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

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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