Jan Nissinen

Orcid: 0000-0002-2920-1370

According to our database1, Jan Nissinen authored at least 23 papers between 2003 and 2023.

Collaborative distances:
  • Dijkstra number2 of six.
  • Erdős number3 of five.

Timeline

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Bibliography

2023
CMOS Transceiver with Time-Gated 4×8 SPAD Array and Width-Controlled Laser Diode Pulser for Time-Domain Diffuse Optics Measurements.
Proceedings of the 2023 IEEE SENSORS, Vienna, Austria, October 29 - Nov. 1, 2023, 2023

Optical CMOS Transceiver with $8\times 32$ SPAD Array, 32 TDCs and Laser Diode Driver for Wearable Time-Domain Diffuse Optics Applications.
Proceedings of the 2023 IEEE SENSORS, Vienna, Austria, October 29 - Nov. 1, 2023, 2023

2022
On the Spectral Quality of Time-Resolved CMOS SPAD-Based Raman Spectroscopy with High Fluorescence Backgrounds.
Dataset, May, 2022

2020
An integrated 9x9 SPAD array with a 10-channel TDC and a CMOS laser diode driver for a wearable time-domain diffuse optics optode.
Proceedings of the 2020 IEEE International Instrumentation and Measurement Technology Conference, 2020

A Pulse Width-Controlled CMOS Laser Diode Pulser and a Time-Gated Time-Resolved SPAD Array Transceiver Chip for Diffuse Optics.
Proceedings of the European Conference on Circuit Theory and Design, 2020

2018
Distance-Resolving Raman Radar Based on a Time-Correlated CMOS Single-Photon Avalanche Diode Line Sensor.
Sensors, 2018

Time-gated CMOS SPAD and a Quantum Well Laser Diode with a CMOS Driver for Time-Resolved Diffuse Optics Imaging.
Proceedings of the 2018 IEEE Nordic Circuits and Systems Conference, 2018

A CMOS chip set for accurate pulsed time-of-flight laser range finding.
Proceedings of the IEEE International Instrumentation and Measurement Technology Conference, 2018

2017
Characterization of the Timing Homogeneity in a CMOS SPAD Array Designed for Time-Gated Raman Spectroscopy.
IEEE Trans. Instrum. Meas., 2017

A Wide Dynamic Range CMOS Laser Radar Receiver With a Time-Domain Walk Error Compensation Scheme.
IEEE Trans. Circuits Syst. I Regul. Pap., 2017

On the time gating of SPADs in a synchronized time-gated SPAD array in Raman spectroscopy.
Proceedings of the 2017 IEEE SENSORS, Glasgow, United Kingdom, October 29, 2017

On the effects of the excess bias of the SPAD on the timing accuracy in time interval measurement.
Proceedings of the 2017 IEEE SENSORS, Glasgow, United Kingdom, October 29, 2017

Effects of the inhomogeneity of the time resolving CMOS single-photon avalanche diode array on time-gated Raman spectroscopy.
Proceedings of the IEEE International Instrumentation and Measurement Technology Conference, 2017

2015
A single chip laser radar receiver with a 9×9 SPAD detector array and a 10-channel TDC.
Proceedings of the ESSCIRC Conference 2015, 2015

2014
Cross talk measurements of a time-gated 4×128 SPAD array for pulsed Raman spectroscopy.
Proceedings of the 2014 NORCHIP, Tampere, Finland, October 27-28, 2014, 2014

A TDC-based 4×128 CMOS SPAD array for time-gated Raman spectroscopy.
Proceedings of the ESSCIRC 2014, 2014

Time-to-digital converter based on analog time expansion for 3D time-of-flight cameras.
Proceedings of the Image Sensors and Imaging Systems 2014, 2014

2013
2×(4×)128 time-gated CMOS single photon avalanche diode line detector with 100 ps resolution for Raman spectroscopy.
Proceedings of the ESSCIRC 2013, 2013

A 4 a peak current and 2 ns pulse width CMOS laser diode driver for high measurement rate applications.
Proceedings of the ESSCIRC 2013, 2013

A time-gated 4×128 SPAD array with a 512 channel flash 80 ps-TDC for pulsed Raman spectroscopy.
Proceedings of the 21st European Conference on Circuit Theory and Design, 2013

2009
Integrated Receiver Including Both Receiver Channel and TDC for a Pulsed Time-of-Flight Laser Rangefinder With cm-Level Accuracy.
IEEE J. Solid State Circuits, 2009

2007
An Integrated Laser Radar Receiver Channel with Wide Dynamic Range.
Proceedings of the 14th IEEE International Conference on Electronics, 2007

2003
A CMOS receiver for a pulsed time-of-flight laser rangefinder.
Proceedings of the ESSCIRC 2003, 2003


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