Question: Question 11 Each component on the sensor node consumes power measured in Ampere (A, current) or milli Ampere (mA) as shown in the table below:


Question 11 Each component on the sensor node consumes power measured in Ampere (A, current) or milli Ampere (mA) as shown in the table below: Component Microcontroller (TI MSP430) Current Draw RF Transceiver (CC2420) Accelerometer (ADXL345) Mode Active Sleep Receive Transmit (at 0 dBm) Sleep Standby Active Write Read Sleep Sense Sleep 1.8 mA 5.1 A 19.7 mA 17.4 mA 0.01 mA 0.0001 MA 0.04 -0.145 mA 15 mA 4 mA 0.001 mA 0.015 ma 0.001 mA Extemalah (Micron M25P16) Temperature sensor (TMP102) Comide a carto, ubes the test modela woding in cycles Every cycle, the cope working with the following time percentages Radio 10%, 15, 75% sleep Microcemo 10%90% Tp 15%, 25% sleep The other components are in active Congo Dention of ce cycle with logh I recond Cepat call of the descondering the battery capacity 500 DAH LI-ion, 3.7V. Ceputeteal by capacity and by LH 3.7 V line for years Woodside baru? For Toolbar pas AT10 (PC) O ALTON 10 M) Paragraph Ara Question 11 Each component on the sensor node consumes power measured in Ampere (A, current) or milli Ampere (mA) as shown in the table below: Component Microcontroller (TI MSP430) Current Draw RP Transceiver (CC2420) Accelerometer (ADXL345) Mode Active Sleep Receive Transmit (at 0 dBm) Sleep Standby Active Write Read Sleep Sense Sleep 1.8 mA 5.1 A 19.7 mA 17.4 mA 0.01 mA 0.0001 mA 0.04 -0.145 mA 15 mA 4 mA 0.001 mA Extemal flash (Micron M25P16) Temperature sensor (TMP102) 0.015 mA 0.001 mA Counder a scenario, where the sensor node is working in cycles. Every cycle, the components are working with the following time percentages: Radio 10% send, 13% receive, 75% sleep Microcontroller. 109 active, 9096 sleep Temperature sensor: 15% sense, 85% sleep The other components are always sleeping inactive Compute the EY consumption of one cycle with length 1 second Compute te theoretical lifetime of the sensor rodes, considering the battery capacity of 500 MAH, Li-Ion, 3.7V. Compute the theoretical battery capacity considering the battery Li-Ion, 3.7V to live for 1 years How many loss is the battery ty? For the toolbar, press ALT F10 (PC O ALT+FN+F10 (Mac). BIDS Paragraph Arial Question 11 Each component on the sensor node consumes power measured in Ampere (A, current) or milli Ampere (mA) as shown in the table below: Component Microcontroller (TI MSP430) Current Draw RF Transceiver (CC2420) Accelerometer (ADXL345) Mode Active Sleep Receive Transmit (at 0 dBm) Sleep Standby Active Write Read Sleep Sense Sleep 1.8 mA 5.1 A 19.7 mA 17.4 mA 0.01 mA 0.0001 MA 0.04 -0.145 mA 15 mA 4 mA 0.001 mA 0.015 ma 0.001 mA Extemalah (Micron M25P16) Temperature sensor (TMP102) Comide a carto, ubes the test modela woding in cycles Every cycle, the cope working with the following time percentages Radio 10%, 15, 75% sleep Microcemo 10%90% Tp 15%, 25% sleep The other components are in active Congo Dention of ce cycle with logh I recond Cepat call of the descondering the battery capacity 500 DAH LI-ion, 3.7V. Ceputeteal by capacity and by LH 3.7 V line for years Woodside baru? For Toolbar pas AT10 (PC) O ALTON 10 M) Paragraph Ara Question 11 Each component on the sensor node consumes power measured in Ampere (A, current) or milli Ampere (mA) as shown in the table below: Component Microcontroller (TI MSP430) Current Draw RP Transceiver (CC2420) Accelerometer (ADXL345) Mode Active Sleep Receive Transmit (at 0 dBm) Sleep Standby Active Write Read Sleep Sense Sleep 1.8 mA 5.1 A 19.7 mA 17.4 mA 0.01 mA 0.0001 mA 0.04 -0.145 mA 15 mA 4 mA 0.001 mA Extemal flash (Micron M25P16) Temperature sensor (TMP102) 0.015 mA 0.001 mA Counder a scenario, where the sensor node is working in cycles. Every cycle, the components are working with the following time percentages: Radio 10% send, 13% receive, 75% sleep Microcontroller. 109 active, 9096 sleep Temperature sensor: 15% sense, 85% sleep The other components are always sleeping inactive Compute the EY consumption of one cycle with length 1 second Compute te theoretical lifetime of the sensor rodes, considering the battery capacity of 500 MAH, Li-Ion, 3.7V. Compute the theoretical battery capacity considering the battery Li-Ion, 3.7V to live for 1 years How many loss is the battery ty? For the toolbar, press ALT F10 (PC O ALT+FN+F10 (Mac). BIDS Paragraph Arial
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