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DTSTART:20260308T030000
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DTSTART:20251102T010000
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DTSTAMP:20251212T120342Z
UID:8CCD8C25-DD02-458A-8D27-B2109B0B6263
DTSTART;TZID=America/New_York:20251209T100000
DTEND;TZID=America/New_York:20251209T110000
DESCRIPTION:Numerous sensor applications call for integrated sensors and ul
 tra-low-power microelectronics that can function in harsh\, isolated envir
 onments without the need for or replacement of power sources (such as batt
 eries). As a result\, these sensors and systems need to be extremely energ
 y-efficient or self-powered while still delivering the required functional
 ity and performance. Although the most energy-efficient sensors and electr
 onics are used\, the operating lifetime of these systems is constrained be
 cause the amount of energy stored on these power sources is limited. This 
 restriction could only be eased if environmental energy is &quot;efficiently&quot; h
 arvested to support the power sources used.\n\nIn this talk\, the &quot;Supply 
 Boosting Technique (SBT)&quot; will be introduced as a low-power/low-voltage in
 tegrated circuit (IC) design technique\, from conceptualization (using ana
 logies) to its use in ultra-low-power systems such as analog-to-digital co
 nverters (ADCs) and self-powered CMOS image sensors.\n\nSpeaker(s): Suat\n
 \nRoom: AK 232\, Bldg: Atwater Kent\, 100 INSTITUTE RD\, Worcester\, Massa
 chusetts\, United States\, 01609-2280
LOCATION:Room: AK 232\, Bldg: Atwater Kent\, 100 INSTITUTE RD\, Worcester\,
  Massachusetts\, United States\, 01609-2280
ORGANIZER:gr-wpisscsfounders@wpi.edu
SEQUENCE:9
SUMMARY:Fundamentals and Analogies for Ultra-Low-Power IC Design
URL;VALUE=URI:https://events.vtools.ieee.org/m/519954
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;Numerous sensor applications call for inte
 grated sensors and ultra-low-power microelectronics that can function in h
 arsh\, isolated environments without the need for or replacement of power 
 sources (such as batteries). As a result\, these sensors and systems need 
 to be extremely energy-efficient or self-powered while still delivering th
 e required functionality and performance. Although the most energy-efficie
 nt sensors and electronics are used\, the operating lifetime of these syst
 ems is constrained because the amount of energy stored on these power sour
 ces is limited. This restriction could only be eased if environmental ener
 gy is &quot;efficiently&quot; harvested to support the power sources used.&lt;/p&gt;\n&lt;p&gt;I
 n this talk\, the &quot;Supply Boosting Technique (SBT)&quot; will be introduced as 
 a low-power/low-voltage integrated circuit (IC) design technique\, from co
 nceptualization (using analogies) to its use in ultra-low-power systems su
 ch as analog-to-digital converters (ADCs) and self-powered CMOS image sens
 ors.&lt;/p&gt;
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