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184 results on '"Giacomozzi, F."'

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165. Modeling and characterization of a circular-shaped energy scavenger in MEMS surface micromachining technology

166. Micropatterning of Substrates for the Culture of Cell Networks by Stencil-Assisted Additive Nanofabrication

167. Fabrication of silicon bolometers with bulk micromachining technology

168. Reconfigurable MEMS-enabled LC-tank for Multi-Band CMOS Oscillator

170. Discussion and Demonstration of RF-MEMS Attenuators Design Concepts and Modules for Advanced Beamforming in the Beyond-5G and 6G Scenario-Part 2.

171. A Fingertip-Mimicking 12×16 200μm-Resolution e-skin Taxel Readout Chip with per-Taxel Spiking Readout and Embedded Receptive Field Processing.

172. Discussion and Demonstration of RF-MEMS Attenuators Design Concepts and Modules for Advanced Beamforming in the Beyond-5G and 6G Scenario-Part 1.

173. Enhancing the Deposition Rate and Uniformity in 3D Gold Microelectrode Arrays via Ultrasonic-Enhanced Template-Assisted Electrodeposition.

174. MEMS-Switched Triangular and U-Shaped Band-Stop Resonators for K-Band Operation.

175. Part II: Impedance-based DNA biosensor for detection of isolated strains of phytopathogen Ralstonia solanacearum.

176. Triangular Sierpinski Microwave Band-Stop Resonators for K-Band Filtering.

177. Part I: Non-faradaic electrochemical impedance-based DNA biosensor for detecting phytopathogen - Ralstonia solanacearum.

178. Plant pathogenicity and associated/related detection systems. A review.

179. Design of U-Shaped Frequency Tunable Microwave Filters in MEMS Technology.

180. A review of recent advances in plant-pathogen detection systems.

181. Enhanced Robustness of a Bridge-Type Rf-Mems Switch for Enabling Applications in 5G and 6G Communications.

182. Micropatterning of Substrates for the Culture of Cell Networks by Stencil-Assisted Additive Nanofabrication.

183. RF-MEMS Monolithic K and Ka Band Multi-State Phase Shifters as Building Blocks for 5G and Internet of Things (IoT) Applications.

184. [Sensitization and oral challenge with ovoalbumin in an animal model of food allergy].

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