IP Library Patent Application 10544617
Patent Application
App. No. 10/544,617

Biosensor, biosensor chip, and biosensor device

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Quick Facts
Patent No.
US None
App. No.
10/544,617
Abstract

A biosensor device includes a biosensor having a plurality of biosensor sections each including a working pole and a counter pole. The biosensor device further includes a singal processing circuit for measuring a current flowing from the working pole when different voltages are applied between the working poles and the counter poles of the respective biosensor sections and for specifying a concentration of a to-be-measured material from a measured current value.

Claims (88)

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4 . A biosensor device comprising:

a biosensor including a biosensor section having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit for applying voltage between the working pole and the counter pole at measurement and for measuring a concentration of the to-be-measured material from a current flowing in the biosensor section,

wherein the measuring circuit applies to at least one of the working pole and the counter pole voltage biased at a constant voltage and modulated by a spreading code while changing the voltage applied between the working pole and the counter pole chronologically.

5 . A biosensor device comprising:

a biosensor including a biosensor section having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit for applying voltage between the working pole and the counter pole at measurement and for measuring a concentration of the to-be-measured material from a current flowing in the biosensor section,

wherein the measuring circuit applies to at least one of the working pole and the counter pole voltage biased at a constant voltage and modulated by a sine wave while changing the voltage applied between the working pole and the counter pole chronologically.

6 . The biosensor device of claim 5 , wherein the measuring circuit further includes a low-pass-filter-equipped voltage source connected to the working pole or the counter pole and a ΔΣ modulator connected to the low-pass-filter-equipped voltage source, and

the voltage modulated by the sine wave is generated in series connection of the ΔΣ modulator and the low-pass-filter-equipped voltage source.

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10 . A biosensor device comprising:

a biosensor including a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit for applying different voltages between the working poles and the counter poles of the respective biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing in the working pole or the counter pole of each of the biosensor sections,

wherein the biosensor further includes a sample application spot to which the to-be-tested fluid is to be spot-applied and capillaries for supplying the to-be-tested fluid to the biosensor sections, and

the plurality of biosensor sections are connected in parallel with each other by means of the capillaries when viewing from the sample application spot, the capillaries for supplying the to-be-tested fluid to the biosensor sections being different from each other in size.

11 . A biosensor device comprising:

a biosensor including a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit for applying different voltages between the working poles and the counter poles of the respective biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing in the working pole or the counter pole of each of the biosensor sections,

wherein the biosensor further includes a sample application spot to which the to-be-tested fluid is to be spot-applied, a first capillary and a second capillary, which are different from each other in size, for supplying the to-be-tested fluid to the biosensor sections, and the plurality of biosensor sections,

at least two biosensor sections of the plurality of biosensor sections are connected with each other in series by means of the first capillary when viewing from the sample application spot,

at least two biosensor sections of the plurality of biosensor sections are connected with each other in series by means of the second capillary when viewing from the sample application spot, and

the biosensor sections connected by means of the first capillary and the biosensor sections connected by means of the second capillary are connected in parallel with each other when viewing from the sample application spot.

12 . A biosensor device comprising:

a biosensor including a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit for applying different voltages between the working poles and the counter poles of the respective biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing in the working pole or the counter pole of each of the biosensor sections,

wherein the plurality of biosensor sections have different characteristics.

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14 . A biosensor device comprising:

a biosensor including a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein, a sample application spot to which the to-be-tested fluid is to be spot-applied, and capillaries for supplying the to-be-tested fluid to the biosensor sections; and

a measuring circuit for applying voltage between the working pole and the counter pole of each of the biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing from the working pole or the counter pole of each of the biosensor sections,

wherein the plurality of biosensor sections are connected in parallel with each other by means of the capillaries when viewing from the sample application spot, the capillaries for supplying the to-be-tested fluid to the biosensor sections being different from each other in size.

15 . A biosensor device comprising:

a biosensor including a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein, a sample application spot to which the to-be-tested fluid is to be spot-applied, and a first capillary and a second capillary for supplying the to-be-tested fluid to the biosensor sections; and

a measuring circuit for applying voltage between the working pole and the counter pole of each of the biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing from the working pole or the counter pole of each of the biosensor sections,

wherein the first capillary and the second capillary are different from each other in size,

at least two biosensor sections of the plurality of biosensor sections are connected with each other in series by means of the first capillary when viewing from the sample application spot,

at least two biosensor sections of the plurality of biosensor sections are connected with each other in series by means of the second capillary when viewing from the sample application spot, and

the biosensor sections connected by means of the first capillary and the biosensor sections connected by means of the second capillary are connected in parallel with each other when viewing from the sample application spot.

16 . A biosensor device comprising:

a biosensor including a plurality of biosensor sections different from each other in characteristics, each of the plurality of biosensor sections including a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit for applying voltage between the working pole and the counter pole of each of the biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing from the working pole or the counter pole of each of the biosensor sections.

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19 . A biosensor chip comprising:

a biosensor including a biosensor section having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measure material to flow therein; and

a measuring circuit provided on a substrate together with the biosensor for applying voltage between the working pole and the counter pole at measurement and for measuring a concentration of the to-be-measured material from currents flowing in the biosensor section,

wherein the measuring circuit applies to at least one of the working pole and the counter pole voltage biased at a constant voltage and modulated by a spreading code while changing the voltage applied between the working pole and the counter pole chronologically.

20 . A biosensor chip comprising:

a biosensor including a biosensor section having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measure material to flow therein; and

a measuring circuit provided on a substrate together with the biosensor for applying voltage between the working pole and the counter pole at measurement and for measuring a concentration of the to-be-measured material from currents flowing in the biosensor section,

wherein the measuring circuit applies to at least one of the working pole and the counter pole voltage biased at a constant voltage and modulated by a sine wave while changing the voltage applied between the working pole and the counter pole chronologically.

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23 . A biosensor chip comprising:

a biosensor including: a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; a sample application spot to which the to-be-tested fluid is to be spot-applied; and capillaries for supplying the to-be-tested fluid to the biosensor sections; and

a measuring circuit provided on a substrate together with the biosensor for applying voltage between the working pole and the counter pole of each of the biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing from the working pole or the counter pole of each of the biosensor sections,

wherein the plurality of biosensor sections are connected in parallel with each other by means of the capillaries when viewing from the sample application spot, the capillaries for supplying the to-be-tested fluid to the biosensor sections being different from each other in size.

24 . A biosensor chip comprising:

a biosensor including: a plurality of biosensor sections each having a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; a sample application spot to which the to-be-tested fluid is to be spot-applied; and a first capillary and second capillary for supplying the to-be-tested fluid to the biosensor sections; and

a measuring circuit provided on a substrate together with the biosensor for applying voltage between the working pole and the counter pole of each of the biosensor sections at measurement and for measuring a concentration of the to-be-measured material based on a current flowing from the working pole or the counter pole of each of the biosensor sections,

wherein the first capillary and the second capillary are different from each other in size,

at least two biosensor sections of the plurality of biosensor sections are connected with each other in series by means of the first capillary when viewing from the sample application spot,

at least two biosensor sections of the plurality of biosensor sections are connected with each other in series by means of the second capillary when viewing from the sample application spot, and

the biosensor sections connected by means of the first capillary and the biosensor sections connected by means of the second capillary are connected in parallel with each other when viewing from the sample application spot.

25 . A biosensor chip comprising:

a biosensor including a plurality of biosensor sections different from each other in characteristics, each of the plurality of biosensor sections including a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein; and

a measuring circuit provided on a substrate together with the biosensor for applying voltage between the working pole and the counter pole of each of the biosensor sections at measurement and for measuring a concentration of the to-be-measured material base on a current flowing from the working pole or the counter pole of each of the biosensor sections.

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27 . A biosensor comprising:

a plurality of biosensor sections each including a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein;

a sample application spot to which the to-be-tested fluid is to be spot-applied; and

capillaries for supplying the to-be-tested fluid to the plurality of biosensor sections,

wherein the plurality of biosensor sections are connected in parallel with each other by means of the capillaries when viewing from the sample application spot, the capillaries for supplying the to-be-tested fluid to the plurality of biosensor sections being different from each other in size.

28 . A biosensor comprising:

a plurality of biosensor sections each including a working pole and a counter pole facing the working pole with an interval left for allowing a to-be-tested fluid containing a to-be-measured material to flow therein;

a sample application spot to which the to-be-tested fluid is to be spot-applied; and

a first capillary and a second capillary for supplying the to-be-tested fluid to the plurality of biosensor sections,

wherein the first capillary and the second capillary are different from each other in size,

at least two biosensor sections of the plurality of biosensor sections are connected in series with each other by means of the first capillary when viewing from the sample application spot,

at least two biosensor sections of the plurality of biosensor sections are connected in series with each other by means of the second capillary when viewing from the sample application spot, and

the biosensor sections connected by means of the first capillary and the biosensor sections connected by means of the second capillary are connected in parallel with each other when viewing from the sample application spot.

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Assignments (2)
CHANGE OF NAME Recorded Nov 24, 2008
From: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
To: PANASONIC CORPORATION
Reel/Frame 021897/0653 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2006
From: NAKATSUKA, JUNJI
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 018409/0059 →