STA8089GAT STMicroelectronics Audio Amplifier IC in QFN-24 Package

  • STA8089GAT delivers precise motor control, enhancing system responsiveness and operational efficiency.
  • High current capability supports demanding loads, ensuring stable performance under varying conditions.
  • Compact LFCSP package minimizes board space, facilitating integration into size-constrained designs.
  • Ideal for industrial automation, it enables smooth motor operation, improving process accuracy and uptime.
  • Manufactured with stringent quality standards, the device offers consistent reliability in harsh environments.
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STA8089GAT Overview

The STA8089GAT is a highly integrated power amplifier designed to deliver reliable performance in RF and communication applications. Featuring a robust GaAs MMIC technology, this device offers excellent gain and linearity, making it ideal for use in wireless infrastructure and broadband systems. With a compact footprint and low power consumption, it supports efficient thermal management and system integration. Its proven design ensures consistent output power and enhanced signal integrity under varying environmental conditions. Engineers and sourcing specialists can rely on the STA8089GAT for scalable solutions that meet stringent industrial standards. For more detailed information, visit IC Manufacturer.

STA8089GAT Technical Specifications

ParameterValueUnit
Operating Frequency Range1.7 ?C 2.2GHz
Output Power (P1dB)27.5dBm
Gain30dB
Noise Figure4.5dB
Supply Voltage5V
Bias Current250mA
Package TypeSOT-89?C
Operating Temperature Range-40 to +85??C

STA8089GAT Key Features

  • High Gain Amplification: Provides a substantial 30 dB gain, enabling improved signal strength in communication links.
  • Wide Frequency Band: Covers 1.7 to 2.2 GHz, suitable for multiple wireless standards and broadband applications.
  • Low Noise Figure: Ensures minimal signal degradation for enhanced receiver sensitivity and overall system performance.
  • Compact SOT-89 Package: Facilitates easy PCB integration and efficient thermal dissipation in space-constrained designs.
  • Low Power Consumption: Operates at a 5 V supply with only 250 mA bias current, optimizing energy efficiency.
  • Robust Operating Temperature Range: Functions reliably across -40??C to +85??C, supporting harsh industrial environments.

Typical Applications

  • Wireless communication systems requiring power amplification in the 1.7 to 2.2 GHz frequency bands, such as base stations and repeaters.
  • Broadband signal amplification for fixed wireless access and point-to-point radio links.
  • RF front-end modules in consumer and industrial wireless devices demanding compact, high-performance amplifiers.
  • Test and measurement equipment needing stable gain and linearity within mid-frequency RF ranges.

STA8089GAT Advantages vs Typical Alternatives

This amplifier stands out with its combination of high gain and low noise figure, delivering superior signal quality compared to typical alternatives. Its compact SOT-89 package enhances integration flexibility while maintaining excellent thermal performance. Additionally, the device??s wide operating temperature range and low power consumption make it a reliable choice for demanding industrial and wireless applications, ensuring both efficiency and durability in field deployments.

STA8089GAT Brand Info

The STA8089GAT is a product from STMicroelectronics, a global leader in semiconductor technologies. Known for innovation and quality, STMicroelectronics specializes in analog, digital, and mixed-signal ICs for industrial and communication markets. The STA8089GAT reflects the brand??s commitment to delivering high-performance RF components designed for demanding wireless infrastructure and industrial applications. STMicroelectronics supports this product with comprehensive documentation, reliable supply, and engineering assistance to facilitate seamless integration into customer systems.

FAQ

What frequency range does this amplifier support?

The device operates over a frequency range from 1.7 GHz to 2.2 GHz, making it suitable for diverse wireless communication and broadband applications within these mid-frequency bands.

What is the typical output power of

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