WO2010093117A2 - 틸트형 휴대폰 슬라이딩 모듈 및 이를 이용한 단말기 지지대 - Google Patents
틸트형 휴대폰 슬라이딩 모듈 및 이를 이용한 단말기 지지대 Download PDFInfo
- Publication number
- WO2010093117A2 WO2010093117A2 PCT/KR2009/007816 KR2009007816W WO2010093117A2 WO 2010093117 A2 WO2010093117 A2 WO 2010093117A2 KR 2009007816 W KR2009007816 W KR 2009007816W WO 2010093117 A2 WO2010093117 A2 WO 2010093117A2
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- WO
- WIPO (PCT)
- Prior art keywords
- tilt
- mobile phone
- frame
- hole
- sliding module
- 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.)
- Ceased
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
- H04M1/0202—Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
- H04M1/0206—Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings
- H04M1/0208—Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings characterized by the relative motions of the body parts
- H04M1/0235—Slidable or telescopic telephones, i.e. with a relative translation movement of the body parts; Telephones using a combination of translation and other relative motions of the body parts
- H04M1/0237—Sliding mechanism with one degree of freedom
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
- H04M1/0202—Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
- H04M1/0206—Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings
- H04M1/0208—Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings characterized by the relative motions of the body parts
- H04M1/0214—Foldable telephones, i.e. with body parts pivoting to an open position around an axis parallel to the plane they define in closed position
- H04M1/0216—Foldable in one direction, i.e. using a one degree of freedom hinge
Definitions
- the present invention relates to a tilt-type mobile phone sliding module and a terminal support using the same. More specifically, it enables a flat sliding operation through a slider and a frame, and in particular, a tilting operation in a vertical direction through the frame is further possible. It relates to a tilt-type mobile phone sliding module and a terminal support using the same.
- Tilt-type mobile phone sliding module that can implement a sliding state that can provide the optimal convenience according to the user's intention is being developed and applied.
- An object of the present invention is to enable a flat sliding operation of the mobile phone screen unit and at the same time to enable the tilt operation to allow the mobile phone screen unit to be inclined upward tilt tilt mobile phone sliding module that can provide the optimum convenience according to the user's purpose To provide.
- Another object of the present invention is to provide a terminal support using a tilt type sliding module.
- Tilt-type mobile phone sliding module for achieving the above object as a tilt-type mobile phone sliding module that enables the plane sliding operation and tilt operation of the mobile phone
- a control bracket 40 connected to the tilt rotation unit 38 for guiding a stable tilt operation of the tilt rotation unit 38;
- Stopper shaft fastening holes 44 formed on both sides of the control bracket 40 to fix the stopper shaft 60; A main shaft 50 connecting the tilt rotation unit 38 and the control bracket 40 and serving as a rotation axis of the tilt rotation unit 38; And main shaft fastening holes 42 formed on both sides of the control bracket 40 to accommodate the main shaft 50.
- It includes a support plate 200 extending in a plate shape and a bracket 220 for engaging with the front portion of the support plate 200,
- a stopper 201 is formed at a bent bottom portion of the support plate 200, and the stopper 201 of the support plate is configured to be caught by the stopper 222 of the bracket 220.
- the front of the support plate 200 is formed with a hole in which the shaft 306 is fitted and the engaging hole 206 into which the inner spring 300, the outer spring 304 and the spring ball 302 are fitted.
- the brackets 220 are coupled to each other so as to be rotated by the shaft 201 in a laid state of the front bottom surface of the support plate 200,
- the spring ball 302 which is tensioned by the inner spring 300 and the outer spring 304, is caught by the two engaging holes 224 formed in the bracket 220 in steps,
- the diameter of the locking hole 224 is configured to be smaller than the diameter of the spring ball 302,
- the support plate 200 is coupled to the bracket 200 by the shaft 306,
- the spring ball 302 is configured to be caught by the catching hole 224,
- the locking hole is two or three
- the terminal support is characterized in that it is installed on the back of the mobile phone.
- the tilt-type mobile phone sliding module according to the present invention, by providing a tilting operation to allow the mobile phone screen portion to be inclined upward while simultaneously tilting the mobile phone screen portion to provide an optimum convenience according to the user's intention. There is a remarkable effect that can implement the sliding state.
- the tilt-type mobile phone sliding module according to the present invention, there is a remarkable effect that can be variously determined according to the user's convenience by enabling a tilt operation step by step of the mobile phone screen.
- the tilt-type mobile phone sliding module according to the present invention, it is possible to limit the maximum tilt angle through the stopper shaft and the control hole, remarkable that the mobile phone screen portion can prevent the random tilt rotation operation more than necessary It works.
- FIG. 1 is an exploded perspective view showing the configuration of a tilt-type mobile phone sliding module according to the present invention.
- Figure 2 is an operating state of the step before the mobile phone sliding operation occurs.
- 3 is an operation state in which the slider has completed the plane sliding operation.
- Figure 4 is an operating state showing a state that the frame of the mobile phone screen unit is tilted upward with the slider.
- FIG. 5 (a) is a partially enlarged view illustrating an operating state of the tilt rotation unit 38 and the control bracket in the steps of FIGS. 2 and 3, and FIG. 5 (b) shows the tilt rotation unit 38 in the step of FIG. And partly enlarged view showing the operating status of the control bracket.
- Figure 6 is an exploded perspective view showing a state in which the tilt-type mobile phone sliding module applied to the mobile phone.
- FIG. 7 and 8 are exploded perspective views showing the configuration of a tilt-type mobile phone sliding module according to a second embodiment of the present invention.
- FIG. 9 is an enlarged perspective view of a tilt operation driver according to a second exemplary embodiment of the present invention.
- Figure 10 (a) is a step before the sliding operation of the mobile phone
- Figure 10 (b) shows a step in which the sliding operation of the mobile phone proceeds in the middle.
- FIG. 11 (c) is a step in which the slider of the mobile phone completes the plane sliding operation
- FIG. 11 (d) is an operation state diagram showing the frame of the mobile phone screen unit being tilted upward together with the slider.
- FIG. 12 (a) and 12 (b) are partially enlarged views showing the operating states of the tilt frame 88 and the control bracket 90 in FIG. 11 (c) and (d).
- FIG. 13 is a perspective view of a cushion installed in a frame according to a second embodiment of the present invention.
- FIG. 14 is a cross-sectional view of a cushion installed in a frame according to a second embodiment of the present invention.
- 15 is an exploded perspective view of a terminal support which is a modification of the present invention.
- 16 is an exploded side view of a terminal support which is a modification of the present invention.
- FIG. 17 is a side view and a rear view of both sides of the support plate in a state where the terminal supporter, which is a modified example of the present invention, is assembled; FIG.
- FIG. 19 is an exploded perspective view of another embodiment of a terminal support which is a modification of the present invention.
- 20 is an exploded side view of another embodiment of a terminal support which is a modification of the present invention.
- FIG. 21 is a side view and a rear view of both sides of the support plate standing up as much as possible in the state in which the terminal support of the second embodiment of the present invention is assembled;
- FIG. 22 is a side view and a rear view of the state in which the support plate is lowered to an intermediate stage in the state in which the terminal support of the other embodiment of the present invention is assembled.
- Figure 23 is a side view and a rear view of the state in which the support plate is lowered to the bottom step in the assembled state of the terminal support of another embodiment of the present invention.
- 24 to 27 is an exemplary view of a terminal support is attached to the terminal according to the present invention.
- the tilt-type mobile phone sliding module is configured to enable a flat sliding operation through the slider 10 and the frame 30 and, in particular, to further enable a tilt operation in the vertical direction through the frame 30.
- a tilt mobile phone sliding module is presented.
- the tilt-type mobile phone sliding module includes a slide elastic device (80) used in a conventional slide mobile phone, a frame (30) fixed to be mounted inside the mobile phone, and a slider (10) in which a sliding motion is performed by the frame (30). It is composed of devices using a structure that utilizes), specifically, the operation section divided into two steps, that is, the plane sliding operation section and the tilt operation section is generated to finally achieve a state in which the mobile phone screen is inclined upwardly inclined.
- the plane sliding step refers to a section in which the screen portion of the mobile phone linearly moves in parallel with the mobile phone body.
- flat sliding the above operation will be referred to as flat sliding.
- the tilt operation step means a section that operates so that the screen portion of the mobile phone is inclined upward by a predetermined angle with respect to the mobile phone body.
- a tilt operation the above operation will be referred to as a tilt operation.
- FIG. 1 is an exploded perspective view showing the configuration of a tilt-type mobile phone sliding module according to the present invention.
- the tilt-type mobile phone sliding module includes a planar sliding driver and a tilt motion driver.
- the flat sliding drive unit of the tilt-type mobile phone sliding module is mounted to be fixed to the inside of the mobile phone frame 30 for implementing the flat sliding operation and the tilt operation of the mobile phone;
- a guide rail 20 configured to have a long groove having a 'c' shape therein for guiding a flat sliding operation of the slider 10;
- Guide rail insertion ends 36 formed by bending both ends of the frame 30 in a '-' shape so as to accommodate the guide rails 20 at both edges of the frame 30;
- Slider (10) for performing a plane sliding operation of the mobile phone through the guide rail (20);
- a slide elastic device 80 for generating a planar sliding motion of the slider 10 by a spring tension action.
- Both side edges of the slider 10 are inserted into a 'c'-shaped groove of the guide rail 20 so that the guide pieces formed by bending both ends of the slider 10 in a' b 'shape so as to guide the sliding motion thereof. Formed.
- the slide elastic device 80 used in the slide mobile phone is a mechanism for generating a sliding motion of the mobile phone in a semi-automatic manner by using the restoring force of the spring. It is commonly used.
- the slide elastic device 80 provided in the sliding module for a mobile phone according to the present invention may also be applied by adopting any of the torsion spring method or the coil spring method.
- the slide elastic device 80 is a well-known technology, and a detailed description thereof will be omitted, and only the detailed configuration necessary for applying to the sliding module for a mobile phone according to the present invention will be described.
- both ends of the slide elastic device 80 are formed with cylindrical rivets, one rivet is fitted to the frame 30, and the other rivet is fitted to the slider 10. By rotating, the slider 10 allows a flat sliding movement in the vertical direction with respect to the frame 30.
- the elastic device 80 is preferably provided so that one pair is provided at each of the left and right corners of the frame 30, but may be configured to operate with only one elastic device (80).
- the tilt type mobile phone sliding module according to the present invention, when the flat sliding section of the mobile phone screen unit through the flat sliding drive unit is completed, the tilt operation of the mobile phone screen unit is performed next.
- the tilt motion driving part of the tilt type mobile phone sliding module according to the present invention is basically coupled to the middle part of the mobile phone and the rotational motion by the tilt rotation part 38 formed at each corner of the frame 30 and the tilt rotation part 38. Through the control bracket 40 for controlling the stable rotation and locking operation of the) to enable the tilt operation of the mobile phone screen.
- the tilt rotation unit 38 is a pair of protruding one by one on each side edge of the frame 30, respectively.
- the guide rail insertion end 36 is formed on the upper side of the frame 30 corner portion, and the tilt rotation part 38 is formed on the lower side.
- the tilt rotation part 38 is inserted into and fastened to the control bracket 40 through the main shaft 50 to stop the rotation operation using the main shaft 50 as a central axis and the rotation operation using the spring ball 70. Through the tilt of the mobile phone screen is made.
- the main shaft 50 is inserted through the rotation hole 34; A control hole 32 through which the stopper shaft 60 is inserted; And spring ball engaging holes 46a and 46b into which the spring ball 70 is inserted and mounted to stop the upward tilting operation of the mobile phone screen unit at the intended position.
- the main shaft 50 according to the preferred embodiment of FIG. 1 has a separate main shaft 50 is inserted into the rotating hole 34 formed in the tilt rotation part 38 and formed in the control bracket 40. It is configured to be fastened to the main shaft fastening hole (42), and also has a separate rotary projection for the main shaft function is formed on both sides of the tilt rotating portion 38 without the main shaft is provided in the fastening hole (42) By being configured to be coupled, the tilt rotation unit 38 may be configured to rotate the rotation projection about the central axis of course.
- the spring ball 70 is composed of a rod portion 74 consisting of a coil spring and a latch 72 formed in a spherical shape.
- the tilt motion driving unit generates an operation in which the latch 72 is stepwise inserted into the latch holes 46a and 46b formed in the control bracket 40 by using the elastic restoring force of the rod 74.
- the tilt rotation part 38 is configured such that the rotation operation can be stopped at the intended position.
- the control bracket 40 includes a main shaft fastening hole 42 for fastening the tilt rotation unit 38 to the control bracket 40 through the main shaft 50; A stopper shaft fastening hole 44 for fastening the stopper shaft 60 to the control bracket 40; A spring ball first catching hole 46b and a second catching hole 46a for generating a stepwise locking action of the spring ball 70; And a fastening plate 48 for stably coupling and fixing the control bracket 40 to the mobile phone intermediate member 90.
- the main shaft 50 is a rotation hole 34 of the tilt rotation part 38 and the main shaft fastening hole of the control bracket 40 ( By inserting through 42, the tilt rotation part 38 and the control bracket 40 are fastened.
- the tilt rotation unit 38 fastened to the control bracket 40 has a rotational motion inside the control bracket 40 which is fixed to the intermediate member of the mobile phone with the main shaft 50 as a central axis.
- FIG. 2 is a step before the sliding operation of the mobile phone
- FIG. 3 is a step in which the slider completes the flat sliding operation
- FIG. 4 is an operation state diagram showing a frame in which the mobile phone screen part is tilted upward together with the slider.
- 5 (a) is a partially enlarged view showing the operating state of the tilt rotation unit 38 and the control bracket in steps 2 and 3
- FIG. 5 (b) is the tilt rotation unit 38 and the control bracket in FIG. A partial enlarged view showing the operation state of the.
- the frame 30 Spring ball 70 is mounted to the first locking hole 46b formed in the control bracket 40 is inserted into the first locking operation, the frame 30 is stably parallel to the mobile phone body It maintains the state achieved and enables a plane sliding action.
- the stable tilting operation is generated and controlled through the following structural features. .
- the frame 30 when an external force is applied by the mobile phone user, the frame 30 is a tilt rotating portion 38 protruding on the lower surface of the frame 30 is the main shaft 50 Rotational movement occurs with reference axis.
- the spring ball 70 mounted on the tilt rotating part 38 comes out of the first catching hole 46b and the first catching hole 46b.
- the second locking operation is performed by moving to and inserting into the second locking hole 46a formed on the upper surface.
- the mobile phone user can easily execute the step-by-step tilting operation and control the frame 30 to be stopped at the intended position.
- the negative inclined state can be maintained stably.
- the spring ball 70 formed in the frame 30 may be further formed as needed.
- the tilt rotation unit 38 and the control bracket 40 formed on the frame 30 according to the present invention have the stopper shaft 60 having the control hole 32 and the control bracket 40 of the tilt rotation unit 38. It is inserted through the stopper shaft fastening hole 44 of the).
- the stopper shaft 60 and the control hole 32 according to the present invention is a means for limiting the maximum tilt angle of the tilt rotating part 38, and more specifically, the final tilting operation of the tilt rotating part 38.
- the spring ball 70 is a device for preventing the second catching hole 46a from being separated.
- the mobile phone screen part When the spring ball 70 is separated from the second catching hole 46a by the excessive external force by the mobile phone user, the mobile phone screen part does not stably maintain the tilt state that is inclined upward and randomly rotates.
- the control hole 32 formed in an elliptical shape is penetrated through the tilt rotation part 38 according to the present invention.
- the stopper shaft 60 is inserted into the elliptical shape control hole 32 formed in the tilt rotation part 38 and is fastened and fixed to the control bracket 40 so that the spring ball 70 is In the state (ie, the state before the tilt operation occurs) is located in the first locking hole 46b is in contact with the upper side of the control hole (32).
- the stopper shaft 60 is the control hole. Moving from the upper side of the lower side of the 32 to the lower side, and finally the lower side of the control hole 32 and the locking operation is generated so that the tilt rotation part 38, that is, the frame 30 is no longer controlled to rotate do.
- Tilt-type mobile phone sliding module by controlling the mobile phone screen portion does not rotate more than necessary through the control of the rotation operation through the stopper shaft 60 and the control hole 32 as described above, in the intended position It is possible to keep the tilt operation of the camera stable.
- main shaft 50 according to the present invention, the following structural features to prevent the main shaft fastening hole formed in the control bracket 40 is worn by the repetitive rotation operation of the main shaft (50). It is configured to have.
- the end portion 52 of the main shaft 50 which is inserted into the fastening hole 42 of the control bracket 40 and protrudes outward of the fastening hole 42 has a cross-sectional top surface of which is not circular. It is configured to have a flat tunnel shape, the end portion 52 is configured to be inserted and fixed to the insertion portion 94 (see Fig. 6) of the mobile phone intermediate member 90 configured to have an uneven groove of the same shape as the cross section of the end portion.
- the main shaft 50 is configured to maintain the fixed state without the rotational motion in the state inserted through the control bracket 40 and to perform the rotational movement of the tilt rotation part 38.
- the main shaft 50 is configured to exit from the fastening hole 42 of the control bracket 40 so that a predetermined portion of the front portion protrudes.
- the fitting groove 54 is formed along the recessed form.
- the stator 56 configured to have the same thickness as the width of the fitting groove 54 is fitted in the fitting groove 54, so that the main shaft 50 can be fixed without being separated from the control bracket.
- the main shaft 50 may be fixed to the control bracket 40 by using a known means such as soldering.
- FIG. 6 is an exploded perspective view showing a state in which the tilt-type mobile phone sliding module according to the present invention is applied to the mobile phone.
- the tilt-type mobile phone sliding module 200 includes a screen unit case 80 including a display unit for displaying specific contents such as an LCD; A keypad 100 for receiving a mobile phone function desired by a user and generating an electric signal corresponding thereto; Tilt-type mobile phone sliding module 200 and the intermediate member 90 for stably fixing the keypad 100 to the mobile phone according to the present invention; And a lower case 110 in which the intermediate member 90 is fixedly coupled and configured to accommodate a battery, wherein the mobile phone is coupled to the intermediate member 90 and the screen case 110. Planar sliding operation of the and enable the tilt operation.
- the screen part case 80 is coupled to the slider 10 of the tilt-type mobile phone sliding module 200 according to the present invention, the plane sliding operation by the slider 10 and the tilt operation by the frame 30 By this, it provides a sliding or tilting state of the screen case according to the intention of the mobile phone user.
- the tilt-type mobile phone sliding module 200 which generates the flat sliding operation and the tilt operation of the screen unit case 80 is coupled to and fixed to the intermediate member 90.
- control bracket 40 and the fastening plate 48 formed in each of the wings in the width direction of the control bracket 40 according to the present invention that is, the 'T' shaped uneven groove 92
- the control bracket 40 and the fastening plate 48 are inserted into the coupling groove 92 formed in the intermediate member 90.
- the fastening plate 48 is formed with an insertion hole for fastening the fixing bolt 130 is inserted.
- the fixing bolt 130 is inserted into the insertion hole of the fastening plate 48 through the intermediate member 90, the control bracket 40 is stably coupled to the intermediate member 90 State is maintained.
- the intermediate member 90 of the present invention has the same shape as that of the end portion 52 of the main shaft 50 to which the end portion 52 of the main shaft 50 having the flat top surface is inserted and fixed.
- the insertion part 94 which has an uneven groove is formed.
- the fastening plate 48 for coupling and fixing the control bracket 40 according to the present invention to the uneven groove 92 of the mobile phone intermediate member 90 is formed, the fastening plate 48 is the control bracket 48. Since it is formed only at one end of the user, when the user tilts the mobile phone sliding module 200 for tens of thousands of times, there is a possibility that a problem occurs that the fixing force of the control bracket 40 to the mobile phone intermediate member 90 becomes weak. Grows
- the end 52 of the main shaft 50 protruding out of the control bracket 40 in the state inserted into the control bracket 40 is the same as the end 52.
- the main shaft 50 also serves to securely control the control bracket 40 to the intermediate member 90 by being configured to be inserted into and fixed to the insertion portion 94 of the intermediate member 94 having a concave-convex groove. do. Since the control bracket 40 is fixed to the intermediate member 90 back and forth together with the fastening plate 48 and the end portion 52 of the main shaft 50, the user can move tens of thousands of times to the mobile phone sliding module 200. Even if the tilting operation, the holding force of the control bracket 40 to the mobile phone intermediate member 90 is not easily weakened.
- the fastening plate 48 of the control bracket 40 fixed to the uneven groove 92 of the intermediate member 90 according to the present invention has the screen case 80 even when the mobile phone sliding module 200 is slid and tilted as much as possible. It is hidden by and invisible to the user directly.
- the main shaft 50 is inserted and fixed to the insertion portion 94 of the intermediate member 90, instead of the configuration for fixing the control bracket 40 to the intermediate member 90, another T-shaped fastening plate If the control bracket 40 is fixed to the intermediate member 90 by installing one more on the side where the shaft 50 is located, it may apply pressure to the keypad 100 at the time of fixing, or the portable sliding module 200 may slide There is a possibility that the inner surface of the screen case 80 is damaged by the nut 122 during the tilting operation. This problem is solved by the configuration in which the main shaft 50 is inserted into the insertion portion 94 inside the intermediate member 90.
- the tilt type mobile phone sliding module according to the second embodiment of the present invention enables the plane sliding operation through the slider 10 and the frame 30, and in particular, the tilt operation in the vertical direction through the frame 30.
- the tilt-type mobile phone sliding module according to the second embodiment of the present invention is a sliding operation by the slide elastic device 80, a frame 30 fixed to the inside of the mobile phone and the frame 30 used in a conventional slide mobile phone It consists of a device consisting of a structure utilizing the slider 10 is made, specifically, the operation section divided into two stages, that is, the flat sliding operation section and the tilt operation section is generated to finally slide the mobile phone screen is inclined upwardly It allows you to achieve state.
- the flat sliding step means a section in which the screen portion of the mobile phone moves in parallel with the mobile phone body.
- 'flat sliding' the above-described operation
- the tilt operation step means a section that operates so that the screen portion of the mobile phone is inclined upward by a predetermined angle with respect to the mobile phone body.
- a 'tilt operation' the above operation will be referred to as a 'tilt operation'.
- FIG. 7 and 8 are exploded perspective views showing the configuration of a tilt-type mobile phone sliding module according to a second embodiment of the present invention.
- the tilt-type mobile phone sliding module according to the second embodiment of the present invention includes a planar sliding driver and a tilt motion driver.
- a flat sliding drive of the tilt type mobile phone sliding module according to the second embodiment of the present invention is mounted and fixed inside the mobile phone to implement a flat sliding and tilting operation of the mobile phone;
- a guide rail 74 configured to have a '-' shaped groove in the longitudinal direction to guide the flat sliding operation of the slider 10;
- Guide rail insertion portions 31 formed by bending both ends of the frame 30 in a '-' shape so as to accommodate the guide rails 74 at both edges of the frame 30;
- Slider 10 for performing a plane sliding operation of the mobile phone through the guide rail (74);
- a slide elastic device 80 for generating a planar sliding motion of the slider 10 by a spring tension action.
- Both side edges of the slider 10 are inserted into the 'c' shaped grooves of the guide rail 74 to form guide pieces formed by bending both ends of the slider 10 in a 'b' shape to guide the sliding motion. It is.
- the slide elastic device (80) used in a slide mobile phone is a mechanism for generating a sliding motion of the mobile phone in a semi-automatic manner by using a restoring force of a spring, and a method using a torsion spring and a coil spring are currently used. It is commonly used.
- the slide elastic device 80 provided in the sliding module for a mobile phone according to the second embodiment of the present invention may also be adopted by adopting either the torsion spring method or the coil spring method.
- the slide elastic device 80 is a well-known technique and a detailed description thereof will be omitted, and only the detailed configuration necessary for applying to the sliding module for a mobile phone according to the second embodiment of the present invention will be described.
- cylindrical rivets 82 are formed at both ends of the slide elastic device 80, and one rivet 82 is formed in the rivet groove 76 of the frame 30.
- the other rivet 82 is rotated in a state of being fitted into the rivet groove 12 of the slider 10 so that the slider 10 can perform a flat sliding movement in the vertical direction with respect to the frame 30. Do it.
- the elastic device 80 is provided so that a pair is provided at each of the left and right edges of the frame 30, and only one elastic device 80 may be configured to operate.
- the tilt type mobile phone sliding module As described above, in the tilt type mobile phone sliding module according to the second embodiment of the present invention, when the flat sliding section of the mobile phone screen unit is completed through the flat sliding drive unit, the tilt operation of the mobile phone screen unit is performed.
- FIG. 9 is an enlarged perspective view of a tilt operation driver according to a second exemplary embodiment of the present invention.
- the tilt operation driver of the tilt-type mobile phone sliding module according to the second embodiment of the present invention is basically a tilt operation by the tilt frame 88 formed at each corner of the frame 30 and the stable upper and lower sides of the tilt frame 88.
- the control bracket 90 for controlling the tilting operation and the locking operation enables the tilt operation of the mobile phone screen unit.
- the tilt frame 88 according to the second embodiment of the present invention is coupled to the frame 30 through the laser welding, one pair each one at the bottom of the corner of both sides of the frame 30.
- the tilt frame 88 according to the second embodiment of the present invention is manufactured by MIM metal injection mold technology.
- MIM is a technology that cuts metals into powder and cuts them into a mold.
- the frame is produced by pressing a metal plate of sus (SUS).
- the guide rail 74 is made of a synthetic resin POM or the like, and is manufactured at the edges of both ends of the frame 30 by the insert injection method.
- the frame 30, the guide rail 74 and the tilt frame 88 which are constructed and joined as described above, are less likely to be damaged because the frame 30 is a pressable metal plate when dropped from a constant height. Since only the tilt frame 88 is manufactured by metal molding injection, the manufacturing cost is reduced. When the guide rail 74 and the tilt frame 88 are manufactured integrally with the frame 30 by injection molding, there is a high possibility of breakage when dropped from a certain height, and the manufacturing cost increases due to difficulty in manufacturing. That is, it is extremely difficult to manufacture by press working or injection molding.
- the guide rail 74 is formed inside the bent surface of the 'c' shaped guide rail inserting portion 31 of the upper side of the frame 30, and is formed as insert injection.
- the tilt frame 88 which is manufactured separately by metal forming injection, is adhered to laser welding or the like.
- the tilt frame 88 according to the present invention is inserted into and fastened to the control bracket 90 so that the upper and lower tilt operation centering on the main shaft 100 and the stop motion of the tilt operation using the spring ball 110 are separated. Negative tilt operation is performed.
- the tilt frame 88 includes a rotating hole 34 through which the main shaft 100 is inserted; An elliptical control hole 32 vertically elongated for the stopper shaft 102 to be inserted therethrough; And a spring ball catching hole 33 into which the spring ball 110 is inserted and mounted to stop the upward tilting operation at the intended position.
- the main shaft 100 according to the second embodiment of FIG. 7 includes a rotating hole of the tilt frame 88 in a state in which the tilt frame 88 is engaged with the control bracket 90 provided at the bottom thereof. 34) and the main shaft fastening hole 97 of the control bracket 90 are configured to be fastened together at the same time, the tilt frame 88 is configured to tilt the main shaft 100 to the central axis.
- the protection plate 104 is located at the open bottom of the control bracket 104 to prevent mobile phone components such as FPCB and the like from coming into contact with the tilt frame 88.
- the spring ball 110 according to the second embodiment of the present invention may be fixed to the spring ball engaging hole 33 of the tilt frame 88 together with two coil springs 112 and 114 having different diameters and sizes. . This is to increase the tension applied to the first catching hole 95 and the second catching hole 94 when the tilt frame 88 is coupled to the control bracket 90 and tilted.
- one coil spring may be used.
- the spring ball 110 positioned in the spring ball engaging hole 33 of the tilt frame 88 is connected to the coil spring in the first engaging hole 95 of the control bracket 90.
- the spring balls 110 are disposed in the second locking holes 94. Is configured to take
- the tilt frame 88 of the present invention is moved upward with respect to the main shaft 100 in a state connected with the control bracket 90 by the main shaft 100.
- the upper and lower diameters of the control hole 32 of the present invention are configured such that the tilt frame 88 can move between the first locking hole 95 and the second locking hole 94.
- the control bracket 90 includes a main shaft fastening hole 97 for fastening the tilt frame 88 to the control bracket 90 through the main shaft 100; A stopper shaft fastening hole 96 for fastening the stopper shaft 102 to the control bracket 90; A spring ball first catching hole 95 and a second catching hole 94 for generating a stepwise locking action of the spring ball 110; And front and rear fastening plates 93 and 92 for stably coupling and fixing the control bracket 90 to the mobile phone intermediate member 90.
- the main shaft 100 passes through the rotary hole 34 of the tilt frame 88 and the main shaft fastening hole 97 of the control bracket 90. By being inserted, the tilt frame 88 and the control bracket 90 are fastened.
- Tilt frame 88 fastened to the control bracket 90 has a main shaft 100 as a central axis, the tilt operation is made in the inside of the control bracket 90 is fixed to the intermediate member of the mobile phone.
- Figure 10 (a) is a step before the mobile phone sliding operation occurs
- Figure 10 (b) is a step in which the sliding operation of the mobile phone is about halfway
- Figure 11 (c) is a slider of the mobile phone has completed the flat sliding operation
- 11 (d) is an operation state diagram showing the frame of the mobile phone screen unit is tilted upward with the slider
- Figure 12 (a) (b) is a tilt frame
- Fig. 11 (c) (d) 88) is a partially enlarged view showing an operating state of the control bracket 90;
- the tilt frame As shown in FIG. 12 (a), the tilt frame ( The spring ball 110 mounted on the 88 is slid in a plane while the frame 30 is stably in parallel with the body of the mobile phone while being caught by the first catching hole 95 formed in the control bracket 90. Enable operation
- the frame 30 When an external force is applied by the mobile phone user, the frame 30 is tilted to the upper frame about the main shaft 100 of the tilt frame 88 coupled to the bottom of both sides of the frame 30.
- the second locking operation is performed by moving out to the second locking hole 94 formed on the upper side of the first locking hole 95.
- the mobile phone user can not only easily perform the step-by-step tilting operation but also control the frame 30 to be stopped at the intended position.
- the upwardly inclined state can be maintained stably.
- the tilt frame 88 and the control bracket 90 coupled to both bottom surfaces of the frame 30 according to the second embodiment of the present invention have an elliptical tilt frame 88 in which the stopper shaft 102 is elongated up and down. It is inserted through the control hole 32 and the stopper shaft fastening hole 96 of the control bracket (90).
- the stopper shaft 102 and the elliptical control hole 32 according to the second embodiment of the present invention are more specifically used as means for limiting the maximum tilt angle of the tilt frame 88.
- the spring ball 110 is prevented from leaving the second locking hole 94 to move out of the tilting range. It is an apparatus for doing this.
- the mobile phone screen part may not stably maintain an upward tilting state.
- the tilt frame 88 according to the second embodiment of the present invention has an elliptical shape.
- the configured control hole 32 is formed through.
- the stopper shaft 102 is inserted into the elliptical control hole 32 formed in the tilt frame 88 and is fastened and fixed to the control bracket 90 so that the spring ball 110 is first engaged. In the state located in the ball 95 (ie, the state before the tilting operation), it is in contact with the upper surface of the control hole 32.
- the stopper shaft ( 102 is positioned from the upper side to the lower side of the control hole 32, and finally the engagement with the lower side of the control hole 32, the tilt frame 88, that is, the frame 30 is no longer tilted Not controlled.
- the tilt type mobile phone sliding module according to the second embodiment of the present invention is controlled so that the mobile phone screen is not tilted more than necessary through the control of the tilted range through the stopper shaft 102 and the control hole 32 as described above. This ensures that the tilted state at the intended position remains stable.
- the main shaft 100 and the stopper shaft 102 of the present invention can be fixed by the stator 54, 55 without being separated from the control bracket 90.
- the main shaft 100 may be fixed to the control bracket 90 by using a known means such as soldering.
- Figure 13 is a perspective view of a cushion installed in the frame according to the present invention.
- 14 is a sectional view of a state in which a cushion is installed in a frame.
- the cushion fixing protrusion 73 protruding from the frame 30 is provided, and the cushion fixing protrusion 73 is provided.
- the cushion 72 is configured to fit.
- the material of the cushion 72 according to the present invention is made of a rubber material which can be deformed, and is configured to mitigate the impact applied to the frame 30 or the impact applied to the frame 30 during the slide operation.
- Fig. 14 there is shown a cutaway view in a state where the cushion 72 is fitted to the cushion fixing protrusion 73 and the protruding portion of the rearmost side of the frame. Since the cushion 72 is made of elastic rubber material, an assembling member can insert the cushion 72 into the cushion fixing protrusion 73 by hand.
- the tilt module according to the present invention described above can be applied to a terminal support for mounting a terminal such as a mobile phone.
- terminals such as mobile phones can watch DMB broadcasts.
- the reality is that the need for a terminal support that can stand the terminal by a certain angle when you want to watch the DMB, such as through a portable terminal.
- 15 is an exploded perspective view of a terminal support which is a modification of the present invention.
- 16 is an exploded side view of a terminal support which is a modification of the present invention.
- the terminal supporter which is a modified example of the present invention, is composed of a support plate 200 and a bracket 220 extending in a plate shape, and a stopper 201 formed at a bottom portion bent at the front of the support plate 200.
- the stopper 201 of the support plate is configured to be caught by the stopper 222 of the bracket 220, and the hole and the inner spring 300 and the outer spring 304 into which the shaft 306 is fitted in the front portion of the support plate 200.
- a locking hole 206 into which the spring ball 302 is fitted.
- the brackets 220 of the present invention are coupled to each other so as to be rotated by the shaft 201 in the laid state of the front bottom surface of the support plate 200.
- the spring balls 302, which are tensioned by the inner spring 300 and the outer spring 304, are caught by the two engaging holes 224 formed in the bracket 220 in stages.
- the diameter of the catching hole 224 should be smaller than the diameter of the spring ball 302.
- the support plate 200 of the present invention is coupled to the bracket 200 by the shaft 306, is configured to rotate about the shaft 306, the spring plate 302 is supported while the support plate 200 is raised and lowered It is comprised so that it may be caught by two catching holes 224.
- FIG. 17 is a side view and a rear view of both sides of the support plate in a state where the terminal supporter, which is a modified example of the present invention, is assembled; FIG.
- the support plate 200 is raised upward with respect to the shaft 306.
- the spring ball 302 located in the locking hole 206 of the support plate 200 is caught in the locking hole 224 located above the bracket 220.
- the stopper 201 formed at the front of the support plate 200 of the present invention is supported by the stopper 222 of the bracket 220 in the state in which the support plate 200 is raised in the upward direction as a result. It is supported by the bracket 200 without moving upward.
- the support plate 200 is lowered about the shaft 306.
- the spring ball 302 located in the locking hole 206 of the support plate 200 is caught in the locking hole 224 located below the bracket 220.
- 19 is an exploded perspective view of another embodiment of a terminal support which is a modification of the present invention.
- 20 is an exploded side view of another embodiment of a terminal support which is a modification of the present invention.
- a terminal supporter which is a variation of the present invention, is composed of a support plate 200 and a bracket 230 extending in a plate shape, and a stopper 201 formed at a bottom portion bent at the front of the support plate 200.
- the stopper 201 of the support plate is configured to be caught by the stopper 232 of the bracket 230, and the front portion of the support plate 200 restricts the hole in which the shaft 306 is fitted and the range in which the support plate 200 rotates.
- the control hole 204, the large diameter inner spring 300, the small diameter of the outer spring 304 is inserted into the inner spring 300 and the engaging hole 206 is fitted into the spring ball 302 is formed It is.
- the bracket 230 and the support plate 200 are coupled to each other so that the bracket 230 of the present invention can be rotated by the shaft 201 in a state where the front surface of the support plate 200 is placed.
- the spring balls 302 which are tensioned by the inner spring 300 and the outer spring 304, are caught by the three locking holes 234 formed in the bracket 230 step by step.
- the diameter of the catching hole 224 should be smaller than the diameter of the spring ball 302.
- the support plate 200 of the present invention is coupled to the bracket 230 by the shaft 306, and is configured to rotate about the shaft 306, and the support plate 200 is raised and lowered about the shaft 306.
- the spring ball 302 is configured to be stepped onto the three catching holes 224.
- the other shaft 306 is configured to span the bracket 230 and the control hole 204. This is because the support plate 200 is supported by the stopper 201 of the support plate 200 and the stopper 232 of the bracket 230 while the support plate 200 is completely pulled upward. In addition to supporting, the support plate 200 can rotate only as much as the moving distance allowed by the control hole 204 by the shaft 306 fitted to the bracket 232 fitted to the control hole 204, so that the support plate Even if more force is applied to the upward direction 200, the support plate 200 is prevented from moving away from the range in which the rotational movement is possible.
- FIG. 21 is a side view and a rear view of both sides of the support plate standing up as much as possible in the state in which the terminal support of the second embodiment of the present invention is assembled;
- the support plate 200 is raised as far as possible about the shaft 306.
- the spring ball 302 located in the locking hole 206 of the support plate 200 is caught in the locking hole 234 located at the top of the bracket 230.
- the stopper 201 formed at the front of the support plate 200 of the present invention is supported by the stopper 232 of the bracket 230 in the state in which the support plate 200 is raised in the upward direction relative to the bracket 230. As a result, the support plate 200 is supported by the bracket 200 without any further upward movement.
- the support plate 200 is prevented from being lifted beyond the stopper 232 portion of the bracket 230 also by the shaft 306 inserted into the bracket 230 and inserted into the control hole 204.
- FIG. 22 is a side view and a rear view of the state in which the support plate is lowered to an intermediate stage in the state in which the terminal support of the other embodiment of the present invention is assembled.
- the support plate 200 is raised up to the middle part about the shaft 306.
- the spring ball 302 located in the locking hole 206 of the support plate 200 is caught in the locking hole 234 located in the middle of the bracket 230.
- Figure 23 is a side view and a rear view of the state in which the support plate is lowered to the bottom step in the assembled state of the terminal support of another embodiment of the present invention.
- the support plate 200 is lowered as much as possible about the shaft 306.
- the spring ball 302 located in the locking hole 206 of the support plate 200 is caught in the locking hole 224 located at the bottom of the bracket 230.
- 24 to 27 is an exemplary view of a terminal support is attached to the terminal according to the present invention.
- a terminal support consisting of the support plate 200 and the brackets 220 and 230 is attached to a portion of a terminal such as a mobile phone.
- Figure 24 (a) is a view from above of the terminal with the terminal support, the support plate 200 is folded on the surface of the terminal 500
- Figure 24 (b) is a view showing a state where the support plate 200 is open. Show the appearance.
- FIG. 25 (a) is a slightly twisted side view of the terminal 500 standing by the support plate 200
- Figure 25 (b) is a view of the terminal 500 from the front
- Figure 25 (c) is a terminal 500 is a side view of the standing state
- FIG. 25D is a rear view.
- 26 and 27 illustrate a perspective view (a), a front view (b), a side view (d), and a rear view (c) of the terminal supporter installed on the upper left side of the terminal 500 and the state installed on the lower right side. do.
- the terminal support which is a modification of the present invention
- the user can easily watch the DMB broadcast without having to hold the terminal with his hand or the like when watching the DMB broadcast.
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- Computer Networks & Wireless Communication (AREA)
- Telephone Set Structure (AREA)
Abstract
Description
Claims (15)
- 휴대폰의 평면 슬라이딩 동작 및 틸트 동작을 가능하도록 해주는 틸트형 휴대폰 슬라이딩 모듈로서,휴대폰 내부에 장착 고정되어 휴대폰의 평면 슬라이딩 동작 및 틸트 동작을 발생시키기 위한 프레임(30);상기 프레임(30)에 의한 안내를 통하여 평면 슬라이딩 동작이 이루어지는 슬라이더(10);상기 프레임(30)과 슬라이더(10)에 각각 연결되어 반자동 방식의 평면 슬라이딩 운동을 발생시켜 주는 탄성장치(80);상기 프레임(30)의 양측 모서리에 각각 하나씩 형성되어 상기 프레임(30)의 회전동작을 발생시켜 주기 위한 틸트회전부(38);상기 틸트회전부(38)와 연결되어 상기 틸트회전부(38)의 안정적인 틸트동작을 안내해 주기 위한 제어브라켓(40);상기 틸트회전부(38)의 측면에 장착되며, 상기 틸트회전부(38)의 회전동작시 단계별 멈춤동작 및 안정적인 틸트상태 유지를 발생시키기 위한 스프링볼(70);상기 스프링볼(70)의 탄성력에 의한 삽입 걸림동작과 외력에 의한 이탈동작을 발생시키기 위하여 상기 제어브라켓(40)의 측면에 복수개 형성되는 스프링볼 걸림공(46a, 46b);상기 틸트회전부(38)의 최대 틸트회전각을 제한시켜주기 위한 스탑퍼샤프트(60);상기 틸트회전부(38)에 관통 형성되어 상기 스탑퍼샤프트(60)에 의한 상·하측면 걸림동작을 발생시켜 주기 위한 스탑퍼샤프트 제어공(32);상기 스탑퍼샤프트(60)를 고정시키기 위하여 상기 제어브라켓(40)의 양측면에 각각 형성된 스탑퍼샤프트 체결공(44);상기 틸트회전부(38)와 제어브라켓(40)을 연결시켜주며, 상기 틸트회전부(38)의 회전축 역할을 하는 메인샤프트(50); 및상기 메인샤프트(50)를 수용하기 위하여 상기 제어브라켓(40)의 양측면에 각각 형성된 메인샤프트 체결공(42)을 포함하도록 구성되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 1 항에 있어서,상기 메인샤프트(50)는 상기 틸트회전부(38)에 관통 형성된 회전공(34)에 관통 삽입되어 상기 틸트회전부(38)와 제어브라켓(40)을 연결시켜주고,상기 메인샤프트(50)의 끝단 영역(52)은 그 단면 형상이 원형이 아닌 다각형 형상을 갖도록 구성되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 1 항에 있어서,상기 슬라이더(10)는,내부에 'ㄷ'자 형태의 길다란 홈을 갖도록 구성되어 슬라이더(10)의 평면 슬라이딩 동작을 안내하기 위한 가이드레일(20); 및상기 가이드레일(20)을 상기 프레임(30)의 양측 모서리에 수용시키기 위하여 상기 프레임(30) 양단을 각각 'ㄱ'자 형으로 절곡하여 형성한 가이드레일 삽입단 (36)을 통하여 평면 슬라이딩 동작이 이루어지는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 1 항에 있어서,상기 제어브라켓(40)의 폭방향 양단에는 날개형상으로 이루어진 체결판(48)이 각각 형성되어 있고, 상기 체결판(48)에는 고정볼트가 삽입 체결되기 위한 삽입공이 형성되어 있는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 1 항에 있어서,상기 메인샤프트(50)가 상기 메인샤프트 체결공(42)으로부터 빠져나와 돌출된 영역에는 상기 메인샤프트(50)의 둘레를 따라 움푹 파인 형태로 구성된 끼움홈(54)이 형성되고,상기 끼움홈(54)에는 상기 끼움홈(54)의 폭과 동일한 두께를 갖도록 구성된 고정자(56)가 끼워져 상기 메인샤프트(50)가 상기 제어브라켓(40)으로부터 이탈되지 않고 고정될 수 있도록 하는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 1 항에 있어서,상기 스프링볼(70)은 코일스프링으로 이루어져 탄성복원력을 발생시키는 로드부(74) 및 구형상으로 형성된 걸림쇠(72)를 포함하도록 구성되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 휴대폰의 평면 슬라이딩 동작 및 틸트 동작을 가능하도록 해주는 틸트형 휴대폰 슬라이딩 모듈로서, 상기 슬라이딩 모듈은, 휴대폰 내부에 장착 고정되어 휴대폰의 평면 슬라이딩 동작 및 틸트 동작을 발생시키기 위한 프레임 (30); 상기 프레임(30)에 의한 안내를 통하여 평면 슬라이딩 동작이 이루어지는 슬라이더(10); 및 상기 프레임(30)과 슬라이더(10)에 각각 연결되어 반자동 방식의 평면 슬라이딩 운동을 발생시켜 주는 탄성장치(80) 로 구성되고,상기 프레임(30)의 양측 모서리에 각각 하나씩 결합되어 상기 프레임(30)의 틸트동작을 발생시켜 주기 위한 틸트프레임(88);상기 틸트프레임 (88)와 연결되어 상기 틸트프레임 (88)의 안정적인 틸트동작을 안내해 주기 위한 제어브라켓(90);상기 틸트프레임 (88)의 측면에 장착되며, 상기 틸트프레임 (88)의 회전동작시 단계별 멈춤동작 및 안정적인 틸트상태 유지를 발생시키기 위한 스프링볼 (100);상기 스프링볼 (100)의 탄성력에 의한 삽입 걸림동작과 외력에 의한 이탈동작을 발생시키기 위하여 상기 제어브라켓 (90)의 측면에 복수개 형성되는 스프링볼 걸림공(94, 95);상기 틸트프레임 (88)의 최대 틸트회전각을 제한시켜주기 위한 스탑퍼샤프트 (102);상기 틸트프레임 (88)에 관통 형성되어 상기 스탑퍼샤프트 (102)에 의한 상·하측면 걸림동작을 발생시켜 주기 위한 상하 길쭉한 타원형의 스탑퍼샤프트 제어공(32);상기 스탑퍼샤프트(60)를 고정시키기 위하여 상기 제어브라켓(40)의 양측면에 각각 형성된 스탑퍼샤프트 체결공(96);상기 틸트프레임 (88)과 제어브라켓 (90)을 연결시켜주며, 상기 틸트프레임 (88)의 회전축 역할을 하는 메인샤프트(100); 및상기 메인샤프트 (100)를 수용하기 위하여 상기 제어브라켓(90)의 양측면에 각각 형성된 메인샤프트 체결공 (97)을 포함하도록 구성되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 7 항에 있어서,상기 프레임 (30) 의 양변에는 가이드레일 (74) 이 각각 인서트사출에 의해 구성되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 7 항에 있어서,상기 프레임 (30) 에는 쿠션 (72) 이 끼워지는 돌출된 쿠션고정돌기 (73) 가 형성되고, 상기 쿠션고정돌기 (73) 에 고무재질의 쿠션 (72) 이 끼워지도록 구성되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 7 항에 있어서,상기 스프링볼 (110) 은 1 개이상의 스프링 (112, 114) 에 의해 텐션이 유지되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 제 7 항에 있어서,상기 프레임 (30) 은 프레스가공에 의해서 제조되고, 상기 틸트프레임 (88) 은 금속성형사출에 의해 제조되는 것을 특징으로 하는 틸트형 휴대폰 슬라이딩 모듈.
- 판형으로 길게 연장된 지지판 (200) 과상기 지지판 (200) 의 앞부분과 결합하는 브라켓 (220) 을 포함하고,상기 지지판 (200) 의 앞부분에는 구부러진 밑부분에 스토퍼 (201) 가 형성되고,상기 지지판의 스토퍼 (201) 는 브라켓 (220) 의 스토퍼 (222) 에 걸리는 구성이고,상기 지지판 (200) 의 앞부분에는 샤프트 (306) 가 끼워지는 홀과 내스프링 (300), 외스프링 (304) 및 스프링볼 (302) 이 끼워지는 걸림홀 (206) 이 형성되고,상기 브라켓 (220) 이 상기 지지판 (200) 의 앞부분 밑면의 놓여진 상태에서 샤프트 (201) 에 의해 회전할 수 있도록 서로 결합되고,상기 브라켓 (220) 에 형성된 2 개의 걸림공 (224) 에 내스프링 (300) 과 외스프링 (304) 에 의해 텐션을 받는 스프링볼 (302) 이 단계적으로 걸리게 되고,상기 걸림공 (224) 의 직경은 스프링볼 (302) 의 직경보다 작게 구성되고,상기 지지판 (200) 은 브라켓 (200) 에 샤프트 (306) 로 결합되고,상기 샤프트 (306) 를 중심으로 회전할 수 있도록 구성되고,상기 지지판 (200) 이 올려지고 내려지면서 스프링볼 (302) 이 걸림공 (224) 에 걸리게 구성되는 것을 특징으로 하는 단말기 지지대.
- 제 12 항에 있어서,상기 걸림공은 2 개인 것을 특징으로 하는 단말기 지지대.
- 제 12 항에 있어서,상기 걸림공은 3 개인 것을 특징으로 하는 단말기 지지대.
- 제 12 항에 있어서,상기 단말기 지지대는 휴대폰의 뒷면에 설치되는 것을 특징으로 하는 단말기 지지대.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13/146,285 US8238986B2 (en) | 2009-02-12 | 2009-12-26 | Tilt-type sliding module for mobile phone and terminal holder using the same |
| CN200980156719.1A CN102318201B (zh) | 2009-02-12 | 2009-12-26 | 倾斜型移动电话滑动模块及利用该滑动模块的终端机支撑台 |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR1020090011639A KR20100021338A (ko) | 2008-08-14 | 2009-02-12 | 틸트형 휴대폰 슬라이딩 모듈 |
| KR10-2009-0011639 | 2009-02-12 | ||
| KR10-2009-0035266 | 2009-04-22 | ||
| KR1020090035266A KR20100021345A (ko) | 2008-08-14 | 2009-04-22 | 틸트형 휴대폰 슬라이딩 모듈 및 이를 이용한 단말기 지지대 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2010093117A2 true WO2010093117A2 (ko) | 2010-08-19 |
| WO2010093117A3 WO2010093117A3 (ko) | 2010-10-07 |
Family
ID=42562409
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/KR2009/007816 Ceased WO2010093117A2 (ko) | 2009-02-12 | 2009-12-26 | 틸트형 휴대폰 슬라이딩 모듈 및 이를 이용한 단말기 지지대 |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US8238986B2 (ko) |
| KR (2) | KR20100092361A (ko) |
| WO (1) | WO2010093117A2 (ko) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP2801861A4 (en) * | 2012-10-26 | 2015-11-04 | Mitsubishi Steel Mfg | OPENING / CLOSING DEVICE |
Families Citing this family (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20110164352A1 (en) * | 2010-01-07 | 2011-07-07 | Sony Ericsson Mobile Communications Ab | Double sliding mechanism for user devices |
| JP5615070B2 (ja) * | 2010-07-12 | 2014-10-29 | 三菱製鋼株式会社 | 電子機器用スライド装置 |
| KR101728387B1 (ko) * | 2010-09-27 | 2017-04-19 | 엘지전자 주식회사 | 휴대 단말기 |
| US20130141857A1 (en) * | 2011-11-01 | 2013-06-06 | Sony Mobile Communications Japan, Inc. | Mobile terminal apparatus |
| EP2608165A1 (en) * | 2011-12-21 | 2013-06-26 | Count R GmbH | Method for exchanging a ticket with chips at a gaming table in a casino |
| EP3016371B1 (en) * | 2014-08-27 | 2018-03-21 | Mitsubishi Steel MFG. CO., LTD. | Opening/closing device and electronic device |
| KR101744788B1 (ko) * | 2015-09-18 | 2017-06-09 | 주식회사 케이에이치바텍 | 휴대전자기기용 힌지장치 |
| CN106971673B (zh) * | 2017-05-26 | 2019-07-26 | 京东方科技集团股份有限公司 | 一种柔性显示装置 |
| US20220321685A1 (en) * | 2019-06-03 | 2022-10-06 | Auflex Co., Ltd. | Elastic driving body |
Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6980840B2 (en) * | 2000-01-24 | 2005-12-27 | Lg Electronics Inc. | Drawer-type mobile phone |
| JP3944506B2 (ja) * | 2003-10-28 | 2007-07-11 | エルジー エレクトロニクス インコーポレイティド | スライド型携帯端末機及びそれに使用されるスライド装置 |
| KR20060073085A (ko) * | 2004-12-24 | 2006-06-28 | 주식회사 팬택 | 캠 구조의 지지대를 이용하여 각도조절이 가능한이동통신단말기 |
| KR200385468Y1 (ko) * | 2005-03-03 | 2005-05-27 | 이근주 | 휴대폰용 스윙 회전장치 |
| JP4378333B2 (ja) | 2005-09-07 | 2009-12-02 | 株式会社ストロベリーコーポレーション | スライド装置並びにスライド装置を用いた電子機器 |
| KR100778529B1 (ko) | 2006-03-06 | 2007-11-22 | 이근주 | 휴대용 단말기의 슬라이드/힌지 장치 |
| KR100768499B1 (ko) | 2006-08-11 | 2007-10-18 | 주식회사 다이아벨 | 휴대폰의 스윙 힌지 장치 |
| KR20090013427A (ko) * | 2007-08-01 | 2009-02-05 | (주)에이트리 | 휴대용 전자기기 |
-
2009
- 2009-09-29 KR KR1020090092738A patent/KR20100092361A/ko not_active Withdrawn
- 2009-12-26 WO PCT/KR2009/007816 patent/WO2010093117A2/ko not_active Ceased
- 2009-12-26 US US13/146,285 patent/US8238986B2/en not_active Expired - Fee Related
-
2010
- 2010-01-25 KR KR1020100006347A patent/KR101621562B1/ko not_active Expired - Fee Related
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP2801861A4 (en) * | 2012-10-26 | 2015-11-04 | Mitsubishi Steel Mfg | OPENING / CLOSING DEVICE |
| US9398708B2 (en) | 2012-10-26 | 2016-07-19 | Mitsubishi Steel Mfg. Co., Ltd. | Opening and closing device |
Also Published As
| Publication number | Publication date |
|---|---|
| WO2010093117A3 (ko) | 2010-10-07 |
| US20110287819A1 (en) | 2011-11-24 |
| KR20100092372A (ko) | 2010-08-20 |
| US8238986B2 (en) | 2012-08-07 |
| KR20100092361A (ko) | 2010-08-20 |
| KR101621562B1 (ko) | 2016-05-31 |
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