Matlab/Simulink tool has been widely used in system modeling of circuit design. However, its application in the discrete-time circuit is not enough mature. Based on the continuous-time circuit simulation results by Matlab/Simulink, an s-z transformation method for the discrete-time accelerometer system design is proposed in this paper. In this method, a switched-capacitor readout circuit for closed-loop micromechanical capacitive accelerometer is designed and fabricated in a 0.35??m 15V CMOS process. The accelerometer operates under ??6.5V supply with a full scale of ??50g and the equivalent noise acceleration (ENA) is tested to be 54??g/??Hz at 60Hz. ? 2012 IEEE.EI
This paper presents a low-noise single-ended openloop switched-capacitor interface circuit in 0.35 m...
In order to design accelerometers, electromechanical hybrid simulation with the sensor and interface...
A novel MEMS capacitive accelerometer was characterized and tested using a specifically designed low...
This paper presents an interface readout circuit for Micromachined capacitive accelerometer. An anal...
This paper presents a switched-capacitor readout circuit designed for the closed-loop MEMS capacitiv...
This paper presents a switched-capacitor readout circuit designed for the closed-loop MEMS capacitiv...
AbstractMany future applications for accelerometers demand resolution below 1 mg together with low p...
This paper mainly discusses issues concerning the architecture of time divided closed loop accelerom...
A low-noise high-linearity switched capacitor interface implemented in a 0.35 mu m 3.3 V/15 V CMOS p...
This paper describes a low-noise CMOS readout circuit for MEMS capacitive accelerometers at low freq...
In this thesis, a closed-loop analog readout circuit for capacitive MEMS accelerometers is introduce...
A switched capacitor interface is presented in this paper for a +/- 50g capacitive micro-acceleromet...
Abstract: In this paper a novel interface concept is described for the design of closed loop acceler...
This paper describes a low-noise low-offset CMOS readout circuit for MEMS capacitive accelerometers....
A switched capacitor interface is presented in this paper for a ��50g capacitive micro-accelerometer...
This paper presents a low-noise single-ended openloop switched-capacitor interface circuit in 0.35 m...
In order to design accelerometers, electromechanical hybrid simulation with the sensor and interface...
A novel MEMS capacitive accelerometer was characterized and tested using a specifically designed low...
This paper presents an interface readout circuit for Micromachined capacitive accelerometer. An anal...
This paper presents a switched-capacitor readout circuit designed for the closed-loop MEMS capacitiv...
This paper presents a switched-capacitor readout circuit designed for the closed-loop MEMS capacitiv...
AbstractMany future applications for accelerometers demand resolution below 1 mg together with low p...
This paper mainly discusses issues concerning the architecture of time divided closed loop accelerom...
A low-noise high-linearity switched capacitor interface implemented in a 0.35 mu m 3.3 V/15 V CMOS p...
This paper describes a low-noise CMOS readout circuit for MEMS capacitive accelerometers at low freq...
In this thesis, a closed-loop analog readout circuit for capacitive MEMS accelerometers is introduce...
A switched capacitor interface is presented in this paper for a +/- 50g capacitive micro-acceleromet...
Abstract: In this paper a novel interface concept is described for the design of closed loop acceler...
This paper describes a low-noise low-offset CMOS readout circuit for MEMS capacitive accelerometers....
A switched capacitor interface is presented in this paper for a ��50g capacitive micro-accelerometer...
This paper presents a low-noise single-ended openloop switched-capacitor interface circuit in 0.35 m...
In order to design accelerometers, electromechanical hybrid simulation with the sensor and interface...
A novel MEMS capacitive accelerometer was characterized and tested using a specifically designed low...