Display device for vehicle

The vehicle display device addresses the challenge of inconvenient operation by incorporating a sliding and swiveling mechanism, allowing the display to move and tilt for improved passenger interaction, enhancing usability in diverse vehicle scenarios.

WO2025154870A1PCT designated stage expired Publication Date: 2025-07-24LG ELECTRONICS INC
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Patent Information

Application Number
PCT/KR2024/004535
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-19
Filing Date
2024-04-05
Publication Date
2025-07-24

AI Technical Summary

Technical Problem

Existing vehicle display devices do not provide convenient operation and access for passengers, particularly in varying vehicle conditions such as during deployment of an airbag, which can dislodge the display from its mounting.

Method used

A vehicle display device with a sliding and swiveling mechanism, comprising a fixed frame, sliding frame, swivel frame, and motors to enable telescopic, left swing, and right swing modes, allowing the display module to move forward/backward and tilt left/right for enhanced passenger interaction.

Benefits of technology

Enables convenient operation and access to the display module by passengers, accommodating various vehicle conditions and enhancing user interaction through multiple positional adjustments.

✦ Generated by Eureka AI based on patent content.

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Abstract

This display device for a vehicle comprises: a fixed frame; a sliding frame disposed on the fixed frame to allow sliding; a slide driver, disposed on the fixed frame, for sliding the sliding frame; a swivel frame rotatably connected to the sliding frame by means of a swivel hinge; a display module disposed on the swivel frame; and a swivel driver, disposed on the sliding frame, for rotating the swivel frame.
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Description

Vehicle display device

[0001] The present invention relates to a display device for a vehicle.

[0002] The vehicle may be equipped with a display device.

[0003] An example of a vehicle display device installed in a vehicle may be mounted on a rotating display holder disclosed in Korean Patent Publication No. 10-2023-0147861 A (published on October 24, 2023), and the rotating display holder includes a mounting bracket that is installed on an instrument panel of the vehicle to mount a display device, and when an airbag installed inside the instrument panel is deployed, the rear part thereof is struck by the deployed airbag and rotates forward toward a vehicle interior seat, and prevents the display device from being released from its mounting state; and a rotating support portion that is connected to the mounting bracket to rotatably support the mounting bracket with respect to the instrument panel.

[0004] The present embodiment can provide a vehicle display device that allows a passenger to conveniently touch or operate a display module.

[0005] A vehicle display device according to the present embodiment may include a fixed frame; a sliding frame arranged to slide on the fixed frame; a sliding driving source arranged on the fixed frame to slide the sliding frame; a swivel frame rotatably connected to the sliding frame by a swivel hinge; a display module arranged on the swivel frame; and a swivel driving source arranged on the sliding frame to swivel the swivel frame.

[0006] The display module can be operated in one of a telescopic mode in which it moves toward the rider, a left swing mode in which it moves toward the rider and swings in an inclined direction to the left, and a right swing mode in which it moves toward the rider and swings in an inclined direction to the right.

[0007] The sliding frame can be arranged to slide forward and backward on the upper side of the fixed frame.

[0008] The size of the sliding frame may be smaller than the size of the fixed frame.

[0009] A vehicle display device includes a sliding main shaft and a sliding sub shaft supported on a fixed frame and connected to a sliding frame, wherein the sliding main shaft and the sliding sub shaft can be spaced apart in a direction orthogonal to a sliding direction of the sliding frame.

[0010] The sliding frame may be formed with a first guide formed with a sliding main shaft guide through which a sliding main shaft passes; and a second guide formed with a sliding secondary shaft guide through which a sliding secondary shaft passes.

[0011] The sliding shaft guide may include an opening extending to one end of the second guide.

[0012] The opening can be opened in a direction perpendicular to the sliding direction of the sliding frame.

[0013] The sliding drive unit may include a lead screw; a nut mounted on the sliding frame and moved along the lead screw; and a sliding motor that rotates the lead screw.

[0014] The sliding drive unit may further include a sliding gear box, and the sliding gear box may include a driven gear connected to the lead screw; and a driving gear connected to the sliding motor to rotate the driven gear.

[0015] The sliding motor can be placed on the upper side of the sliding gear box.

[0016] The vehicle display device may include a lead screw supporter disposed on a fixed frame and supporting a lead screw.

[0017] The swivel frame may include a rear body disposed on the display module; a swivel driven gear formed in the rear body; and a penetration portion through which a swivel hinge passes.

[0018] The sliding frame may include a support formed with a support hole that rotatably supports the swivel hinge.

[0019] The swivel driven gear may include a worm gear.

[0020] The swivel drive unit may include a worm wheel meshed with a worm gear; and a swivel motor disposed on a sliding frame to rotate the worm wheel.

[0021] The vehicle display device may further include a worm wheel supporter disposed on a sliding frame to support the worm wheel.

[0022] The distance between the swivel motor of the swivel drive source and the display module may be shorter than the distance between the sliding motor of the sliding drive source and the display module.

[0023] The swivel motor of the swivel drive source can be driven together with the sliding motor of the sliding drive source, the swivel motor can be stopped during the driving of the sliding motor, and the swivel motor can be driven after the sliding motor is stopped.

[0024] According to this embodiment, the display module can not only swing but also advance and retreat, so that the passenger can touch or operate the display module more conveniently.

[0025] Figure 1 is a plan view of a vehicle display device according to the present embodiment;

[0026] Figure 2 is a perspective view of a vehicle display device according to the present embodiment;

[0027] Figure 3 is a diagram of a vehicle display device according to the present embodiment when the display module is separated.

[0028] Fig. 4 is a diagram illustrating a sliding frame and a lead screw according to the present embodiment;

[0029] Figure 5 is a diagram illustrating various modes of the display module illustrated in Figure 1.

[0030] Hereinafter, specific embodiments of the present invention will be described in detail with drawings.

[0031] FIG. 1 is a plan view of a vehicle display device according to the present embodiment, FIG. 2 is a perspective view of a vehicle display device according to the present embodiment, FIG. 3 is a view of a vehicle display device according to the present embodiment when a display module is separated, FIG. 4 is a view illustrating a sliding frame and a lead screw according to the present embodiment, and FIG. 5 is a view illustrating various modes of the display module illustrated in FIG. 1.

[0032] Fig. 5 (a) is a diagram showing an example in which the display module is moved toward the passenger, Fig. 5 (b) is a diagram showing an example in which the display module is moved toward the passenger and swung to the left, and Fig. 5 (c) is a diagram showing an example in which the display module is moved toward the passenger and swung to the right.

[0033] A vehicle display device may include a fixed frame (1); a sliding frame (2) slidably arranged on the fixed frame (1); a sliding drive source (3) arranged on the fixed frame (1) to slide the sliding frame (2); a swivel frame (5) rotatably connected to the sliding frame (2) by a swivel hinge (4); a display module (6) arranged on the swivel frame; and a swivel drive source (7) arranged on the sliding frame (2) to swivel the swivel frame (5).

[0034] A vehicle display device can be installed in the cockpit or instrument panel of a vehicle and can visually provide various information to passengers in the vehicle.

[0035] The vehicle display device may be a center display located in the center of the cockpit or instrument panel, or a CID (Center Information Display) that provides information to passengers located in the driver's seat or front passenger seat.

[0036] The vehicle display device may be a driver display located in front of the driver's seat.

[0037] The vehicle display device may be a passenger display located in front of the passenger seat, and may be a PIP (Passenger Information Display) or CDD (Co-driver Display).

[0038] Vehicle display devices can be placed on the hood or backrest of a vehicle, and are not limited to their installation location.

[0039] Hereinafter, a vehicle display device is described as a display installed in a vehicle's cockpit or instrument panel, and the direction in which the vehicle moves forward is described as forward, and the direction in which the vehicle moves backward is described as rearward.

[0040] The fixed frame (1) can be placed in the cockpit or instrument panel of the vehicle. The fixed frame (1) can be placed inside the cockpit or instrument panel of the vehicle.

[0041] The fixed frame (1) can be mounted on the cockpit or instrument panel of the vehicle and can be fixed in position.

[0042] The fixed frame (1) may include a horizontally arranged lower plate (11).

[0043] The lower plate (11) may be in the shape of a plate.

[0044] A sliding main shaft (12) and a sliding auxiliary shaft (13) can be arranged on the fixed frame (1).

[0045] The sliding main shaft (12) and the sliding auxiliary shaft (13) can be supported on the fixed frame (1) and connected to the sliding frame (2).

[0046] Each of the sliding main shaft (12) and the sliding secondary shaft (13) can be arranged lengthwise in the front-back direction (X) on the upper side of the lower plate (11).

[0047] The sliding main shaft (12) and the sliding secondary shaft (13) can be arranged in parallel.

[0048] The sliding spindle (12) can be positioned above the left side of the lower plate (11).

[0049] The sliding shaft (13) can be positioned above the right side of the lower plate (11).

[0050] The sliding main shaft (12) and the sliding sub-axis (13) can be spaced apart in a direction (Y) orthogonal to the slide direction (X) of the sliding frame (2). The sliding main shaft (12) and the sliding sub-axis (13) can be spaced apart in the left-right direction (Y).

[0051] The fixed frame (1) may include a sliding spindle supporter (14) that supports the sliding spindle (12).

[0052] A support hole through which the sliding main shaft (12) passes may be formed in the sliding main shaft supporter (14). The sliding main shaft supporter (14) may be formed to protrude from the upper surface of the lower plate (11).

[0053] The sliding main shaft (12) can support the sliding frame (2) in a slidable manner while being spaced apart from the lower plate (11).

[0054] A pair of sliding main shaft supports (14) may be formed on the upper surface of the lower plate (11), and the pair of sliding main shaft supports (14) may include a front sliding main shaft supporter (14A) and a rear sliding main shaft supporter (14B). The front sliding main shaft supporter (14A) and the rear sliding main shaft supporter (14B) may be spaced apart in the front-rear direction (X).

[0055] The fixed frame (1) may include a sliding shaft supporter (15) that supports the sliding shaft (13).

[0056] A support hole through which the sliding shaft (13) penetrates may be formed in the sliding shaft supporter (15). The sliding shaft supporter (15) may be formed to protrude from the upper surface of the lower plate (11).

[0057] The sliding support shaft (13) can support the sliding frame (2) in a slidable manner while being spaced apart from the lower plate (11).

[0058] The sliding auxiliary supporter (15) can be spaced apart from the sliding main supporter (14) in the left and right direction (Y).

[0059] A pair of sliding axis supporters (15) may be formed on the upper surface of the lower plate (11), and the pair of sliding axis supporters (15) may include a front sliding axis supporter (15A) and a rear sliding axis supporter (15B). The front sliding axis supporter (15) and the rear sliding axis supporter (15) may be spaced apart in the front-rear direction (X).

[0060] The sliding frame (2) can be slidably arranged on the upper side of the fixed frame (1).

[0061] The sliding frame (2) and the fixed frame (1) can be spaced apart in the vertical direction (Z).

[0062] The sliding frame (2) can slide in the forward and backward direction (X) above the fixed frame (1).

[0063] When the sliding frame (2) slides forward, it can move away from the passenger, and hereinafter, the sliding frame (2) moving away from the passenger can be defined as the forward movement of the sliding frame (2).

[0064] When the sliding frame (2) slides forward, it can move away from the passenger, and hereafter, the sliding frame (2) moving closer to the passenger can be defined as the sliding frame (2) moving backward.

[0065] The sliding frame (2) can be moved forward to the forward position when the vehicle is stopped. The sliding frame (2) can be moved back to the backward position when a passenger inputs a backward command through an input unit provided in the vehicle or when the vehicle is in motion.

[0066] The size of the sliding frame (2) may be smaller than the size of the fixed frame (1).

[0067] The sliding frame (2) may include a lower plate (11) and an upper plate (21) spaced apart in the vertical direction.

[0068] A sliding frame (2) may be formed with a first guide (23) having a sliding main shaft guide (22) through which a sliding main shaft (12) passes; and a second guide (25) having a sliding secondary shaft guide (24) through which a sliding secondary shaft (13) passes.

[0069] The sliding shaft guide (24) may include an opening (26) extending to one end of the second guide (25).

[0070] The opening (26) can be opened in a direction (Y) orthogonal to the sliding direction (X) of the sliding frame (2). The opening (26) can facilitate the insertion of the sliding shaft (13), thereby providing convenience in assembly.

[0071] The sliding shaft (13) can be moved in a horizontal direction (i.e., left and right direction) while supported by a sliding shaft guide (24) including an opening (26), and the sliding shaft guide (24) can resolve an error in the distance between the axes of the sliding main shaft (12) and the sliding shaft (13).

[0072] The sliding drive source (3) may include a lead screw (31); a nut (32) mounted on the sliding frame (2) and moved along the lead screw (31); and a sliding motor (33) for rotating the lead screw (31).

[0073] An example of a sliding drive source (3) is a sliding motor (33) connected to the rotation center of a lead screw (31) to rotate the lead screw (31).

[0074] Another example of the sliding drive source (3) may further include at least one power transmission member that transmits the driving force of the sliding motor (33) to the lead screw (31). The sliding motor (33) may rotate the lead screw (31) through a sliding gear box (34), and the sliding gear box (34) may include a driven gear (35) that is connected to the lead screw (31) to rotate the lead screw (31), and a driving gear (36) that is meshed with the driven gear (35) to rotate the driven gear (35).

[0075] An example of a driven gear (35) may be a worm gear meshed with a worm wheel.

[0076] The driving gear (36) can be connected to the rotational axis of the sliding motor (33) and rotated. An example of the driving gear (36) may include a worm wheel arranged in a vertical direction (Z).

[0077] The lead screw (31) can be arranged lengthwise in the front-back direction (X) on the upper side of the lower plate (11) of the fixed frame (1).

[0078] The lead screw (31) can be arranged between the sliding main shaft (12) and the sliding sub-axis (13) so as to be spaced apart from each of the sliding main shaft (12) and the sliding sub-axis (13) in the left-right direction (Y).

[0079] The nut (32) can have a gear formed on its inner surface that meshes with the lead screw (31), and can move in the longitudinal direction of the lead screw (31) when the lead screw (31) rotates.

[0080] The nut (32) can be fastened to the nut mounting portion (27) protruding from the bottom surface of the sliding frame (2) using a fastening member (S) such as a screw.

[0081] The sliding motor (33) can be mounted on the upper surface of the sliding gear box (34).

[0082] The vehicle display device may include a lead screw supporter (16, see FIG. 5) that is placed on a fixed frame (1) and supports a lead screw (31).

[0083] The lead screw supporter (16) can protrude upward on the upper surface of the lower plate (11) of the fixed frame (1) and can rotatably support the rear end of the lead screw (31).

[0084] The sliding frame (2) may include a support member (28) that supports the swivel hinge (4).

[0085] The support member (28) may protrude rearward from the rear end of the upper plate (21). A portion of the support member (28) may be positioned on the lower side of the swivel frame (5) and may overlap with the swivel frame (5) in the vertical direction (Z). The support member (28) may be formed with a support hole that rotatably supports the swivel hinge (4).

[0086] The display module (6) may be a rear view display module that has an input unit (61) provided on the rear side and displays an image in a rearward direction.

[0087] An example of an input unit (61) may be a touch screen or a button that can be operated by a user's touch.

[0088] The display module (6) can be moved so that the input unit (21) approaches the passenger as shown in (a) of FIG. 5, or swiveled at a predetermined angle so that the input unit (21) faces the left tilt direction (LC) as shown in (b) of FIG. 5, or swiveled at a predetermined angle so that the input unit (21) faces the right tilt direction (RC) as shown in (c) of FIG. 5.

[0089] The display module (6) can be operated in a telescopic mode in which it moves toward the passenger as shown in (a) of FIG. 5, a left swing mode in which it moves toward the passenger and swings inclined to the left as shown in (b) of FIG. 5, and a right swing mode in which it moves toward the passenger and swings inclined to the right as shown in (c) of FIG. 5.

[0090] The display module (6) can be moved in any one of the telescopic mode, the left swing mode, and the right swing mode.

[0091] A user input unit, such as a button or voice recognition module that can input the mode of the display module (6) may be placed in a vehicle or a vehicle display device, and a passenger may input a telescopic mode, a left swing mode, or a right swing mode through the user input unit.

[0092] A processor disposed in a vehicle or a vehicle display device can drive / stop at least one of the sliding motor (33) of the sliding drive source (3) and the swivel motor (72) of the swivel drive source (7) according to a user's input.

[0093] Telescopic mode may be a mode in which the display module (6) does not rotate to the left or right, but only moves forward and backward (X) toward the vehicle compartment.

[0094] When the telescopic mode is entered, the vehicle display device can drive / stop the sliding motor (33) of the sliding drive source (3) without driving the swivel motor (72) of the swivel drive source (7).

[0095] When the left swing mode or right swing mode is input, the vehicle display device can drive / stop the sliding motor (33) of the sliding drive source (3) and drive / stop the swivel motor (72) of the swivel drive source (7).

[0096] The swivel hinge (4) can penetrate the penetration portion (53) of the swivel frame (5) and the support portion (28) of the sliding frame (2), and can rotatably connect the swivel frame (5) to the sliding frame (2).

[0097] The swivel frame (5) may include a rear body (51) disposed on the display module (6); a swivel driven gear (52) formed on the rear body (51) and a penetration portion (53) through which the swivel hinge (4) passes.

[0098] The rear body (61) may be arranged on the front of the display module (6). The rear body (61) may include a vertical plate (61A) arranged vertically on the front of the display module (6) and a horizontal plate (61B) protruding horizontally from the front of the vertical plate (61A).

[0099] The swivel driven gear (52) may be formed integrally with the rear body (51) or manufactured separately and then fastened to the rear body (51) using a fastening member such as a screw.

[0100] The swivel driven gear (52) can be rotated integrally with the rear body (51). An example of the swivel driven gear (52) may include a worm gear. Hereinafter, for convenience, the swivel driven gear and the worm gear will be described using the same reference numeral 52.

[0101] The through-hole (53) may include a through-hole through which the swivel hinge (4) passes.

[0102] The swivel drive source (7) can rotate the swivel frame (5) left and right around the swivel hinge (4), and the display module (6) on which the swivel frame (5) is arranged can rotate left and right around the swivel hinge (4) together with the swivel frame (5).

[0103] The swivel drive source (7) may include a worm wheel (71) meshed with a worm gear; and a swivel motor (72) arranged on a sliding frame (2) to rotate the worm wheel (71).

[0104] The worm wheel (71) can be arranged lengthwise in the left-right direction (Y) on the sliding frame (2).

[0105] The worm wheel (71) can be spaced apart from the upper plate (21) in the vertical direction (Z).

[0106] The swivel motor (72) can be mounted on the sliding frame (2) by a motor mounter (73). The swivel motor (72) can be positioned next to the support (28).

[0107] A swivel motor (72) is connected to one end of a worm wheel (71) and can rotate the worm wheel (71).

[0108] The swivel motor (72) may include a rotation shaft connected to a worm wheel (71). The swivel motor (72) may have a rotation shaft that can rotate in both directions.

[0109] The vehicle display device may further include a worm wheel supporter (74) that is placed on a sliding frame (2) and supports a worm wheel (71).

[0110] The warm wheel supporter (74) can support the other end of the warm wheel (71).

[0111] When the rotation axis of the swivel motor (72) rotates in one direction, the worm wheel (71) can rotate the worm gear (52) in one direction around the swivel hinge (4), and the swivel frame (5) can swing in the left inclined direction (LC) as shown in (b) of Fig. 5.

[0112] When the rotation axis of the swivel motor (72) is rotated in the other direction, the worm wheel (71) can rotate the worm gear (52) in the other direction around the swivel hinge (4), and the swivel frame (5) can swing in the right inclination direction (RC) as shown in (c) of FIG. 5.

[0113] The swivel motor (72) of the swivel drive source (7) and the sliding motor (33) of the sliding drive source (3) can be closer to the display module (6) than the other.

[0114] The swivel motor (72) of the swivel driving source (7) may be closer to the display module (6) than the sliding motor (33) of the sliding driving source (3). The distance (L1) between the swivel motor (72) of the swivel driving source (7) and the display module (6) may be shorter than the distance (L2) between the sliding motor (33) of the sliding driving source (3) and the display module (6).

[0115] The swivel motor (72) can be close to the rear end of the fixed frame (1), the sliding motor (33) can be close to the front end of the fixed frame (1), and the load of the vehicle display device can be distributed front and rear.

[0116] The vehicle display device may further include a display frame (9).

[0117] The display frame (9) can form the rear exterior of the vehicle display device.

[0118] A portion of the display frame (9) may be exposed to the vehicle interior.

[0119] A through hole (91) through which a swivel frame (4) passes may be formed in the display frame (9).

[0120] The display frame (9) can have its back side open.

[0121] The display frame (9) may include a front body (92) and a frame (93) protruding rearward from the front body (92). The display frame (9) may be fixed to a cockpit or instrument panel of a vehicle. The display frame (9) may be formed integrally with the fixed frame (1) or may be fastened to a fixed frame (1) manufactured separately from the fixed frame (1).

[0122] A space (94) can be formed inside the display frame (9), and the display module (6) can be inserted into the space (94) and accommodated in the space (94). When the display module (6) is swivelled, a portion of the space (94) can be pulled out, and the remaining portion can be accommodated in the space (S).

[0123] Meanwhile, the vehicle display device can determine the moving operation of the display module (6) according to the driving timing of the sliding motor (33) and the driving timing of the swivel motor (72).

[0124] The starting and stopping times of the sliding motor (33) and the swivel motor (72) may be the same or different.

[0125] For example, the swivel motor (72) and the sliding motor (33) can be driven together, and the display module (6) can swing while moving forward and backward. That is, the moving forward and backward motion and the swing motion of the display module (6) can be performed together.

[0126] The swivel motor (72) and the sliding motor (33) can be started and stopped together.

[0127] As another example, the swivel motor (72) and the sliding motor (33) can be driven sequentially. In this case, the forward and backward motions and the swing motions of the display module (6) can be performed sequentially.

[0128] When the sliding motor (33) is first started and then stopped, the display module (6) can be advanced and retracted, and the display module (6) can be retracted and brought closer to the passenger.

[0129] While the sliding motor (33) is being driven, the swivel motor (72) may not be driven, in which case the display module (6) may be retracted without being tilted to the left or right.

[0130] After the sliding motor (33) is stopped, the swivel motor (72) can be started, and with the display module (6) retracted, the display module (6) can be swung while the swivel motor (72) is driven. The swivel motor (72) can be stopped after a set time has elapsed after being started.

[0131] As another example, the swivel motor (72) can be driven together with the sliding motor (33) when the sliding motor (33) is driven, and can be further driven additionally after the sliding motor (33) is stopped.

[0132] The swivel motor (72) can be started when the sliding motor (33) is started or can be started during the operation of the sliding motor (33).

[0133] Afterwards, the swivel motor (72) can be stopped during the driving of the sliding motor (33).

[0134] The swivel motor (72) can be stopped after the sliding motor (33) is stopped and then started again.

[0135] In this case, the display module (2) can be swiveled at a first angle while moving forward and backward, and after the sliding motor (33) stops, it can be additionally swiveled from the first angle to a second angle.

[0136] Various examples can be applied to the driving and stopping timing of the swivel motor (72) and the sliding motor (33), and of course, all of them can be applied as long as the display module (2) does not interfere with the display frame (9).

[0137] The above description is merely an example of the technical idea of ​​the present invention, and those skilled in the art will appreciate that various modifications and variations can be made without departing from the essential characteristics of the present invention.

[0138] Accordingly, the embodiments disclosed in the present invention are not intended to limit the technical idea of ​​the present invention but to explain it, and the scope of the technical idea of ​​the present invention is not limited by these embodiments.

[0139] The scope of protection of the present invention should be interpreted by the claims below, and all technical ideas within the scope equivalent thereto should be interpreted as being included in the scope of the rights of the present invention.

Claims

1. Fixed frame; A sliding frame arranged to slide on the above fixed frame; A sliding driving source arranged on the above fixed frame and sliding the above sliding frame; A swivel frame rotatably connected to the above sliding frame by a swivel hinge; A display module arranged on the above swivel frame; and A vehicle display device including a swivel drive source arranged on the sliding frame and swivels the swivel frame.

2. In paragraph 1, The above display module Telescopic mode moving towards the passenger; Left swing mode, which moves towards the rider and swings in a left-handed manner; and A vehicle display device that operates in one of the right swing modes, moving toward the passenger and swinging in an inclined direction to the right.

3. In paragraph 1, The above sliding frame is arranged to slide forward and backward on the upper side of the above fixed frame, A vehicle display device wherein the size of the above sliding frame is smaller than the size of the above fixed frame.

4. In paragraph 1, It includes a sliding main shaft and a sliding auxiliary shaft supported on the fixed frame and connected to the sliding frame, A vehicle display device in which the above sliding main axis and sliding secondary axis are spaced apart in a direction orthogonal to the sliding direction of the sliding frame.

5. In paragraph 4, The above sliding frame A first guide formed with a sliding spindle guide through which the sliding spindle penetrates; A second guide is formed in which a sliding shaft guide through which the above sliding shaft penetrates is formed, A vehicle display device wherein the above sliding shaft guide includes an opening extending to one end of the second guide.

6. In paragraph 5, A vehicle display device in which the above opening is opened in a direction orthogonal to the sliding direction of the above sliding frame.

7. In paragraph 1, The above sliding drive source lead screw; a nut mounted on the above sliding frame and moved along the lead screw; and A vehicle display device including a sliding motor that rotates the lead screw.

8. In paragraph 7, The above sliding drive source further includes a sliding gear box, The above sliding gear box a driven gear connected to the lead screw; and A vehicle display device including a driving gear connected to the sliding motor and rotating the driven gear.

9. In paragraph 8, The above sliding motor is a vehicle display device arranged on the upper side of the sliding gear box.

10. In paragraph 7, A display device including a lead screw supporter disposed on the fixed frame and supporting the lead screw.

11. In paragraph 1, The above swivel frame Rear body arranged on the above display module; A swivel driven gear formed on the above rear body and A display device including a penetration portion through which the swivel hinge penetrates.

12. In paragraph 11, The above sliding frame A vehicle display device including a support member having a support hole formed therein for rotatably supporting the swivel hinge.

13. In paragraph 11, The above swivel driven gear includes a worm gear, The above swivel drive source is A worm wheel meshed with the above-mentioned worm gear; A vehicle display device including a swivel motor arranged on the sliding frame and rotating the worm wheel.

14. In paragraph 13, A vehicle display device further comprising a worm wheel supporter disposed on the sliding frame to support the worm wheel.

15. In paragraph 1, The distance between the swivel motor of the above swivel driving source and the above display module is A vehicle display device having a shorter distance between the sliding motor of the sliding driving source and the display module.

16. In paragraph 1, The swivel motor of the above swivel driving source is driven together with the sliding motor of the above sliding driving source, The above swivel motor stops while the above sliding motor is driving, The above swivel motor is a vehicle display device that is driven after the above sliding motor has stopped.

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