Used in wearable and remote health monitoring devices, bioimpedance measurement is critical for evaluating hydration, body composition, respiration, and cardiac…
Used in wearable and remote health monitoring devices, bioimpedance measurement is critical for evaluating hydration, body composition, respiration, and cardiac function, but traditional single-frequency methods limit accuracy and flexibility. This white paper from Analog Devices presents the MAX30009, which uses a configurable sinusoidal sweep stimulus and quadrature demodulation to accurately measure impedance magnitude and phase across a wide frequency range while enabling synchronization with ECG and PPG sensors.
Download Free Infineon Application Brochure on Medical Writ-worn Devices!
Download Free Infineon Application Brochure on Medical Writ-worn Devices!
Sensors are a machine’s interface into our world. Download this white paper to learn how advancements are enabling new…
Sensors are a machine’s interface into our world. Download this white paper to learn how advancements are enabling new applications, increasing automation and productivity.
Explore the potential for analog computing to revolutionize the energy landscape for AI systems and present technical…
Explore the potential for analog computing to revolutionize the energy landscape for AI systems and present technical considerations for implementing analog MAC operations using a novel Neuromorphic Analog Signal Processing (NASP) technology.
Wearable devices redefine health, fitness, and connectivity in our daily lives. At Hirose, we're at the forefront,…
Wearable devices redefine health, fitness, and connectivity in our daily lives. At Hirose, we're at the forefront, providing advanced connector solutions for the evolving wearable landscape. Explore our eBook or recent articles to learn more about the future we're shaping, one connection at a time.
Learn about Molex's flexible printed circuit (FPC or Flex) solutions.
Learn about Molex's flexible printed circuit (FPC or Flex) solutions.
This application note discusses why accurate battery drain measurements are critical to achieving the long battery life…
This application note discusses why accurate battery drain measurements are critical to achieving the long battery life customers expect. It also demonstrates how engineers can get convenient, fast, and accurate results that properly characterize battery drain on IoT devices.
Learn the fundamentals of SpO₂ measurement and how a new generation of optical analog front ends (AFEs) can help create…
Learn the fundamentals of SpO₂ measurement and how a new generation of optical analog front ends (AFEs) can help create a better oximeter.
This application note is about creating your own battery model for the R&S®NGM200, beyond the standard models provided…
This application note is about creating your own battery model for the R&S®NGM200, beyond the standard models provided within the battery simulation option NGM-K106.
5G capabilities cover many different applications, standards, and capabilities. Enhanced mobile broadband (eMBB),…
5G capabilities cover many different applications, standards, and capabilities. Enhanced mobile broadband (eMBB), massive machine type communications (mMTC), and ultra-reliable low latency communications (URLLC) all contribute to the extended coverage and never-before-seen reliability with unparalleled accessibility.
More and more devices are battery powered or need to have low power consumption for other reasons. In order to minimize…
More and more devices are battery powered or need to have low power consumption for other reasons. In order to minimize your electronic device’s power consumption, you need to know the exact current profile. The R&S®NGM200 power supply series provides this information.
Wearable electronic devices have entered the mainstream, and yet there is still great potential for further expansion in…
Wearable electronic devices have entered the mainstream, and yet there is still great potential for further expansion in both the consumer and medical markets. Growth in wearable devices can be attributed to advancements in wireless networks, antenna technology, and the miniaturization of rugged and reliable components.