Allicdata Part #: | RF9830-ND |
Manufacturer Part#: |
RF9830 |
Price: | $ 0.00 |
Product Category: | RF/IF and RFID |
Manufacturer: | RFMD |
Short Description: | IC AMP |
More Detail: | RF Amplifier IC GSM, GPRS Module |
DataSheet: | RF9830 Datasheet/PDF |
Quantity: | 1000 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Obsolete |
P1dB: | 33dBm |
Gain: | -- |
Noise Figure: | -- |
RF Type: | GSM, GPRS |
Voltage - Supply: | 3.5V |
Current - Supply: | -- |
Test Frequency: | 1.3GHz |
Package / Case: | Module |
Supplier Device Package: | Module |
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RF9830 is a high-power, wideband radio frequency amplifiers. The device is capable of amplifying signals in bands ranging from 800 MHz to 2.5GHz frequencies with a high linearity of up to 50 W (PEP) output. The device is ideal for applications such as continuous wave, digital modulation, wideband and broadband applications, as well as communications protocols such as WCDMA, CDMA2000 and GSM.
The RF9830 range of high-power radio frequency amplifiers is distinguished by its high efficiency with low losses and linear operation. The RF9830 range of amplifiers provides a wideband response and excellent heat dissipation and temperature stability.
The RF9830 radio frequency amplifier is based on a switching technology that provides a highly linear and powerful output signal. It has a high switching frequency and can be used in applications up to 20MHz. The RF9830 is suitable for applications requiring a high insertion loss, such as long-distance communications, as well as for applications requiring a low power consumption, such as cellular networks or other power constrained environments.
The RF9830 amplifier uses a switching technology to provide high-efficiency with superior linearity. The amplifier has a current-mode pulse-width modulation (PWM) architecture and utilizes high-frequency packaging technology that maximizes performance while minimizing size and cost. The switching devices employed in the RF9830 amplifier use MOSFETs configured in half-bridge circuit topology. MOSFETs with a low resistance are used to provide the required linearity for high-performance amplifiers.
The RF9830 amplifier also utilizes the latest technologies to optimize performance. These include high-speed pin diode technology for improved isolation, reduced distortion, and improved power conversion efficiency as well as a digital error contact-based control system for better accuracy and compensation.
The RF9830 amplifier can be used in various applications. It is suitable for cellular base station applications such as CDMA, PCS and GPRS, as well as for wireless communications and broadcast operations. The device is also suitable for applications such as satellite communications, radar, and SATCOM. In addition, the RF9830 amplifier is also suitable for medical uses, broadcast, remote sensing, and surveillance.
The working principle of the RF9830 radio frequency amplifier is based on the gain of the amplifier. The amplifier uses an input signal to actuate the operating principle. The input signal is amplified by a power amplifier, which increases the volume of the output signal. This signal is then compared to the reference signal generated by the amplifier to determine if the output is appropriate. If the desired output is not achieved, the amplifier is adjusted accordingly. This feedback loop helps the amplifier to produce the desired linear output.
The RF9830 amplifier is also equipped with filters for frequency selectivity and switching control for power control. These features help prevent the amplifier from generating excessive noise, distortion, or gain. In addition, the amplifier also has temperature monitoring circuits for temperature stability. These features help ensure absolute safety and reliable operation of the amplifier.
Overall, the RF9830 range of high-power radio frequency amplifiers is a reliable, high-efficiency solutions for a wide range of radio-frequency applications. The amplifier uses advanced technologies to provide superior linearity and power efficiency for applications ranging from cellular base station to satellite communications. It provides excellent temperature stability and low loss operations with low power consumption, making it an ideal solution for all kinds of radio-frequency applications.
The specific data is subject to PDF, and the above content is for reference
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