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  <title><![CDATA[Ph.D. Proposal Oral Exam - Shubham Sahasrabudhe]]></title>
  <body><![CDATA[<p><strong>Title:&nbsp; </strong><em>Dual-mode Low Phase Noise Oscillator Design for Precision Self-temperature Sensing in a Distributed Lam?? Resonator</em></p><p><strong>Committee:</strong></p><p>Dr. Ayazi, Advisor</p><p>Dr. Shaolan Li, Chair</p><p>Dr. Ansari</p>]]></body>
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      <value><![CDATA[Dual-mode Low Phase Noise Oscillator Design for Precision Self-temperature Sensing in a Distributed Lamé Resonator]]></value>
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      <value><![CDATA[<p>The objective of my proposed research is to develop a versatile, low phase noise dual-mode oscillator architecture that is applied to a distributed Lamé resonator (DLR) for high-performance timing and temperature sensing. Dual-mode MEMS resonators enable a unique method for precision self-temperature sensing for temperature-compensated and oven-controlled MEMS oscillators. A high-performance, low phase noise dual-mode oscillator design is crucial to achieving high-resolution and high-bandwidth resonator self-temperature measurement. I further demonstrate the applications of the self-temperature sensing DLR oscillator in temperature-compensated and oven-controlled oscillator applications.</p>]]></value>
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      <value><![CDATA[2026-04-21T15:00:00-04:00]]></value>
      <value2><![CDATA[2026-04-21T17:00:00-04:00]]></value2>
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      <value><![CDATA[Room 509, TSRB]]></value>
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          <item><![CDATA[ECE Ph.D. Proposal Oral Exams]]></item>
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