Milad Zamani

About Milad Zamani

Milad Zamani, With an exceptional h-index of 8 and a recent h-index of 7 (since 2020), a distinguished researcher at Aarhus Universitet, specializes in the field of BioelectronicsIC Design.

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

A 69MHz-Bandwidth 40s-Slew-Rate 3n-Noise 4.5V-Offset Chopper Operational Amplifier

A System-Level Feasibility Study of a Lead-Free Ultrasonically Powered Light Delivery Implant for Optogenetics

Load-regulated implantable optical micro device

Wireless brain-computer interface

Implantable micro device with high data rate back scattering

Digital Hardware Implementation of ReSuMe Learning Algorithm for Spiking Neural Networks

A 4.5 μW Miniaturized 3-Channel Wireless Intra-Cardiac Acquisition System

An Ultrasonically-Powered System for 1.06mm3 Implantable Optogenetics and Drug Delivery Dust

Milad Zamani Information

University

Position

Postdoctoral researcher

Citations(all)

256

Citations(since 2020)

206

Cited By

115

hIndex(all)

8

hIndex(since 2020)

7

i10Index(all)

7

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Milad Zamani Skills & Research Interests

BioelectronicsIC Design

Top articles of Milad Zamani

A 69MHz-Bandwidth 40s-Slew-Rate 3n-Noise 4.5V-Offset Chopper Operational Amplifier

IEEE Transactions on Circuits and Systems I: Regular Papers

2024/3/20

A System-Level Feasibility Study of a Lead-Free Ultrasonically Powered Light Delivery Implant for Optogenetics

Advanced Intelligent Systems

2024/3

Load-regulated implantable optical micro device

2024/1/18

Wireless brain-computer interface

2024/1/11

Implantable micro device with high data rate back scattering

2023/10/5

Digital Hardware Implementation of ReSuMe Learning Algorithm for Spiking Neural Networks

2023/7/24

A 4.5 μW Miniaturized 3-Channel Wireless Intra-Cardiac Acquisition System

IEEE Transactions on Biomedical Circuits and Systems

2023/7/12

An Ultrasonically-Powered System for 1.06mm3 Implantable Optogenetics and Drug Delivery Dust

IEEE Transactions on Circuits and Systems II: Express Briefs

2023/6/23

Spin-Torque Based Radio-Frequency Signal Classification Front-End

2023/5/21

NET-TEN: a silicon neuromorphic network for low-latency detection of seizures in local field potentials

Journal of Neural Engineering

2023/5/5

Milad Zamani
Milad Zamani

H-Index: 5

Farshad Moradi
Farshad Moradi

H-Index: 15

A 69MHz-Bandwidth 40V/μs-Slew-rate 3nV/√ Hz-Noises 4.5 μV-Offset Chopper Operational Amplifier

2023/4/23

Ultrasonically powered and controlled microsystem for dual-wavelength optogenetics with a multiload regulation scheme

IEEE Solid-State Circuits Letters

2023/1/25

Multi-Modal Temperature Sensing using Electro-Mechanical Impedance (EMI) for Structural Health Monitoring

IEEE Sensors Journal

2023/12/22

Milad Zamani
Milad Zamani

H-Index: 5

Farshad Moradi
Farshad Moradi

H-Index: 15

A low-noise high-linear wide dynamic-range MTJ-based magnetic field sensor

2023/10/31

High impedance and compact neural sensor front-end

2023/10/5

Memory and communication-in-logic using vortex and precessional oscillations in a magnetic tunnel junction

IEEE Magnetics Letters

2022/11/24

In the realm of hybrid Brain: Human Brain and AI

arXiv preprint arXiv:2210.01461

2022/10/4

A Magnitude/Phase Bio-Impedance Measurement System with PWM Output

2022/6/7

A 7.2 µW Magnitude/Phase Bio-impedance Measurement Front-End with PWM Output in 0.18 µm CMOS

2021/10/26

Ultrasonic backscatter communication for brain implants: Mathematical model, simulation, and measurement

2021/10/7

See List of Professors in Milad Zamani University(Aarhus Universitet)

Co-Authors

academic-engine