Electrochemical biosensor readout meter
First Claim
1. A readout meter using an electrochemical biosensor test strip provided with an insulating substrate, a reference electrode and a working electrode formed parallel in a lengthwise direction on the insulating substrate, and a reagent which is fixed over the reference electrode and the working electrode on the insulating substrate, and which generates electric charges corresponding to the concentration of a specific material to be analyzed by reacting to this material depending on the insertion of sample into the test strip and the readout meter, comprising:
- a working voltage generating circuit applying a working voltage to the working electrode;
a voltage converting device converting the electric current flowing through the working electrode into voltage;
an amplifier device outputting an analogue voltage signal, amplifying the converted voltage from the voltage converting device;
wherein the voltage converting device and amplifier device are provided as separate elements and the voltage converting device includes an operational amplifier;
an A/D converter converting the analogue voltage signal from the amplifier into a digital voltage signal; and
a controller which operates the working voltage generating circuit to apply a first voltage to the working electrode when the test strip is inserted into the readout meter (tO), to apply a second voltage to the working electrode for a fixed period of time after a certain time (t2) when the sample is inserted (t1), then (t3) operates the working voltage generating circuit to apply a third voltage to the working electrode, and measures the concentration of the material to be analyzed by reading the digital voltage signal from the A/D converter after a certain time (t4) from the applying point of the third voltage (t3);
wherein the voltage converting device is set to convert the peak in the current generated at the applying point of the third voltage (t3) into a corresponding voltage without distortion, and the amplifier device is set to make the digital voltage signal at the measuring time (t4) become below the reference voltage of an A/D converter.
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Abstract
An Electrochemical biosensor readout meter which can do selectively quantitative analysis of sample of living body such as blood sugar, cholesterol and other elements in blood is disclosed. It is an object of this invention to provide electrochemical biosensor readout meter which has no distortion in peak current and can be manufactured in a low cost. In a preferred embodiment of present invention, a voltage converting means (OP2) is set to convert peak current which occurs at 3rd voltage applying time (t3) into voltage with no distortion and an amplifier (OP3) is set to make digital voltage signal at measuring time (t4) lower than reference voltage of A/D converter.
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Citations
6 Claims
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1. A readout meter using an electrochemical biosensor test strip provided with an insulating substrate, a reference electrode and a working electrode formed parallel in a lengthwise direction on the insulating substrate, and a reagent which is fixed over the reference electrode and the working electrode on the insulating substrate, and which generates electric charges corresponding to the concentration of a specific material to be analyzed by reacting to this material depending on the insertion of sample into the test strip and the readout meter, comprising:
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a working voltage generating circuit applying a working voltage to the working electrode;
a voltage converting device converting the electric current flowing through the working electrode into voltage;
an amplifier device outputting an analogue voltage signal, amplifying the converted voltage from the voltage converting device;
wherein the voltage converting device and amplifier device are provided as separate elements and the voltage converting device includes an operational amplifier;
an A/D converter converting the analogue voltage signal from the amplifier into a digital voltage signal; and
a controller which operates the working voltage generating circuit to apply a first voltage to the working electrode when the test strip is inserted into the readout meter (tO), to apply a second voltage to the working electrode for a fixed period of time after a certain time (t2) when the sample is inserted (t1), then (t3) operates the working voltage generating circuit to apply a third voltage to the working electrode, and measures the concentration of the material to be analyzed by reading the digital voltage signal from the A/D converter after a certain time (t4) from the applying point of the third voltage (t3);
wherein the voltage converting device is set to convert the peak in the current generated at the applying point of the third voltage (t3) into a corresponding voltage without distortion, and the amplifier device is set to make the digital voltage signal at the measuring time (t4) become below the reference voltage of an A/D converter. - View Dependent Claims (2, 3, 4)
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5. A readout meter using an electrochemical biosensor test strip provided with an insulating substrate, a reference electrode and a working electrode formed parallel in a lengthwise direction on the insulating substrate, and a reagent which is fixed over the reference electrode and the working electrode on the insulating substrate, and which generates electric charges corresponding to the concentration of a specific material to be analyzed by reacting to this material depending on the insertion of sample into the test strip and the readout meter, comprising:
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a working voltage generating circuit applying a working voltage to the working electrode;
a voltage converting device converting the electric current flowing through the working electrode into an analogue voltage signal;
an A/D converter converting the analogue voltage signal from the voltage converting device into a digital voltage signal; and
a controller which operates the working voltage generating circuit to apply a first voltage to the working electrode when the test strip is inserted into the readout meter (tO), to apply a second voltage to the working electrode for a fixed period of time after a certain time (t2) when the sample is inserted(t1), then (t3) operates the working voltage generating circuit to apply a third voltage to the working electrode, and measures the concentration of the material to be analyzed by reading the digital signal from the A/D converter after a certain time (t4) from the applying point of the third voltage (t3);
wherein the second voltage is not substantially 0V, and less than the first voltage. - View Dependent Claims (6)
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Specification