MAHESH ANGIRA

About MAHESH ANGIRA

MAHESH ANGIRA, With an exceptional h-index of 10 and a recent h-index of 8 (since 2020), a distinguished researcher at National Institute of Technology, Hamirpur, specializes in the field of MEMS, RF-MEMS.

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

Design and investigation of a novel variable reactance-based capacitive RF-MEMS switch with multifrequency operation for mmWave applications

Accurate dynamic response expressions for electrostatically actuated RF-MEMS switches with damping effect

An improved design based on a symmetrical toggle shunt capacitive RF-MEMS switch with multiple stable states and Off-state frequency tunability

RF-MEMS capacitive switches: enabling transition towards 5G/B5G applications

Selection of Piezoelectric Material based Pressure Sensor for the Application of Wrist Pulse Acquisition System

RF-MEMS SPDT Capacitive Switch: Accelerating the Performance in B5G Applications

Analysis on maximizing the performance of RF-MEMS switches across multiple domains through appropriate bridge material selection

Investigation on Switching Structure Geometries and their Impact on Electromagnetic Response of RF-MEMS Capacitive Switch

MAHESH ANGIRA Information

University

Position

___

Citations(all)

292

Citations(since 2020)

217

Cited By

162

hIndex(all)

10

hIndex(since 2020)

8

i10Index(all)

10

i10Index(since 2020)

8

Email

University Profile Page

Google Scholar

MAHESH ANGIRA Skills & Research Interests

MEMS

RF-MEMS

Top articles of MAHESH ANGIRA

Title

Journal

Author(s)

Publication Date

Design and investigation of a novel variable reactance-based capacitive RF-MEMS switch with multifrequency operation for mmWave applications

Analog Integrated Circuits and Signal Processing

Raj Kumari

Mahesh Angira

2024/4/17

Accurate dynamic response expressions for electrostatically actuated RF-MEMS switches with damping effect

International Journal of Information Technology

Mahesh Angira

2023/4

An improved design based on a symmetrical toggle shunt capacitive RF-MEMS switch with multiple stable states and Off-state frequency tunability

Journal of Computational Electronics

Mahesh Angira

2023/2

RF-MEMS capacitive switches: enabling transition towards 5G/B5G applications

International Journal of Information Technology

Raj Kumari

Mahesh Angira

2023/10

Selection of Piezoelectric Material based Pressure Sensor for the Application of Wrist Pulse Acquisition System

Mahesh Angira

Vasundhra Thakur

Arushi Sharma

Vandit Sharma

Srishti Sharma

...

2023/5/26

RF-MEMS SPDT Capacitive Switch: Accelerating the Performance in B5G Applications

Raj Kumari

Mahesh Angira

2023/4/21

Analysis on maximizing the performance of RF-MEMS switches across multiple domains through appropriate bridge material selection

Microsystem Technologies

Raj Kumari

Mahesh Angira

2022/5

Investigation on Switching Structure Geometries and their Impact on Electromagnetic Response of RF-MEMS Capacitive Switch

Raj Kumari

Mahesh Angira

2022/8/26

FEM simulation and material selection for enhancing the performance of a RF-MEMS capacitive switch

Journal of Computational Electronics

Raj Kumari

Mahesh Angira

2022/8

Q Factor Modeling and Material Selection of a Variable Capacitor based on RF-MEMS Technology

Transactions on Electrical and Electronic Materials

Ishaan Ghosh

Mahesh Angira

2022/6

Investigation into the Selection of Dielectric Material using MCDM Methodologies for MEMS Switches with High Power

Transactions on Electrical and Electronic Materials

Pritam Patra

Mahesh Angira

2021/10

A Shunt Capacitive Switch based on RF MEMS Technology for 5G application: Design and Investigation

Vivek Verma

Mahesh Angira

2021/6/25

Selection of Piezoelectric Material for MEMS Technology based Microphone by using MCDM Methods

Sushila Kumari Mehta

Mahesh Angira

2021/6/25

Realization of a capacitive shunt RF-MEMS switch using straight flexure based non-uniform bridge structure-fabrication and characterization

Microsystem Technologies

Mahesh Angira

Deepak Bansal

2021/5

Impact of power handling capability on material selection of RF-MEMS switches using MCDM techniques

Raj Kumari

Mahesh Angira

2020/12/14

Analysis on selection of bridge material for high power RF-MEMS shunt capacitive switches

Transactions on Electrical and Electronic Materials

Mahesh Angira

Deepankar Deshmukh

2020/8

Investigation on dielectric material selection for RF-MEMS shunt capacitive switches using ashby, TOPSIS and VIKOR

Transactions on Electrical and Electronic Materials

Pritam Patra

Mahesh Angira

2020/4

See List of Professors in MAHESH ANGIRA University(National Institute of Technology, Hamirpur)