IEEE Solid-States Circuits Magazine - Spring 2018 - 82
The attendees of the lecture.
and the circuit was shown to have
achieved an impressive 0.5c/h bias
instability as well as angle random
walk of 0.067c/√h.
Xu presented two high-performance inertial sensors that employed
novel circuit approaches and delved
into detailed mathematical analysis of
key performance parameters. This is
a cross-disciplinary system that needs
the circuit designer to understand the
physics of inertial sensing as well as
the limitations due to the micro-dimensions of the sensors. With clever
system-design approaches, Xu showed
that MEMS inertial sensors are making
a breakthrough in high-performance
applications, creating a pathway to
enable such applications on energyconstrained mobile devices. More
than 25 participants from industry,
research, and academic communities
attended Xu's lecture. The audience
showed keen interest to understand
the mathematical analysis of the various parameters and the electrical test
and measurement set-up that validate
the performance.
-Muthukumaraswamy Annamalai Arasu
SSCS Singapore Chapter
-Chao Wang
SSCS Singapore Chapter
Azita Emami Gives Talk on Wearable
and Implantable Biomedical Devices
T
The IEEE Antennas and Propagation
Society, IEEE Solid-State Circuits Society, IEEE Microwave Theory and Techniques Society, IEEE Electron Devices
Society, and IEEE Circuits and Systems Society hosted Dr. Azita Emami
on 15 March 2018. The talk was held
at the Qualcomm San Diego campus,
and more than 90 people attended.
The audience was very interested in
the informative and intriguing work
on which Emami and her team at the
California Institute of Technology
have been working.
Digital Object Identifier 10.1109/MSSC.2018.2821432
Date of publication: 22 June 2018
82
S p r i n g 2 0 18
Abstract
Wearable and implantable medical devices
can enable new ap proach es to the diagnosis and treatment
of human diseases.
The design and implementation of sensors
and neural interfaces
that are noninvasive or Azita Emami
minimally invasive are
essential for the viability of such devices. This talk focuses on miniaturized
devices that are wireless and highly energy efficient. First an ultra-low-power
sensor for continuous measurement of
glucose and lactate will be presented.
IEEE SOLID-STATE CIRCUITS MAGAZINE
This minimally invasive
wireless device can be
injected just under the
skin and is designed
to have high dynamic
range and high resolution. In the second example, a closed-loop
neural interface for seizure detection and prevention is introduced.
In this project, hardware efficient classification and feature
extraction techniques are utilized to
enhance the performance and energy
efficiency of the system.
-Abira Sengupta
Table of Contents for the Digital Edition of IEEE Solid-States Circuits Magazine - Spring 2018
Contents
IEEE Solid-States Circuits Magazine - Spring 2018 - Cover1
IEEE Solid-States Circuits Magazine - Spring 2018 - Cover2
IEEE Solid-States Circuits Magazine - Spring 2018 - Contents
IEEE Solid-States Circuits Magazine - Spring 2018 - 2
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IEEE Solid-States Circuits Magazine - Spring 2018 - Cover3
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