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AFE5812ZCF +BOM

Revolutionize ultrasound imaging with precise analog front end technology

AFE5812ZCF General Description

The AFE5812ZCF represents a major breakthrough in analog front-end (AFE) technology, specifically tailored for ultrasound systems that demand both exceptional performance and a compact footprint. This highly-integrated AFE solution features a complete time-gain-control (TGC) imaging path and a CWD path, with the added flexibility of selecting from various power/noise combinations to optimize system performance. This adaptability makes the AFE5812 an ideal choice for a wide range of ultrasound applications, from high-end systems to portable ones. With the inclusion of eight channels of voltage controlled amplifier (VCA), 14 and 12-bit ADC, and CW mixer, the AFE5812 offers a comprehensive solution with programmable gain options and low-pass filtering to support different ultrasound frequencies. Additionally, the AFE5812 integrates a low-power passive mixer and summing amplifier for on-chip CWD beamforming, featuring 16 selectable phase-delays and third- and fifth-order harmonic suppression for enhanced sensitivity. The AFE5812 also incorporates a digital in-phase and quadrature demodulator and low-pass decimation filter to reduce data rate and improve power efficiency, while maintaining high resolution output. With a compact 15-mm × 9-mm, 135-pin BGA package and a wide operating temperature range from -40°C to 85°C, the AFE5812 sets a new standard for ultrasound AFE solutions

Texas Instruments, Inc Inventory

Key Features

  • Linear Phase LPF Filter Options
  • Low Power Consumption and Noise Immunity
  • Programmable Digital Filtering Coefficients
Texas Instruments, Inc Original Stock
Texas Instruments, Inc Inventory

Specifications

Device type Receiver Number of input channels 8
Active supply current (typ) (mA) 75 Supply voltage (max) (V) 3.6
Operating temperature range (°C) -40 to 85 Interface type LVDS
Features Analog Front End (AFE) Rating Catalog
Pin Count 135 Released Date Dec 10, 2021
Last Modified Date Mar 7, 2023 4:10 PM UTC

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