 | 2012 |
| 19 |  | Yao-Hong Liu,
Xiongchuan Huang,
Maja Vidojkovic,
Koji Imamura,
Pieter Harpe,
Guido Dolmans,
Harmke de Groot:
A 2.7nJ/b multi-standard 2.3/2.4GHz polar transmitter for wireless sensor networks.
ISSCC 2012: 448-450 |
| 18 |  | Xiongchuan Huang,
Ao Ba,
Pieter Harpe,
Guido Dolmans,
Harmke de Groot,
John Long:
A 915MHz 120μW-RX/900μW-TX envelope-detection transceiver with 20dB in-band interference tolerance.
ISSCC 2012: 454-456 |
| 17 |  | Pieter Harpe,
Yan Zhang,
Guido Dolmans,
Kathleen Philips,
Harmke de Groot:
A 7-to-10b 0-to-4MS/s flexible SAR ADC with 6.5-to-16fJ/conversion-step.
ISSCC 2012: 472-474 |
| 2011 |
| 16 |  | Xiongchuan Huang,
Pieter Harpe,
Guido Dolmans,
Harmke de Groot:
A 915MHz ultra-low power wake-up receiver with scalable performance and power consumption.
ESSCIRC 2011: 543-546 |
| 15 |  | Maarten Lont,
Dusan M. Milosevic,
Arthur H. M. van Roermund,
Guido Dolmans:
Requirement driven low-power LC and ring oscillator design.
ISCAS 2011: 1129-1132 |
| 14 |  | Maja Vidojkovic,
Xiongchuan Huang,
Pieter Harpe,
Simonetta Rampu,
Cui Zhou,
Li Huang,
Koji Imamura,
Ben Busze,
Frank Bouwens,
Mario Konijnenburg,
Juan Santana,
Arjan Breeschoten,
Jos Huisken,
Guido Dolmans,
Harmke de Groot:
A 2.4GHz ULP OOK single-chip transceiver for healthcare applications.
ISSCC 2011: 458-460 |
| 13 |  | Duan Zhao,
Wouter A. Serdijn,
Li Huang,
Guido Dolmans:
Reconfigurable subsampling receiver architecture for wireless body area networks.
PIMRC 2011: 2153-2157 |
| 12 |  | Yan Zhang,
Guido Dolmans:
Priority-guaranteed MAC protocol for emerging wireless body area networks.
Annales des Télécommunications 66(3-4): 229-241 (2011) |
| 11 |  | Maja Vidojkovic,
Xiongchuan Huang,
Pieter Harpe,
Simonetta Rampu,
Cui Zhou,
Li Huang,
Jef van de Molengraft,
Koji Imamura,
Ben Busze,
Frank Bouwens,
Mario Konijnenburg,
Juan Santana,
Arjan Breeschoten,
Jos Huisken,
Kathleen Philips,
Guido Dolmans,
Harmke de Groot:
A 2.4 GHz ULP OOK Single-Chip Transceiver for Healthcare Applications.
IEEE Trans. Biomed. Circuits and Systems 5(6): 523-534 (2011) |
| 10 |  | Georgios N. Selimis,
Li Huang,
Fabien Massé,
Ioanna Tsekoura,
Maryam Ashouei,
Francky Catthoor,
Jos Huisken,
Jan Stuyt,
Guido Dolmans,
Julien Penders,
Harmke de Groot:
A Lightweight Security Scheme for Wireless Body Area Networks: Design, Energy Evaluation and Proposed Microprocessor Design.
J. Medical Systems 35(5): 1289-1298 (2011) |
| 9 |  | Pieter Harpe,
Cui Zhou,
Yu Bi,
N. P. van der Meijs,
Xiaoyan Wang,
Kathleen Philips,
Guido Dolmans,
Harmke de Groot:
A 26 μ W 8 bit 10 MS/s Asynchronous SAR ADC for Low Energy Radios.
J. Solid-State Circuits 46(7): 1585-1595 (2011) |
| 2010 |
| 8 |  | Maarten Lont,
Dusan M. Milosevic,
Peter G. M. Baltus,
Arthur H. M. van Roermund,
Guido Dolmans:
Analytical passive mixer power gain models.
ISCAS 2010: 2386-2389 |
| 7 |  | Xiongchuan Huang,
Simonetta Rampu,
Xiaoyan Wang,
Guido Dolmans,
Harmke de Groot:
A 2.4GHz/915MHz 51µW wake-up receiver with offset and noise suppression.
ISSCC 2010: 222-223 |
| 6 |  | Pieter Harpe,
Cui Zhou,
Xiaoyan Wang,
Guido Dolmans,
Harmke de Groot:
A 30fJ/conversion-step 8b 0-to-10MS/s asynchronous SAR ADC in 90nm CMOS.
ISSCC 2010: 388-389 |
| 2009 |
| 5 |  | Maarten Lont,
Dusan M. Milosevic,
Peter G. M. Baltus,
Arthur H. M. van Roermund,
Guido Dolmans:
Analytical Models for the Wake-Up Receiver Power Budget for Wireless Sensor Networks.
GLOBECOM 2009: 1-6 |
| 4 |  | Yan Zhang,
Li Huang,
Guido Dolmans,
Harmke de Groot:
An analytical model for energy efficiency analysis of different wakeup radio schemes.
PIMRC 2009: 1148-1152 |
| 3 |  | Ruben de Francisco,
Li Huang,
Guido Dolmans,
Harmke de Groot:
Coexistence of ZigBee wireless sensor networks and Bluetooth inside a vehicle.
PIMRC 2009: 2700-2704 |
| 2 |  | Ruben de Francisco,
Li Huang,
Guido Dolmans:
Coexistence of WBAN and WLAN in Medical Environments.
VTC Fall 2009: 0- |
| 1 |  | Li Huang,
Maryam Ashouei,
Refet Firat Yazicioglu,
Julien Penders,
Ruud J. M. Vullers,
Guido Dolmans,
Patrick Merken,
Jos Huisken,
Harmke de Groot,
Chris Van Hoof,
Bert Gyselinckx:
Ultra-Low Power Sensor Design for Wireless Body Area Networks - Challenges, Potential Solutions, and Applications.
JDCTA 3(3): 136-148 (2009) |