IP Library Granted Patent US 11,850,925
Granted Patent B2
US 11,850,925 · App. 17/010,414 · Granted Dec 26, 2023

Control apparatus of door for vehicle

Inventors: Saya Kobayashi (Kariya, JP); Haruki Tsuji (Kariya, JP)
Assignee: AISIN CORPORATION
B60J5/0468E05F15/75H03K17/962E05Y2400/44E05Y2400/86E05Y2900/531E05Y2900/546
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Quick Facts
Patent No.
US 11,850,925
App. No.
17/010,414
Granted
Dec 26, 2023
Kind
B2
Abstract

A control apparatus of a door for a vehicle includes a first electrode corresponding to an electrostatic sensor electrode including a first detection surface, and a second electrode corresponding to an electrostatic sensor electrode including a second detection surface including an overlapping region which overlaps with the first detection surface and a non-overlapping region. The control apparatus includes a control portion configured to switch between a first detection state in which the first electrode is driven and an electric potential of the second electrode is at a float, and a second detection state in which the second electrode is driven and an electric potential of the first electrode is in a grounded state, and configured to identify an action instruction to the door for the vehicle on the basis of an electrostatic capacitance value measured at the first electrode and the second electrode.

Claims (26)

1. A control apparatus of a door for a vehicle, the control apparatus comprising:

a first electrode corresponding to an electrostatic sensor electrode including a first detection surface facing an outer side of the door for the vehicle;

a second electrode opposing the first electrode, being positioned at an outer side of the door for the vehicle relative to the first detection surface, and facing the outer side of the door for the vehicle, the second electrode corresponding to an electrostatic sensor electrode including a second detection surface including an overlapping region which overlaps with the first detection surface along surface directions of the first detection surface and the second detection surface, and a non-overlapping region which does not overlap with the first detection surface; and

drive circuitry configured to:

control the first electrode and the second electrode,

switch between a first detection state in which the first electrode is driven and an electric potential of the second electrode is at a float, and a second detection state in which the second electrode is driven and an electric potential of the first electrode is in a grounded state, and

identify an action instruction to the door for the vehicle on a basis of an electrostatic capacitance value measured at the first electrode and the second electrode.

2. The control apparatus of the door for the vehicle according to claim 1 , wherein a dielectric is provided at at least part of an overlapping portion in which the first electrode and the second electrode are overlapped with each other.

3. The control apparatus of the door for the vehicle according to claim 2 , wherein the dielectric corresponds to an air layer.

4. The control apparatus of the door for the vehicle according to claim 2 wherein an overlapping area of the first detection surface and the second detection surface is equal to or greater than one quarter of an area of the second detection surface.

5. The control apparatus of the door for the vehicle according to claim 4 , wherein a distance from the first detection surface to the second detection surface in a direction which is orthogonal to an overlapping direction of the first detection surface and the second detection surface is equal to or smaller than 5 mm.

6. The control apparatus of the door for the vehicle according to claim 4 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular, and the second electrode surrounds two or more sides of the first electrode.

7. The control apparatus of the door for the vehicle according to claim 4 , wherein each of the first electrode and the second electrode is formed of electric wire material, metal material or conductive substrate.

8. The control apparatus of the door for the vehicle according to claim 2 , wherein a distance from the first detection surface to the second detection surface in a direction which is orthogonal to an overlapping direction of the first detection surface and the second detection surface is equal to or smaller than 5 mm.

9. The control apparatus of the door for the vehicle according to claim 2 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular, and the second electrode surrounds two or more sides of the first electrode.

10. The control apparatus of the door for the vehicle according to claim 2 , wherein each of the first electrode and the second electrode is formed of electric wire material, metal material or conductive substrate.

11. The control apparatus of the door for the vehicle according to claim 2 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular.

12. The control apparatus of the door for the vehicle according to claim 1 , wherein an overlapping area of the first detection surface and the second detection surface is equal to or greater than one quarter of an area of the second detection surface.

13. The control apparatus of the door for the vehicle according to claim 12 , wherein a distance from the first detection surface to the second detection surface in a direction which is orthogonal to an overlapping direction of the first detection surface and the second detection surface is equal to or smaller than 5 mm.

14. The control apparatus of the door for the vehicle according to claim 12 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular, and the second electrode surrounds two or more sides of the first electrode.

15. The control apparatus of the door for the vehicle according to claim 12 , wherein each of the first electrode and the second electrode is formed of electric wire material, metal material or conductive substrate.

16. The control apparatus of the door for the vehicle according to claim 12 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular.

17. The control apparatus of the door for the vehicle according to claim 1 , wherein a distance from the first detection surface to the second detection surface in a direction which is orthogonal to an overlapping direction of the first detection surface and the second detection surface is equal to or smaller than 5 mm.

18. The control apparatus of the door for the vehicle according to claim 1 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular, and the second electrode surrounds two or more sides of the first electrode.

19. The control apparatus of the door for the vehicle according to claim 1 , wherein each of the first electrode and the second electrode is formed of electric wire material, metal material or conductive substrate.

20. The control apparatus of the door for the vehicle according to claim 1 , wherein an outer shape of each of the first electrode and the second electrode corresponds to rectangular.

Assignments (2)
CHANGE OF NAME Recorded Jan 13, 2022
From: AISIN SEIKI KABUSHIKI KAISHA
To: AISIN CORPORATION
Reel/Frame 058746/0869 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2020
From: KOBAYASHI, SAYA; TSUJI, HARUKI
To: AISIN SEIKI KABUSHIKI KAISHA
Reel/Frame 053676/0279 →
Priority Claims (1)
JP 2019-160979 · Sep 4, 2019 · national
Continuity (1)
Related Publication 20210061072A1 · Mar 4, 2021