DEFORMATION SENSING FLEXIBLE SUBSTRATE USING PATTERN FORMED OF CONDUCTIVE MATERIAL
20170048965 ยท 2017-02-16
Assignee
Inventors
- Maenghyo Cho (Seoul, KR)
- Kyu Jin Cho (Seoul, KR)
- Junghyun Ryu (Seoul, KR)
- Je Sung Koh (Seoul, KR)
- Jong Gu LEE (Seoul, KR)
Cpc classification
H05K3/12
ELECTRICITY
G01R27/08
PHYSICS
G01R27/02
PHYSICS
H05K1/028
ELECTRICITY
G01N27/00
PHYSICS
International classification
Abstract
Disclosed herein is a deformation sensing flexible substrate using a pattern formed of a conductive material. The deformation sensing flexible substrate, using the pattern formed of the conductive material, includes a flexible substrate; and conductive patterns in which conductors including a conductive material are arranged and formed to be contactable and non-contact to each other based on deformation of the flexible substrate.
Claims
1. A deformation sensing flexible substrate using a pattern formed of a conductive material, comprising: a flexible substrate; and conductive patterns including conductors having a conductive material arranged on a surface of the flexible substrate, wherein the conductors extend in a longitudinal direction, and the plurality of conductors have separation spaces set in a width direction and are spaced apart from each other, and when bending deformation is generated in the width direction, the separation spaces are narrowed to be arranged in contact with each other, and during the bending deformation, the conductive patterns are changed from a conductor non-contact mode into a conductor contact mode, and conductivity between the conductors is changed to sense the bending deformation.
2. The deformation sensing flexible substrate of claim 1, wherein the conductor is formed on the surface of the flexible substrate in a reverse trapezoidal shape in which a width is increased toward an upper portion.
3. The deformation sensing flexible substrate of claim 1, wherein the conductors each formed to extend in the longitudinal direction includes a plurality of block typed conductors arranged to have separation spaces in the longitudinal direction, and separation spaces between the block typed conductors forming upper conductors are disposed on a straight line in the width direction of separation spaces between the block typed conductors forming lower conductors.
4. The deformation sensing flexible substrate of claim 3, wherein surfaces of the block typed conductors which face each other in the longitudinal direction are inclined and formed to protrude toward the facing surface as proceed from the surface of the flexible substrate toward upper portions thereof.
5. The deformation sensing flexible substrate of claim 1, wherein the conductive patterns including the conductors are formed on both surfaces of the flexible substrate.
Description
DESCRIPTION OF DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
BEST MODE OF THE INVENTION
[0022] Hereinafter, the embodiments of the present invention will be described in detail with reference to accompanying drawings.
[0023]
[0024] Referring to the above drawings, a deformation sensing flexible substrate 10 using a pattern formed of a conductive material according to the embodiment of the present invention includes a flexible substrate 20 and conductive patterns including a conductive material formed on a surface of the flexible substrate 20.
[0025] According to the embodiment of the present invention, the conductive patterns are patterned so that conductors 30 formed of a conductive material on the surface of the flexible substrate 20 are contactable and non-contact to each other based on deformation of the flexible substrate 20, and thus, the conductive patterns are formed to sense deformation of the flexible substrate 20 such as bending, folding, and/or the like.
[0026] Referring to the embodiment of the present invention described with reference to
[0027] According to the embodiment of the present invention, the conductor 30 is formed on the surface of the flexible substrate 20 in a reverse trapezoidal shape in which a width is increased toward an upper portion. Thus, a decrease of an attached area between the conductor 30 and the flexible substrate 20 is possible, and thus, the disturbance of the deformation of the flexible substrate 20 by the attached portion of the conductor 30 may be minimized.
[0028] A conductive material forming the conductor 30 may be deformed by an external force. Thus, when the conductors 30 are in contact with each other by deformation of the flexible substrate 20, a point contact or a line contact is formed in an initial stage of the bending, but the contact surfaces are deformed as the deformation is increased, and thus, the surface contact is generated.
[0029] According to an operation of the deformation sensing flexible substrate using the pattern formed of the conductive material according to the embodiment of the present invention, in a state shown in
[0030] However, as shown in
[0031] As the flexible substrate 20 deformed by the external force, the conductive pattern is changed from a conductor non-contact mode of the initial state into a conductor contact mode, and as the deformation of the flexible substrate 20 is increased, the contact area is also increased. Thus, the conductivity of the deformation sensing flexible substrate 10 is changed from a non-conductive state into a conductive state, and an amount of the conductivity is changed based on the amount of the bending deformation. Thus, when the change of the conductivity generated along the conductors 30 on the deformation sensing flexible substrate 10 is sensed, existence of deformation and the amount of the deformation may be sensed.
[0032] For example, when the deformation sensing flexible substrate according to the embodiment of the present invention is attached onto each joint portion of a human-computer interface device in a glove shape, movement of each joint can be precisely sensed. Also, the deformation sensing flexible substrate according to the embodiment of the present invention can be used in medical fields including a device guiding posture correction of a waist and/or the like and sport science fields such as pitching form correction. Also, the deformation sensing flexible substrate according to the embodiment of the present invention can be used in an airplane field such as monitoring an amount of repetitive bending of an airplane wing in real time and predicting a flight lifetime of an airplane, an/or the like. Thus, the deformation sensing flexible substrate according to the embodiment of the present invention can be applied to various devices requiring sensing deformation such as bending, twisting, and/or the like and controlling an operation based on an amount of deformation.
[0033] According to the embodiment of the present invention, the flexible substrate may also have conductivity, and in
[0034] In
[0035]
[0036] Referring to
[0037] According to the embodiment described in
[0038]
[0039] Referring to the drawings, the deformation sensing flexible substrate using the pattern formed of the conductive material according to the still another embodiment of the present invention includes a flexible substrate 20 having first and second areas 24 and 26 which are foldable with each other. That is, the flexible substrate 20 includes a first area 24 and a second area 26 which is formed to be foldable along a folding line L with respect to the first area 24.
[0040] Conductive patterns formed in the first area 24 include first conductors 34 extending in a longitudinal direction and are spaced apart from each other in a width direction and arranged in plural numbers, and spaces between the first conductors 34 spaced in the width direction form second conductor receiving parts 35.
[0041] Conductive patterns formed in the second area 26 are disposed in a shape extending in the longitudinal direction, and include second conductors 36 spaced apart from each other by widths of the first conductors 34 in a direction crossing the longitudinal direction and arranged in plural numbers. The second conductors 36 forming the conductive patterns in the second area 26 are parallel with second conductor receiving parts 35 in the first area while the flexible substrate 20 is in an unfold state and have sizes corresponding to the second conductor receiving parts 35.
[0042] As shown in
[0043] When the second areas 26 are folded with respect to the first areas 24 along the folding line L in the state shown in
[0044] Thus, in the unfold state shown in
[0045] In a foldable flexible display, in order to control a screen displayed on the flexible display, the detection of whether the flexible display is in a fold state or an unfold state, that is, in a usage state or in a storage state, is necessary.
[0046] The deformation sensing flexible substrate applied to a flexible display using the pattern formed of the conductive material according to the still another embodiment described in
[0047] It will be apparent to those skilled in the art that various modifications can be made to the above-described exemplary embodiments of the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention covers all such modifications provided they come within the scope of the appended claims and their equivalents.