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Demo: In-situ Power Consumption Meter for Sensor Networks supporting Extreme Dynamic Range.

, , , , , and . WiNTECH@MobiCom, page 97-98. ACM, (2017)

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Demo: LoRa Mesh Network Experimentation in a City-Wide Testbed., , , , and . WiNTECH@MOBICOM, page 49-50. ACM, (2019)Demo: Nano Power Draw in Duty-Cycled Wireless Sensor Networks., , , , and . WiNTECH@MOBICOM, page 47-48. ACM, (2019)The NITOS Wireless Sensor Network Testbed for Experimenting with Long-Range Technologies., , , , and . IOT Companion, page 19:1-19:4. ACM, (2020)Demo: In-situ Power Consumption Meter for Sensor Networks supporting Extreme Dynamic Range., , , , , and . WiNTECH@MobiCom, page 97-98. ACM, (2017)EVERUN: Enabling Power Consumption Monitoring in Underwater Networking Platforms., , , , , , , and . WiNTECH@MobiCom, page 83-90. ACM, (2017)The ICARUS Mote: Employing Off-Chip RTC to Attain 22 nA Sleep Current in Duty-Cycled IoT Devices., , , , and . IOT Companion, page 20:1-20:4. ACM, (2020)Evaluation of LoRa Performance in a City-wide Testbed: Experimentation Insights and Findings., , , , , , and . WiNTECH@MOBICOM, page 29-36. ACM, (2019)eProfiler: High-Precision Power Monitoring System for IoT Devices Featuring Extreme Dynamic Range of Operation., , , , and . ENSsys@SenSys, page 50-56. ACM, (2020)Demo: Enabling Asynchronous Awakenings in Wireless Sensor Networks Towards Removing Duty-Cycle Barriers., , , , , and . WiNTECH@MobiCom, page 95-96. ACM, (2017)Nano-things: pushing sleep current consumption to the limits in IoT platforms., , , , and . IOT, page 18:1-18:8. ACM, (2020)