Haluk Kulah, Ph.D.
Affiliations: | 2003 | University of Michigan, Ann Arbor, Ann Arbor, MI |
Area:
micromachining technologies, micromachined sensors, actuators, and MEMS; analog integrated circuits; implantable biomedical microsystems; micropackaging; and low-power wireless sensing/actuating systemsGoogle:
"Haluk Kulah"Mean distance: 14.67 | S | N | B | C | P |
Parents
Sign in to add mentorKhalil Najafi | grad student | 2003 | University of Michigan | |
(Closed-loop electromechanical sigma-delta microgravity accelerometers.) |
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Publications
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Şen-Doğan B, Okan M, Afşar-Erkal N, et al. (2020) Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (µMFCs) via the Surface Modification of Gold Electrodes. Micromachines. 11 |
Chamanian S, Muhtaroglu A, Kulah H. (2020) A Self-Adapting Synchronized-Switch Interface Circuit for Piezoelectric Energy Harvesters Ieee Transactions On Power Electronics. 35: 901-912 |
Atik AC, Özkan MD, Özgür E, et al. (2020) Modeling and fabrication of electrostatically actuated diaphragms for on-chip valving of MEMS-compatible microfluidic systems Journal of Micromechanics and Microengineering. 30: 115001 |
Ulusan H, Chamanian S, Ilik B, et al. (2019) Fully Implantable Cochlear Implant Interface Electronics With 51.2- $\mu$ W Front-End Circuit Ieee Transactions On Very Large Scale Integration Systems. 27: 1504-1512 |
Chamanian S, Ulusan H, Koyuncuoglu A, et al. (2019) An Adaptable Interface Circuit With Multistage Energy Extraction for Low-Power Piezoelectric Energy Harvesting MEMS Ieee Transactions On Power Electronics. 34: 2739-2747 |
Chamanian S, Ciftci B, Ulusan H, et al. (2019) Power-Efficient Hybrid Energy Harvesting System for Harnessing Ambient Vibrations Ieee Transactions On Circuits and Systems I-Regular Papers. 66: 2784-2793 |
Ulusan H, Muhtaroglu A, Külah H. (2019) A Sub-500 mu W Interface Electronics for Bionic Ears Ieee Access. 7: 132140-132152 |
Yasar O, Ulusan H, Zorlu O, et al. (2018) Optimization of AA-Battery Sized Electromagnetic Energy Harvesters: Reducing the Resonance Frequency Using a Non-Magnetic Inertial Mass Ieee Sensors Journal. 18: 4509-4516 |
İlik B, Koyuncuoğlu A, Şardan-Sukas Ö, et al. (2018) Thin film piezoelectric acoustic transducer for fully implantable cochlear implants Sensors and Actuators a: Physical. 280: 38-46 |
Aydın E, Gökçe F, Kangül M, et al. (2018) A second harmonic based resonance characterization method for MEMS electrostatic resonators Sensors and Actuators a: Physical. 274: 220-230 |