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Dive into the research topics where Zhao Zhan is active.

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Featured researches published by Zhao Zhan.


Chinese Physics B | 2014

Hybrid device for acoustic noise reduction and energy harvesting based on a silicon micro-perforated panel structure

Wu Shaohua; Du Lidong; Kong Deyi; Ping Hao-Yue; Fang Zhen; Zhao Zhan

A kind of hybrid device for acoustic noise reduction and vibration energy harvesting based on the silicon microperforated panel (MPP) resonant structure is investigated in the article. The critical parts of the device include MPP and energy harvesting membranes. They are all fabricated by means of silicon micro-electro-mechanical systems (MEMS) technology. The silicon MPP has dense and accurate micro-holes. This noise reduction structure has the advantages of wide band and higher absorption coefficients. The vibration energy harvesting part is formed by square piezoelectric membranes arranged in rows. ZnO material is used as it has a good compatibility with the fabrication process. The MPP, piezoelectric membranes, and metal bracket are assembled into a hybrid device with multifunctions. The device exhibits good performances of acoustic noise absorption and acoustic–electric conversion. Its maximum open circuit voltage achieves 69.41 mV.


Chinese Physics Letters | 2012

Ultrasonic Energy Transference Based on an MEMS ZnO Film Array

Wu Shaohua; Zhao Zhan; Zhao Junjuan; Guo Li-Jun; Du Lidong; Fang Zhen; Kong Deyi; Xiao Li; Gao Zhong-Hua

An ultrasonic energy transference system with a ZnO square piezoelectric thin-film array (SPTFA) structure is presented. The design principle of the system is analyzed, and a device with the SPTFA structure is successfully fabricated based on MEMS processes. The characteristics of the energy transference system are investigated in detail. The experimental results reveal that the resonant frequency of the system is 13 MHz, the maximum voltage of the receiving end reaches 10.87 V when the amplitude of excitation voltage is 10 V, at that time the output power of system is 5.377 mW, and power density is 2.581 mW/cm2. The light emitting diode is lit successfully by the system in a distance of 3 mm.


Archive | 2015

Wireless intelligent multi-physiological-parameter health supervision wrist type equipment

Fang Zhen; Xu Zhihong; Qian Yangming; Tian Lili; Zhao Zhan; Du Lidong; Liu Wei; Chen Xianxiang


Archive | 2015

Non-invasive continuous blood pressure physiological monitoring system

Xu Zhihong; Fang Zhen; Zhao Zhan; Du Lidong; Chen Xianxiang


Archive | 2013

Noise power generating device based on micro-perforated panel structure

Zhao Zhan; Wu Shaohua; Du Lidong; Guo Li-Jun; Fang Zhen


Archive | 2015

Handheld human body multiple-health-parameter monitoring system

Fang Zhen; Xu Zhihong; Zhao Zhan; Du Lidong; Chen Xianxiang


Archive | 2014

Bioaerosol monitoring and early-warning method

Qi Zhimei; Lu Danfeng; Zhao Zhan; Du Lidong; Tong Chaoyang


Archive | 2014

Anchor-node-free positioning method, system and device for distance measuring

Fang Zhen; Zhao Zhan; Du Lidong; Chen Diliang; Xu Zhihong; Wang Donghui


Archive | 2016

A on -vehicle intelligent security system for detecting wind speed

Xu Zhihong; Fang Zhen; Zhao Zhan; Chen Xianxiang; Du Lidong


Archive | 2015

Hand-held type's human how healthy parameter monitor system

Fang Zhen; Xu Zhihong; Zhao Zhan; Du Lidong; Chen Xianxiang

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Du Lidong

Chinese Academy of Sciences

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Fang Zhen

Chinese Academy of Sciences

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Chen Xianxiang

Chinese Academy of Sciences

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Wu Shaohua

Chinese Academy of Sciences

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Kong Deyi

Chinese Academy of Sciences

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Guo Li-Jun

Chinese Academy of Sciences

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Xiao Li

Chinese Academy of Sciences

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Zhao Junjuan

Chinese Academy of Sciences

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Duan Xiuhua

Chinese Academy of Sciences

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Gao Zhong-Hua

Chinese Academy of Sciences

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