Analyte monitoring device and methods of use
First Claim
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1. An apparatus, comprising:
- an analyte sensor interface configured to receive an in vitro analyte sensor, wherein the in vitro analyte sensor generates an analyte signal from a fluid sample; and
a processor operatively coupled to a data receiver and the analyte sensor interface, the processor configured to recognize the in vitro analyte sensor without a user input when the in vitro analyte sensor is received in the analyte sensor interface and is a no-coding in vitro analyte sensor, and to retrieve a universal calibration parameter when the recognized in vitro analyte sensor is the no-coding in vitro analyte sensor.
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Abstract
In aspects of the present disclosure, a no coding blood glucose monitoring unit including a calibration unit is integrated with one or more components of an analyte monitoring system to provide compatibility with in vitro test strip that do not require a calibration code is provided. Also disclosed are methods, systems, devices and kits for providing the same.
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16 Claims
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1. An apparatus, comprising:
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an analyte sensor interface configured to receive an in vitro analyte sensor, wherein the in vitro analyte sensor generates an analyte signal from a fluid sample; and a processor operatively coupled to a data receiver and the analyte sensor interface, the processor configured to recognize the in vitro analyte sensor without a user input when the in vitro analyte sensor is received in the analyte sensor interface and is a no-coding in vitro analyte sensor, and to retrieve a universal calibration parameter when the recognized in vitro analyte sensor is the no-coding in vitro analyte sensor. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10)
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11. An apparatus, comprising:
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an in vitro analyte sensor interface; one or more processors operatively coupled to the in vitro analyte sensor interface; and a memory operatively coupled to the one or more processors, the memory for storing instructions which, when executed by the one or more processors, causes the one or more processors to determine a type of in vitro analyte sensor received at the in vitro analyte sensor interface, to determine the type of in vitro analyte sensor without a user input when the in vitro analyte sensor is a no-coding in vitro analyte sensor, and to process one or more signals generated by the in vitro analyte sensor with a universal calibration parameter when the determined type of in vitro analyte sensor is the no-coding in vitro analyte sensor, wherein the universal calibration parameter is associated with in vitro analyte sensors that are no-coding in vitro analyte sensors. - View Dependent Claims (12, 13, 14, 15, 16)
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Specification