AU2020254139A1 - Operating device - Google Patents

Operating device Download PDF

Info

Publication number
AU2020254139A1
AU2020254139A1 AU2020254139A AU2020254139A AU2020254139A1 AU 2020254139 A1 AU2020254139 A1 AU 2020254139A1 AU 2020254139 A AU2020254139 A AU 2020254139A AU 2020254139 A AU2020254139 A AU 2020254139A AU 2020254139 A1 AU2020254139 A1 AU 2020254139A1
Authority
AU
Australia
Prior art keywords
rotation
frame
operating device
rotation body
guide
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
AU2020254139A
Other versions
AU2020254139B2 (en
Inventor
Moon Bae Park
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kortek Corp
Original Assignee
Kortek Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kortek Corp filed Critical Kortek Corp
Priority claimed from PCT/KR2020/003329 external-priority patent/WO2020204379A1/en
Publication of AU2020254139A1 publication Critical patent/AU2020254139A1/en
Application granted granted Critical
Publication of AU2020254139B2 publication Critical patent/AU2020254139B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H13/00Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
    • H01H13/02Details
    • H01H13/10Bases; Stationary contacts mounted thereon

Abstract

An operating device according to the present invention comprises: an operation part which is inserted into an insertion hole portion of a glass part and has a locking protrusion portion having a protruding shape on the side surface thereof; and a locking rotation part which is disposed in a position opposite to the side surface of the operation part so as to allow or lock the movement of the locking protrusion portion, the locking rotation part comprising: a frame part having an inner hole portion into which the operation part is inserted; and a hollow hole part rotatably disposed in the frame part and communicating with the inner hole portion.

Description

[DESCRIPTION]
[Invention Title]
OPERATING DEVICE
[Technical Field]
The present invention relates to an operating device, and more particularly, to
an operating device that allows an operation part to be quickly and easily installed
and disassembled.
[Background Art]
In general, display units are installed in game devices, and operation parts are
fixed to the display units. Push operation parts are connected to circuit boards by
electrical wires, and as signals of the push operation parts are input to the circuit
boards, specific functions are selected. Such push operation parts may fail due to
impacts or the like.
However, in the related art, since the push operation part is fixed to the
display unit, when repair is required due to a failure of the push operation part,
operations of separating the entire display unit from the game device and then
transporting the display unit to a repair company are required.
At the repair company, the operation part is repaired or replaced and then is
sent to a client, and the display unit is reinstalled in the game device. Thus,
maintenance costs and working time increase. Therefore, it is necessary to reduce
this problem.
The background technology of the present invention is disclosed in Korean
Utility Model No. 20-0434973 (registered on December 26, 2006, name of invention:
Unmanned operating device of operation button of game console).
[Disclosure]
[Technical Problem]
The present invention is directed to providing an operating device that allows
an operation part to be quickly and easily installed and disassembled, thereby
reducing maintenance costs.
[Technical Solution]
One aspect of the present invention provides an operating device including an
operation part which is inserted into an insertion hole part of a glass part and has a
protrusion-shaped restraint protrusion, a frame part having an inner hole part into
which the operation part is inserted, and a locking rotation part which is rotatably
installed in the frame part, has a hollow hole part communicating with the inner hole
part, is installed at a position facing a side surface of the operation part, and allows or
restricts movement of the restraint protrusion.
The frame part may include a first frame part installed in contact with the
glass part, and a second frame part coupled to the first frame part with the locking
rotation part interposed therebetween.
The locking rotation part may include a rotation body part that has the hollow
hole part formed therein and is rotatably installed between the first frame part and the
second frame part, an unlocking groove part that forms a concave groove portion
inside the rotation body part facing the hollow hole part, and a knob member that
extends outward from the rotation body part and is rotated by receiving an external
force.
The rotation body part may be a plate material extending outward from the
operation part in a band shape.
The operating device may further include a guide part which is installed in
the rotation body part and the frame part to guide rotation of the rotation body part.
The guide part may include a guide groove part that forms an arc-shaped
groove along an edge of the rotation body part, and a guide protrusion that protrudes
from the frame part and is caught by an inner side of the guide groove part.
[Advantageous Effects]
In an operating device according to the present invention, an unlocking
groove part is moved due to rotation of a locking rotation part to restrain movement
of an operation part or easily release the restraint of the operation part, and thus
maintenance costs can be reduced, and work time can also be also shortened.
Further, according to the present invention, since only the operation part can
be separated from a glass part and repaired or replaced, an operation of moving the
glass part together with the operation part is omitted, and thus maintenance costs and
work time for the operation part can be reduced.
[Description of Drawings]
FIG. 1 is a perspective view illustrating a state in which an operation part is
separated from an operating device according to one embodiment of the present
invention.
FIG. 2 is an exploded perspective view of the operating device according to
one embodiment of the present invention.
FIG. 3 is a plan view illustrating a locking rotation part according to one
embodiment of the present disclosure.
FIG. 4 is a view illustrating a state in which the locking rotation part restricts
movement of an operation part according to one embodiment of the present invention.
FIG. 5 is a view illustrating a state in which the operation part is unlocked by
rotation of the locking rotation part according to one embodiment of the present
invention.
[Modes of the Invention]
Hereinafter, an operating device according to one embodiment of the present
invention will be descried with reference to the accompanying drawings. In this
process, the thickness of lines or the size of components illustrated in the drawings
may be exaggerated for clarity and convenience of description.
Further, terms described below are defined in consideration of functions in
the present invention and may change according to the intention or custom of a user
or an operator. Therefore, definitions of these terms should be made based on the
contents throughout the present specification.
FIG. 1 is a perspective view illustrating a state in which an operation part is
separated from an operating device according to one embodiment of the present
invention, FIG. 2 is an exploded perspective view of the operating device according
to one embodiment of the present invention, FIG. 3 is a plan view illustrating a
locking rotation part according to one embodiment of the present disclosure, FIG. 4
is a view illustrating a state in which the locking rotation part restricts movement of
an operation part according to one embodiment of the present invention, and FIG. 5
is a view illustrating a state in which the operation part is unlocked by rotation of the
locking rotation part according to one embodiment of the present invention.
As illustrated in FIGS. 1 to 5, an operating device 1 according to one
embodiment of the present invention includes an operation part 20 which is inserted
into an insertion hole part 12 of a glass part 10 and has a protrusion-shaped restraint
protrusion 22 on the side surface thereof, a frame part 30 having an inner hole part 32
into which the operation part 20 is inserted, a locking rotation part 40 which is
rotatably installed in the frame part 30, has a hollow hole part 44 communicating
with the inner hole part 32, is installed at a position facing the side surface of the operation part 20, and allows or restricts movement of the restraint protrusion 22, and a guide part 50 which is installed in a rotation body part 42 and the frame part 30 to guide rotation of the rotation body part 42.
A display unit 15 includes a display panel 16 that outputs an image and a
mounting housing part 17 that forms a space, in which the frame part 30 is installed,
on one side of the display panel 16. The plate-shaped glass part 10 is disposed in
front of the display unit 15 and the mounting housing part 17.
The glass part 10 is installed to be spaced apart from the display unit 15 to
secure visibility. Further, the insertion hole part 12 is formed in the glass part 10 so
that the operation part 20 is insertable thereinto. Since the insertion hole part 12 is
formed in the same shape as the circumference of the operation part 20, rotation of
the insertion hole part 12 is restricted while a body of the operation part 20 is
inserted into the insertion hole part 12.
The operation part 20 is installed in the insertion hole part 12 of the glass part
10 installed in front of the display unit 15. Further, a stepped portion may be
additionally formed at the circumference of the operation part 20 to limit the depth of
insertion into the insertion hole part 12.
The operation part 20 is connected to a controller by electric wires and
transmits an operation signal to the controller. The cross section of the operation
part 20 and the insertion hole part 12 are formed in a circular shape, but the present
invention is not limited thereto, and the cross section of the operation part 20 and the
insertion hole part 12 may be formed in a polygonal shape including a quadrangle or
a triangle. The operation part 20 according to one embodiment is formed in a
cylindrical shape.
The operation part 20 may be a button that has a circular cross section and extends vertically and may have a cross section having a polygonal shape including a quadrangle or the shape of the operation part 20 may be changed to one of various shapes such as an ellipse and a triangle.
Further, the restraint protrusion 22, with which the locking rotation part 40 is
to be engaged, is formed around the operation part 20. The restraint protrusion 22
according to one embodiment is formed on the side surface of the operation part 20
facing the locking rotation part 40.
Therefore, when the locking rotation part 40 is engaged with the restraint
protrusion 22, the operation part 20 does not escape from the insertion hole part 12 of
the glass part 10.
The frame part 30 may be modified into any shape without departing from the
technical spirit of having the inner hole part 32 into which the operation part 20 is
inserted. The frame part 30 according to one embodiment includes a first frame
part 34 which is installed in contact with the glass part 10 and a second frame part 36
which is coupled to the first frame part 34 with the locking rotation part 40
interposed therebetween.
The first frame part 34 is located below the glass part 10, and the locking
rotation part 40 and the second frame part 36 are sequentially installed below the first
frame part 34. The second frame part 36 is coupled to the first frame part 34, and a
space in which the locking rotation part 40 is to be moved is formed between thefirst
frame part 34 and the second frame part 36.
The inner hole part 32, in which the operation part 20 is to be installed, is
provided inside the first frame part 34 and the second frame part 36.
The locking rotation part 40 is rotatably installed in the frame part 30, has the
hollow hole part 44 communicating with the inner hole part 32, and may be modified in any shape without departing from the technical spirit of being installed at a position facing the side surface of the operation part 20. The locking rotation part
40 according to one embodiment includes the rotation body part 42, the hollow hole
part 44, an unlocking groove part 46, and a knob member 48.
The rotation body part 42 has the hollow hole part 44 formed therein into
which the operation part 20 is to be inserted and is rotatably installed between the
first frame part 34 and the second frame part 36. The rotation body part 42
according to one embodiment is a plate material extending outward from the
operation part 20 in a band shape, and is rotated outside the operation part 20.
The inner diameter of the rotation body part 42 having the hollow hole part
44 is slightly greater than or equal to the outer diameter of the operation part 20.
The rotation body part 42 is located above the restraint protrusion 22, and when the
operation part 20 attempts to move upward, the restraint protrusion 22 is caught by
the rotation body part 42 located above, and thus the operation part 20 can be
prevented from escaping to the upper side.
In the restraint protrusion 22 according to one embodiment, a plurality of
protrusions protrude in a circumferential direction along the side surface of the
operation part 20.
The unlocking groove part 46 forms a concave groove portion inside the
rotation body part 42 facing the hollow hole part 44. Further, a guide protrusion
(not illustrated) may be vertically and additionally provided on the side surface of the
operation part 20, and a guide groove into which the guide protrusion is to be
inserted is formed inside the frame part 30. Thus, the rotation of the operation part
20 including the guide protrusion can be restrained.
The unlocking groove part 46 according to one embodiment is formed at a position facing the restraint protrusion 22, and the size and shape of the groove may be modified so that the restraint protrusion 22 can move up and down through the unlocking groove part 46.
That is, since the unlocking groove part 46, which is a concave groove, is
formed in the rotation body part 42 facing the restraint protrusion 22 of the operation
part 20, when the restraint protrusion 22 of the operation part 20 coincides with the
unlocking groove part 46, the operation part 20 may move to the outside of the
locking rotation part 40.
Since the protrusion-shaped restraint protrusion 22 is installed on the outer
surface of the operation part 20 in a protruding shape, the locking rotation part 40
may be caught by the restraint protrusion 22 or spaced apart from the restraint
protrusion 22.
The knob member 48 extends outward from the rotation body part 42 and is
rotated by receiving an external force. The knob member 48 according to one
embodiment extends from the rotation body part 42 in a horizontal direction and
extends outward from the mounting housing part 17.
The guide part 50 is installed in the frame part 30 together with the rotation
body part 42 and may be formed in any shape without departing from the technical
spirit of guiding the rotation of the rotation body part 42. The guide part 50
according to one embodiment includes a guide groove part 52 that forms an arc
shaped groove along an edge of the rotation body part 42 and a guide protrusion 54
that protrudes from the frame part 30 and is caught by the inner side of the guide
groove part 52.
A plurality of guide groove parts 52 are provided along the rotation body part
42, and the guide protrusion 54 protruding upward from the second frame part 36 is inserted into the guide groove parts 52 to guide the stable rotation of the rotation body part 42.
Hereinafter, an operation state of the operating device 1 according to one
embodiment of the present invention will be described in detail with reference to the
accompanying drawings.
When the operation part 20 is unlocked, the knob member 48 protruding
outward from the mounting housing part 17 is rotated. With the rotation of the
knob member 48, the rotation body part 42 is also rotated, and the unlocking groove
part 46 coincides with the restraint protrusion 22 of the operation part 20.
That is, in a state in which the restraint protrusion 22 of the operation part 20
is caught by the rotation body part 42 and thus the upward movement of the
operation part 20 is restricted, the rotation body part 42 is rotated together with the
knob member 48.
Since the unlocking groove part 46 of the locking rotation part 40 is located
in a portion facing the restraint protrusion 22 of the operation part 20, when the
operation part 20 is pulled out in an upward direction, the rotation body part 42 does
not interfere with the operation part 20. Since the operation part 20 is unlocked, the
operator may pull the operation part 20 out of the glass part 10 to perform
maintenance work.
When the movement of the operation part 20 is restrained, the knob member
48 protruding outward from the mounting housing part 17 is rotated in an opposite
direction. With the rotation of the knob member 48, the rotation body part 42 is
also rotated, and since the rotation body part 42 is installed at a position facing the
restraint protrusion 22 of the operation part 20, the upward movement of the restraint
protrusion 22 is restrained, and accordingly the movement of the operation part 20 is also restrained.
As described above, according to the present invention, the unlocking groove
part 46 is moved by the rotation of the locking rotation part 40 to restrain the
movement of the operation part 20 or easily release the restraint of the operation part
20, and thus maintenance costs can be reduced and working time can be shortened.
Further, since only the operation part 20 may be separated from the glass part 10 and
repaired or may be replaced, an operation of moving the glass part 10 together with
the operation part 20 is omitted, and thus maintenance costs and work time of the
operation part 20 can be reduced.
Although the present invention has been described with reference to the
embodiments illustrated in the drawings, the description is merely illustrative, and
those skilled in the art to which the technology belongs should understand that
various modifications and other equivalent embodiments may be made. Thus, the
true technical scope of the present invention should be determined by the appended
claims.

Claims (6)

  1. [CLAIMS]
    [Claim 1]
    An operating device comprising:
    an operation part which is inserted into an insertion hole part of a glass part
    and has a protrusion-shaped restraint protrusion;
    a frame part having an inner hole part into which the operation part is
    inserted; and
    a locking rotation part which is rotatably installed in the frame part, has a
    hollow hole part communicating with the inner hole part, is installed at a position
    facing a side surface of the operation part, and allows or restricts movement of the
    restraint protrusion.
  2. [Claim 2]
    The operating device of claim 1, wherein the frame part includes:
    a first frame part installed in contact with the glass part; and
    a second frame part coupled to the first frame part with the locking rotation
    part interposed therebetween.
  3. [Claim 3]
    The operating device of claim 2, wherein the locking rotation part includes:
    a rotation body part that has the hollow hole part formed therein and is
    rotatably installed between the first frame part and the second frame part;
    an unlocking groove part that forms a concave groove portion inside the
    rotation body part facing the hollow hole part; and
    a knob member that extends outward from the rotation body part and is
    rotated by receiving an external force.
  4. [Claim 4]
    The operating device of claim 3, wherein the rotation body part is a plate
    material extending outward from the operation part in a band shape.
  5. [Claim 5]
    The operating device of claim 3, further comprising a guide part which is
    installed in the rotation body part and the frame part to guide rotation of the rotation
    body part.
  6. [Claim 6]
    The operating device of claim 5, wherein the guide part includes:
    a guide groove part that forms an arc-shaped groove along an edge of the
    rotation body part; and
    a guide protrusion that protrudes from the frame part and is caught by an
    inner side of the guide groove part.
AU2020254139A 2019-04-04 2020-03-10 Operating device Active AU2020254139B2 (en)

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
KR20190039530 2019-04-04
KR10-2019-0039530 2019-04-04
KR10-2019-0094760 2019-08-05
KR1020190094760A KR102170901B1 (en) 2019-04-04 2019-08-05 Operating device
PCT/KR2020/003329 WO2020204379A1 (en) 2019-04-04 2020-03-10 Operating device

Publications (2)

Publication Number Publication Date
AU2020254139A1 true AU2020254139A1 (en) 2021-10-28
AU2020254139B2 AU2020254139B2 (en) 2023-01-05

Family

ID=72847000

Family Applications (1)

Application Number Title Priority Date Filing Date
AU2020254139A Active AU2020254139B2 (en) 2019-04-04 2020-03-10 Operating device

Country Status (2)

Country Link
KR (1) KR102170901B1 (en)
AU (1) AU2020254139B2 (en)

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6149235A (en) * 1999-08-13 2000-11-21 Lear Corporation Rotary-cam type reclining device
JP4147049B2 (en) * 2002-04-17 2008-09-10 Idec株式会社 Operation switch
KR100504259B1 (en) * 2003-07-19 2005-07-27 용성전기 주식회사 Switch capable of automatically uniting body and handle part
KR100790156B1 (en) * 2006-11-06 2008-01-02 삼성전자주식회사 Camera door opening and shutting apparatus for folder type mobile phone
KR101381611B1 (en) * 2012-09-05 2014-04-04 (주)코텍 Operating apparatus
KR101501141B1 (en) * 2013-09-17 2015-03-12 (주)코텍 Control knob with image equipment
KR101639344B1 (en) * 2014-09-29 2016-07-14 (주)코텍 Button device for display panel
JP6555685B2 (en) * 2015-07-06 2019-08-07 ネット株式会社 Switch unit mounting structure
JP6708075B2 (en) * 2016-09-15 2020-06-10 オムロン株式会社 Push button for amusement machine
KR101919603B1 (en) * 2017-11-28 2018-11-16 주식회사 토비스 Button Deck having Surface Emitting Structure

Also Published As

Publication number Publication date
KR20200117820A (en) 2020-10-14
KR102170901B1 (en) 2020-10-28
AU2020254139B2 (en) 2023-01-05

Similar Documents

Publication Publication Date Title
US11822361B2 (en) Operating device
US20140373314A1 (en) Mat fastener
EP2933812B1 (en) Shift assembly structure of switch device
CN108933338B (en) Terminal assembling and disassembling device
US11835981B2 (en) Operating device
JP2021527771A (en) Electric plug locks for door body assemblies, door body assemblies, and vending machines
JP4659073B2 (en) Handle device
US11378996B2 (en) Operating device
AU2020254139A1 (en) Operating device
US4934748A (en) Door lock apparatus
CN107304641A (en) Blot lock
AU2020252997A1 (en) Operating device
AU2020224035A1 (en) Operating device
JP5571339B2 (en) Game board mounting device for pachinko machines
KR102148164B1 (en) Operating device
JP5964104B2 (en) Electronic equipment housing
KR101868425B1 (en) Locking device
KR102157510B1 (en) Locking Device for Door
KR101562475B1 (en) Control plate support structure of machine tool
KR101068961B1 (en) Control Apparatus of Washing Machine
KR101566272B1 (en) Docking hinge device
JP4029293B2 (en) Locking device for game board in pachinko machine
JP2016098562A (en) Rotary mechanism, and key housing device with rotary mechanism
WO2017094054A1 (en) Electronic device housing engaging apparatus
EP2347641B1 (en) A display device

Legal Events

Date Code Title Description
FGA Letters patent sealed or granted (standard patent)