation. It is an advanced IC for RF power management.

The RFVC2065 is a data-driven integrated circuit for radio frequency power management. It is designed to provide optimal power efficiency by providing the necessary power management capabilities for RF communication systems. With its integrated voltage controlled oscillator (VCO), it can regulate the power level of transmitted signals over a defined frequency range. It can also be used to adjust the bandwidth of received signals for optimal performance. It also has a highly integrated noise rejecting matching network which ensures that the desired signal is received and transmitted with minimal interference.

The RFVC2065 consists of a single integrated circuit package which contains the voltage control oscillator, power control circuitry, noise rejection circuitry and all other active components needed for RF power management. The circuit is powered by a 3.3 or 5.0 V DC source. It has several performance features such as low operating voltage, low power consumption, high accuracy of the power stage, low-noise design, and fast response time.

The main working principle of RFVC2065 is based on dual-stage power regulation. In the first stage, it uses its voltage control oscillator which operates as a Voltage Controlled Attenuator (VCA) to regulate the output power level of the RF signal. This attenuator then modulates the signal in order to obtain the desired power level. After the signal is modulated, it is then further filtered and buffered before being delivered to the transmitter. The second stage of power regulation takes place onboard the RFVC2065 in the form of a Current-Controlled Amplifier (CCA) which allows for further adjustments to the power level.

The RFVC2065 is mainly used in radio communication systems, especially for power management functions. It provides a compact and efficient solution for a variety of applications which require high levels of power efficiency and superb performance. Some of the main applications for RFVC2065 are cellular infrastructure, broadcast radio, satellite communication systems, wireless local area networks (WLANs), personal area networks (PANs), medical systems, telemetry systems, and other remote radio communication systems.

The RFVC2065 has been designed for use in highly optimized applications. It features an advanced architecture with integrated digital signal processing and noise rejection circuitry. Thanks to this architecture, the RFVC2065 can provide superior levels of power efficiency and RF performance. It is also capable of operating in a wide temperature range, which is ideal for a wide range of applications.

Overall, the RFVC2065 is an advanced IC which provides superior levels of power management and performance in radio frequency communication systems. With its integrated voltage controlled oscillator and power control circuitry, it can regulate the output power of transmitted signals and adjust the bandwidth of received signals for optimal performance. As such, it is an ideal solution for a range of applications which require high levels of power efficiency and performance.

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

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