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Georg E. Fantner
Person information
- affiliation: EPFL Lausanne, Laboratory for Bio- and Nano-Instrumentation, Switzerland
- affiliation: Massachusetts Institute of Technology (MIT), Cambridge, MA, USA
- affiliation (PhD 2006): University of California, Santa Barbara, Santa Barbara, CA, USA
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2010 – 2019
- 2019
- [c11]Matthias Häberle, Denis Djekic, Mahdi Rajabzadeh, Georg E. Fantner, Klaus Lips, Maurits Ortmanns, Jens Anders:
Comparison of Different Precision Pseudo Resistor Realizations in the DC-Feedback of Capacitive Transimpedance Amplifiers. ICECS 2019: 699-702 - 2018
- [j2]Denis Djekic, Georg E. Fantner, Klaus Lips, Maurits Ortmanns, Jens Anders:
A 0.1% THD, 1-MΩ to 1-GΩ Tunable, Temperature-Compensated Transimpedance Amplifier Using a Multi-Element Pseudo-Resistor. IEEE J. Solid State Circuits 53(7): 1913-1923 (2018) - [c10]Matthias Häberle, Denis Djekic, Georg E. Fantner, Klaus Lips, Maurits Ortmanns, Jens Anders:
An Integrator-Differentiator TIA Using a Multi-Element Pseudo-Resistor in its DC Servo Loop for Enhanced Noise Performance. ESSCIRC 2018: 294-297 - [c9]Benedikt Schlecker, Adrian P. Nievergelt, Maurits Ortmanns, Georg E. Fantner, Jens Anders:
An Analog High-Speed Single-Cycle Lock-in Amplifier for Next Generation AFM Experiments. IEEE SENSORS 2018: 1-4 - 2017
- [c8]Adrian P. Nievergelt, Santiago H. Andany, Jonathan D. Adams, Melanie T. M. Hannebelle, Georg E. Fantner:
Components for high-speed atomic force microscopy optimized for low phase-lag. AIM 2017: 731-736 - [c7]Denis Djekic, Georg E. Fantner, Jan Behrends, Klaus Lips, Maurits Ortmanns, Jens Anders:
A transimpedance amplifier using a widely tunable PVT-independent pseudo-resistor for high-performance current sensing applications. ESSCIRC 2017: 79-82 - 2016
- [c6]Denis Djekic, Maurits Ortmanns, Georg E. Fantner, Jens Anders:
A tunable, robust pseudo-resistor with enhanced linearity for scanning ion-conductance microscopy. ISCAS 2016: 842-845 - 2014
- [j1]Benedikt Schlecker, Maja Dukic, Blake Erickson, Maurits Ortmanns, Georg E. Fantner, Jens Anders:
Single-Cycle-PLL Detection for Real-Time FM-AFM Applications. IEEE Trans. Biomed. Circuits Syst. 8(2): 206-215 (2014) - 2013
- [c5]Benedikt Schlecker, Maurits Ortmanns, Jens Anders, Georg E. Fantner:
Novel electronics for high-speed FM-AFM in life science applications. ECCTD 2013: 1-4 - [c4]Benedikt Schlecker, Maurits Ortmanns, Jens Anders, Georg E. Fantner:
PLL-based high-speed demodulation of FM signals for real-time AFM applications. ISCAS 2013: 197-200 - 2012
- [c3]Daniel J. Burns, Georg E. Fantner, Kamal Youcef-Toumi:
Automatic lateral resonance identification from cantilever deflection information in high speed atomic force microscopy. ACC 2012: 3240-3246 - [c2]I. Soltani Bozchalooi, Kamal Youcef-Toumi, Daniel J. Burns, Georg E. Fantner:
A vibration suppression approach to high-speed atomic force microscopy. ACC 2012: 3797-3802
2000 – 2009
- 2006
- [c1]Georg Schitter, Karl Johan Åström, Barry E. DeMartini, Georg E. Fantner, Kimberly L. Turner, Philipp J. Thurner, Paul K. Hansma:
Design and modeling of a high-speed scanner for atomic force microscopy. ACC 2006
Coauthor Index
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