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Taghadosi, <i>et al<\/i>.: \u201cHigh efficiency energy harvesters in 65 nm CMOS process for autonomous IoT sensor applications,\u201d IEEE Access <b>6<\/b> (2017) 2397 (DOI: 10.1109\/ACCESS.2017.2783045)."},{"key":"2","unstructured":"[2] P. Xu, <i>et al<\/i>.: \u201cDesign of a 2.45-GHz RF energy harvester for SWIPT IoT smart sensors,\u201d Proc. IEEE A-SSCC (2018) 107 (DOI: 10.1109\/ASSCC.2018.8579281)."},{"key":"3","doi-asserted-by":"publisher","unstructured":"[3] H.-K. Cha, <i>et al<\/i>.: \u201cA CMOS rectifier with a cross-coupled latched comparator for wireless power transfer in biomedical applications,\u201d IEEE Trans. Circuits Syst. II, Exp. Briefs <b>59<\/b> (2012) 409 (DOI: 10.1109\/TCSII.2012.2198977)","DOI":"10.1109\/TCSII.2012.2198977"},{"key":"4","unstructured":"[4] H.-K. Cha and M. Je: \u201cA single-input dual-output 13.56 MHz CMOS AC-DC converter with comparator-driven rectifiers for implantable devices,\u201d Microelectronics Journal <b>45<\/b> (2014) 277 (DOI: 10.1016\/j.mejo.2014.01.012)."},{"key":"5","unstructured":"[5] Y. Lu, <i>et al<\/i>.: \u201cA 13.56 MHz fully integrated 1X\/2X active rectifier with compensated bias current for inductively powered devices,\u201d Dig. Tech. Papers IEEE ISSCC (2013) 66 (DOI: 10.1109\/ISSCC.2013.6487639)."},{"key":"6","unstructured":"[6] M. Ghovanloo and S. Atluri: \u201cAn integrated full-wave CMOS rectifier with built-in back telemetry for RFID and implantable biomedical applications,\u201d IEEE Trans. Circuits Syst. I, Reg. Papers <b>55<\/b> (2008) 3328 (DOI: 10.1109\/TCSI.2008.924877)."},{"key":"7","unstructured":"[7] M.H. Ouda, <i>et al<\/i>.: \u201c5.2-GHz RF power harvester in 0.18-\u00b5m CMOS for implantable intraocular pressure monitoring,\u201d IEEE Trans. Microw. Theory Techn. <b>61<\/b> (2013) 2177 (DOI: 10.1109\/TMTT.2013.2255621)."},{"key":"8","unstructured":"[8] T. Umeda, <i>et al<\/i>.: \u201cA 950-MHz rectifier circuit for sensor network tags with 10-m distance,\u201d IEEE J. Solid-State Circuits <b>41<\/b> (2006) 35 (DOI: 10.1109\/JSSC.2005.858620)."},{"key":"9","unstructured":"[9] U. Karthaus and M. Fischer: \u201cFully integrated passive UHF RFID transponder IC with 16.7-\u00b5W minimum RF input power,\u201d IEEE J. Solid-State Circuits <b>38<\/b> (2003) 1602 (DOI: 10.1109\/JSSC.2003.817249)."},{"key":"10","unstructured":"[10] S. Masui and T. Teramoto: \u201cA 13.56 MHz CMOS RF identification passive tag LSI with ferroelectric random access memory,\u201d IEICE Trans. Electron. <b>E88-C<\/b> (2005) 601 (DOI: 10.1093\/ietele\/e88-c.4.601)."},{"key":"11","unstructured":"[11] S. Mandal and R. Sarpeshkar: \u201cLow-power CMOS rectifier design for RFID applications\u201d IEEE Trans. Circuits Syst. I, Reg. Papers <b>54<\/b> (2007) 1177 (DOI: 10.1109\/TCSI.2007.895229)."},{"key":"12","unstructured":"[12] S. Sudevalayam and P. Kulkarni: \u201cEnergy harvesting sensor nodes: survey and implications,\u201d IEEE Commun. Surveys Tuts. <b>13<\/b> (2011) 443 (DOI: 10.1109\/SURV.2011.060710.00094)."},{"key":"13","unstructured":"[13] K. Kotani, <i>et al<\/i>.: \u201cPhotovoltaic-assisted CMOS rectifier circuit for synergistic energy harvesting from ambient radio wave,\u201d Proc. IEEE A-SSCC (2012) 329 (DOI: 10.1109\/IPEC.2012.6522692)."},{"key":"14","unstructured":"[14] J.F. Dickson: \u201cOn-chip high-voltage generation in MNOS integrated circuits using an improved voltage multiplier technique,\u201d IEEE J. Solid-State Circuits <b>11<\/b> (1976) 374 (DOI: 10.1109\/JSSC.1976.1050739)."},{"key":"15","unstructured":"[15] K. Kotani and T. Ito: \u201cSelf-Vth-cancellation high-efficiency CMOS rectifier circuit for UHF RFIDs,\u201d IEICE Trans. Electron. <b>E92-C<\/b> (2009) 153 (DOI: 10.1587\/transele.E92.C.153)."},{"key":"16","unstructured":"[16] K. Kotani and T. Ito: \u201cHigh efficiency CMOS rectifier circuit with self-Vth-cancellation and power regulation functions for UHF RFIDs,\u201d Proc. IEEE A-SSCC (2007) 119 (DOI: 10.1109\/ASSCC.2007.4425746)."},{"key":"17","unstructured":"[17] G. Papotto, <i>et al<\/i>.: \u201cA 90-nm CMOS threshold-compensated RF energy harvester,\u201d IEEE J. Solid-State Circuits <b>46<\/b> (2011) 1985 (DOI: 10.1109\/JSSC.2011.2157010)."},{"key":"18","unstructured":"[18] M. Stoopman, <i>et al<\/i>.: \u201cCo-design of a CMOS rectifier and small loop antenna for highly sensitive RF energy harvesters,\u201d IEEE J. Solid-State Circuits <b>49<\/b> (2014) 622 (DOI: 10.1109\/JSSC.2014.2302793)."},{"key":"19","unstructured":"[19] Z. Hameed and K. Moez: \u201cA 3.2 V -15 dBm adaptive threshold-voltage compensated RF energy harvester in 130 nm CMOS,\u201d IEEE Trans. Circuits Syst. I, Reg. Papers <b>62<\/b> (2015) 948 (DOI: 10.1109\/TCSI.2015.2413153)."},{"key":"20","unstructured":"[20] A. Sasaki, <i>et al<\/i>.: \u201cDifferential-drive CMOS rectifier for UHF RFIDs with 66% PCE at -12 dBm input,\u201d Proc. IEEE A-SSCC (2008) 105 (DOI: 10.1109\/ASSCC.2008.4708740)."},{"key":"21","unstructured":"[21] K. Kotani, <i>et al<\/i>.: \u201cHigh-efficiency differential-drive CMOS rectifier for UHF RFIDs,\u201d IEEE J. Solid-State Circuits <b>44<\/b> (2009) 3011 (DOI: 10.1109\/JSSC.2009.2028955)."},{"key":"22","unstructured":"[22] K. Kotani, <i>et al<\/i>.: \u201cA photovoltaic-assisted CMOS rectifier for synergistic energy harvesting from ambient radio waves,\u201d IEICE Trans. Electron. <b>E97-C<\/b> (2014) 245 (DOI: 10.1587\/transele.E97.C.245)."},{"key":"23","unstructured":"[23] K. Kotani: \u201cEfficiency improvement in photovoltaic-assisted CMOS rectifier with symmetric and voltage-boost PV-cells,\u201d IEICE Trans. Fundamentals <b>E98-A<\/b> (2015) 500 (DOI: 10.1587\/transfun.E98.A.500)."},{"key":"24","unstructured":"[24] K. Kotani: \u201cImprovement of power conversion efficiency in photovoltaic-assisted UHF rectifiers by non-silicide technique applied to photovoltaic cells,\u201d Japanese Journal of Applied Physics <b>54<\/b> (2015) 04DE02 (DOI: 10.7567\/JJAP.54.04DE02)."},{"key":"25","unstructured":"[25] F. Horiguchi: \u201cIntegration of series-connected on-chip solar battery in a triple-well CMOS LSI,\u201d IEEE Trans. Electron Devices <b>59<\/b> (2012) 1580 (DOI: 10.1109\/TED.2012.2189116)."},{"key":"26","unstructured":"[26] R. Usami, <i>et al<\/i>.: \u201cPhotovoltaic-assisted self-Vth-cancellation CMOS RF rectifier for wide power range operation,\u201d Proc. IEEE A-SSCC (2018) 115 (DOI: 10.1109\/ASSCC.2018.8579349)."},{"key":"27","unstructured":"[27] Y. Lu, <i>et al<\/i>.: \u201cA wide input range dual-path CMOS rectifier for RF energy harvesting,\u201d IEEE Trans. Circuits Syst. II, Exp. Briefs <b>64<\/b> (2017) 166 (DOI: 10.1109\/TCSII.2016.2554778)."},{"key":"28","unstructured":"[28] M.H. Ouda, <i>et al<\/i>.: \u201cWide-range adaptive RF-to-DC power converter for UHF RFIDs,\u201d IEEE Microw. Wireless Compon. Lett. <b>26<\/b> (2016) 634 (DOI: 10.1109\/LMWC.2016.2586077)."},{"key":"29","unstructured":"[29] M.H. Ouda, <i>et al<\/i>.: \u201cSelf-biased differential rectifier with enhanced dynamic range for wireless powering,\u201d IEEE Trans. Circuits Syst. II, Exp. Briefs <b>64<\/b> (2017) 515 (DOI: 10.1109\/TCSII.2016.2591263)."},{"key":"30","unstructured":"[30] A.S. Almansouri, <i>et al<\/i>.: \u201cA CMOS RF-to-DC power converter with 86% efficiency and -19.2 dBm sensitivity,\u201d IEEE Trans. Microw. Theory Techn. <b>66<\/b> (2018) 2409 (DOI: 10.1109\/TMTT.2017.2785251)."},{"key":"31","unstructured":"[31] P. Saffari, <i>et al<\/i>.: \u201cA wide-range highly power efficient RF-to-DC rectifier for RF energy harvesting systems,\u201d Proc. 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