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US Patent 9693714 Digital ASIC sensor platform

Patent 9693714 was granted and assigned to Senseonics on July, 2017 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Senseonics
Senseonics
Current Assignee
Senseonics
Senseonics
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9693714
Date of Patent
July 4, 2017
Patent Application Number
13761839
Date Filed
February 7, 2013
Patent Citations Received
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US Patent 12000784 Identification of degradative species
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US Patent 12016684 Environmental detection and/or temperature compensation in an analyte monitoring system
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US Patent 12011263 Integrated optical filter system with low sensitivity to high angle of incidence light for an analyte sensor
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US Patent 12059255 Methods and systems for weighting calibration points and updating lag parameters
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US Patent 12023126 Continuous analyte monitoring system
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US Patent 11701038 Assessement of performance of an implanted sensor
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US Patent 11850019 Analyte monitoring system
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US Patent 11963761 Mediation of in vivo analyte signal degradation
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Patent Primary Examiner
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Eric Winakur
Patent abstract

The present invention relates to an optical sensor that may be implanted within a living animal (e.g., a human) and may be used to measure the concentration of an analyte in a medium within the animal. The optical sensor may wirelessly receive and may be capable of bi-directional data communication. The optical sensor may include a semiconductor substrate in which various circuit components, one or more photodectors and/or a light source may be fabricated. The circuit components fabricated in the semiconductor substrate may include a comparator, an analog to digital converter, a temperature transducer, a measurement controller, a rectifier and/or a nonvolatile storage medium. The comparator may output a signal indicative of the difference between the outputs of first and second photodetectors. The measurement controller may receive digitized temperature, photodetector and/or comparator measurements and generate measurement information, which may be wirelessly transmitted from the optical sensor.

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