The Experts below are selected from a list of 204 Experts worldwide ranked by ideXlab platform
T Ungaretti - One of the best experts on this subject based on the ideXlab platform.
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a spl plusmn 1 g dual axis Linear Accelerometer in a standard 0 5 spl mu m cmos technology for high sensitivity applications
IEEE Journal of Solid-state Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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A /spl plusmn/1-g dual-axis Linear Accelerometer in a standard 0.5-/spl mu/m CMOS technology for high-sensitivity applications
IEEE Journal of Solid-State Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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a 80db snr 1g fully integrated biaxial Linear Accelerometer in a standard 0 5µm cmos technology for high sensitivity applications
European Solid-State Circuits Conference, 2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
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A 80dB–SNR ±1g fully–integrated biaxial Linear Accelerometer in a standard 0.5µm CMOS technology for high–sensitivity applications
2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
A Baschirotto - One of the best experts on this subject based on the ideXlab platform.
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a spl plusmn 1 g dual axis Linear Accelerometer in a standard 0 5 spl mu m cmos technology for high sensitivity applications
IEEE Journal of Solid-state Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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A /spl plusmn/1-g dual-axis Linear Accelerometer in a standard 0.5-/spl mu/m CMOS technology for high-sensitivity applications
IEEE Journal of Solid-State Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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a 80db snr 1g fully integrated biaxial Linear Accelerometer in a standard 0 5µm cmos technology for high sensitivity applications
European Solid-State Circuits Conference, 2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
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A 80dB–SNR ±1g fully–integrated biaxial Linear Accelerometer in a standard 0.5µm CMOS technology for high–sensitivity applications
2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
Enrico Chiesa - One of the best experts on this subject based on the ideXlab platform.
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a spl plusmn 1 g dual axis Linear Accelerometer in a standard 0 5 spl mu m cmos technology for high sensitivity applications
IEEE Journal of Solid-state Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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A /spl plusmn/1-g dual-axis Linear Accelerometer in a standard 0.5-/spl mu/m CMOS technology for high-sensitivity applications
IEEE Journal of Solid-State Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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a 80db snr 1g fully integrated biaxial Linear Accelerometer in a standard 0 5µm cmos technology for high sensitivity applications
European Solid-State Circuits Conference, 2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
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A 80dB–SNR ±1g fully–integrated biaxial Linear Accelerometer in a standard 0.5µm CMOS technology for high–sensitivity applications
2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
E Lasalandra - One of the best experts on this subject based on the ideXlab platform.
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a spl plusmn 1 g dual axis Linear Accelerometer in a standard 0 5 spl mu m cmos technology for high sensitivity applications
IEEE Journal of Solid-state Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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A /spl plusmn/1-g dual-axis Linear Accelerometer in a standard 0.5-/spl mu/m CMOS technology for high-sensitivity applications
IEEE Journal of Solid-State Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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a 80db snr 1g fully integrated biaxial Linear Accelerometer in a standard 0 5µm cmos technology for high sensitivity applications
European Solid-State Circuits Conference, 2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
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A 80dB–SNR ±1g fully–integrated biaxial Linear Accelerometer in a standard 0.5µm CMOS technology for high–sensitivity applications
2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
Fabio Pasolini - One of the best experts on this subject based on the ideXlab platform.
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a spl plusmn 1 g dual axis Linear Accelerometer in a standard 0 5 spl mu m cmos technology for high sensitivity applications
IEEE Journal of Solid-state Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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A /spl plusmn/1-g dual-axis Linear Accelerometer in a standard 0.5-/spl mu/m CMOS technology for high-sensitivity applications
IEEE Journal of Solid-State Circuits, 2003Co-Authors: A Baschirotto, Alberto Gola, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T UngarettiAbstract:A dual-axis Linear Accelerometer, composed of a dual-axis acceleration sensor using a single proof mass to detect x- and y-axis acceleration and the relative fully integrated electronics front-end realized in a standard 0.5-/spl mu/m CMOS technology, is proposed. The overall device features a full scale of /spl plusmn/1g and a sensitivity of 200 /spl mu/g. No external components are required since an internal switched-capacitor low-pass filter limits the output signal band to 30 Hz. The dual-axis sensor is packaged with the electronics. In the final device, only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of /spl plusmn/2.5%. The device is able to detect a minimum signal of 200 /spl mu/g (which is about 80 dB lower than its full scale) and consumes 45 mW from a single 5-V supply.
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a 80db snr 1g fully integrated biaxial Linear Accelerometer in a standard 0 5µm cmos technology for high sensitivity applications
European Solid-State Circuits Conference, 2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.
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A 80dB–SNR ±1g fully–integrated biaxial Linear Accelerometer in a standard 0.5µm CMOS technology for high–sensitivity applications
2002Co-Authors: Alberto Gola, P Bendiscioli, Enrico Chiesa, E Lasalandra, Fabio Pasolini, Michele Tronconi, T Ungaretti, A BaschirottoAbstract:A fully-integrated biaxial Linear Accelerometer realized in a standard 0.5µm CMOS technology is proposed. The device features a full-scale of ±1g and a sensitivity of 250µg. No external components are required since a switched-capacitor low-pass filter is internally embedded which limits the output signal band to 30Hz. The biaxial sensor is packaged with the electronics. In the final device only four pins are active, plus a test pin. The device sensitivity is on-chip factory trimmed. This sensitivity is adjusted with a total accuracy of ±10%. The device exhibits a SNR of about 80dB and consumes 45mW from a single 5V supply.