This paper presents a 32x32 ISFET array with in-pixel dual-sensing and programmability targeted for on-chip DNA amplification detection. The pixel architecture provides thermal and chemical sensing by encoding temperature and ion activity in a single output PWM, modulating its frequency and its duty cycle respectively. Each pixel is composed of an ISFET-based differential linear OTA and a 2-stage sawtooth oscillator. The operating point and characteristic response of the pixel can be programmed, enabling trapped charge compensation and enhancing the versatility and adaptability of the architecture. Fabricated in 0.18 μm standard CMOS process, the system demonstrates a quadratic thermal response and a highly linear pH sensitivity, with a tra...
This thesis, after a review on the state-of-the-art sequencing and genotyping technologies, focuses ...
An ultra-high frame rate and high resolution ion-sensing Lab-on-Chip platform using a 128x128 CMOS I...
The aim of this work was to bio-functionalize the SiO2 gate of ion-sensitive field-effect transistor...
This paper presents a novel CMOS-based system-onchip with a 78 × 56 ion-sensitive field-effect trans...
Over the past decade, the surge of infectious diseases outbreaks across the globe is redefining how ...
This paper presents a large-scale CMOS chemical-sensing array operating in current mode for real-tim...
The growing need to obtain large amounts of genomic data for various applications has motivated effo...
This paper presents a CMOS-based 32 × 32 ion-sensitive field-effect transistor (ISFET) system-on-chi...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...
ISFET is an emerging technology that has the potential to revolutionize pH sensing and other ion-bas...
The introduction of large-scale chemical sensing systems in CMOS which integrate millions of ISFET s...
Deoxyribonucleic acid (DNA) sequencing technology provides important data for the disclosure of gene...
The adaptation of semiconductor technologies for biological applications may lead to a new era of in...
The adaptation of semiconductor technologies for biological applications may lead to a new era of in...
This thesis, after a review on the state-of-the-art sequencing and genotyping technologies, focuses ...
An ultra-high frame rate and high resolution ion-sensing Lab-on-Chip platform using a 128x128 CMOS I...
The aim of this work was to bio-functionalize the SiO2 gate of ion-sensitive field-effect transistor...
This paper presents a novel CMOS-based system-onchip with a 78 × 56 ion-sensitive field-effect trans...
Over the past decade, the surge of infectious diseases outbreaks across the globe is redefining how ...
This paper presents a large-scale CMOS chemical-sensing array operating in current mode for real-tim...
The growing need to obtain large amounts of genomic data for various applications has motivated effo...
This paper presents a CMOS-based 32 × 32 ion-sensitive field-effect transistor (ISFET) system-on-chi...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...
ISFET is an emerging technology that has the potential to revolutionize pH sensing and other ion-bas...
The introduction of large-scale chemical sensing systems in CMOS which integrate millions of ISFET s...
Deoxyribonucleic acid (DNA) sequencing technology provides important data for the disclosure of gene...
The adaptation of semiconductor technologies for biological applications may lead to a new era of in...
The adaptation of semiconductor technologies for biological applications may lead to a new era of in...
This thesis, after a review on the state-of-the-art sequencing and genotyping technologies, focuses ...
An ultra-high frame rate and high resolution ion-sensing Lab-on-Chip platform using a 128x128 CMOS I...
The aim of this work was to bio-functionalize the SiO2 gate of ion-sensitive field-effect transistor...