This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using standard complementary metal oxide semiconductor (CMOS) technology to compute both capacitance and resistance of the electrode-electrolyte interface. The proposed biosensor circuit is composed of a commongate transimpedance amplifier (CG-TIA) with two quadrature phase Gilbert cell double-balanced mixers and finally integrated with microelectrode using 0.18 μm Silterra CMOS technology process. The output value of the readout circuit was used to estimate the magnitude and phase of the measured admittance. The developed CG-TIA can achieve a gain of 88.6 dB up to a frequency of 50 MHz. The overall dynamic range was approximately 116 d
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
The large demand for DNA analysis calls for the development of portable, low-cost, easy-to-perform a...
This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using st...
This paper described a label-free and fully integrated impedimetric biosensor using standard Complem...
Deoxyribonucleic acid (DNA) biosensor is a powerful tool that utilizes the DNA hybridization procedu...
This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using st...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
The aim of this thesis is to design an on-chip Complementary Metal Oxide Semiconductor (CMOS) potent...
DNA detector is one of the main way to use in order to detect diseases, preventing crime and so on. ...
The aim of this thesis is to design an on-chip Complementary Metal Oxide Semiconductor (CMOS) potent...
Electrical biosensors are one strategy being explored for the development of a rapid point-of-care a...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
To improve the current biodetection methods available, a proof of concept design for the biological ...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
The large demand for DNA analysis calls for the development of portable, low-cost, easy-to-perform a...
This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using st...
This paper described a label-free and fully integrated impedimetric biosensor using standard Complem...
Deoxyribonucleic acid (DNA) biosensor is a powerful tool that utilizes the DNA hybridization procedu...
This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using st...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
The aim of this thesis is to design an on-chip Complementary Metal Oxide Semiconductor (CMOS) potent...
DNA detector is one of the main way to use in order to detect diseases, preventing crime and so on. ...
The aim of this thesis is to design an on-chip Complementary Metal Oxide Semiconductor (CMOS) potent...
Electrical biosensors are one strategy being explored for the development of a rapid point-of-care a...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
To improve the current biodetection methods available, a proof of concept design for the biological ...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
The large demand for DNA analysis calls for the development of portable, low-cost, easy-to-perform a...