458 results on '"Cova, S."'
Search Results
102. Single photon avalanche diodes (SPADs) for 1.5 μm photon counting applications
103. High-rate photon counting and picosecond timing with silicon-SPAD based compact detector modules
104. Chronology of wing development in Megoura viciae Buckt. and Acyrthosiphon pisum Harris (Homopera: Aphididae)
105. Design and Performance of an InGaAs–InP Single-Photon Avalanche Diode Detector
106. Low jitter up-conversion detectors for telecom wavelength GHz QKD
107. Modified single photon counting modules for optimal timing performance
108. Single-Photon Avalanche Diode Arrays for Fast Transients and Adaptive Optics
109. Time-resolved diffuse reflectance at null source-detector separation: a novel approach to photon migration
110. Adversidad familiar y desarrollo de trastornos internalizados y externalizados en preadolescentes
111. Single-photon imaging at 20,000 frames∕s
112. Diferencias de género en psicopatología en la niñez: Hipótesis explicativas
113. SPADA: single-photon avalanche diode arrays
114. 35 ps time resolution at room temperature with large area single photon avalanche diodes
115. Photon-Timing Detector Module for Single-Molecule Spectroscopy With 60-ps Resolution
116. Evolution and prospects for single-photon avalanche diodes and quenching circuits
117. MINIATURE MODULES FOR SINGLE-PHOTON DETECTION
118. LUMINESCENCE MEASUREMENTS FOR THE INVESTIGATION OF VLSI CIRCUITS DEFECTS
119. COMPACT ELECTROPHORESIS SYSTEM FOR GENETIC DIAGNOSTICS WITH ULTRASENSITIVE MICROSENSORS
120. CMOS Circuit Testing via Time-Resolved Luminescence Measurements and Simulations
121. Correction to "Silicon planar technology for single-photon optical detectors"
122. Monolithic active-quenching and active-reset circuit for single-photon avalanche detectors
123. Silicon planar technology for single-photon optical detectors
124. Monolithic time-to-amplitude converter for photon timing applications.
125. MICROELECTRONIC ULTRASENSITIVE DETECTORS FOR CHIP ELECTROPHORESIS MICROSYSTEMS
126. InGaAs/InP Single Photon Avalanche Diode Design and Characterization.
127. Mexican isolates ofLeptosphaeria maculansbelong to the aggressive strain of the fungus1
128. CMOS Circuit Analysis with Luminescence Measurements and Simulations
129. Large-area avalanche diodes for picosecond time-correlated photon counting.
130. Monolithic CMOS detector module for photon counting and picosecond timing.
131. Hot-carrier luminescence: comparison of different CMOS technologies.
132. A process and deep level evaluation tool: afterpulsing in avalanche junctions.
133. Ultra Low-Level Ion Implantation Damage Detected by p-n Junctions Biased above Breakdown
134. Characterization and pathogenicity of isolates ofLeptosphaeria maculansfrom Aguascalientes and Zacatecas, Mexico1
135. Monolithic dual-detector for photon-correlation spectroscopy with wide dynamic range and optical 70-ps resolution
136. High-speed CMOS circuit testing by 50 ps time-resolved luminescence measurements
137. Fully–integrated active–quenching circuit for single–photon detection.
138. Testing CMOS circuits at 50ps resolution with single-photon avalanche detectors.
139. An integrated active-quenching circuit for single-photon avalanche diodes
140. True constant fraction trigger circuit for picosecond photon-timing with ultrafast microchannel plate photomultipliers
141. Compact active quenching circuit for fast photon counting with avalanche photodiodes
142. Single-photon detection beyond 1 μm: performance of commercially available InGaAs/InP detectors
143. Time-resolved photoluminescence measurements of InGaAs/InP multiple-quantum-well structures at 13-μm wavelengths by use of germanium single-photon avalanche photodiodes
144. Counting, timing, and tracking with a single-photon germanium detector
145. Performance optimization of active quenching circuits for picosecond timing with single photon avalanche diodes
146. Development of high QE, fast Avalanche Photodiodes for Astronomical Adaptive Optics
147. Single-photon detection beyond 1 μm: performance of commercially available germanium photodiodes
148. Nanosecond single-photon timing with InGaAs/InP photodiodes
149. Tools for non-invasive optical characterization of CMOS circuits.
150. Non-Invasive Optical Characterisation Technique for Fast Switching CMOS Circuits.
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