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Arpad L. Scholtz
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- affiliation: Vienna University of Technology, Faculty of Electrical Engineering and Information Technology, Austria
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2010 – 2019
- 2013
- [j9]Philipp Karl Gentner, Robert Langwieser, Arpad L. Scholtz, Günter Hofer, Christoph F. Mecklenbräuker:
A UHF/UWB hybrid silicon RFID tag with on-chip antennas. EURASIP J. Embed. Syst. 2013: 12 (2013) - 2011
- [j8]Jasmin Grosinger, Arpad L. Scholtz:
Antennas and Wave Propagation in Novel Wireless Sensing Applications Based on Passive UHF RFID. Elektrotech. Informationstechnik 128(11-12): 408-414 (2011) - [c18]Robert Langwieser, Gregor Lasser, Arpad L. Scholtz, Markus Rupp:
Comparison of multi-antenna configurations of an RFID reader with active carrier compensation. RFID-TA 2011: 109-114
2000 – 2009
- 2009
- [c17]Jasmin Grosinger, Lukas W. Mayer, Christoph F. Mecklenbräuker, Arpad L. Scholtz:
Determining the dielectric material properties of a car tire. VTC Fall 2009 - [c16]Ayse Adalan, Michael Fischer, Thomas Gigl, Klaus Witrisal, Arpad L. Scholtz, Christoph F. Mecklenbräuker:
Ultra-wideband radio pulse shaping filter design for IEEE 802.15.4a transmitter. WCNC 2009: 162-167 - [c15]Irene Herranz, Stefan Fikar, Erwin M. Biebl, Arpad L. Scholtz:
Automotive multi-standard RF front-end for GSM, WCDMA and Mobile WiMAX. WTS 2009: 1-5 - 2008
- [j7]Winfried Bakalski, Bernhard Sogl, Markus Zannoth, Michael Asam, Boris Kapfelsperger, Jörg Berkner, Bernd Eisener, Wolfgang Thomann, Siegfried Marcon, Wilfried Osterreicher, Ewa Napieralska, Erwin Rampf, Arpad L. Scholtz, Bernd-Ulrich Klepser:
A Quad-Band GSM/EDGE-Compliant SiGe-Bipolar Power Amplifier. IEEE J. Solid State Circuits 43(9): 1920-1930 (2008) - [c14]Stefan Fikar, Richard Bogenberger, Arpad L. Scholtz:
Analysis of a novel antenna array for vehicular reception of Ku-Band satellite signals. PIMRC 2008: 1-5 - [c13]Lukas W. Mayer, Arpad L. Scholtz:
A Dual-Band HF / UHF Antenna for RFID Tags. VTC Fall 2008: 1-5 - 2007
- [j6]Saverio Trotta, Herbert Knapp, Klaus Aufinger, Thomas F. Meister, Josef Böck, Bernhard Dehlink, Werner Simbürger, Arpad L. Scholtz:
An 84 GHz Bandwidth and 20 dB Gain Broadband Amplifier in SiGe Bipolar Technology. IEEE J. Solid State Circuits 42(10): 2099-2106 (2007) - [c12]Saverio Trotta, Bernhard Dehlink, Herbert Knapp, Klaus Aufinger, Thomas F. Meister, Josef Böck, Werner Simbürger, Arpad L. Scholtz:
Design considerations for low-noise, highly-linear millimeter-wave mixers in SiGe bipolar technology. ESSCIRC 2007: 356-359 - [c11]Saverio Trotta, Herbert Knapp, Donald Dibra, Klaus Aufinger, Thomas F. Meister, Josef Böck, Werner Simbürger, Arpad L. Scholtz:
A 79GHz SiGe-Bipolar Spread-Spectrum TX for Automotive Radar. ISSCC 2007: 430-613 - 2006
- [j5]Sebastian Caban, Christian Mehlführer, Robert Langwieser, Arpad L. Scholtz, Markus Rupp:
Vienna MIMO Testbed. EURASIP J. Adv. Signal Process. 2006 (2006) - [c10]Werner Keim, Arpad L. Scholtz:
Performance and reliability evaluation of the s-band vienna satellite ground station. Communication Systems and Networks 2006: 103-107 - [c9]Robert Langwieser, Michael Fischer, Arpad L. Scholtz, Markus Rupp, Gerhard Humer:
Rapid prototyping for RF-transmitters and receivers. Communication Systems and Networks 2006: 108-112 - 2005
- [c8]Christoph Kienmayer, Mario Engl, Aandreas Desch, Ronald Thüringer, Mohit Berry, Marc Tiebout, Arpad L. Scholtz, Robert Weigel:
17 GHz receiver in TSLP package for WLAN/ISM applications in 0.13 μm CMOS. ESSCIRC 2005: 133-136 - 2004
- [j4]Winfried Bakalski, Werner Simbürger, Ronald Thüringer, Andriy Vasylyev, Arpad L. Scholtz:
A fully integrated 5.3-GHz 2.4-V 0.3-W SiGe bipolar power amplifier with 50-Ω output. IEEE J. Solid State Circuits 39(7): 1006-1014 (2004) - [j3]Werner Perndl, Herbert Knapp, Klaus Aufinger, Thomas F. Meister, Werner Simbürger, Arpad L. Scholtz:
Voltage-controlled oscillators up to 98 GHz in SiGe bipolar technology. IEEE J. Solid State Circuits 39(10): 1773-1777 (2004) - [c7]Christoph Kienmayer, Marc Tiebout, Werner Simbürger, Arpad L. Scholtz:
A low-power low-voltage NMOS bulk-mixer with 20 GHz bandwidth in 90 nm CMOS. ISCAS (4) 2004: 385-388 - 2003
- [j2]Daniel Kehrer, Hans-Dieter Wohlmuth, Herbert Knapp, Martin Wurzer, Arpad L. Scholtz:
40-Gb/s 2: 1 multiplexer and 1: 2 demultiplexer in 120-nm standard CMOS. IEEE J. Solid State Circuits 38(11): 1830-1837 (2003) - [c6]Winfried Bakalski, Werner Simbürger, Ronald Thüringer, Andriy Vasylyev, Arpad L. Scholtz:
A fully integrated 5.3 GHz, 2.4V, 0.3 W SiGe-bipolar power amplifier with 50Ω output. ESSCIRC 2003: 561-564 - [c5]Filiz Bektas, Bojan Vondra, Peter E. Veith, Leopold Faltin, Alfred Pohl, Arpad L. Scholtz:
Bluetooth Communication Employing Antenna Diversity. ISCC 2003: 652-657 - 2002
- [c4]Günter Ritzberger, Josef Böck, Herbert Knapp, Ludwig Treitinger, Arpad L. Scholtz:
38 GHz low-power static frequency divider in SiGe bipolar technology. ISCAS (4) 2002: 413-416 - [c3]Winfried Bakalski, Werner Simbürger, Daniel Kehrer, Hans-Dieter Wohlmuth, Mirjana Rest, Arpad L. Scholtz:
A monolithic 2.45 GHz, 0.56 W power amplifier with 45% PAE at 2.4 V in standard 25 GHz fT Si-bipolar. ISCAS (4) 2002: 803-806 - 2001
- [c2]Daniel Kehrer, Werner Simbürger, Hans-Dieter Wohlmuth, Arpad L. Scholtz:
Modeling of monolithic lumped planar transformers up to 20 GHz. CICC 2001: 401-404
1990 – 1999
- 1992
- [c1]Gerhard Schultes, Arpad L. Scholtz, Martin Happel, Werner Simbürger:
A testbed for DECT physical- and medium access-layer. PIMRC 1992: 349-356
1980 – 1989
- 1983
- [j1]Heinz K. Philipp, Arpad L. Scholtz, Ernst Bonek, Walter R. Leeb:
Costas Loop Experiments for a 10.6 µm Communications Receiver. IEEE Trans. Commun. 31(8): 1000-1002 (1983)
Coauthor Index
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