Junren Chen

Junren Chen

Universität Zürich

H-index: 4

Europe-Switzerland

About Junren Chen

Junren Chen, With an exceptional h-index of 4 and a recent h-index of 4 (since 2020), a distinguished researcher at Universität Zürich, specializes in the field of Neuromorphic Engineering, Memristor.

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

Scaling limits of memristor-based routers for asynchronous neuromorphic systems

A 1Mb Programming Configurable ReRAM Fully Integrating into a 32-bit Microcontroller Unit

Reliability analysis of memristor crossbar routers: collisions and on/off ratio requirement

STORAGE DEVICE AND DATA WRITING METHOD

An on-chip layer-wise training method for RRAM based computing-in-memory chips

A parallel multibit programing scheme with high precision for RRAM-based neuromorphic systems

A compact model of analog RRAM with device and array nonideal effects for neuromorphic systems

33.2 A fully integrated analog ReRAM based 78.4 TOPS/W compute-in-memory chip with fully parallel MAC computing

Junren Chen Information

University

Position

PhD Institute of Neuroinformatics

Citations(all)

287

Citations(since 2020)

286

Cited By

51

hIndex(all)

4

hIndex(since 2020)

4

i10Index(all)

3

i10Index(since 2020)

3

Email

University Profile Page

Google Scholar

Junren Chen Skills & Research Interests

Neuromorphic Engineering

Memristor

Top articles of Junren Chen

Scaling limits of memristor-based routers for asynchronous neuromorphic systems

IEEE Transactions on Circuits and Systems II: Express Briefs

2023/12/14

A 1Mb Programming Configurable ReRAM Fully Integrating into a 32-bit Microcontroller Unit

IEEE Transactions on Circuits and Systems II: Express Briefs

2023/3/7

Reliability analysis of memristor crossbar routers: collisions and on/off ratio requirement

2022/10/24

STORAGE DEVICE AND DATA WRITING METHOD

2022/3/10

An on-chip layer-wise training method for RRAM based computing-in-memory chips

2021/2/1

A parallel multibit programing scheme with high precision for RRAM-based neuromorphic systems

IEEE Transactions on Electron Devices

2020/4/6

A compact model of analog RRAM with device and array nonideal effects for neuromorphic systems

IEEE Transactions on Electron Devices

2020/3/5

33.2 A fully integrated analog ReRAM based 78.4 TOPS/W compute-in-memory chip with fully parallel MAC computing

2020/2/16

See List of Professors in Junren Chen University(Universität Zürich)

Co-Authors

academic-engine