Electronic device having a rollable display
The rollable display design with a support assembly and drive mechanism addresses the challenge of providing a large display area without increasing thickness, enhancing user experience by supporting the expanded display and preventing bending.
Patent Information
- Application Number
- JP2022540554
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-12-31
- Filing Date
- 2020-09-14
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2040-09-14
AI Technical Summary
Existing electronic devices with flexible displays face challenges in providing a large display area without increasing thickness or compromising user experience due to limitations in support and bending issues.
A rollable display design with a support assembly that includes a device body, a rollable display, and a support assembly, allowing the display to expand from an initial to an enlarged state, supported to prevent bending, and featuring a drive assembly for manual or automatic expansion.
Enlarges the display area while maintaining a compact form factor and improving user experience by preventing display bending during operations.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present application relates to the field of electronic products, and in particular to electronic devices with rollable displays.
[0002] With the continuous evolution and development of electronic devices such as mobile phones and tablet computers, the display screens of the electronic devices are becoming larger, however, the larger display screens make the electronic devices less convenient to carry. [Background technology]
[0003] To solve the above-mentioned problems, electronic devices may use flexible displays. Compared with traditional rigid displays, flexible displays have the flexibility to be bent. A specific solution is to wind the flexible display onto a reel. When a flexible display is used, it is expanded onto a reel to increase the display area of the flexible display. However, when the flexible display is wound onto a reel, the effective display screen of the flexible display is too small to meet the user's normal usage requirements. In addition, after the flexible display is expanded, the rear side of the flexible display is not supported, making it prone to bending. Another specific solution is to connect a rotating shaft to the flexible display, so that the flexible display can be folded in half to form a folded mobile phone.
[0004] death However, after the mobile phone is folded, the overall thickness of the mobile phone increases. Summary of the Invention
[0005] The present application provides an electronic device with a rollable display to meet the normal usage requirements of users, enlarge the display area of the display screen, and support a display screen with a larger display area. [Means for solving the problem]
[0006] One embodiment of the present application provides an electronic device with a rollable display, including a device body, a rollable display, and a support assembly. The device body includes a support shaft. The rollable display includes a first display portion and a second display portion arranged in a first direction. The second display portion is rolled, and the second display portion is wrapped around the support shaft.
[0007] The display area is formed on at least one side of the device body. The device body has an initial display state and an expanded display state. In the initial display state, the first display unit forms the display area. In the expanded display state, the first display unit and at least a portion of the second display unit form the display area. The support assembly is configured to support the display area in the expanded display state. The support assembly is used to support the display area in the expanded display state to prevent the display area from bending when a user performs an operation. Therefore, the user experience can be improved.
[0008] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the device body includes a main support rack and a movable support rack that moves relative to the main support rack, the movable support rack is connected to the first display unit, and the support shaft is disposed on the main support rack. The movable support rack drives and moves the first display unit, so that the movable support rack can be conveniently controlled and the first display unit can be prevented from being damaged.
[0009] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the device body includes a main support rack and a movable support rack that moves relative to the main support rack, the movable support rack is connected to the second display unit, and the support shaft is disposed on the movable support rack. The movable support rack drives and moves the second display unit, so that the movable support rack can be conveniently controlled and the first display unit can be prevented from being damaged.
[0010] In one possible implementation, the electronic device with a rollable display provided in this embodiment of the present application further includes a sliding assembly. The sliding assembly includes a first fixture and a sliding part that slides relative to the first fixture. The first fixture is connected to the main support rack, and the sliding part is connected to the first display part. The sliding part is arranged so that the first display part can be manually driven and moved. Therefore, the structure is simple, the operation is convenient, and the cost is reduced.
[0011] In one possible implementation, the electronic device with a rollable display provided in this embodiment of the present application further includes at least one drive assembly. The drive assembly is configured to drive and move the movable support rack so that the device body can be expanded from an initial display state to another expanded display state. The first display unit may be automatically driven and moved, and the transmission is stable. This makes it easy to control the driving force that drives and moves the first display unit and is less likely to damage the first display unit.
[0012] In one possible implementation form, according to the electronic device with a rollable display provided in this embodiment of the present application, the drive assembly includes a first drive unit, and the first drive unit is a linear drive unit.
[0013] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the drive assembly includes a first drive unit and a transmission assembly connected to the first drive unit. The transmission assembly includes a rotating unit and a first moving unit that is compatible with the rotating unit. The first drive unit is connected to the rotating unit and drives the rotating unit to rotate, which in turn drives the first moving unit to move. The first moving unit is connected to a movable support rack.
[0014] In one possible implementation form, according to the electronic device with a rollable display provided in this embodiment of the present application, the support assembly is configured to support a first display unit and / or a second display unit that are positioned outside the main support rack.
[0015] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, a support assembly is disposed within a main support rack. The support assembly includes a second fixture and a second moving unit. The second fixture and the second moving unit cooperate to support a rear surface of a first display unit. The second fixture is connected to the main support rack, and the second moving unit is connected to the first display unit and / or the second moving unit is connected to the second display unit. In the extended display state, the second moving unit supports the first display unit and / or the second display unit disposed outside the main support rack.
[0016] In one possible implementation form, according to the electronic device with a rollable display provided in this embodiment of the present application, in the extended display state, a portion of the second moving part is disposed within the main support rack.
[0017] In one possible implementation form, according to the electronic device with a rollable display provided in this embodiment of the present application, the second moving part is a stretchable support plate.
[0018] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the support assembly includes a second drive unit and a support unit connected to the second drive unit, and the second drive unit drives the support unit to extend outward from the main support rack to support the second display unit disposed outward from the main support rack.
[0019] In one possible implementation, the electronic device with a rollable display provided in this embodiment of the present application further includes at least one connection assembly, wherein the second display unit is connected to the main support rack by using the connection assembly.
[0020] In one possible implementation, according to the electronic device with a curled screen provided in this embodiment of the present application, the connection assembly includes a rotating shaft and a reinforcing film wrapped around the rotating shaft. A first side of the reinforcing film is fixed to the rotating shaft, and a second side of the reinforcing film is connected to a second display unit. By using a driving force for moving the first display unit and a supporting force provided by the rotating shaft against the reinforcing film, a tension force is applied to the second display unit, so that the second display unit remains flat and arching that occurs when the second display unit is repeatedly rolled is reduced.
[0021] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the stiffening film is connected to the rear surface of the second display portion.
[0022] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the connection assembly includes a mounting portion and at least one connector, a first end of the connector connected to the main support rack, a second end of the connector connected to the mounting portion, and the mounting portion connected to the second display portion.
[0023] In one possible implementation form, according to the electronic device with a rollable display provided in this embodiment of the present application, the distance between the axis of the support shaft and the display surface of the first display unit is equal to the distance between the axis of the support shaft and the display surface of the second display unit.
[0024] In one possible implementation, the electronic device with a rollable display provided in this embodiment of the present application further includes at least one locking assembly configured to secure the first display unit and / or the second display unit in the extended display state. The locking assembly is configured to secure the first display unit in the initial display state and the extended display state to maintain the relative position between the first display unit and the main support rack and prevent the first display unit from moving.
[0025] In one possible implementation, according to the electronic device with a rollable display provided in this embodiment of the present application, the lock assembly includes a support base, a stopper, and at least two springs. The support base has a slide rail, and the stopper is disposed on the slide rail. The stopper is movable in the extension direction of the slide rail. The spring is connected to the support base, and a portion of the spring extends into the slide rail.
[0026] An embodiment of the present application provides an electronic device with a rollable display, including a device body, a rollable display, and a support assembly. The area of the display area of the mobile phone in the extended display state is larger than the area of the display area of the mobile phone in the initial display state. In this way, the user's normal usage requirements can be met in the initial display state. In the extended display state, the area of the display area is enlarged compared to the area of the display area in the initial display state. In this way, the user's requirement for a large screen is met. In addition, the support assembly is used to support the display area in the extended display state, preventing the display area from being bent when the user performs operations. Therefore, the user experience can be improved. [Brief explanation of the drawings]
[0027] [Figure 1] 1 is a schematic diagram of the structure of a first type of electronic device in the prior art; [Figure 2] 1 is a schematic diagram of the structure of a first type of electronic device in an expanded state in the prior art; [Figure 3] 1 is a schematic diagram of the structure of a second type of electronic device in the prior art; [Figure 4] 1 is a schematic diagram of the structure of a second type of electronic device in an expanded state in the prior art; [Figure 5] 1 is a schematic diagram of a structure of an electronic device having a rollable display according to an embodiment of the present application. [Figure 6]FIG. 1 is a bottom view of an electronic device having a rollable display according to an embodiment of the present application. [Figure 7] FIG. 6 is a first cross-sectional schematic view of the AA cross section of FIG. 5. [Figure 8] 1 is a schematic diagram of a structure of an electronic device having a rollable display in an extended viewing state according to an embodiment of the present application; [Figure 9] FIG. 1 is a bottom view of an electronic device having a rollable display in an extended viewing state according to an embodiment of the present application. [Figure 10] FIG. 9 is a schematic cross-sectional view taken along the line BB in FIG. 8. [Figure 11] 1 is a schematic diagram of the position of a sliding assembly of an electronic device having a rollable display according to an embodiment of the present application. [Figure 12] 10A-10C are schematic diagrams of positions of a sliding assembly in another orientation of an electronic device having a rollable display according to an embodiment of the present application. [Figure 13] 1 is a schematic diagram of the position of a drive assembly in one state of an electronic device having a rollable display according to an embodiment of the present application; [Figure 14] 1 is a schematic diagram of a structure of a drive assembly of an electronic device having a rollable display according to an embodiment of the present application; [Figure 15] 10A and 10B are schematic diagrams of positions of a drive assembly in another state of an electronic device having a rollable display according to an embodiment of the present application. [Figure 16] 1 is a schematic diagram of a position of a second display portion of an electronic device having a rollable display according to an embodiment of the present application. [Figure 17] FIG. 6 is a second cross-sectional schematic view of the AA cross section of FIG. 5. [Figure 18] FIG. 6 is a third cross-sectional schematic view of the AA cross section of FIG. 5. [Figure 19] 1 is a schematic diagram of a structure of a connection assembly of an electronic device with a rollable display according to an embodiment of the present application; [Figure 20]1 is a schematic diagram of the position of a connection assembly in one state of an electronic device with a rollable display according to an embodiment of the present application; [Figure 21] 1 is a schematic diagram of a structure of a support assembly for an electronic device having a rollable display according to an embodiment of the present application; [Figure 22] 1 is a schematic diagram of the position of a support assembly of an electronic device having a rollable display in an extended state according to an embodiment of the present application; [Figure 23] 1 is a schematic diagram of a structure of a support assembly for an electronic device having a rollable display according to an embodiment of the present application; [Figure 24] FIG. 24 is an enlarged schematic view of position C in FIG. 23. [Figure 25] 1 is a schematic diagram of the location of a lock assembly of an electronic device having a rollable display according to an embodiment of the present application. [Figure 26] FIG. 26 is an enlarged schematic view of position D in FIG. 25. [Figure 27] 1 is a schematic diagram of a structure of a lock assembly for an electronic device having a rollable display according to an embodiment of the present application; [Figure 28] FIG. 28 is a cross-sectional schematic view of the E-E cross section of FIG. 27. [Figure 29] 1 is a schematic diagram of a structure of an electronic device having a rollable display according to an embodiment of the present application. [Figure 30] FIG. 1 is a bottom view of an electronic device having a rollable display according to an embodiment of the present application. [Figure 31] 1 is a schematic diagram of a structure of an electronic device having a rollable display in an extended viewing state according to an embodiment of the present application; [Figure 32] FIG. 1 is a bottom view of an electronic device having a rollable display in an extended viewing state according to an embodiment of the present application. [Figure 33] FIG. 32 is a first cross-sectional schematic view of the FF cross section of FIG. 31. [Figure 34] FIG. 32 is a second cross-sectional schematic view of the FF cross section of FIG. 31. [Figure 35] 1 is a schematic diagram of a structure of an electronic device having a rollable display according to an embodiment of the present application. [Figure 36] FIG. 36 is a schematic cross-sectional view of the GG section of FIG. 35. [Figure 37] 1 is a schematic diagram of a structure of an electronic device having a rollable display in an extended viewing state according to an embodiment of the present application; [Figure 38] FIG. 38 is a cross-sectional schematic view of the HH cross section of FIG. 37. DETAILED DESCRIPTION OF THE INVENTION
[0028] One embodiment of the present application provides an electronic device having a rollable display. The electronic device may be another electronic device having a display screen, such as a mobile phone, a notebook computer, an ultra-mobile personal computer (UMPC), a netbook, a personal digital assistant (PDA), a wearable device, a virtual reality device, or a mobile computing device. This is not limited to this embodiment of the present application. For ease of explanation, the present application will be described by using the electronic device as a mobile phone.
[0029] With the development of electronic devices such as mobile phones and tablet computers, users have higher requirements for the portability of electronic devices and displays with larger display screens. FIG. 1 is a schematic diagram of the structure of a first type of electronic device in the prior art. FIG. 2 is a schematic diagram of the structure of a first type of electronic device in an expanded state in the prior art. FIGS. 1 and 2 show a mobile phone 100 with a flexible display. The mobile phone 100 includes a housing 101, a first reel 102 and a second reel 103 disposed within the housing 101, a flexible display 104 wound on the first reel 102, and a support film 105 wound on the second reel 103. The housing 101 has an opening 107, and the support film 105 is disposed on the back of the flexible display 104. The flexible display 104 and the support film 105 extend outside the housing 101 through the opening 107. Furthermore, one end of the flexible display 104 and the support film 105, which are disposed outside the housing 101, are connected to the push-pull unit 106. When the mobile phone 100 is in a wound state, the mobile phone 100 may be used as a wearable device, with the push-pull unit 106 pressing the opening 107. In this way, it is easy for the user to carry it around. In this case, the flexible display 104 and the support film 105 are disposed within the housing 101, and the housing 101 may be partially transparent so that the display area of the flexible display 104 between the push-pull unit 106 and the first reel 102 can be normally displayed.
[0030] When a user uses the mobile phone 100, the push-pull portion 106 is pulled, and the flexible display 104 and the support film 105 are individually unwound from the first reel 102 and the second reel 103 and extend out of the housing 101. Therefore, the display area of the mobile phone 100 is enlarged. However, the support film 105, which may be wound around the second reel 103, has limited support strength, making it difficult to perform touch operations on the mobile phone 100. Therefore, the user experience is affected. Furthermore, when the mobile phone 100 is wound, the effective display screen of the flexible display 104 is too small to meet the user's normal usage requirements.
[0031] FIG. 3 is a schematic diagram of the structure of a second type of electronic device in the prior art. FIG. 4 is a schematic diagram of the structure of the second type of electronic device in the prior art in an expanded state. FIGS. 3 and 4 show another mobile phone 200 with a flexible display. The mobile phone 200 includes a flexible display 201, a rotating shaft 202, and two support housings 203 for supporting the flexible display 201. The two support housings 203 are connected using the rotating shaft 202. When the mobile phone 200 is folded, the two support housings 203 are attached together, and the display area of the flexible display 201 is half of the total area of the flexible display 201. This meets the user's normal usage requirements and is easy to carry. Alternatively, the flexible display 201 can be folded to overlap. When the flexible display 201 is used, it needs to be opened using the two support housings 203 to expose the display area of the flexible display 201. In this way, the size of the mobile phone 200 is reduced, making the mobile phone 200 easy to carry, and at the same time, protecting the flexible display 201 from being damaged. 200When the display area of the mobile phone 200 needs to be expanded, the two support housings 203 are held together so that the support housing 203 rotates around the rotating shaft 202 and the flexible display 201 is expanded. However, when the flexible display 201 is folded, the overall thickness of the mobile phone 200 becomes 1.5 to 2 times the thickness of an existing mobile phone. In addition, when the rotating shaft 202 is added, the overall weight of the mobile phone 200 increases, and the overall grip and portability of the mobile phone 200 become poor. The bending position of the flexible display 201 may be bent for a long time, and creases may be present. Therefore, the surface fineness of the flexible display 201 is reduced, affecting the user experience.
[0032] To solve the above-mentioned problems, one embodiment of the present application provides a mobile phone 300 including a device body 30, a rollable display 40, and a support assembly 70. At least one side of the device body 30 forms a display area. The device body 30 has an initial display state. The device body 30 can be expanded to another expanded display state. The area of the display area in the initial display state is smaller than the area of the display area in the expanded display state. The support assembly 70 is configured to support the display area in the expanded display state. The device body 30 can be expanded to another expanded display state manually or automatically. Specific expanding methods will be described in detail in the following embodiments.
[0033] Specifically, the rollable display 40 includes a first display unit 401 and a second display unit 402 arranged in a first direction. In an initial display state, the first display unit 401 of the rollable display 40 forms a display area of the device body 30, and the second display unit 402 is rolled up. When the device body 30 is made expandable, the second display unit 402 is unfolded accordingly. As a result, when the device body 30 is in the expanded display state, at least a portion of the first display unit 401 and the second display unit 402 together form a display area. In other words, the area of the display area in the initial display state is smaller than the area of the display area in the expanded display state. The first direction may be an expanded direction in which the device body 30 is made expandable.
[0034] In the initial display state, the display area formed by the first display unit 401 can meet the user's normal usage requirements. The diagonal length of the display area formed by the first display unit 401 may be 5 inches, 5.2 inches, or the like. In other words, the size of the home screen of the mobile phone 300 is 5 inches, 5.2 inches, or the like. In the extended display state, the first display unit 401 and at least a portion of the second display unit 402 together form a display area. The display area has an area larger than the area of the display area formed by only the first display unit 401 in the initial display state.
[0035] To facilitate attachment of the second display unit 402, the device body 30 includes a support shaft 305, and the second display unit 402 is wound around the support shaft 305. The distance between the axis of the support shaft 305 and the display surface of the first display unit 401 is equal to the distance between the axis of the support shaft 305 and the display surface of the second display unit 402. In this way, when the mobile phone 300 is in the extended display state, the second display unit 402 and the first display unit 401 are arranged in the same plane. This can improve the user experience.
[0036] The mobile phone 300 provided in this embodiment of the present application includes a device body 30, a rollable display 40, and a support assembly 70. When the mobile phone 300 is in the initial display state, the user's normal usage requirements can be met. In the expanded display state, the area of the display area is larger than that of the display area in the initial display state. In this way, the area of the display area is enlarged, and the user's requirement for a large screen is met. In addition, the support assembly is used to support the display area in the expanded display state, preventing the display area from being bent when the user performs operations. Therefore, the user experience can be improved.
[0037] In this embodiment of the present application, in order to enlarge the display area of the mobile phone 300, the rollable display 40 of the mobile phone 300 may move towards different sides of the mobile phone 300. In this embodiment of the present application, a scenario in which the rollable display of the mobile phone 300 moves towards a first side of the mobile phone 300 is set as scenario 1. A scenario in which the rollable display of the mobile phone 300 moves towards a second side of the mobile phone 300 is set as scenario 2. A scenario in which the rollable display 40 of the mobile phone 300 moves towards two opposite sides of the mobile phone 300 is set as scenario 3.
[0038] The structures of the mobile phone 300 in scenarios 1, 2, and 3 will be described below individually.
[0039] Scenario 1 FIG. 5 is a schematic diagram of the structure of an electronic device with a rollable display according to an embodiment of the present application. FIG. 6 is a bottom view of an electronic device with a rollable display according to an embodiment of the present application. FIG. 7 is a schematic cross-sectional view of the AA section of FIG. 5. FIGS. 5 to 7 show an initial display state of a mobile phone 300. Please refer to FIGS. 5 to 7. The mobile phone 300 provided in an embodiment of the present application includes a device body 30 and a rollable display 40. The rollable display 40 includes a first display unit 401 and a second display unit 402 arranged in a first direction, and the second display unit 402 is wound around a support shaft 305. The device body 30 includes a main support rack 301 and a movable support rack 302 that can move relative to the main support rack 301. The movable support rack 302 is connected to the first display unit 401, and the support shaft 305 is disposed on the main support rack 301.
[0040] The device body 30 may be a mobile phone body, and the mobile phone body may further include components capable of implementing the functions of the mobile phone, such as a battery and a circuit board, which are arranged in the main support rack 301. The mobile phone body is not limited in this embodiment.
[0041] When the mobile phone 300 is in the initial display state, the second display unit 402 rolls on the support shaft 305, and the first display unit 401 forms a display area to meet the user's normal usage requirements. The second display unit 402 may be disposed within the main support rack 301. For example, the first display unit 401 and the main support rack 301 surround the receiving cavity 303, the second display unit 402 is wound around the support shaft 305, and the second display unit 402 and the support shaft 305 are disposed within the receiving cavity 303. Alternatively, the second display unit 402 may be disposed outside the device body 30. For example, the second display unit 402 may be disposed on the side, front, or rear surface of the main support rack 301, opposite the front. The front surface of the main support rack 301 is the display surface of the first display unit 401.
[0042] It should be noted that the rollable display 40 may be the entire screen, and the first display unit 401 and the second display unit 402 are used to distinguish between different display areas of the rollable display 40. Alternatively, the rollable display 40 may be a screen formed by joining the first display unit 401 and the second display unit 402 together. This is not a limitation in this embodiment.
[0043] The movable support rack 302 may be an edge wrap of a side edge of the first display portion 401 that can be moved out of the main support rack 301. The edge wrap may cover at least a portion of a first side edge 4011 of the first display portion 401. The first side edge 4011 is the side edge of the first display portion 401 that can be moved out of the main support rack 301 and is perpendicular to the direction of movement of the first display portion 401. The edge wrap may also wrap around the first side edge 4011 and a portion of the second side edge 4012 of the first display portion 401. The edge wrap may also wrap around the first side edge 4011 and a portion of the third side edge 4013 of the first display portion 401. Alternatively, the edge wrap may wrap around the first side edge 4011, part of the second side edge 4012, and part of the third side edge 4013 of the first display portion 401. The second side edge 4012 and the third side edge 4013 are respectively disposed on either side of the first side edge 4011. When the mobile phone 300 is in the initial display state, the side edges of the movable support rack 302 are flush with the side edges of the main support rack 301. In this way, the mobile phone 300 has an aesthetic appearance.
[0044] FIG. 8 is a schematic diagram of a structure of an electronic device having a rollable display in an extended display state according to an embodiment of the present application. FIG. 9 is a bottom view of an electronic device having a rollable display in an extended display state according to an embodiment of the present application. FIG. 10 is a schematic cross-sectional view of the BB section of FIG. 8. FIGS. 8 to 10 show the mobile phone 300 in an extended display state. Please refer to FIGS. 8 to 10. The movable support rack 302 moves toward the first side of the main support rack 301 to drive the first display unit 401 to move toward the first side of the main support rack 301, i.e., to drive the first display unit 401 to move toward the +X direction of FIG. 8, and the first display unit 401 may be used to drive and move the second display unit 402, so that at least a portion of the second display unit 402 is extended or extended out of the accommodating cavity 303. In this case, part or all of the first display portion 401 is moved outward from the main support rack 301, resulting in the mobile phone 300 being in an extended display state. In this manner, the first display portion 401 and the extended second display portion 402 together form a display area, resulting in an enlarged display area of the mobile phone 300, satisfying user requirements for a large display area of the mobile phone 300 without increasing the overall thickness of the mobile phone 300.
[0045] The movable support rack 302 may move toward the second side of the main support rack 301. The first side of the main support rack 301 is opposite to the second side of the main support rack 301. Specifically, the movable support rack 302 drives the first display unit 401 to move in the −X direction in FIG. 8 , and the first display unit 401 drives the second display unit 402 to move, so that at least a portion of the second display unit 402 is rolled up and extends into the receiving cavity 303. The first display unit 401 is moved toward the main support rack 301, so that the mobile phone 300 enters the initial display state shown in FIG. 5 , and the first display unit 401 is used as the display area. In this way, a user's normal display requirements for the screen of the mobile phone 300 are met, the area of the display area of the mobile phone 300 is reduced, and the mobile phone 300 becomes easier to carry.
[0046] It will be understood that a chute or slide rail is disposed on the main support rack 301 to facilitate movement of the movable support rack 302. The extension direction of the chute or slide rail is parallel to the movement direction of the movable support rack 302, i.e., the extension direction of the chute or slide rail is disposed in the +X or −X direction in FIG. 8 . The end of the first display unit 401 is disposed within the chute, or the first display unit 401 is disposed on the slide rail. The chute or slide rail is disposed to guide the movement of the first display unit 401 so that the first display unit 401 can move smoothly.
[0047] In this embodiment of the present application, the movable support rack 302 drives and moves the first display unit 401, so that the first display unit 401 moves in conjunction with the second display unit 402. The movable support rack 302 may be movable manually or automatically. This will be described below with reference to specific implementations.
[0048] FIG. 11 is a schematic diagram of the position of a sliding assembly of an electronic device with a rollable display according to an embodiment of the present application. FIG. 12 is a schematic diagram of the position of a sliding assembly in another direction of an electronic device with a rollable display according to an embodiment of the present application. FIG. 11 and FIG. 12 show a method of manually moving the movable support rack 302. Please refer to FIG. 11 and FIG. 12. In this embodiment, the mobile phone 300 further includes a sliding assembly 50. The sliding assembly 50 may be a bistable slide rail mechanism. A bistable mechanism means that the movement process of the mechanism has two stable equilibrium states. One stable equilibrium state is when the bistable mechanism allows the movable support rack 302 to move out of the main support rack 301. The bistable mechanism allows the first display unit 401 to be placed on the movable support rack 302, which is another stable equilibrium state. In one possible implementation, the sliding assembly 50 includes a first fixture 501 and a sliding portion 502 that slides relative to the first fixture 501. The first fixture 501 is connected to the main support rack 301, and the sliding portion 502 is connected to the movable support rack 302.
[0049] Specifically, the first fixture 501 may be a flat plate, which is fixed in the receiving cavity 303; flat plate is parallel to the first display unit 401. The sliding unit 502 may be a sliding plate or a sliding slice parallel to a flat plate. The sliding unit 502 is connected to the movable support rack 302, and a slide rail is provided on the flat plate. The extension direction of the slide rail is the same as the movement direction of the first display unit 401. A slider is provided on the surface of the sliding plate or sliding slice that faces the slide rail. The slider is connected to the slide rail and moves along the slide rail, so that the movable support rack 302 connected to the sliding unit 502 moves in the extension direction of the slide. It will be understood that the positions of the slide rail and the slider may be interchanged, i.e., the slide rail may be disposed on the sliding unit 502, and the slider may be disposed on the first fixture 501.
[0050] When the movable support rack 302 needs to be moved to expand the display area of the mobile phone 300, the user manually applies force to push the display surface of the first display unit 401 in the +X direction in FIG. 11 . The first display unit 401 uses the movable support rack 302 to drive the sliding unit 502 to move along the first fixture 501, allowing the first display unit 401 to smoothly move out of the main support rack 301 and the mobile phone 300 to assume the initial display state shown in FIG. 5 . The display surface of the first display unit 401 is pushed in the −X direction in FIG. 11 , and the first display unit 401 drives the sliding unit 502 to move along the first fixture 501, allowing the first display unit 401 to return to the main support rack 301 and the mobile phone 300 to assume the expanded display state shown in FIG. 8 . The above-described method of manually moving the movable support rack 302 is simple in structure and convenient in operation.
[0051] It will be understood that the two sliders 502 in Fig. 11 respectively show the change in position of the slider 502 when the first display unit 401 is in different positions. The slider 502 on the -X side in Fig. 11 shows the position of the slider 502 when the first display unit 401 is moved onto the main support rack 301, i.e., when the mobile phone 300 is in the initial display state. The slider 502 on the +X side in Fig. 11 shows the position of the slider 502 when the first display unit 401 is moved out of the main support rack 301, i.e., when the mobile phone 300 is in the extended display state.
[0052] At least two slide rails are provided to allow the sliding unit 502 to slide smoothly. The positions of the slide rails are not limited, provided that the extending direction of the slide rails is the same as the moving direction of the first display unit 401. For example, the slide rails may be provided in the center of the first fixture 501 or the sliding unit 502, or may be provided at opposite ends of the first fixture 501 or the sliding unit 502, separated from each other.
[0053] Balls 503 may be arranged to facilitate sliding of the sliding portion 502 on the first fastener 501 and to enable the sliding portion 502 to slide smoothly. The balls 503 may be arranged on a surface of the first fastener 501 that faces the sliding portion 502. The balls 503 may be arranged on a surface of the sliding portion 502 that faces the first fastener 501. Alternatively, the balls 503 may be arranged on a slide rail. There may be a plurality of balls 503, and the plurality of balls 503 may be arranged at equal intervals.
[0054] In the above-described embodiment, the sliding assembly 50 is arranged so that a user can smoothly move the first display unit 401 by manually pressing the first display unit 401. However, the pressing force applied to the first display unit 401 is difficult to control and is likely to damage the first display unit 401. Therefore, in some embodiments, the movable support rack 302 may drive the first display unit 401 to move automatically.
[0055] FIG. 13 is a schematic diagram of a position of a drive assembly in one state of an electronic device with a rollable display according to an embodiment of the present application. FIG. 14 is a schematic diagram of a structure of a drive assembly in an electronic device with a rollable display according to an embodiment of the present application. FIG. 15 is a schematic diagram of a position of a drive assembly in another state of an electronic device with a rollable display according to an embodiment of the present application. Please refer to FIGS. 13 to 15. The mobile phone 300 provided in this embodiment of the present application further includes at least one drive assembly 60. The drive assembly 60 may be disposed in the main support rack 301. The drive assembly 60 is configured to drive and move the movable support rack 302 so that the mobile phone 300 can be expanded from the initial display state to another expanded display state. Alternatively, there may be two or more drive assemblies 60 to increase the movement stability of the movable support rack 302. This is not limited in this embodiment.
[0056] In one possible implementation, the drive assembly 60 may include at least one first drive unit 601, which may be a linear drive unit. The linear drive unit may be a linear motor. A housing of the linear motor is connected to the main support rack 301, and an output shaft of the linear motor is connected to the movable support rack 302. The linear drive unit may also be another drive unit known to those skilled in the art and is not limited in this embodiment.
[0057] In another possible implementation, the drive assembly 60 may further include a first drive unit 601 and a transmission assembly 602 connected to the first drive unit 601. The transmission assembly 602 includes a rotating unit 6021 and a first moving unit 6022 that fits with the rotating unit 6021. The first drive unit 601 is connected to the rotating unit 6021, and the first drive unit 601 drives the rotating unit 6021 to rotate, and as a result, the rotating unit 6021 drives the movable support rack 302 to move.
[0058] The first driving unit 601 may be a motor, which may be a DC brushless motor, a switching magnetic group motor, a stepping motor, a servo motor, a torque motor, etc. The transmission assembly 602 may include, but is not limited to, a rack-and-pinion transmission structure or a feed screw motor transmission mechanism. See FIG. 15 for example. The rotating unit 6021 is a gear, the first moving unit 6022 is a rack engaged with the gear, and the rack is connected to the movable support rack 302. The rotating unit 6021 may also be a feed screw motor, in which the rotating unit 6021 is a feed screw, and the first moving unit 6022 is a nut connected to the screw, and the nut is connected to the movable support rack 302.
[0059] In this embodiment, a drive assembly 60 is provided to implement automatic movement of the first display unit 401, and the drive assembly 60 drives and moves the movable support rack 302. This method of automatic movement of the first display unit 401 provides stable power transmission. This makes it easy to control the driving force that drives and moves the first display unit 401, and makes it less likely to damage the first display unit 401.
[0060] In this embodiment of the present application, the first display unit 401 may be moved manually or automatically, so that the first display unit 401 drives and moves the second display unit 402. In the process in which the first display unit 401 drives and moves the second display unit 402, one side of the second display unit 402 needs to be fixed to prevent the second display unit 402 from moving in conjunction with the first display unit 401 and to ensure that the first display unit 401 can drive at least a portion of the second display unit 402 to be extended. In other words, one side of the second display unit 402 is fixed, and the fixed side of the second display unit 402 is opposite to the side where the second display unit 402 and the first display unit 401 are adjacent to each other. Below, we will explain how to fix one side of the second display unit 402 with reference to two different positions: where the second display unit 402 is placed inside the main support rack 301, and where the second display unit 402 is placed outside the main support rack 301.
[0061] FIG. 16 is a schematic diagram of the position of a second display unit of an electronic device with a rollable display according to an embodiment of the present application. See FIG. 16. The second display unit 402 and the support shaft 305 may be disposed outside the main support rack 301, and the support shaft 305 may be connected to the main support rack 301, and the support shaft 305 may be rotatably connected to the main support rack 301. The support shaft 305 is connected to the main support rack 301, and the axis of the support shaft 305 is perpendicular to the direction of movement of the first display unit 401. The second display unit 402 is wound around the support shaft 305, and one side of the second display unit 402 is fixed to the support shaft 305. In this way, the entire second display unit 402 can be prevented from moving in conjunction with the first display unit 401, and as a result, the first display unit 401 can drive at least a portion of the second display unit 402 to be extended. When the second display unit 402 moves, the second display unit 402 drives the support shaft 305 to rotate around the axis of the support shaft 305 .
[0062] 16 shows how the second display unit 402 is secured to the side of the main support rack 301. It will be understood that the second display unit 402 may be secured to the rear or front surface of the main support rack 301 in the same manner as securing the second display unit 402. In this embodiment, details will not be described herein.
[0063] 16 shows a state in which the support shaft 305 and the second display unit 402 disposed on the support shaft 305 are disposed outside the main support rack 301. When the support shaft 305 and the second display unit 402 wound around the support shaft 305 are disposed outside the main support rack 301, a protective cover 304 may be disposed to avoid collision with the second display unit 402. The protective cover 304 is connected to the main support rack 301. The support shaft 305 and the second display unit 402 wound around the support shaft 305 are disposed within the protective cover 304. The protective cover 304 protects the second display unit 402 to prevent damage to the second display unit 402, such as from a collision.
[0064] It will be appreciated that the support shaft 305 may alternatively be disposed within the main support rack 301, so that the second display unit 402 wound around the support shaft 305 is disposed within the main support rack 301 to prevent the second display unit 402 from colliding. Below, a method for disposing the second display unit 402 within the main support rack 301 and securing the second display unit 402 will be described.
[0065] 17 is a second cross-sectional schematic view of cross section AA in FIG. 5. FIG. 17 shows a method for fixing the second display unit 402 in the main support rack 301. Please refer to FIG. 17. The second display unit 402 is disposed in the main support rack 301. In other words, the second display unit 402 is disposed in the accommodation cavity 303. The support shaft 305 is disposed in the accommodation cavity 303, and the axis of the support shaft 305 is perpendicular to the movement direction of the first display unit 401. The main support rack 301 has an entrance 315 through which the second display unit 402 enters the accommodation cavity 303, and the second display unit 402 moves into or out of the accommodation cavity 303 through the entrance 315. In the process of moving the second display unit 402, with the back surface of the second display unit 402 attached to the support shaft 305, the second display unit 402 is guided by using the side walls of the support shaft 305 to maintain the back surface of the second display unit 402 within the support shaft 305 or outside the accommodating cavity 303 and prevent the second display unit 402 from moving as a whole in conjunction with the first display unit 401, so that the first display unit 401 can drive at least a portion of the second display unit 402 to be extended.
[0066] Specifically, the main support rack 301 may include an intermediate frame 306 and a rear cover 307. The intermediate frame 306 may be disposed between the first display unit 401 and the rear cover 307. The first display unit 401 covers one side of the intermediate frame 306, and the rear cover 307 is connected to the other side of the intermediate frame 306. The intermediate frame 306 includes an intermediate plate 3061 and a frame 3062 connected to the outer periphery of the intermediate plate 3061. The intermediate plate 3061 is disposed in the receiving cavity 303, and the first display unit 401 covers one side of at least two of the frames 3062. An entrance 315 is formed between the first display unit 401 and the frame 3062 that is not covered by the first display unit 401. The inner sidewall of the frame 3062 that is not covered by the first display unit 401 and the side of the support shaft 305 form a first passage 308. The inner surface of the rear cover 307 and the side of the intermediate plate 3061 facing the rear cover 307 form a second passage 309 that leads to the first passage 308. The second display unit 402 enters the support shaft 305 through the entrance 315, the first passage 308, and the second passage 309. The movement of the second display unit 402 is guided using the first passage 308 and the second passage 309, and the display surface of the second display unit 402 placed in the first passage 308 and the second passage 309 is kept flat. This reduces arching of the second display unit 402 when it is repeatedly wound. The first passage 308 is an arc-shaped passage, and the second display unit 402 is wound as it passes through the first passage 308.
[0067] Figure 18 is a third cross-sectional schematic view of cross section AA in Figure 5. Figure 18 shows another method of fixing second display unit 402 in main support rack 301. Please refer to Figure 18. Mobile phone 300 further includes at least one connection assembly, and second display unit 402 is connected to main support rack 301 by using the connection assembly. The connection assembly includes a rotating shaft 311 and a reinforcing film 310 wrapped around rotating shaft 311. A first side of reinforcing film 310 is fixed to rotating shaft 311, and a second side of reinforcing film 310 is connected to second display unit 402. The second side of the reinforcing film 310 may be connected to the fixed side of the second display unit 402, and a portion of the second display unit 402 may be wrapped around the support shaft 305, so that the second display unit 402 extends outside the main support rack 301 and is connected to the first display unit 401, and the first side of the reinforcing film 310 is opposite the second side of the reinforcing film 310.
[0068] The reinforcing film 310 may be a PI reinforcing film, and the strength of the second display unit 402 is increased by using the reinforcing film 310. The fixed side of the second display unit 402 is connected to the reinforcing film 310, the reinforcing film 310 is wound around the rotating shaft 311, a portion of the second display unit 402 is wound around the support shaft 305, and the second display unit 402 is supported by using the rotating shaft 311 and the support shaft 305. When the first display unit 401 moves, the first display unit 401 drives the second display unit 402 to move, the second display unit 402 drives the support shaft 305 to rotate, and the second display unit 402 drives the reinforcing film 310 connected to the second display unit 402 to move. The driving force that moves the first display portion 401 and the supporting force of the rotating shaft 311 against the reinforcing film 310 together apply a tensile force to the second display portion 402, so that the second display portion 402 remains flat and the arching that occurs when the second display portion 402 is repeatedly rolled is reduced.
[0069] In order to avoid affecting the display effect of the second display unit 402, the stiffening film 310 is connected to the rear surface of the second display unit 402. In other words, the stiffening film 310 is connected to the surface opposite the display surface of the second display unit 402. The stiffening film 310 may be adhered to the rear surface of the second display unit 402 by dispensing glue, using an adhesive, etc.
[0070] Compared with the embodiment of Figure 17, the embodiment of Figure 18 adds a reinforcing film 310 and a rotating shaft 311. Other structures of the embodiment of Figure 18 may be the same as those of the embodiment of Figure 17. The structures of the embodiment of Figure 18 that are the same as those of the embodiment of Figure 17 have been described in detail in the previous embodiment of Figure 17, and the details will not be described again herein.
[0071] FIG. 19 is a schematic diagram of a structure of a connection assembly of an electronic device with a rollable display according to an embodiment of the present application. FIG. 20 is a schematic diagram of a position of a connection assembly in one state of an electronic device with a rollable display according to an embodiment of the present application. FIG. 19 and FIG. 20 show yet another method of fixing the second display unit 402 in the main support rack 301. FIG. 19 shows the positions of each component of the connection assembly when the mobile phone 300 is in an initial display state. FIG. 20 shows the positions of each component of the connection assembly when the first display unit 401 of the mobile phone 300 is moved out of the main support rack 301. Please refer to FIG. 19 and FIG. 20. The connection assembly includes a mounting portion 312 and at least one connector 313. A first end of the connector 313 is connected to the main support rack 301, and a second end of the connector 313 is connected to the mounting portion 312, which is connected to the second display unit 402. 402 The mounting portion 312 is connected to the second display unit 402 The fixed side of the
[0072] The mounting portion 312 may include a clamp portion. For example, the clamp portion may be a clamp plate or two flat plates. 402 The fixed side of the second display unit is clamped to the clamp plate.402 The fixed side of the second display unit is fixed to the clamp plate. 402 The clamping force of the clamp plate is adjusted to prevent the fixed side of the second indicator from being separated from the clamp plate. 402 The fixed side of the display is placed between the two plates. The screws are attached to the plates and the second display 402 The fixed side of the second display unit is connected between the two flat plates by using a screw connection. 402 The fixed side of the mounting portion 312 may be bonded between the two flat plates by, for example, gluing. To facilitate connection between the mounting portion 312 and the connector 313, a connection point 3121 is disposed on the mounting portion 312, and the connector 313 is connected to the connection point 3121. The connection point 3121 may extend toward the connector 313, and the connection point 3121 may have a connection hole.
[0073] Specifically, the connector 313 may be an elastic part. For example, the connector 313 is a spring or an elastic connecting rope. One end of the elastic part is fixed relatively to the main support rack 301, and the other end of the elastic part is connected to the mounting part 312. When the mobile phone 300 is in the initial display state, that is, when the mobile phone 300 performs display by using only the first display part 401, the elastic part is in a free state. When the first display part 401 moves toward the first side of the main support rack 301, the first display part 401 moves toward the second display part 401. 402 and move the second display unit. 402 The mounting portion 312 is used to drive and stretch the elastic portion. The tension of the elastic portion and the driving force that drives and moves the first display portion 401 can keep the second display portion 402 flat, thereby reducing arching that occurs when the second display portion 402 is repeatedly rolled. When the first display portion 401 moves toward the second side of the main support rack 301, the first display portion 401 moves toward the second display portion 402. 402 is driven back to the main support rack 301, and the second display unit 402 By using the mounting portion 312, the resilient portion is retracted to the free state.
[0074] There are at least two connectors 313 to apply a uniform tensile force to the second display unit 402. That is, two or more elastic units may be provided, and the elastic units are arranged at equal intervals. In some embodiments, when there are two or more elastic units, one end of each elastic unit is connected to each other, and the other end of each elastic unit is connected to the mounting unit 312 at equal intervals. Therefore, the tensile forces of each elastic unit are balanced. One end of each elastic unit may be connected directly, or may be connected by using another elastic unit. This is not a limitation in this embodiment.
[0075] A rail 314 is provided in the main support rack 301 to allow the second display unit 402 to move smoothly. Two rails 314 may be provided. The two rails 314 are provided to allow the second display unit 402 to move smoothly. 402 the third side, and the second display 402 The second display unit is disposed on the fourth side of the first display unit. 402 the third side, and the second display 402 The fourth side is the second display unit 40 2 is parallel to the direction of movement.
[0076] FIG. 21 is a schematic diagram of the structure of a support assembly of an electronic device with a rollable display according to an embodiment of the present application. FIG. 22 is a schematic diagram of the position of the support assembly of an electronic device with a rollable display in an extended state according to an embodiment of the present application. Please refer to FIGS. 21 and 22. In this embodiment of the present application, the mobile phone 300 further includes a support assembly 70. The support assembly 70 is configured to support the first display unit 401 outside the main support rack 301 when the first display unit 401 moves out of the main support rack 301, i.e., when the mobile phone 300 is in an extended display state. When the first display unit 401 moves out of the main support rack 301, the first display unit 401 is separated from the support function of the main support rack 301. As a result, the strength of the first display unit 401 is reduced, and the first display unit 401 is easily bent when the display surface of the first display unit 401 is operated. As a result, the flatness of the first display unit 401 cannot be guaranteed, resulting in a poor user experience. Therefore, in this application, the mobile phone 300 uses the support assembly 70 to support the first display unit 401 disposed outside the main support rack 301, preventing the first display unit 401 from being bent when the user performs operations. Therefore, the user experience can be improved.
[0077] The support assembly 70 is disposed within the main support rack 301. The support assembly 70 includes a second fixture 701 and a second moving unit 702. The second fixture 701 and the second moving unit 702 are combined to together support the rear surface of the first display unit 401. The second fixture 701 is connected to the main support rack 301. The second moving unit 702 is connected to the first display unit 401. In this manner, when the first display unit 401 moves out of the main support rack 301, the first display unit 401 drives the second moving unit 702 to move out of the main support rack 301, and supports the first display unit 401 outside the main support rack 301 by using the second moving unit 702.
[0078] In one possible implementation, the second fastener 701 may be inserted into and joined to the second moving portion 702. The second fastener 701 may have a first concave region 7011 and a first convex region 7012 arranged at a distance from each other. The second moving portion 702 may have a second concave region 7021 and a second convex region 7022 arranged at a distance from each other. The second convex region 7022 is inserted into the first concave region 7011. The first convex region 7012 is inserted into the second concave region 7021. When the first display unit 401 drives the second moving unit 702 to move it outside the main support rack 301, the second concave region 7021 and the second convex region 7022 of the second moving unit 702 are disposed inside the main support rack 301, and the remaining portion of the second moving unit 702 is disposed outside the main support rack 301. In this way, when a user performs an operation on the first display unit 401 outside the main support rack 301, the support function of the second convex region 7022 is used, and as a result, the second moving unit 702 disposed outside the main support rack 301 is less likely to bend, improving the pressure resistance of the first display unit 401.
[0079] The second concave region 7021 may be matched with the second convex region 7022, and the first convex region 7012 may be matched with the second concave region 7021. For example, the second concave region 7021 and the second convex region 7022 may be rectangular, and the first convex region 7012 and the second concave region 7021 may be rectangular. Alternatively, the second concave region 7021 and the second convex region 7022 may be semicircular, triangular, etc., and the first convex region 7012 and the second concave region 7021 may be semicircular, triangular, etc. This is not limited to this embodiment. The first concave region 7011 and the first convex region 7012 may be arranged at equal intervals. Correspondingly, the second concave regions 7021 and the second convex regions 7022 may also be equally spaced apart, so that the second convex regions 7022 can more stably support the second mover 702 disposed outside the main support rack 301. It will be appreciated that a larger area of the second convex regions 7022 indicates that the second convex regions 7022 better support the second mover 702 disposed outside the main support rack 301.
[0080] FIG. 23 is a schematic diagram of a structure of a support assembly for an electronic device with a rollable display according to an embodiment of the present application. FIG. 24 is an enlarged schematic diagram of position C in FIG. 23 . Please refer to FIGS. 23 and 24 . In another possible implementation, the second moving unit 702 includes a support region 7023 and a stretchable region 7024 connected to the support region 7023. The stretchable region 7024 is connected to a second fixing device 701. The stretchable region 7024 has elasticity. The support region 7023 is connected to the first display unit 401 and supports the first display unit 401 by using the support region 7023. The first display unit 401 drives and moves the support region 7023, so that the stretchable region 7024 is extended or contracted, and one side of the stretchable region 7024 is fixed by using the second fixing device 701. The stretchable region 7024 may be a through-hole disposed in the second moving portion 702 .
[0081] When the stretchable region 7024 is stretched, the stretchable region 7024 may be bent to bend the first display unit 401. To achieve the purpose of making the surface of the mobile phone 300 flat, the back surface of the first display unit 401 may be filled with foam, steel plate, or the like.
[0082] In a third possible implementation, the second moving part 702 is a telescopic support plate. The support plate may be formed by connecting a plurality of support rods using a telescopic part. When the telescopic part is compressed, adjacent support rods are combined to form a support surface. When the telescopic part is extended, adjacent support rods are separated from each other, and adjacent support rods are separated from each other. Stick
[0047] The second moving unit 702 has a first display unit 401 and a second fixing unit 702a. The first display unit 401 is connected to the second fixing unit 701, and the second moving unit 702 has a second fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the first fixing unit 701, and the second moving unit 702 moves by driving the first display unit 401. The second moving unit 702 extends or retracts.
[0048] The second moving unit 702 has a second fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the first fixing unit 701, and the second moving unit 702 has a second fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the first fixing unit 701, and the second moving unit 702 has a second fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the first fixing unit 701, and the second moving unit 702 moves by driving the first display unit 401.
[0049] The second moving unit 702 extends or retracts. The second moving unit 702 has a second fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the first fixing unit 701, and the second moving unit 702 has a second fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the first fixing unit 701. The second fixing unit 701 fixes the second moving unit 702 to the ...
[0083] FIG. 25 is a schematic diagram of a position of a lock assembly of an electronic device with a rollable display according to one embodiment of the present application. FIG. 26 is an enlarged schematic diagram of position D in FIG. 25. FIG. 27 is a schematic diagram of a structure of a lock assembly of an electronic device with a rollable display according to one embodiment of the present application. Please refer to FIGS. 25 to 27. In the present application, the mobile phone 300 further includes at least one lock assembly 80. The lock assembly 80 is configured to secure the first display unit 401 in the initial display state and the extended display state, maintain the relative position between the first display unit 401 and the main support rack 301, and prevent the first display unit 401 from moving.
[0084] The locking assembly 80 may be disposed within the main support rack 301. The locking assembly 80 may be a mechanical self-locking assembly, an electrical self-locking assembly, or a slide rail steady-state self-locking assembly. For example, the electrical self-locking assembly may be an existing electromagnetic locking component. The mechanical self-locking assembly and the electrical self-locking assembly may use locking structures known to those skilled in the art. This is not a limitation in this embodiment.
[0085] The slide rail steady-state self-locking assembly may include a support base 801, a stopper 802, and at least two pairs of springs 803. The support base 801 is connected to the main support rack 301, and a slide rail 8011 is provided on the support base 801, with the extension direction of the slide rail 8011 being the same as the movement direction of the first display unit 401. The stopper 802 is disposed on the slide rail 8011, and the stopper 802 can move along the extension direction of the slide rail 8011, and the stopper 802 is connected to the movable support rack 302. Each pair of springs 803 is disposed opposite to each other on the slide rail 8011, and the pair of springs 803 is disposed on the inner side of the slide rail 8011 and at an end of the slide rail 8011 that faces the first display unit 401.
[0086] When the mobile phone 300 is in the initial display state, both sides of the stopper 802 respectively press a pair of springs 803 arranged inside the slide rail 8011, so that the stopper 802 maintains its current position and prevents the first display unit 401 from moving toward the first side of the main support rack 301. When the movable support rack 302 drives the first display unit 401 to move outward toward the main support rack 301 so that the mobile phone 300 enters the extended display state, the movable support rack 302 drives and moves the stopper 802, and the stopper 802 is released from the position where it presses the pair of springs 803 arranged inside the slide rail 8011. As the movable support rack 302 continues to move, the stopper 802 moves along the extension direction of the slide rail 8011 until both ends of the stopper 802 press against a pair of springs 803 at the end of the slide rail 8011 facing the first display unit 401. In this case, at least a portion of the second display unit 402 is expanded, and the stopper 802 is clamped using the springs 803, so that the stopper 802 maintains its current position and prevents the first display unit 401 from moving toward the second side of the main support rack 301.
[0087] The spring fixing rack 8012 is disposed on the support base 801, and the spring 803 is fixed by using the spring fixing rack 8012. The spring fixing rack 8012 is provided with an attachment slot 80121, and the spring 803 is provided with a pressing region 8031 and fasteners 8032 connected individually to both sides of the pressing region 8031. The fasteners 8032 are disposed in the attachment slot 80121, and the pressing region 8031 is configured to contact the stopper 802. At least a guide area 8021 is provided on the surface of the stopper 802 that faces the spring 803, and by using the guide function of the guide area 8021, the spring 803 is brought into a state in which the spring 803 presses against the surface of the stopper 802, or by using the guide function of the guide area 8021, the spring 803 is brought into a state in which the spring 803 is separated from pressing against the stopper 802.
[0088] Figure 28 is a cross-sectional schematic view of the E-E cross section of Figure 27. Please refer to Figure 28. The stopper 802 is further provided with a screw hole 8022, and a screw passes through the screw hole 8022 and is connected to the movable support rack 302. The stopper 802 may also be connected to the movable support rack 302 by a method such as adhesion or clamping, which is not limited in the present specification.
[0089] Scenario 2 FIG. 29 is a schematic diagram of the structure of an electronic device having a rollable display according to an embodiment of the present application. FIG. 30 is a bottom view of an electronic device having a rollable display according to an embodiment of the present application. FIG. 31 is a schematic diagram of the structure of an electronic device having a rollable display in an extended display state according to an embodiment of the present application. FIG. 32 is a bottom view of an electronic device having a rollable display in an extended display state according to an embodiment of the present application. Please refer to FIGS. 29 to 32. A mobile phone 300 provided in an embodiment of the present application includes a device body 30 and a rollable display 40. The rollable display 40 includes a first display portion 401 and a second display portion 402 arranged in a first direction, and the second display portion 402 is wound around a support shaft 305. The device body 30 includes a main support rack 301 and a movable support rack 302 that can move relative to the main support rack 301. The movable support rack 302 is connected to the second display unit 402 , and the support shaft 305 is disposed on the movable support rack 302 .
[0090] In this embodiment, the movable support rack 302 can move toward the second side of the main support rack 301, i.e., the movable support rack 302 is expanded in the −X direction in FIG. 31 , resulting in a portion of the second display unit 402 being expanded in a planar shape. In this manner, the first display unit 401 and the expanded second display unit 402 together form a display area, resulting in the mobile phone 300 being in the expanded display state shown in FIG. 31 . Therefore, the display area of the mobile phone 300 is expanded without increasing the overall thickness of the mobile phone 300, and a user's requirement for a large display area of the mobile phone 300 can be met.
[0091] The movable support rack 302 may move toward the first side of the main support rack 301, i.e., the movable support rack 302 rotates in the +X direction in Fig. 31, so that at least a portion of the second display unit 402 is rolled up, and the mobile phone 300 enters the initial display state shown in Fig. 29, with the first display unit 401 being used as the effective display area. In this way, the user's normal display requirements for the screen of the mobile phone 300 are met, and the mobile phone 300 becomes easy to carry.
[0092] The rear cover 307 of the main support rack 301 may include a first rear cover 3071 and a second rear cover 3072. The frame 3062 is connected to the second rear cover 3072 to form the movable support rack 302. The drive assembly 60 is connected to the second rear cover 3072. The drive assembly 60 uses the second rear cover 3072 to drive the movable support rack 302 and the support shaft 305 to move toward the first side of the main support rack 301. Alternatively, the drive assembly 60 can drive the movable support rack 302 and the support shaft 305 to move toward the second side of the main support rack 301, such that the second display portion 402 is extended or rolled up.
[0093] The structure of the movable support rack 302 in scenario 2 is different from the structure of the movable support rack 302 in scenario 1. In scenario 2, the movable support rack 302 drives the second display unit 402 to be extended or rolled up. However, in scenario 1, the movable support rack 302 drives the first display unit 402 to be extended or rolled up. 401 The other structures of the mobile phone 300 are the same in Scenario 1 and Scenario 2, and the details will not be described again in this specification.
[0094] Figure 33 is a first cross-sectional schematic diagram of the FF cross section of Figure 31. Please refer to Figure 33. In this embodiment of the present application, the drive assembly 60 drives and moves the movable support rack 302, so that the second display portion 402 is expanded or rolled up. The structure and operating principle of the drive assembly 60 have been described in detail in Scenario 1 above, and the details will not be described again here.
[0095] Figure 34 is a second cross-sectional schematic view taken along cross section FF in Figure 31. Please refer to Figure 34. In this embodiment, the support assembly 70 may be a platform support assembly. The support assembly 70 includes a second drive unit 703 and a support unit 704 connected to the second drive unit 703. The support unit 704 may be a platform. The second drive unit 703 drives the support unit 704 to move it toward the back of the second display unit 402, and the support unit 704 is used to support the back of the second display unit 402.
[0096] The support assembly 70 is disposed in the main support rack 301, and the second drive unit 703 is connected to the second rear cover 3072. The second drive unit 703 may be a linear motor or a hydraulic cylinder, or the like.
[0097] Alternatively, the structure of the support assembly 70 may be the same as the structure of the support assembly 70 in any of the embodiments of Scenario 1 described above, and the details will not be described again here.
[0098] In this embodiment, the lock assembly 80 of the above-mentioned scenario 1 may also be set. The structure and operation principle of the lock assembly 80 will not be described again in this specification.
[0099] Scenario 3 FIG. 35 is a schematic diagram of a structure of an electronic device having a rollable display according to an embodiment of the present application. FIG. 36 is a schematic cross-sectional view of the G-G section of FIG. 35. FIG. 37 is a schematic cross-sectional view of the structure of an electronic device having a rollable display in an expanded display state according to an embodiment of the present application. FIG. 38 is a schematic cross-sectional view of the H-H section of FIG. 37. Please refer to FIGS. 35 to 38. A mobile phone 300 provided in an embodiment of the present application includes a device body 30 and a rollable display 40. The rollable display 40 includes a first display unit 401 and a second display unit 402 arranged in a first direction, and the second display unit 402 is wound around a support shaft 305. The device body 30 includes a main support rack 301 and at least two movable support racks 302 that can move relative to the main support rack 301. The first movable support rack 302 is connected to the first display unit 401 , the second movable support rack 302 is connected to the second display unit 402 , and the support shaft 305 is disposed on the movable support rack 302 .
[0100] The structure of the first movable support rack 302 is the same as the structure of the movable support rack 302 in Scenario 1 described above, and the structure of the second movable support rack 302 is the same as the structure of the movable support rack 302 in Scenario 2 described above.
[0101] The first movable support rack 302 drives the first display unit 401 to move toward the first side of the main support rack 301, and the second movable support rack 302 drives the second display unit 402 to move toward the second side of the main support rack 301, resulting in at least a portion of the second display unit 402 being extended, and the mobile phone 300 being in the extended display state shown in Figures 37 and 38. The first movable support rack 302 drives the first display unit 401 to move toward the second side of the main support rack 301, and the second movable support rack 302 drives the second display unit 402 to move toward the first side of the main support rack 301, resulting in at least a portion of the second display unit 402 being rolled up, and the mobile phone 300 being in the initial display state shown in Figures 35 and 36. The first side of the main support rack 301 is opposite the second side of the main support rack 301, and the first side of the main support rack 301 is in the +X direction in FIG. 37, and the second side of the main support rack 301 is in the -X direction in FIG. 37.
[0102] In this embodiment, the display area of the mobile phone 300 may be enlarged according to various user requirements. For example, the two movable support racks 302 move simultaneously in opposite directions to enlarge the display area of the mobile phone 300. Alternatively, the first movable support rack 302 is moved to enlarge the display area of the mobile phone 300. Alternatively, the second movable support rack 302 is moved to enlarge the display area of the mobile phone 300.
[0103] An implementation form in which the first movable support rack 302 drives the first display unit 401 to move toward the first side of the main support rack 301 or to roll toward the second side of the main support rack 301, resulting in at least a portion of the second display unit 402 being extended or rolled up, is the same as the implementation form in the above-described scenario 1, and the details thereof will not be described again herein. An implementation form in which the second movable support rack 302 drives the second display unit 402 to extend toward the second side of the main support rack 301 or to roll toward the first side of the main support rack 301, resulting in at least a portion of the second display unit 402 being extended or rolled up, is the same as the implementation form in the above-described scenario 2, and the details thereof will not be described again herein. [Explanation of symbols]
[0104] 100, 200 and 300 mobile phones 101 Housing 102 First Reel 103 Second Reel 104 and 201 Flexible Displays 105 Support film 106 Push-pull section 107 Opening 202 Rotating shaft 203 Support Housing 30 Device body 301 Main support rack 302 Movable Support Rack 303 Containment Cavity 304 Protective Cover 305 Support shaft 306 Intermediate Frame 3061 Intermediate plate 3062 Frame 307 Back cover 3071 1st rear cover 3072 Second rear cover 308 First Passage 309 Second Passage 310 Reinforcement film 311 Rotating shaft 312 Mounting part 3121 Connection Point 313 Connector 314 Rail 315 Entrance 40 Rollable Display 401 first display unit 4011 First side edge 4012 Second side edge 4013 Third side edge 402 Second display unit 50 sliding assembly 501 First Fixture 502 Sliding part 503 Ball 60 Drive assembly 601 First Drive Unit 602 Transmission assembly 6021 Rotating part 6022 First moving part 70 Support assembly 701 Second Fixture 7011 First concave area 7012 First convex region 702 Second Mobile Unit 7021 Second concave area 7022 Second convex region 7023 Support area 7024 Stretchable area 703 Second Drive Unit 704 Support part 80 Lock assembly 801 Support stand 8011 Slide Rail 8012 Spring Fixed Rack 80121 Mounting slot 802 Stopper 8021 Induction area 8022 screw hole 803 Spring 8031 Pressing Area 8032 Fixed area
Claims
1. 1. An electronic device having a rollable display, comprising: a device body; the rollable display; and a support assembly, wherein the device body comprises a support shaft; the rollable display comprises a first display portion and a second display portion arranged in a first direction, the second display portion being rolled up, the second display portion being wrapped around the support shaft; a display area is formed on at least one side of the device body, the device body has an initial display state and an expanded display state, in the initial display state, the first display unit forms the display area, and in the expanded display state, the first display unit and at least a portion of the second display unit form the display area, and the support assembly is configured to support the display area in the expanded display state; the device body includes a main support rack and a movable support rack that moves relative to the main support rack; the support assembly is disposed within the main support rack, the support assembly includes a second fixture and a second moving unit, the second fixture and the second moving unit cooperate to support a rear surface of the first display unit, the second fixture is connected to the main support rack, and the second moving unit is connected to the first display unit, and in the expanded display state, the second moving unit supports the first display unit disposed outside the main support rack; a rollable display in which a portion of the second moving part is disposed within the main support rack in the expanded display state; the second fixing member has a first recessed region and a first raised region that are spaced apart, and the second moving portion has a second recessed region and a second raised region that are spaced apart; in the initial display state, the second convex region of the second moving part is inserted into the first concave region of the second fixing device, and the first convex region of the second fixing device is inserted into the second concave region of the second moving part, and in the expanded display state, the second convex region of the second moving part is disengaged from the first concave region of the second fixing device, and the first convex region of the second fixing device is disengaged from the second concave region of the second moving part, When the first display unit drives the second moving unit to move the second moving unit out of the main support rack, the second concave area and the second convex area of the second moving unit are positioned within the main support rack, and the remaining part of the second moving unit is positioned outside the main support rack.
2. The electronic device with a rollable display of claim 1 , wherein the movable support rack is connected to the first display unit, and the support shaft is disposed on the main support rack.
3. 3. The electronic device with a rollable display of claim 2, further comprising a sliding assembly, the sliding assembly comprising a first fixture and a sliding portion that slides relative to the first fixture, the first fixture being connected to the main support rack, and the sliding portion being connected to the first display portion.
4. 3. The electronic device with a rollable display of claim 2, further comprising at least one drive assembly configured to drive and move the movable support rack to expand the device body from the initial display state to the expanded display state.
5. 5. The electronic device with a rollable display of claim 4, wherein the drive assembly comprises a first drive, the first drive being a linear drive.
6. 5. An electronic device with a rollable display as described in claim 4, wherein the drive assembly comprises a first drive unit and a transmission assembly connected to the first drive unit, the transmission assembly comprises a rotating unit and a first moving unit that fits to the rotating unit, the first drive unit is connected to the rotating unit and drives the rotating unit to rotate, thereby driving the first moving unit to move, and the first moving unit is connected to the movable support rack.
7. 7. An electronic device having a rollable display as described in any one of claims 2 to 6, wherein the support assembly is configured to support the first display portion and / or the second display portion positioned outside the main support rack.
8. 8. An electronic device having a rollable display as described in any one of claims 1 to 7, further comprising at least one connection assembly, wherein the second display portion is connected to the main support rack by using the connection assembly.
9. 9. The electronic device having a rollable display of claim 8, wherein the connection assembly comprises a rotating shaft and a reinforcing film wrapped around the rotating shaft, a first side of the reinforcing film being fixed to the rotating shaft, and a second side of the reinforcing film being connected to the second display unit.
10. 10. The electronic device having a rollable display according to claim 9, wherein the reinforcing film is connected to a rear surface of the second display portion.
11. 9. The electronic device with a rollable display of claim 8, wherein the connection assembly comprises a mounting portion and at least one connector, a first end of the connector connected to the main support rack, a second end of the connector connected to the mounting portion, and the mounting portion connected to the second display portion.
12. An electronic device having a rollable display described in any one of claims 1 to 11, wherein the distance between the axis of the support shaft and the display surface of the first display unit is equal to the distance between the axis of the support shaft and the display surface of the second display unit.
13. 13. The electronic device having a rollable display of claim 1, further comprising at least one locking assembly configured to secure the first display portion in the extended display state.
14. 14. The electronic device with a rollable display of claim 13, wherein the lock assembly comprises a support base, a stopper, and at least two springs, the support base having a slide rail, the stopper being arranged on the slide rail, the stopper being movable in the extension direction of the slide rail, the spring being connected to the support base, a portion of the spring extending into the slide rail, and the stopper being connected to the movable support rack.
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