Po-Han Peter Wang

Orcid: 0000-0002-6359-2109

Affiliations:
  • University of California at San Diego, La Jolla, CA, USA (PhD 2019)


According to our database1, Po-Han Peter Wang authored at least 15 papers between 2017 and 2023.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

Legend:

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Bibliography

2023
A Fully-Reflective Wi-Fi-Compatible Backscatter Communication System With Retro-Reflective MIMO Gain for Improved Range.
IEEE J. Solid State Circuits, September, 2023

2021
A Dual-Mode Wi-Fi/BLE Wake-Up Receiver.
IEEE J. Solid State Circuits, 2021

An Interference-Resilient BLE-Compatible Wake-Up Receiver Employing Single-Die Multi-Channel FBAR-Based Filtering and a 4-D Wake-Up Signature.
IEEE J. Solid State Circuits, 2021

SyncScatter: Enabling WiFi like synchronization and range for WiFi backscatter Communication.
Proceedings of the 18th USENIX Symposium on Networked Systems Design and Implementation, 2021

12.2 Improving the Range of WiFi Backscatter Via a Passive Retro-Reflective Single-Side-Band-Modulating MIMO Array and Non-Absorbing Termination.
Proceedings of the IEEE International Solid-State Circuits Conference, 2021

2020
A Low-Power Backscatter Modulation System Communicating Across Tens of Meters With Standards-Compliant Wi-Fi Transceivers.
IEEE J. Solid State Circuits, 2020

A 22.3-nW, 4.55 cm<sup>2</sup> Temperature-Robust Wake-Up Receiver Achieving a Sensitivity of -69.5 dBm at 9 GHz.
IEEE J. Solid State Circuits, 2020

A 4.4μW -92/-90.3dBm Sensitivity Dual-Mode BLE/Wi-Fi Wake-up Receiver.
Proceedings of the IEEE Symposium on VLSI Circuits, 2020

20.1 A 28µW IoT Tag That Can Communicate with Commodity WiFi Transceivers via a Single-Side-Band QPSK Backscatter Communication Technique.
Proceedings of the 2020 IEEE International Solid- State Circuits Conference, 2020

2019
A 220μW -85dBm Sensitivity BLE-Compliant Wake-up Receiver Achieving -60dB SIR via Single-Die Multi- Channel FBAR-Based Filtering and a 4-Dimentional Wake-Up Signature.
Proceedings of the IEEE International Solid- State Circuits Conference, 2019

2018
A Near-Zero-Power Wake-Up Receiver Achieving -69-dBm Sensitivity.
IEEE J. Solid State Circuits, 2018

A 0.4-V 0.93-nW/kHz Relaxation Oscillator Exploiting Comparator Temperature-Dependent Delay to Achieve 94-ppm/°C Stability.
IEEE J. Solid State Circuits, 2018

2017
A 0.6V 75nW All-CMOS Temperature Sensor With 1.67m°C/mV Supply Sensitivity.
IEEE Trans. Circuits Syst. I Regul. Pap., 2017

24.5 A 4.5nW wake-up radio with -69dBm sensitivity.
Proceedings of the 2017 IEEE International Solid-State Circuits Conference, 2017

A 400 MHz 4.5 nW -63.8 dBm sensitivity wake-up receiver employing an active pseudo-balun envelope detector.
Proceedings of the 43rd IEEE European Solid State Circuits Conference, 2017


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