As in the present era use of wireless networks is increasing day by day and the electrical devices are getting smaller; both factors expand the research area of Wireless Body Area Networks(WBAN).The devices used in WBAN can record various physiological parameters like the body temperature, the BP or to take ECG, EEG, etc. With the use of WBAN, a patient experiences a greater physical mobility. The patients need not stay longer in the hospital as WBANs are placed on the human body and often transport private data; Security is considered as an important issue. It will in turn increase the quality of patient care and the productivity of hospital staff. Field of Wireless Body Area Networks comes up as a major research area in past few years as it is beneficial in health monitoring even in remote areas and patient's care can be done in real time. However, if the security of patient's data is concerned with WBANs, design issues should be taken care of. In the present paper, a short review on various aspects of Wireless Body area Network, various implementation techniques and MAC protocols are discussed. The technique which is best suited to the user is also presented.
This paper discuss designing of low power, high-speed 10-Transistor (10T) SRAM and analysis of SRAM cell in Metal Oxide Semiconductor Field Effect Transistor (MOSFET) and FinFET technology. MOSFET is used widely in many areas, but below 40 nm technology control of channel region becomes extremely difficult. So there is a necessity for new innovative technology which allows designers to design below 40nm technology and can offer excellent control over gate thus reducing short channel effects. The designing of SRAM is analyzed using TANNER EDA tool and Microwind.
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