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Michael Kraft

Michael Kraft

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
41
Citations
6080
World Ranking
4332
National Ranking
94

Overview

Michael Kraft is affiliated with KU Leuven in Belgium and has a significant publication record in the field of engineering, particularly electrical and electronic engineering, biomedical engineering, atomic and molecular physics, and cognitive neuroscience. Their research primarily focuses on advanced MEMS and NEMS technologies, resonator technologies including mechanical, optical, and acoustic wave resonators, as well as analytical chemistry and sensors.

Their recent papers reflect a wide range of topics within microelectromechanical systems and sensor technologies, including:

  • Micromachined Accelerometers with Sub-µg/√Hz Noise Floor: A Review, 2020, Sensors
  • A review of high-performance MEMS sensors for resource exploration and geophysical applications, 2022, Petroleum Science
  • Implantation of Neuropixels probes for chronic recording of neuronal activity in freely behaving mice and rats, 2021, Nature Protocols
  • Near-field Terahertz Sensing of HeLa Cells and Pseudomonas Based on Monolithic Integrated Metamaterials with a Spintronic Terahertz Emitter, 2020, ACS Applied Materials & Interfaces
  • A Review on Coupled Bulk Acoustic Wave MEMS Resonators, 2022, Sensors

Kraft has frequently published in the following venues:

  • Journal of Microelectromechanical Systems
  • Microsystems & Nanoengineering
  • 2022 IEEE 35th International Conference on Micro Electro Mechanical Systems Conference (MEMS)
  • IEEE Sensors Journal
  • Sensors

Their research collaborations include frequent co-authors such as Chen Wang, Yuan Wang, Aojie Quan, Frederik Ceyssens, and Sina Sadeghpour.

Their work encompasses the following main fields and subfields:

  • Engineering
  • Electrical and Electronic Engineering
  • Biomedical Engineering
  • Atomic and Molecular Physics, and Optics
  • Cognitive Neuroscience
  • Bioengineering

The core research topics covered include:

  • Advanced MEMS and NEMS Technologies
  • Mechanical and Optical Resonators
  • Acoustic Wave Resonator Technologies
  • Analytical Chemistry and Sensors
  • Microfluidic and Capillary Electrophoresis Applications
  • Gas Sensing Nanomaterials and Sensors
  • Geophysics and Sensor Technology

The breadth of Michael Kraft's work integrates interdisciplinary approaches within engineering and applied sciences, broadly contributing to sensor development, resonator design, and biomedical applications through micro- and nanoengineering techniques.

Best Publications

  • MEMS Mechanical Sensors

    S.P. Beeby;G. Ensel;M. Kraft;N.M. Whita

  • A review on coupled MEMS resonators for sensing applications utilizing mode localization

    Chun Zhao;Chun Zhao;Mohammad H. Montaseri;Graham S. Wood;Suan Hui Pu

  • Microfabricated high-finesse optical cavity with open access and small volume

    Michael Trupke;Edward A. Hinds;S. Eriksson;E. A. Curtis

  • An Acceleration Sensing Method Based on the Mode Localization of Weakly Coupled Resonators

    Hemin Zhang;Boyang Li;Weizheng Yuan;Michael Kraft

  • A monolithic surface micromachined Z-axis gyroscope with digital output

    Xuesong Jiang;J.I. Seeger;M. Kraft;B.E. Boser

  • A force sensor based on three weakly coupled resonators with ultrahigh sensitivity

    Chun Zhao;Graham S. Wood;Jianbing Xie;Honglong Chang

  • A review of high-performance MEMS sensors for resource exploration and geophysical applications

    Unknown

  • Electroplating moulds using dry film thick negative photoresist.

    Elena Kukharenka;Mateen M. Farooqui;L. Grigore;Michaël Kraft

  • Electromechanical Sigma–Delta Modulators ( $\Sigma \Delta {\mathrm{ M}}$ ) Force Feedback Interfaces for Capacitive MEMS Inertial Sensors: A Review

    Fang Chen;Xinxin Li;Michael Kraft

  • A high-performance accelerometer with a fifth-order sigma–delta modulator

    Yufeng Dong;Michaël Kraft;Carsten O. Gollasch;William Redman-White

  • Fabrication and operation of a two-dimensional ion-trap lattice on a high-voltage microchip.

    Robin C. Sterling;Hwanjit Rattanasonti;Sebastian Weidt;Kim Lake

  • A Three Degree-of-Freedom Weakly Coupled Resonator Sensor With Enhanced Stiffness Sensitivity

    Chun Zhao;Graham S. Wood;Jianbing Xie;Honglong Chang

  • Microfluidic enzymatic biosensing systems: A review.

    Stefan Mross;Stefan Mross;Sebastien Pierrat;Tom Zimmermann;Michael Kraft

  • Micromachined Inertial Sensors: The State-of-the-Art and a Look into the Future:

    Michaël Kraft

  • Closed Loop Silicon Accelerometers

    Michaël Kraft;Christopher P. Lewis;Thomas G. Hesketh

  • Higher Order Noise-Shaping Filters for High-Performance Micromachined Accelerometers

    Yufeng Dong;M. Kraft;W. Redman-White

  • A dicing free SOI process for MEMS devices

    Ibrahim Sari;Ioannis Zeimpekis;Michael Kraft

  • Combining Numerous Uncorrelated MEMS Gyroscopes for Accuracy Improvement Based on an Optimal Kalman Filter

    Honglong Chang;Liang Xue;Chengyu Jiang;M. Kraft

  • Micromachined Accelerometers with Sub-µg/√Hz Noise Floor: A Review.

    Chen Wang;Chen Wang;Chen Wang;Fang Chen;Yuan Wang;Sina Sadeghpour

  • An integrated surface micromachined capacitive lateral accelerometer with 2 uG/rt-Hz resolution.

    Xuesong Jiang;Feiyue Wang;Michael Kraft;Bernhard E. Boser

  • Pyramidal micromirrors for microsystems and atom chips

    Michael Trupke;Fernando Ramirez-Martinez;E. A. Curtis;J. P. Ashmore

  • Integrated optical components on atom chips

    S. Eriksson;M. Trupke;H. F. Powell;D. Sahagun

Frequent Co-Authors

Robert Puers
Robert Puers KU Leuven
Neil M. White
Neil M. White University of Southampton
Hywel Morgan
Hywel Morgan University of Southampton
Bernhard E. Boser
Bernhard E. Boser University of California, Berkeley
Jeremy J. Baumberg
Jeremy J. Baumberg University of Cambridge
Xiao Guang Qiao
Xiao Guang Qiao Harbin Institute of Technology
Nong Gao
Nong Gao University of Southampton
Steve Beeby
Steve Beeby University of Southampton
S.M. Spearing
S.M. Spearing University of Southampton
Marco J. Starink
Marco J. Starink University of Southampton

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