| 2008 |
| 12 | EE | Fabio Sebastiano,
Salvatore Drago,
Lucien Breems,
Domine Leenaerts,
Kofi A. A. Makinwa,
Bram Nauta:
Impulse based scheme for crystal-less ULP radios.
ISCAS 2008: 1508-1511 |
| 11 | EE | Wei Cheng,
Anne-Johan Annema,
Bram Nauta:
A multi-step P-cell for LNA design automation.
ISCAS 2008: 2550-2553 |
| 2007 |
| 10 | EE | Zhiyu Ru,
Eric A. M. Klumperink,
Bram Nauta:
On the Suitability of Discrete-Time Receivers for Software-Defined Radio.
ISCAS 2007: 2522-2525 |
| 9 | EE | Eric A. M. Klumperink,
Rameswor Shrestha,
Eisse Mensink,
Gerard Wienk,
Zhiyu Ru,
Bram Nauta:
Multipath Polyphase Circuits and their Application to RF Transceivers.
ISCAS 2007: 273-276 |
| 8 | EE | Mustafa Acar,
Anne-Johan Annema,
Bram Nauta:
Analytical Design Equations for Class-E Power Amplifiers with Finite DC-Feed Inductance and Switch On-Resistance.
ISCAS 2007: 2818-2821 |
| 7 | EE | Xiang Gao,
Eric A. M. Klumperink,
Bram Nauta:
Low-Jitter Multi-phase Clock Generation: A Comparison between DLLs and Shift Registers.
ISCAS 2007: 2854-2857 |
| 6 | EE | Eisse Mensink,
Daniël Schinkel,
Eric A. M. Klumperink,
Ed van Tuijl,
Bram Nauta:
Optimal Positions of Twists in Global On-Chip Differential Interconnects.
IEEE Trans. VLSI Syst. 15(4): 438-446 (2007) |
| 2006 |
| 5 | EE | Amorn Jiraseree-amornkun,
Apisak Worapishet,
Eric A. M. Klumperink,
Bram Nauta,
Wanlop Surakampontorn:
Slew rate induced distortion in switched-resistor integrators.
ISCAS 2006 |
| 2005 |
| 4 | EE | Jan H. Rutger Schrader,
Eric A. M. Klumperink,
Jan L. Visschers,
Bram Nauta:
Jitter limitations on multi-carrier modulation.
ISCAS (6) 2005: 6090-6093 |
| 3 | EE | Sasa Radovanovic,
Anne-Johan Annema,
Bram Nauta:
Bandwidth of integrated photodiodes in standard CMOS for CD/DVD applications.
Microelectronics Reliability 45(3-4): 705-710 (2005) |
| 2004 |
| 2 | EE | Eisse Mensink,
Eric A. M. Klumperink,
Bram Nauta:
Distortion cancellation via polyphase multipath circuits.
ISCAS (1) 2004: 1098-1101 |
| 2001 |
| 1 | EE | Eric A. M. Klumperink,
F. Bruccoleri,
Bram Nauta:
Finding all elementary circuits exploiting transconductance.
ISCAS (1) 2001: 667-670 |