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Nils Pohl
ORCID
Publication Activity (10 Years)
Years Active: 2009-2023
Publications (10 Years): 28
Top Topics
Multispectral
Power Consumption
Synthetic Aperture
Hardware Architecture
Top Venues
BCICTS
WiSNet
RWS
IEEE J. Solid State Circuits
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Publications
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Shuvadip Ghosh
,
Hao Li
,
Nils Pohl
Low Phase Noise and Low Power Consumption Magnetic Cross-Coupled Push-Push VCO in SiGe BiCMOS Technology.
BCICTS
(2023)
Olga Krylova
,
Jan Schopfel
,
Klaus Aufinger
,
Nils Pohl
A High Linearity SiGe D-Band Diode Ring Mixer.
BCICTS
(2023)
Jan Philipp Thoma
,
Christian Niesler
,
Dominic A. Funke
,
Gregor Leander
,
Pierre Mayr
,
Nils Pohl
,
Lucas Davi
,
Tim Güneysu
ClepsydraCache - Preventing Cache Attacks with Time-Based Evictions.
USENIX Security Symposium
(2023)
Melika Dedovic
,
Florian Vogelsang
,
Hakan Papurcu
,
Klaus Aufinger
,
Nils Pohl
A 61-187.2-GHz Traveling Wave Push-Push Frequency Doubler in a 130 nm SiGe:C BiCMOS Technology With 101.7% Fractional Bandwidth.
BCICTS
(2023)
Alessandro Tinti
,
Simon Tejero Alfageme
,
Sergio Duque Biarge
,
Nils Pohl
Full Polarimetric Antenna System for Automotive Radar.
WiSNeT
(2023)
Philipp Stockel
,
Patrick Wallrath
,
Reinhold Herschel
,
Nils Pohl
Motion Compensation in Six Degrees of Freedom for a MIMO Radar Mounted on a Hovering UAV.
IEEE Trans. Aerosp. Electron. Syst.
59 (5) (2023)
Justin Romstadt
,
Tobias Welling
,
Florian Vogelsang
,
Muhammed Ali Yildirim
,
Klaus Aufinger
,
Nils Pohl
A 377-416 GHz Push-Push Frequency Doubler with Driving Stage and Transformer-Based Mode Separation in SiGe BiCMOS.
BCICTS
(2023)
Justin Romstadt
,
Ahmad Zaben
,
Hakan Papurcu
,
Pascal Stadler
,
Tobias Welling
,
Klaus Aufinger
,
Nils Pohl
A 117.5-155-GHz SiGe ×12 Frequency Multiplier Chain With Push-Push Doublers and a Gilbert Cell-Based Tripler.
IEEE J. Solid State Circuits
58 (9) (2023)
Justin Romstadt
,
Ahmad Zaben
,
Hakan Papurcu
,
Klaus Aufinger
,
Nils Pohl
A SiGe D-Band x12 Frequency Multiplier with Gilbert Cell-Based Tripler.
BCICTS
(2022)
Timo Jaeschke
,
Simon Kueppers
,
Nils Pohl
,
Jan Barowski
Calibrated and Frequency Traceable D-Band FMCW Radar for VNA-like S-Parameter Measurements.
RWS
(2022)
Florian Vogelsang
,
Christian Bredendiek
,
Jan Schopfel
,
Holger Rücker
,
Nils Pohl
A Static Frequency Divider up to 163 GHz in SiGe-BiCMOS Technology.
BCICTS
(2022)
Shengyi Chen
,
Jalal Taghia
,
Tai Fei
,
Uwe Kühnau
,
Nils Pohl
,
Rainer Martin
A DNN Autoencoder for Automotive Radar Interference Mitigation.
ICASSP
(2021)
Jan Philipp Thoma
,
Christian Niesler
,
Dominic A. Funke
,
Gregor Leander
,
Pierre Mayr
,
Nils Pohl
,
Lucas Davi
,
Tim Güneysu
ClepsydraCache - Preventing Cache Attacks with Time-Based Evictions.
CoRR
(2021)
Justin Romstadt
,
Hakan Papurcu
,
Ahmad Zaben
,
Steffen Hansen
,
Klaus Aufinger
,
Nils Pohl
Comparison on spectral purity of two SiGe D-Band frequency octuplers in MIMO radar MMICs.
BCICTS
(2021)
Florian Vogelsang
,
David Starke
,
Jonathan Wittemeier
,
Holger Rücker
,
Nils Pohl
A Highly-Efficient 120 GHz and 240 GHz Signal Source in A SiGe-Technology.
BCICTS
(2020)
L. Polzin
,
M. van Delden
,
Nils Pohl
,
Klaus Aufinger
,
Thomas Musch
A 117 GHz Dual-Modulus Prescaler With Inductive Peaking for a Programmable Frequency Divider.
BCICTS
(2020)
M. van Delden
,
Nils Pohl
,
Klaus Aufinger
,
Thomas Musch
A 32-48 GHz Differential YIG Oscillator With Low Phase Noise Based On a SiGe MMIC.
RWS
(2019)
Jan Siska
,
Timo Jaeschke
,
Jonas Wagner
,
Nils Pohl
FPGA-Accelerated Multispectral Ultra-High Resolution SAR-Imaging with Wideband FMCW Radars.
RWS
(2019)
Badou Sene
,
Herbert Knapp
,
Hao Li
,
Jonas Kammerer
,
Soran Majied
,
Klaus Aufinger
,
Jonas Fritzin
,
Daniel Reiter
,
Nils Pohl
A 16-dBm D-Band Power Amplifier with a Cascaded CE and CB Output Power Stage Using a Stub Matching Topology.
BCICTS
(2019)
Daniel Reiter
,
Hao Li
,
Herbert Knapp
,
Jonas Kammerer
,
Soran Majied
,
Badou Sene
,
Nils Pohl
A Low Phase Noise, Wide Tuning Range 20GHz Magnetic-Coupled Hartley-VCO in a 28nm CMOS Technology.
RWS
(2019)
Yuliang Sun
,
Tai Fei
,
Shangyin Gao
,
Nils Pohl
Automatic Radar-based Gesture Detection and Classification via a Region-based Deep Convolutional Neural Network.
ICASSP
(2019)
Daniel Reiter
,
Hao Li
,
Herbert Knapp
,
Jonas Kammerer
,
Jonas Fritzin
,
Soran Majied
,
Badou Sene
,
Nils Pohl
A 19.5 dBm Power Amplifier with Highly Accurate 8-bit Power Controlling for Automotive Radar Applications in a 28 nm CMOS Technology.
BCICTS
(2019)
Christian Bredendiek
,
Dominic A. Funke
,
Jan Schopfel
,
Victoria Kloubert
,
Benedikt Welp
,
Klaus Aufinger
,
Nils Pohl
A 61-GHz SiGe Transceiver Frontend for Energy and Data Transmission of Passive RFID Single-Chip Tags With Integrated Antennas.
IEEE J. Solid State Circuits
53 (9) (2018)
Serdal Ayhan
,
Mario Pauli
,
Steffen Scherr
,
Benjamin Göttel
,
Akanksha Bhutani
,
Sven Thomas
,
Timo Jaeschke
,
Jean-Michel Panel
,
Frédéric Vivier
,
Laurence Eymard
,
Alain Weill
,
Nils Pohl
,
Thomas Zwick
Millimeter-Wave Radar Sensor for Snow Height Measurements.
IEEE Trans. Geosci. Remote. Sens.
55 (2) (2017)
Steffen Scherr
,
Rifat Afroz
,
Serdal Ayhan
,
Sven Thomas
,
Timo Jaeschke
,
Mario Pauli
,
Nils Pohl
,
Thomas Zwick
Target evaluation for high accuracy 80 GHz FMCW radar distance measurements.
WiSNet
(2017)
Dominic A. Funke
,
Philipp Hillger
,
Jürgen Oehm
,
Pierre Mayr
,
Lukas Straczek
,
Nils Pohl
,
John S. McCaskill
A 200~µm by 100~µm Smart Submersible System With an Average Current Consumption of 1.3nA and a Compatible Voltage Converter.
IEEE Trans. Circuits Syst. I Regul. Pap.
(12) (2017)
Dominic A. Funke
,
Pierre Mayr
,
Lukas Straczek
,
John S. McCaskill
,
Jürgen Oehm
,
Nils Pohl
A 200 μm by 100 μm Smart Dust system with an average current consumption of 1.3 nA.
ICECS
(2016)
Benedikt Welp
,
Karam Noujeim
,
Nils Pohl
A Wideband 20 to 28 GHz Signal Generator MMIC With 30.8 dBm Output Power Based on a Power Amplifier Cell With 31% PAE in SiGe.
IEEE J. Solid State Circuits
51 (9) (2016)
Timo Jaeschke
,
Patrick Imberg
,
Michael Zapke
,
Michael Hübner
,
Nils Pohl
Scalable modular hardware platform for FPGA based industrial radar flowmeters.
ReConFig
(2015)
Michael Caris
,
Stephan Stanko
,
Stephan Palm
,
Rainer Sommer
,
Nils Pohl
Synthetic aperture radar at millimeter wavelength for UAV surveillance applications.
RTSI
(2015)
Siying Wang
,
Antje Pohl
,
Timo Jaeschke
,
Michael Czaplik
,
Marcus Koeny
,
Steffen Leonhardt
,
Nils Pohl
A novel ultra-wideband 80 GHz FMCW radar system for contactless monitoring of vital signs.
EMBC
(2015)
Serdal Ayhan
,
Sven Thomas
,
Nanxi Kong
,
Steffen Scherr
,
Mario Pauli
,
Timo Jaeschke
,
Jens Peter Wulfsberg
,
Nils Pohl
,
Thomas Zwick
Millimeter-wave radar distance measurements in micro machining.
WiSNet
(2015)
Christoph Baer
,
Timo Jaeschke
,
Nils Pohl
,
Thomas Musch
Contactless Detection of State Parameter Fluctuations of Gaseous Media Based on an mm-Wave FMCW Radar.
IEEE Trans. Instrum. Meas.
64 (4) (2015)
Nils Pohl
,
Stephan Stanko
,
Michael Caris
,
Axel Tessmann
,
Michael Schlechtweg
An ultra-high resolution radar-system operating at 300 GHz.
WiSNet
(2015)
Christoph Baer
,
Thomas Musch
,
Timo Jaeschke
,
Nils Pohl
Contactless determination of gas concentration and pressure based on a low jitter mmWave FMCW radar.
SAS
(2014)
Nils Pohl
,
Timo Jaeschke
,
Steffen Scherr
,
Serdal Ayhan
,
Mario Pauli
,
Thomas Zwick
,
Thomas Musch
Radar measurements with micrometer accuracy and nanometer stability using an ultra-wideband 80 GHz radar system.
WiSNet
(2013)
Shadi Traboulsi
,
Valerio Frascolla
,
Nils Pohl
,
Josef Hausner
,
Attila Bilgic
Energy-Efficient Hardware Architectures for the Packet Data Convergence Protocol in LTE-Advanced Mobile Terminals.
VLSI Design
2013 (2013)
Shadi Traboulsi
,
Valerio Frascolla
,
Nils Pohl
,
Josef Hausner
,
Attila Bilgic
A versatile low-power ciphering and integrity protection unit for LTE-advanced mobile devices.
NEWCAS
(2012)
Nils Pohl
,
Tobias Klein
,
Klaus Aufinger
,
Hans-Martin Rein
A Low-Power Wideband Transmitter Front-End Chip for 80 GHz FMCW Radar Systems With Integrated 23 GHz Downconverter VCO.
IEEE J. Solid State Circuits
47 (9) (2012)
Nils Pohl
,
Hans-Martin Rein
,
Thomas Musch
,
Klaus Aufinger
,
Josef Hausner
SiGe Bipolar VCO With Ultra-Wide Tuning Range at 80 GHz Center Frequency.
IEEE J. Solid State Circuits
44 (10) (2009)