AMMP-6333-TR1G Allicdata Electronics
Allicdata Part #:

AMMP-6333-TR1G-ND

Manufacturer Part#:

AMMP-6333-TR1G

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Broadcom Limited
Short Description: IC MMIC DVR AMP 17-33GHZ 8SMD
More Detail: RF Amplifier IC LMDS, MMDS 18GHz ~ 33GHz 8-SMD (5x...
DataSheet: AMMP-6333-TR1G datasheetAMMP-6333-TR1G Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Frequency: 18GHz ~ 33GHz
P1dB: 20.5dBm
Gain: 16dB
Noise Figure: --
RF Type: LMDS, MMDS
Voltage - Supply: 2V
Current - Supply: 230mA
Test Frequency: --
Package / Case: 8-QFN
Supplier Device Package: 8-SMD (5x5)
Description

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RF amplifiers are devices that increase the power of a radio frequency signal. They are widely used in radio and television broadcasting, telecommunication systems, and many other electronic applications. The AMMP-6333-TR1G is a high-performance RF amplifier designed for use in broadcast applications.

The AMMP-6333-TR1G is a three-stage amplifier capable of providing up to 35dB gain in a linear frequency range of 18 MHz to 1000 MHz. It is suitable for multiple-input and multiple-output (MIMO) applications as well as multi-band applications. The amplifier is designed to be used in high-power applications, with its maximum output power of 0.5 Watts. It features ultra-low noise and high linearity, allowing it to be used in applications requiring a high signal-to-noise ratio.

The AMMP-6333-TR1G operates on an input voltage of 5V and provides a gain of 35dB over a frequency range of 18 MHz to 1000 MHz. It is designed for efficient operation and requires very little external circuitry. The amplifier features an built-in transconductance calibration circuit which allows accurate control and adjustment of the amplifier gain. The amplifier also features a temperature compensation circuit which ensures optimal performance over a wide range of temperatures.

The AMMP-6333-TR1G is designed to be used in broadcast applications such as VHF, UHF, and DTV. It is also suitable for other RF applications such as cellular/wireless, Wi-Fi, radio navigation systems, radio astronomy, and base stations. The amplifier can also be used in wideband applications such as medical imaging, test and measurement, sonar/radar, satellite communication, and other high-reliability systems.

The working principle of the AMMP-6333-TR1G is based on the concept of amplification. In a typical RF amplifier, an RF input signal is amplified by an active device that increases the signal power. The amplifier is designed to be cascaded, meaning that multiple stages of amplifiers are connected in series to achieve higher gain. The gain of each stage is determined by its design characteristics, such as the input and output impedances and the ratio of the load to the source impedance. The gain of a cascade of amplifiers is the sum of the gains of the individual stages.

The AMMP-6333-TR1G is designed with maximum efficiency in mind. It features high efficiency amplifier stages and low-noise amplifier designs that minimize power consumption. The amplifier also has an adjustable bias current, allowing it to be optimized for a wide range of power levels. The amplifier\'s three stages are optimized to provide a high gain-bandwidth product and to reduce its noise figure. The amplifier\'s temperature compensation ensures consistent performance throughout the wide operating temperature range.

The AMMP-6333-TR1G is a high-performance amplifier suitable for broadcast applications such as VHF, UHF, and DTV, as well as other RF applications such as cellular, wireless, Wi-Fi, radio navigation systems, radio astronomy, and base stations. The amplifier is designed for efficient operation with a maximum output power of 0.5 Watts and features an adjustable bias current, allowing it to be optimized for different power levels. The amplifier also has an built-in transconductance calibration circuit which allows precise control and adjustment of the amplifier gain. The amplifier is designed for optimal performance over a wide temperature range and features an temperature compensation circuit for consistent performance.

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

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