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Ultrasound AFE ICs from Maxim provide breakthrough levels of performance for high channel count, cart based and portable ultrasound imaging systems. Our completely integrated ultrasound transceivers, receivers and transmitters save power, increase reliability, speed design time, and reduce board space by replacing thousands of discrete components normally required for ultrasound AFE designs.

Maxim's high-speed analog front-end (HS AFE) ICs combine high-speed and low-speed data converters in a single device to help meet size, cost, and power targets for mobile products. Our high-speed AFEs are optimized for high dynamic performance and ultra-low power, and are ideal for wideband communication applications operating in full-duplex (FD) or half-duplex (HD) mode. Our high-speed AFEs will help you achieve fast time to market with low initial investment and proven capability.

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Latest Blogs

Why Does It Take a Pandemic to Realize the Value of Remote Patient Monitoring?

April 21, 2020

As the COVID-19 pandemic impacts lives around the world, now is a prime time to consider the advantages of remote patient monitoring via wearables.

Got a Wearable Health Design Idea? Here’s How to Make It Accurate

July 10, 2018

MAX-HEALTH-BAND and MAX-ECG-MONITOR reduce prototyping time for creating heart-rate monitoring wearables by up to six months.

3 Cool Technologies for Virtual Healthcare

August 31, 2017

Using Maxim ICs, three health tech companies have created tools that support preventive and personalized care.

Achieving Fast, Accurate Fault Detection on Smart Electricity Grid

November 22, 2016

Maxim’s MAXREFDES38# reference design is a current fault sensor that can provide faster, more accurate fault detection on smart electricity grids.

Featured Products

MAX2082 Low-Power, High-Performance Octal Ultrasound Transceiver with Integrated AFE, Pulser, T/R Switch, and CWD Beamformer
The MAX2082 is the industry’s first fully integrated octal ultrasound transceiver. The device is...
MAX2088 16-Channel, High-Performance, Low-Power, Fully-Integrated Ultrasound Receiver
The MAX2088 is a highly integrated 16-channel ultrasound receiver optimized for high channel cou...
MAX19713 10-Bit, 45Msps, Full-Duplex, Analog Front-End
The MAX19713 is an ultra-low-power, highly integrated mixed-signal analog front-end (AFE) ideal ...
MAX30003 Ultra-Low Power, Single-Channel Integrated Biopotential (ECG, R to R Detection) AFE
The MAX30003 is a complete, biopotential, analog front-end solution for wearable applications. I...
MAX2078 Octal-Channel Ultrasound Front-End with CW Doppler Mixers
The MAX2078 octal-channel ultrasound front-end is a fully integrated bipolar, high-density octal...
MAX2077 Octal-Channel Ultrasound Front-End
The MAX2077 octal-channel ultrasound front-end is a fully integrated, bipolar, high-density, oct...
MAX2081 Full Octal Ultrasound Receiver with Integrated T/R Switch
The MAX2081 is a fully integrated octal ultrasound receiver optimized for high-channel-count, hi...
MAX30110 Optimized Pulse-Oximeter and Heart Rate AFE for Wearable Health
The MAX30110 is a complete optical pulse oximetry and heart rate detection integrated analog fro...
MAX30004 Ultra-Low Power, Single-Channel Integrated Biopotential HR Detection AFE
The MAX30004 is a complete, biopotential, HR detection analog front-end solution for wearable ap...
MAX19707 10-Bit, 45Msps, Ultra-Low-Power Analog Front-End
The MAX19707 is an ultra-low-power, mixed-signal analog front-end (AFE) designed for power-sensi...
MAX19712 10-Bit, 22Msps, Full-Duplex, Analog Front-End
The MAX19712 is an ultra-low-power, highly integrated mixed-signal analog front-end (AFE) ideal ...
MAX19710 10-Bit, 7.5Msps, Full-Duplex, Analog Front-End
The MAX19710 is an ultra-low-power, highly integrated mixed-signal analog front-end (AFE) ideal ...
MAX19711 10-Bit, 11Msps, Full-Duplex, Analog Front-End
The MAX19711 is an ultra-low-power, highly integrated mixed-signal analog front-end (AFE) ideal ...
MAX19706 10-Bit, 22Msps, Ultra-Low-Power Analog Front-End
The MAX19706 is an ultra-low-power, mixed-signal analog front-end (AFE) designed for power-sensi...
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