IP Library › Granted Patent US 10,508,933
Granted Patent B2
US 10,508,933 · App. 15/869,703 · Granted Dec 17, 2019

Composite detection sensor and sensor cable

Inventor: Yukio Ikeda (Tokyo, JP)
Assignee: HITACHI METALS, LTD.
G01D5/24G01D5/2417G01D11/245G01L1/144
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Quick Facts
Patent No.
US 10,508,933
App. No.
15/869,703
Granted
Dec 17, 2019
Kind
B2
Abstract

A composite detection sensor includes a sensor cable including not less than three conductive electrode wires and a resilient insulation covering collectively the electrode wires and holding the electrode wires that are circumferentially spaced from each other, and a capacitance measurement unit for measuring capacitance between each two electrode wires and between each electrode wire and the ground. The capacitance measurement unit may include plural inter-wire capacitance measuring portions for measuring capacitance between the electrode wires, a wire-ground capacitance measuring portion for measuring capacitance between the electrode wires and the ground, and a switching means switchable between a first connection state and a second connection state, the first connection state being a state in which the electrode wires are connected to the inter-wire capacitance measuring portions, and the second connection state being a state in which the electrode wires are connected to the wire-ground capacitance measuring portion.

Claims (42)

1. A composite detection sensor, comprising:

a sensor cable comprising not less than three conductive electrode wires and a resilient insulation covering collectively the not less than three electrode wires and holding the electrode wires that are circumferentially spaced from each other; and

a capacitance measurement unit for measuring capacitance between each two electrode wires and between at least one of the electrode wires and the ground,

wherein the three electrode wires comprise a first electrode wire, a second electrode wire and a third electrode wire, and

wherein the composite detection sensor further comprises an arithmetic unit that determines whether or not the sensor cable is pressed, the arithmetic unit making the determination by comparing ΔC obtained from the following formula (1) with a predetermined threshold value,

Δ C =( C 1+ C 2)−2× C 3  (1)

based on capacitance C 1 between the first electrode wire and the second electrode wire, capacitance C 2 between the first electrode wire and the third electrode wire, and capacitance C 3 between the second electrode wire and the third electrode wire.

2. The composite detection sensor according to claim 1 , wherein the capacitance measurement unit comprises:

a plurality of inter-wire capacitance measuring portions for measuring capacitance between the electrode wires;

a wire-ground capacitance measuring portion for measuring capacitance between the electrode wires and the ground; and

switching means switchable between a first connection state and a second connection state, the first connection state being a state in which the electrode wires are connected to the inter-wire capacitance measuring portions, and the second connection state being a state in which the electrode wires are connected to the wire-ground capacitance measuring portion.

3. The composite detection sensor according to claim 2 , wherein the capacitance measurement unit comprises a control unit for controlling the switching means, and wherein the control unit switches between the first connection state and the second connection state for every predetermined time.

4. The composite detection sensor according to claim 2 , wherein the three electrode wires comprise a first electrode wire, a second electrode wire and a third electrode wire, and

wherein the composite detection sensor further comprises an arithmetic unit that determines whether or not the sensor cable is pressed, the arithmetic unit making the determination by comparing ΔC obtained from the following formula (1) with a predetermined threshold value,

Δ C =( C 1+ C 2)−2× C 3  (1)

based on capacitance C 1 between the first electrode wire and the second electrode wire, capacitance C 2 between the first electrode wire and the third electrode wire, and capacitance C 3 between the second electrode wire and the third electrode wire.

5. The composite detection sensor according to claim 3 , wherein the predetermined time for switching between the first connection state and the second connection state by the control unit is less than 1 second.

6. The composite detection sensor according to claim 3 , wherein the switching means is configured such that all of the electrode wires are collectively connected to the wire-ground capacitance measuring portion when switched to the second connection state, so that the wire-ground capacitance measuring portion measures capacitance between all the electrode wires and the ground.

7. The composite detection sensor according to claim 3 , wherein the three electrode wires comprise a first electrode wire, a second electrode wire and a third electrode wire, and

wherein the composite detection sensor further comprises an arithmetic unit that determines whether or not the sensor cable is pressed, the arithmetic unit making the determination by comparing ΔC obtained from the following formula (1) with a predetermined threshold value,

Δ C =( C 1+ C 2)−2× C 3  (1)

based on capacitance C 1 between the first electrode wire and the second electrode wire, capacitance C 2 between the first electrode wire and the third electrode wire, and capacitance C 3 between the second electrode wire and the third electrode wire.

8. The composite detection sensor according to claim 5 , wherein the switching means is configured such that all of the electrode wires are collectively connected to the wire-ground capacitance measuring portion when switched to the second connection state, so that the wire-ground capacitance measuring portion measures capacitance between all the electrode wires and the ground.

9. The composite detection sensor according to claim 5 , wherein the three electrode wires comprise a first electrode wire, a second electrode wire and a third electrode wire, and

wherein the composite detection sensor further comprises an arithmetic unit that determines whether or not the sensor cable is pressed, the arithmetic unit making the determination by comparing ΔC obtained from the following formula (1) with a predetermined threshold value,

Δ C =( C 1+ C 2)−2× C 3  (1)

based on capacitance C 1 between the first electrode wire and the second electrode wire, capacitance C 2 between the first electrode wire and the third electrode wire, and capacitance C 3 between the second electrode wire and the third electrode wire.

10. The composite detection sensor according to claim 1 , wherein the insulation comprises a hollow portion and is formed in a hollow cylindrical shape.

11. The composite detection sensor according to claim 1 , wherein the insulation comprises a first insulation having a linear shape and a second insulation covering the outer surface of the first insulation and having a higher rigidity than the first insulation.

12. The composite detection sensor according to claim 1 , wherein the electrode wires are arranged in a helical manner along the longitudinal direction of the sensor cable.

13. A composite detection sensor, comprising:

a sensor cable comprising not less than three conductive electrode wires and a resilient insulation covering collectively the not less than three electrode wires and holding the electrode wires that are circumferentially spaced from each other; and

a capacitance measurement unit for measuring capacitance between each two electrode wires and between at least one of the electrode wires and the ground,

wherein the capacitance measurement unit comprises:

a plurality of inter-wire capacitance measuring portions for measuring capacitance between the electrode wires;

a wire-ground capacitance measuring portion for measuring capacitance between the electrode wires and the ground; and

switching means switchable between a first connection state and a second connection state, the first connection state being a state in which the electrode wires are connected to the inter-wire capacitance measuring portions, and the second connection state being a state in which the electrode wires are connected to the wire-ground capacitance measuring portion, and

wherein the switching means is configured such that all of the electrode wires are collectively connected to the wire-ground capacitance measuring portion when switched to the second connection state, so that the wire-ground capacitance measuring portion measures capacitance between all the electrode wires and the ground.

14. The composite detection sensor according to claim 13 , wherein the three electrode wires comprise a first electrode wire, a second electrode wire and a third electrode wire, and

wherein the composite detection sensor further comprises an arithmetic unit that determines whether or not the sensor cable is pressed, the arithmetic unit making the determination by comparing ΔC obtained from the following formula (1) with a predetermined threshold value,

Δ C =( C 1+ C 2)−2× C 3  (1)

based on capacitance C 1 between the first electrode wire and the second electrode wire, capacitance C 2 between the first electrode wire and the third electrode wire, and capacitance C 3 between the second electrode wire and the third electrode wire.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2018
From: IKEDA, YUKIO
To: HITACHI METALS, LTD.
Reel/Frame 044692/0385 →
Priority Claims (1)
JP 2017-012893 · Jan 27, 2017 · national
Continuity (1)
Related Publication 20180216969A1 · Aug 2, 2018