The AWR1243FBIGABLQ1 is a high-frequency, high-linearity power amplifier from Texas Instruments. It is designed for use in wireless communication systems, including cellular base stations, point-to-point microwave links, and radar systems.
Description:
The AWR1243FBIGABLQ1 is a gallium nitride (GaN) power amplifier that operates over a frequency range of 1.7 to 2.2 GHz. It is available in a 12 mm x 12 mm, 48-pin Quad Flat No-Lead (QFN) package.
Features:
- High output power: The AWR1243FBIGABLQ1 can deliver up to 40 watts of output power, making it suitable for high-power applications.
- High linearity: The amplifier has a high third-order intercept point (IP3) of +57 dBm, which helps to minimize distortion and improve signal quality.
- High efficiency: The AWR1243FBIGABLQ1 has a high power-added efficiency (PAE) of up to 50%, which helps to reduce power consumption and improve the overall efficiency of the system.
- Wide bandwidth: The amplifier has a wide bandwidth of 500 MHz, which makes it suitable for use in a variety of wireless communication systems.
- Integrated features: The AWR1243FBIGABLQ1 includes integrated features such as a power detector, temperature sensor, and fault reporting, which help to improve system reliability and ease of use.
Applications:
The AWR1243FBIGABLQ1 is suitable for use in a variety of wireless communication systems, including:
- Cellular base stations: The high output power and high efficiency of the AWR1243FBIGABLQ1 make it well-suited for use in cellular base stations, where high power and efficiency are critical.
- Point-to-point microwave links: The wide bandwidth and high linearity of the AWR1243FBIGABLQ1 make it suitable for use in point-to-point microwave links, where signal quality and reliability are important.
- Radar systems: The high output power and high efficiency of the AWR1243FBIGABLQ1 make it suitable for use in radar systems, where high power and efficiency are critical.
Overall, the AWR1243FBIGABLQ1 is a high-performance power amplifier that offers high output power, high linearity, and high efficiency in a compact package, making it suitable for use in a variety of wireless communication systems.