Michael Fahrbach

About Michael Fahrbach

Michael Fahrbach, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Technische Universität Braunschweig, specializes in the field of MEMS, contact resonance.

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

Imaging the mechanical properties of nanowire arrays

From MicroLEDs to neuromorphic computing

Damped Cantilever Microprobes for High-Speed Contact Metrology with 3D Surface Topography

Real-time operation of microcantilever-based in-plane resonators partially immersed in a microfluidic sampler

Contact Resonance Imaging with Vertical Nanowire Arrays

Damped silicon microprobes for high-speed roughness measurements

In-line measurement of the surface texture of rolls using long slender piezoresistive microprobes

Performance of an electrothermal mems cantilever resonator with fano-resonance annoyance under cigarette smoke exposure

Michael Fahrbach Information

University

Position

___

Citations(all)

154

Citations(since 2020)

151

Cited By

64

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Michael Fahrbach Skills & Research Interests

MEMS

contact resonance

Top articles of Michael Fahrbach

Imaging the mechanical properties of nanowire arrays

tm-Technisches Messen

2024/4/16

From MicroLEDs to neuromorphic computing

2024/3/13

Damped Cantilever Microprobes for High-Speed Contact Metrology with 3D Surface Topography

Sensors

2023/2/10

Real-time operation of microcantilever-based in-plane resonators partially immersed in a microfluidic sampler

2023/1/15

Contact Resonance Imaging with Vertical Nanowire Arrays

2022/5/10

Damped silicon microprobes for high-speed roughness measurements

2021/11/8

In-line measurement of the surface texture of rolls using long slender piezoresistive microprobes

Sensors

2021/9/5

Michael Fahrbach
Michael Fahrbach

H-Index: 5

Erwin Peiner
Erwin Peiner

H-Index: 22

Performance of an electrothermal mems cantilever resonator with fano-resonance annoyance under cigarette smoke exposure

Sensors

2021/6/14

Customized piezoresistive microprobes for combined imaging of topography and mechanical properties

Measurement: Sensors

2021/6/1

Michael Fahrbach
Michael Fahrbach

H-Index: 5

Min Xu
Min Xu

H-Index: 9

Erwin Peiner
Erwin Peiner

H-Index: 22

A5. 4 Self-excited Contact Resonance Operation of a Tactile Piezoresistive Cantilever Microprobe with Diamond Tip

SMSI 2021-Sensors and Instrumentation

2021/5/3

MicroLED arrays as novel structured micro illumination light engines (SMILE)

2021/3/5

Michael Fahrbach
Michael Fahrbach

H-Index: 5

Andreas Waag
Andreas Waag

H-Index: 34

Enhancement of unsteady frequency responses of electro-thermal resonance MEMS cantilever sensors

Journal of Physics: Conference Series

2021/3/1

Investigating the Trackability of Silicon Microprobes in High-Speed Surface Measurements

Sensors

2021/2/24

Dataset for the publication" Investigating the Trackability of Silicon Microprobes in High-Speed Surface Measurements"

PTB-OAR

2021

Calibrating a high-speed contact-resonance profilometer

Journal of Sensors and Sensor Systems

2020/7/7

Michael Fahrbach
Michael Fahrbach

H-Index: 5

Erwin Peiner
Erwin Peiner

H-Index: 22

A6. 3 Higher-Mode Contact Resonance Operation of a High-Aspect-Ratio Piezoresistive Cantilever Microprobe

SMSI 2020-Sensors and Instrumentation

2020/6/9

A6. 2 Applications of Tactile Microprobes for Surface Metrology

SMSI 2020-Sensors and Instrumentation

2020/6/9

In-plane and out-of-plane MEMS piezoresistive cantilever sensors for nanoparticle mass detection

Sensors

2020/1/22

See List of Professors in Michael Fahrbach University(Technische Universität Braunschweig)

Co-Authors

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