We describe a CMOS-based micro-system for time-resolved fluorescence lifetime analysis. It comprises a 16 × 4 array of single-photon avalanche diodes (SPADs) fabricated in 0.35 μm high-voltage CMOS technology with in-pixel time-gated photon counting circuitry and a second device incorporating an 8 × 8 AlInGaN blue micro-pixellated light-emitting diode (micro-LED) array bump-bonded to an equivalent array of LED drivers realized in a standard low-voltage 0.35 μm CMOS technology, capable of producing excitation pulses with a width of 777 ps (FWHM). This system replaces instrumentation based on lasers, photomultiplier tubes, bulk optics and discrete electronics with a PC-based micro-system. Demonstrator lifetime measurements of colloidal quantu...
Time-resolved fluorescence measurements enable the study of structure of molecular systems and dynam...
This paper describes the design of a 7x2-pixels array, fabricated in a high voltage 0.3...
We present a CMOS chip 256 × 2 single photon avalanche diode (SPAD) line sensor, 23.78 µm pitch, 43....
We describe a CMOS-based micro-system for time-resolved fluorescence lifetime analysis. It comprises...
We describe a CMOS-based micro-system for time-resolved fluorescence lifetime analysis. It comprises...
We describe a two-chip micro-scale time-resolved fluorescence analyzer integrating excitation, detec...
Fluorescence based analysis is a fundamental research technique used in the life sciences. However, ...
We describe a single chip approach to time resolved fluorescence measurements based on time correlat...
We describe a miniaturized, high-throughput, time-resolved fluorescence lifetime sensor implemented ...
Optical biosensors are probably the most popular in bioanalysis due to their selectivity and sensiti...
Fluorescence lifetime measurement is used in biological research to enhance the contrast of fluoresc...
Fluorescence spectroscopy has become a prominent research tool with wide applications in medical dia...
A compact real-time fluorescence lifetime imaging microscopy (FLIM) system based on an array of low ...
A compact real-time fluorescence lifetime imaging microscopy (FLIM) system based on an array of low ...
A high-speed and hardware-only algorithm using a center of mass method (CMM) has been proposed for s...
Time-resolved fluorescence measurements enable the study of structure of molecular systems and dynam...
This paper describes the design of a 7x2-pixels array, fabricated in a high voltage 0.3...
We present a CMOS chip 256 × 2 single photon avalanche diode (SPAD) line sensor, 23.78 µm pitch, 43....
We describe a CMOS-based micro-system for time-resolved fluorescence lifetime analysis. It comprises...
We describe a CMOS-based micro-system for time-resolved fluorescence lifetime analysis. It comprises...
We describe a two-chip micro-scale time-resolved fluorescence analyzer integrating excitation, detec...
Fluorescence based analysis is a fundamental research technique used in the life sciences. However, ...
We describe a single chip approach to time resolved fluorescence measurements based on time correlat...
We describe a miniaturized, high-throughput, time-resolved fluorescence lifetime sensor implemented ...
Optical biosensors are probably the most popular in bioanalysis due to their selectivity and sensiti...
Fluorescence lifetime measurement is used in biological research to enhance the contrast of fluoresc...
Fluorescence spectroscopy has become a prominent research tool with wide applications in medical dia...
A compact real-time fluorescence lifetime imaging microscopy (FLIM) system based on an array of low ...
A compact real-time fluorescence lifetime imaging microscopy (FLIM) system based on an array of low ...
A high-speed and hardware-only algorithm using a center of mass method (CMM) has been proposed for s...
Time-resolved fluorescence measurements enable the study of structure of molecular systems and dynam...
This paper describes the design of a 7x2-pixels array, fabricated in a high voltage 0.3...
We present a CMOS chip 256 × 2 single photon avalanche diode (SPAD) line sensor, 23.78 µm pitch, 43....