An overview on the use of microelectromechanical systems (MEMS) technologies for timing and frequency control is presented. In particular, micromechanical RF filters and reference oscillators based on recently demonstrated vibrating on-chip micromechanical resonators with Q's > 10,000 at 1.5 GHz are described as an attractive solution to the increasing count of RF components (e.g., filters) expected to be needed by future multiband, multimode wireless devices. With Q's this high in onchip abundance, such devices might also enable a paradigm shift in the design of timing and frequency control functions, where the advantages of high-Q are emphasized, rather than suppressed (e.g., due to size and cost rea...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
In this work a wide overview on the exploitation of MEMS technology (MicroElectroMechanical-Systems)...
MEMS-based Circuits and Systems for Wireless Communication provides comprehensive coverage of RF-MEM...
The very significant growth of the wireless communication industry has spawned tremendous interest i...
There is little question that the commercial success of smartphones has substantially increased the ...
As the communication technology evolves day by day, the demands for low cost, low power, multifuncti...
Abstract: A review of radio frequency microelectromechanical systems (RF MEMS) technology, from the ...
Wireless communication is showing an explosive growth of emerging consumer military applications of ...
Wireless communication is showing an explosive growth of emerging consumer military applications of ...
Within the Microelectronics Industry, the core research is focused on the realization of the Moore's...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
In this work a wide overview on the exploitation of MEMS technology (MicroElectroMechanical-Systems)...
MEMS-based Circuits and Systems for Wireless Communication provides comprehensive coverage of RF-MEM...
The very significant growth of the wireless communication industry has spawned tremendous interest i...
There is little question that the commercial success of smartphones has substantially increased the ...
As the communication technology evolves day by day, the demands for low cost, low power, multifuncti...
Abstract: A review of radio frequency microelectromechanical systems (RF MEMS) technology, from the ...
Wireless communication is showing an explosive growth of emerging consumer military applications of ...
Wireless communication is showing an explosive growth of emerging consumer military applications of ...
Within the Microelectronics Industry, the core research is focused on the realization of the Moore's...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
This article presents a real-time clock (RTC) system based on a microelectromechanical system (MEMS)...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
In this work a wide overview on the exploitation of MEMS technology (MicroElectroMechanical-Systems)...