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- W1965135033 abstract "Extreme energy constraints inherent in many exciting new wireless sensing applications (such as [1-3]) virtually dictate that such systems operate with extremely low duty cycles, harvesting and storing energy over long periods of time before waking up to perform brief measurement and communication tasks. However, such duty cycling only works if the sleep power of the system is less than the average power available from the power source, which may only be as much as a few nA. In this work, we present an RF transmitter designed to operate in an extremely-low-duty-cycle industrial monitoring system. The primary challenges are achieving high efficiency in the active mode while transmitting as high as +10dBm and simultaneously minimizing the leakage during the sleep mode. We address these in a +10dBm Bluetooth Low Energy (BLE) transmitter test-chip through 1) low voltage design (0.68V) for switching power and short-circuit power reduction, 2) extensive power gating of unused blocks and 3) a negative-V GS biasing technique for PA leakage reduction without affecting its on-performance." @default.
- W1965135033 created "2016-06-24" @default.
- W1965135033 creator A5046289258 @default.
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- W1965135033 date "2015-02-01" @default.
- W1965135033 modified "2023-10-14" @default.
- W1965135033 title "13.7 A +10dBm 2.4GHz transmitter with sub-400pW leakage and 43.7% system efficiency" @default.
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- W1965135033 doi "https://doi.org/10.1109/isscc.2015.7063018" @default.
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