Ashwin A. Seshia

Ashwin A. Seshia

University of Cambridge

H-index: 50

Europe-United Kingdom

About Ashwin A. Seshia

Ashwin A. Seshia, With an exceptional h-index of 50 and a recent h-index of 34 (since 2020), a distinguished researcher at University of Cambridge, specializes in the field of Microelectromechanical systems, sensors, vibratory systems, frequency control, energy harvesting.

His recent articles reflect a diverse array of research interests and contributions to the field:

Vibration Rectification Error Reduction in Mems Vibrating Beam Accelerometers by Using the F-Squared Method

High-performance navigation grade resonant beam MEMS accelerometers

Inertial sensor and method of inertial sensing with tuneable mode coupling strength

A comparison of calculation methods for the diffusion coefficient as a potential tool for identifying material alteration with time

A high-performance resonant MEMS accelerometer with a residual bias error of 30 μg and scale factor repeatability of 2 ppm

Single axis resonant accelerometer

Vibrational energy harvester with piston damping

High performance micro-electro-mechanical systems accelerometer

Ashwin A. Seshia Information

University

Position

___

Citations(all)

8084

Citations(since 2020)

4296

Cited By

5722

hIndex(all)

50

hIndex(since 2020)

34

i10Index(all)

172

i10Index(since 2020)

120

Email

University Profile Page

University of Cambridge

Google Scholar

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Ashwin A. Seshia Skills & Research Interests

Microelectromechanical systems

sensors

vibratory systems

frequency control

energy harvesting

Top articles of Ashwin A. Seshia

Title

Journal

Author(s)

Publication Date

Vibration Rectification Error Reduction in Mems Vibrating Beam Accelerometers by Using the F-Squared Method

Theo Miani

Lokesh Gurung

Guillermo Sobreviela-Falces

Douglas Young

Colin Baker

...

2024/3/25

High-performance navigation grade resonant beam MEMS accelerometers

Lokesh Gurung

Theo Miani

Guillermo Sobreviela-Falces

Douglas Young

Colin Baker

...

2024/3/25

Inertial sensor and method of inertial sensing with tuneable mode coupling strength

2021/9/2

A comparison of calculation methods for the diffusion coefficient as a potential tool for identifying material alteration with time

Polymer Testing

Hamad Raheem

Bernadette Craster

Ashwin Seshia

2024/2/10

A high-performance resonant MEMS accelerometer with a residual bias error of 30 μg and scale factor repeatability of 2 ppm

Lokesh Gurung

Theo Miani

Guillermo Sobreviela-Falces

Douglas Young

Colin Baker

...

2023/3/28

Single axis resonant accelerometer

2023/6/29

Vibrational energy harvester with piston damping

2023/10/31

High performance micro-electro-mechanical systems accelerometer

2023/3/28

Mode localised accelerometer

2023/6/29

A MEMS Frequency Comb Energy Harvester

Journal of Microelectromechanical Systems

Teng Zhang

Ashwin A Seshia

2023/10/9

Modelling Impact of Viscoelastic Properties of Die-Attach Material on the Bias Response of Resonant Inertial Sensors

Theo Miani

Lokesh Gurung

Guillermo Sobreviela-Falces

Douglas Young

Colin Baker

...

2023/1/15

Dual and triple axis accelerometers

2023/6/29

Multi-Channel Piezoelectric Micromachined Transducers Using On-chip Passive Filtering

Teng Zhang

Hamad Raheem

Ashwin Seshia

2023/9/3

Generation and evolution of phononic frequency combs via coherent energy transfer between mechanical modes

Physical Review Applied

Jiangkun Sun

Sheng Yu

Hemin Zhang

Dongyang Chen

Xin Zhou

...

2023/1/10

Acoustic Coupling and Remote Excitation in an Array of Multi-Mode Piezoelectric Micromachined Ultrasonic Transducers

Teng Zhang

Ashwin A Seshia

2023/5/15

Piezoelectric Micromachined Ultrasound Transducers As a Materials Characterization Probe

Christopher Cheng

2022

Probing Material Properties via a pair of Piezoelectric Micromachined Ultrasound Transducers

Hamad Raheem

Ashwin Seshia

Bernadette Craster

2023/5/15

A Silicon MEMS Quatrefoil Suspension Gyroscope

Journal of Microelectromechanical Systems

Madan Parajuli

Guillermo Sobreviela

Ashwin A Seshia

2023/7/31

Optimizing the Substrate-to-Piezoelectric Thickness Ratio of Micro-Fabricated Aln-on-Si Vibration Energy Harvesting

Yu Jia

Emanuelle Arroyo

Ashwin A Seshia

2023/12/11

Mode-localized accelerometer in the nonlinear Duffing regime with 75 ng bias instability and 95 ng/√ Hz noise floor

Microsystems & nanoengineering

Hemin Zhang

Milind Pandit

Guillermo Sobreviela

Madan Parajuli

Dongyang Chen

...

2022/2/7

See List of Professors in Ashwin A. Seshia University(University of Cambridge)