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- W2608142019 abstract "According to the World Health Organization's 2008 report, the top three leading causes of death worldwide are coronary heart disease, cerebrovascular diseases, and lower respiratory infections. Governments and biomedical companies are pouring millions of dollars into research and development to find solutions for these diseases, and technological platforms to support disease management. Wireless biosensors are one such platform, with their ability to measure and communicate parameters that indicate the presence, or onset, of pathology. According to the report from Wearable World, the wearable market for mobile health applications and associated devices will grow at a compound annual growth rate of 61% to reaching $26 billion in revenue by 2017. By any yardstick, this is an explosive trajectory. Yet, the development of wireless biosensors faces huge challenges. So far there are no satisfactory solutions for reliable real-time monitoring of vital signs such as electrocardiogram, blood pressure and, oxygen saturation, not to mention other important parameters such as cardiac output, vessel level flow, glucose, or drug levels to name but a few. This tutorial will cover several topics related to challenges in the design of self-powered wearable wireless biomedical sensor chip including regulatory requirements, skin-electrode interface, design considerations of analog frontend, ADC, signal processing, and wireless transceiver. The focus is on the development of self-powered wearable wireless biomedical sensor SoC, low power techniques and system architecture. Design example, such as self-powered wearable ECG sensor, will be discussed in detail." @default.
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- W2608142019 date "2016-09-01" @default.
- W2608142019 modified "2023-09-27" @default.
- W2608142019 title "Tutorial 3B: The design challenges for self-powered wireless wearable ECG sensor SoC" @default.
- W2608142019 doi "https://doi.org/10.1109/socc.2016.7905412" @default.
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