279 results on '"Iannacci, Jacopo"'
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52. Discussion and Demonstration of RF-MEMS Attenuators Design Concepts and Modules for Advanced Beamforming in the Beyond-5G and 6G Scenario—Part 1.
53. MEMS-Switched Triangular and U-Shaped Band-Stop Resonators for K-Band Operation
54. Triangular Sierpinski Microwave Band-Stop Resonators for K-Band Filtering
55. RF-MEMS technology as an enabler of 5G: Low-loss ohmic switch tested up to 110 GHz
56. Out-of-plane deformation and pull-in voltage of cantilevers with residual stress gradient: experiment and modelling
57. RF MEMS packaged switch evaluation tests up to 25 GHz
58. Enhanced Optical Management in Organic Solar Cells by Virtue of Square-Lattice Triple Core-Shell Nanostructures
59. Low-Temperature Thin Film Encapsulation for MEMS With Silicon Nitride/Chromium Cap
60. RF-MEMS for high-performance and widely reconfigurable passive components – A review with focus on future telecommunications, Internet of Things (IoT) and 5G applications
61. On Chip Modulated Scattering Tag Operating at Millimetric Frequency Band.
62. RF MEMS switched K-Band Sierpinski resonators
63. Modeling and Simulation of a TFET-Based Label-Free Biosensor with Enhanced Sensitivity
64. Modelling, Validation and Experimental Analysis of Diverse RF-MEMS Ohmic Switch Designs in View of Beyond-5G, 6G and Future Networks—Part 1
65. Modeling and Simulation of a TFET-Based Label-Free Biosensor with Enhanced Sensitivity
66. RF-MEMS for smart communication systems and future 5G applications
67. List of Contributors
68. A perspective vision of micro/nano systems and technologies as enablers of 6g, super-iot, and tactile internet [point of view]
69. Design of U-Shaped Frequency Tunable Microwave Filters in MEMS Technology
70. Reliability of MEMS: A perspective on failure mechanisms, improvement solutions and best practices at development level
71. A Reconfigurable Pseudohairpin Filter Based on MEMS Switches
72. Enhanced Robustness of a Bridge-Type Rf-Mems Switch for Enabling Applications in 5G and 6G Communications
73. A Supra-Disciplinary Open Framework of Knowledge to Address the Future Challenges of a Network of Feelings
74. The future 5th generation (5G) of mobile networks: Challenges and opportunities of an impelling scenario
75. Introduction to MEMS and RF-MEMS: From the early days of microsystems to modern RF-MEMS passives
76. RF-MEMS passives for 5G applications: Case studies and design examples
77. Influence of design and fabrication on RF performance of capacitive RF MEMS switches
78. Investigation of Nonlinear Piezoelectric Energy Harvester for Low-Frequency and Wideband Applications
79. A Vision of 6G from the Perspective of Low-Complexity Hardware Micro/Nano Components
80. RF-MEMS Technology for High-Performance Passives (2nd Edition)
81. A Supra-Disciplinary Open Framework of Knowledge to Address the Future Challenges of a Network of Feelings
82. Enhanced robustness of a bridge-type Rf-Mems switch for enabling applications in 5G and 6G communicationsr
83. Investigation of Nonlinear Piezoelectric Energy Harvester for Low-Frequency and Wideband Applications
84. Macromodel-based simulation and measurement of the dynamic pull-in of viscously damped RF-MEMS switches
85. Review and Perspectives of Micro/Nano Technologies as Key-Enablers of 6G
86. Getting Ready for Beyond-5G, Super-IoT and 6G at Hardware Passive Components Level – A Multi-State RF-MEMS Monolithic Step Attenuator Analyzed up to 60 GHz
87. Towards Next Generation of High-Performance Radio Frequency Passive Components for Beyond-5G, 6G and Super-IoT – Application of Response Surface Method to the Optimization of RF-MEMS Reconfigurable Power Attenuators
88. Practical Guide to RF-MEMS
89. Compact Modeling of RF-MEMS Devices
90. Contributor contact details
91. A comprehensive overview of recent developments in RF-MEMS technology-based high-performance passive components for applications in the 5G and future telecommunications scenarios
92. Mixed-Domain Fast Simulation of RF and Microwave MEMS-based Complex Networks within Standard IC Development Frameworks
93. Development of a MST sensor probe, based on a SP3T switch, for biomedical applications
94. RF-MEMS Monolithic K and Ka Band Multi-State Phase Shifters as Building Blocks for 5G and Internet of Things (IoT) Applications
95. Thin Film Encapsulation for RF MEMS in 5G and Modern Telecommunication Systems
96. Distributed Sensing Via Inductively Coupled Single-Transistor Chaotic Oscillators: A New Approach and Its Experimental Proof-of-Concept
97. 18 - RF-MEMS for smart communication systems and future 5G applications
98. Broadband MST sensor probes based on a SP3T MEMs switch
99. Exploitation of RF-MEMS Switches for the Design of Broadband Modulated Scattering Technique Wireless Sensors
100. Out-of-plane deformation and pull-in voltage of cantilevers with residual stress gradient: experiment and modelling
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