Zhongjie Guo

Orcid: 0000-0003-4921-3296

According to our database1, Zhongjie Guo authored at least 15 papers between 2020 and 2024.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of five.

Timeline

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Bibliography

2024
Synchronous Driving Method for Stitching Pixel Arrays Based on an Adaptive Correction Technique.
Sensors, March, 2024

2023
High Dynamic Pixel Structure Based on an Adaptive Integrating Capacitor.
Sensors, November, 2023

A 1Gpixel 10FPS CMOS image sensor using pixel array high-speed readout technology.
Integr., March, 2023

High-Speed Fully Differential Two-Step ADC Design Method for CMOS Image Sensor.
Sensors, January, 2023

High-Linearity and High-Speed ROIC of Ultra-Large Array Infrared Detectors Based on Adaptive Compensation and Enhancement.
Sensors, 2023

A high-speed 13-bit two-step single-slope ADC for large array CMOS image sensors.
Integr., 2023

2022
Optimal Energy Management of a Residential Prosumer: A Robust Data-Driven Dynamic Programming Approach.
IEEE Syst. J., 2022

A High SNR Improvement CMOS Analog Accumulator with Charge Compensation Technique.
Sensors, 2022

A self-compensated approach for ramp kickback noise in CMOS image sensor column parallel single slope ADC.
Microelectron. J., 2022

2020
Operation of Distribution Network Considering Compressed Air Energy Storage Unit and Its Reactive Power Support Capability.
IEEE Trans. Smart Grid, 2020

A Highly Linear CMOS Image Sensor Design Based on an Adaptive Nonlinear Ramp Generator and Fully Differential Pipeline Sampling Quantization with a Double Auto-Zeroing Technique.
Sensors, 2020

Dynamic equalization and fast settling based wide operating voltage range 93 ​dB PSRR PTAT current reference.
Microelectron. J., 2020

An improved segmented DAC for column readout circuit correction of large array CMOS image sensor.
IEICE Electron. Express, 2020

A synchronous driving approach based on adaptive delay phase-locked loop for stitching CMOS image sensor.
IEICE Electron. Express, 2020

Methodology of Noise Flatness Based on Network Quality Factor in RF Wideband Applications.
Circuits Syst. Signal Process., 2020


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