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VERSION:2.0
PRODID:IEEE vTools.Events//EN
CALSCALE:GREGORIAN
BEGIN:VTIMEZONE
TZID:America/Phoenix
BEGIN:STANDARD
DTSTART:19671029T010000
TZOFFSETFROM:-0600
TZOFFSETTO:-0700
TZNAME:MST
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BEGIN:VEVENT
DTSTAMP:20260807T153237Z
UID:D21FA711-A676-4A70-B4FC-D458D570185C
DTSTART;TZID=America/Phoenix:20260826T120000
DTEND;TZID=America/Phoenix:20260826T130000
DESCRIPTION:During the first 5-10 minutes\, Jared Schoepf of ASU will discu
 ss discuss the EPICS program and volunteer opportunities for our membershi
 p\; the remainder of the time\, Dr. Inder Makin and Priyanka Makin will di
 scuss biomedical applications for Ultrasound-based Wireless Powering.\n\nT
 his talk will present the use of ultrasound energy for wireless transfer o
 f power through solid\, liquid\, gels\, and related non-gaseous materials\
 , as an alternative to the commonly used electro-magnetic (mainly inductiv
 e or capacitive) energy\, remote powering schemes. Ultrasound Wireless Pow
 er Transfer (UWPT) is uniquely applicable for powering Active Implantable 
 Medical Devices (AIMD) placed deep in the biological tissue\, subcutaneous
  implants requiring several watts of power transfer\, or where the source 
 beam can be steered electronically using a coarse array\, to correct for S
 ource-Target misalignment. UWPT can be implemented also in the non-implant
 able space\, such as for charging multiple digital devices simultaneously\
 , as well as industrial applications where energy has to propagate through
  metal layers. The basic physical concepts determining directive beam prop
 agation\, attenuation and temperature increase will be defined. Experiment
 al results will be presented\, based on specific use-case specifications f
 or medical (implantable) applications\, as well as powering digital device
 s. Favorable implications of deploying UWPT for a subset of all wireless a
 pplications in lieu of the currently used power-transfer methods will be d
 iscussed.\n\nSpeaker(s): Jared Schoepf\, Inder Makin\, Priyanka Makin\n\nV
 irtual: https://events.vtools.ieee.org/m/569998
LOCATION:Virtual: https://events.vtools.ieee.org/m/569998
ORGANIZER:embs.phx@ieee.org
SEQUENCE:24
SUMMARY:Non-Inductive\, Ultrasound-Based Wireless Power Transfer (UWPT) for
  Implantable and Non-implantable Battery Charging Applications
URL;VALUE=URI:https://events.vtools.ieee.org/m/569998
X-ALT-DESC:Description: &lt;br /&gt;&lt;p class=&quot;MsoNormal&quot;&gt;During the first 5-10 mi
 nutes\, Jared Schoepf of ASU will discuss discuss the EPICS program and vo
 lunteer opportunities for our membership\; the remainder of the time\, Dr.
  Inder Makin and Priyanka Makin will discuss biomedical applications for U
 ltrasound-based Wireless Powering.&lt;/p&gt;\n&lt;p&gt;This talk will present the use 
 of ultrasound energy for wireless transfer of power through solid\, liquid
 \, gels\, and related non-gaseous materials\, as an alternative to the com
 monly used electro-magnetic (mainly inductive or capacitive) energy\, remo
 te powering schemes. Ultrasound Wireless Power Transfer (UWPT) is uniquely
  applicable for powering Active Implantable Medical Devices (AIMD) placed 
 deep in the biological tissue\, subcutaneous implants requiring several wa
 tts of power transfer\, or where the source beam can be steered electronic
 ally using a coarse array\, to correct for Source-Target misalignment. UWP
 T can be implemented also in the non-implantable space\, such as for charg
 ing multiple digital devices simultaneously\, as well as industrial applic
 ations where energy has to propagate through metal layers. The basic physi
 cal concepts determining directive beam propagation\, attenuation and temp
 erature increase will be defined. Experimental results will be presented\,
  based on specific use-case specifications for medical (implantable) appli
 cations\, as well as powering digital devices. Favorable implications of d
 eploying UWPT for a subset of all wireless applications in lieu of the cur
 rently used power-transfer methods will be discussed.&lt;/p&gt;
END:VEVENT
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