Rotating shaft structure and electronic device using same

By designing a rotating shaft structure that includes a connector, a first rotating shaft, and a second rotating shaft, the problem of insufficient rotation range in existing rotating shaft structures is solved, resulting in a significant increase in the viewing angle adjustment range of the image acquisition device and easier storage.

CN223536753UActive Publication Date: 2025-11-11CHICONY ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520136479.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-11-11
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

The existing rotating shaft structure has insufficient rotation range, which limits the angle adjustment of the image acquisition device and makes it inconvenient to store.

Method used

Design a rotating shaft structure including a connector, a first rotating shaft, and a second rotating shaft. By using the two rotating shafts in combination, a first component can rotate relative to the connector with the first rotating shaft as the axis, and rotate relative to the second component with the second rotating shaft as the axis, thereby significantly increasing the rotation range.

Benefits of technology

This significantly increases the viewing angle adjustment range of the image acquisition device, makes it easy to store, and solves the problem of insufficient rotation range.

✦ Generated by Eureka AI based on patent content.

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Abstract

A rotating shaft structure and an electronic device using the same are used for connecting a first component and a second component of the electronic device. The rotating shaft structure comprises a connecting piece, a first rotating shaft piece and a second rotating shaft piece. The connecting piece comprises a body part, a first connecting part and a second connecting part. The body portion is located between the first member and the second member. The first rotating shaft piece comprises a first fixing part and a first rotating shaft. The first fixing portion is fixed to the first member. The first rotating shaft is connected to the first fixing part and is pivoted with the first connecting part; the second rotating shaft piece comprises a second fixing part and a second rotating shaft. The second fixing portion is fixed to the second member. The second rotating shaft is connected to the second fixing part and is pivoted with the first connecting part; the first part rotates relative to the connecting piece with the first rotating shaft as the axis and rotates relative to the second part with the second rotating shaft as the axis.
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Description

Technical Field

[0001] This utility model relates to a rotating shaft structure, and more particularly to a rotating shaft structure applied to electronic devices. Background Technology

[0002] With the development of communication technology, various electronic products with image acquisition capabilities have emerged on the market, allowing consumers to choose according to different needs. Examples include cameras, handheld camcorders, webcams, dashcams, and mobile phones. These image acquisition devices are often used in conjunction with other devices and mounted on top of them. For example, a webcam might be mounted above a screen.

[0003] Because the angle of a lens often needs to be adjusted to accommodate various viewing angles, electronic products with image acquisition capabilities are frequently designed with a hinge structure to capture images from different perspectives. However, current hinge designs still have limitations on the rotation angle, typically only allowing for ±90 degrees of rotation. Besides the limitation on the angle of image acquisition, this also presents the drawback of inconvenience in storage, making improvement necessary. Utility Model Content

[0004] In view of the above-mentioned problems, the main objective of this utility model is to provide a pivot structure for connecting a first component and a second component of an electronic device. By including a connector, a first pivot component, and a second pivot component, the pivot structure addresses the problem of insufficient rotation range in known pivot structures used in image acquisition devices.

[0005] To achieve the above objectives, this utility model provides a pivot structure for connecting a first component and a second component of an electronic device. The pivot structure includes a connector, a first pivot component, and a second pivot component. The connector includes a body portion, a first connecting portion, and a second connecting portion. The body portion is located between the first component and the second component. The first connecting portion and the second connecting portion are respectively connected to opposite sides of the body portion. The first pivot component includes a first fixing portion and a first pivot. The first fixing portion is fixed to the first component. The first pivot is connected to the first fixing portion and pivotally connected to the first connecting portion. The second pivot component includes a second fixing portion and a second pivot. The second fixing portion is fixed to the second component. The second pivot is connected to the second fixing portion and pivotally connected to the first connecting portion. The first component rotates relative to the connector about the first pivot axis and rotates relative to the second component about the second pivot axis.

[0006] According to one embodiment of the present invention, the first connecting portion includes two opposing first shaft holes, and the second connecting portion includes two opposing second shaft holes. The two first shaft holes and the two second shaft holes are respectively located near the four corners of the main body portion.

[0007] According to one embodiment of the present invention, a first rotating shaft includes two opposing first shafts, and a second rotating shaft includes two opposing second shafts. The two first shafts are pivotally connected to the two first shaft holes, and the two second shafts are pivotally connected to the two second shaft holes.

[0008] According to one embodiment of the present invention, the space between the two first shafts and the space between the two second shafts together with the main body forms a wiring space.

[0009] According to one embodiment of the present invention, one of the two first shafts has a first hollow portion, and one of the two second shafts has a second hollow portion.

[0010] According to one embodiment of the present invention, the first rotating shaft further includes a first torque element, which is sleeved on one of the two first shafts. The second rotating shaft further includes a second torque element, which is sleeved on one of the two second shafts.

[0011] According to one embodiment of the present invention, the first component includes a first groove, and the second component includes a second groove. The rotating shaft structure also includes a connecting housing located within the first and second grooves. A connecting member is disposed within the connecting housing.

[0012] According to one embodiment of the present invention, a first component has two first openings located on opposite sides of a first groove. A second component has two second openings located on opposite sides of a second groove. The connecting housing includes two first connecting holes and two second connecting holes. The two first connecting holes correspond to the two first openings, and the two second connecting holes correspond to the two second openings.

[0013] According to one embodiment of the present invention, a first rotating shaft passes through the two first openings and the two first connecting holes and is pivotally connected to the first connecting portion. A second rotating shaft passes through the two second openings and the two second connecting holes and is pivotally connected to the second connecting portion.

[0014] According to one embodiment of the present invention, the first fixing part and the second fixing part are U-shaped structures.

[0015] To achieve the above objectives, this utility model further provides an electronic device, including a first component, a second component, and a rotating shaft structure. The rotating shaft structure connects the first component and the second component. The rotating shaft structure includes a connector, a first rotating shaft component, and a second rotating shaft component. The connector includes a body portion, a first connecting portion, and a second connecting portion. The body portion is located between the first component and the second component. The first connecting portion and the second connecting portion are respectively connected to opposite sides of the body portion. The first rotating shaft component includes a first fixing portion and a first rotating shaft. The first fixing portion is fixed to the first component. The first rotating shaft is connected to the first fixing portion and pivotally connected to the first connecting portion. The second rotating shaft component includes a second fixing portion and a second rotating shaft. The second fixing portion is fixed to the second component. The second rotating shaft is connected to the second fixing portion and pivotally connected to the first connecting portion. The first component rotates relative to the connector about the first rotating shaft as an axis, and rotates relative to the second component about the second rotating shaft as an axis.

[0016] As described above, according to the electronic device and its rotating shaft structure of this utility model, the rotating shaft structure is used to connect a first component and a second component. The rotating shaft structure includes a connector, a first rotating shaft component, and a second rotating shaft component. The connector includes a body portion, a first connecting portion, and a second connecting portion, which are respectively connected to opposite sides of the body portion. The body portion of the connector is located between the first component and the second component. The first and second rotating shaft components each include a first and a second fixing portion and a first and a second rotating shaft. The first fixing portion is fixed to the first component, and the first rotating shaft is pivotally connected to the first connecting portion. The second fixing portion is fixed to the second component, and the second rotating shaft is pivotally connected to the first connecting portion. With the aforementioned structure, the first component can rotate relative to the connector about the first rotating shaft and can rotate relative to the second component about the second rotating shaft, thereby significantly increasing the range of rotation. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of a rotating shaft structure according to an embodiment of the present invention and an electronic device thereof.

[0018] Figure 2 for Figure 1 An exploded view of the electronic device shown.

[0019] Figure 3A for Figure 2 An enlarged schematic diagram of the rotating shaft structure shown.

[0020] Figure 3B for Figure 2 The diagram shown is an exploded view of the rotating shaft structure.

[0021] Figure 4 for Figure 2 The front view of the rotating shaft structure combined with some electronic devices shown.

[0022] Figure 5 for Figure 1 Side view of the electronic device shown.

[0023] Figure 6 for Figure 5 The diagram shows the rotating shaft structure adjusting its angle forward.

[0024] Figure 7A and Figure 7B for Figure 5 The diagram shows the rotating shaft structure adjusting its angle backward.

[0025] The annotations in the attached figures are explained as follows:

[0026] 1 Electronic device 10 First component

[0027] 101 (first half) 102 (second half)

[0028] 11 First groove 12 First opening

[0029] 13 cantilever 20 second component

[0030] 201 First Half 202 Second Half

[0031] 21 Second groove 22 Second opening

[0032] 30. Shaft structure; 31. Connector

[0033] 311 Main body 312 First connecting part

[0034] 3121 First shaft hole; 313 Second connecting part

[0035] 3131 Second shaft hole 314 Side wall portion

[0036] 32 First rotating shaft component 321 First fixing part

[0037] 3211 Shaft Hole 322 First Rotating Shaft

[0038] 3221a, 3221b First shaft, 3222 First hollow part

[0039] 3223 First retaining ring 323 First torsion element

[0040] 33 Second pivot component 331 Second fixing part

[0041] 3311 Shaft Hole 332 Second Rotary Shaft

[0042] 3321a, 3321b Second shaft, 3322 Second hollow part

[0043] 3323 First retaining ring; 333 Second torsion element

[0044] 34 Connecting housing 341 First connecting hole

[0045] 342 Second Connecting Hole R Trace Space Detailed Implementation

[0046] To better understand the technical content of this utility model, preferred embodiments are described below.

[0047] Figure 1 This is a schematic diagram of a rotating shaft structure according to an embodiment of the present invention and its application in an electronic device. Figure 2 for Figure 1 An exploded view of the electronic device shown. Figure 3A for Figure 2 The enlarged schematic diagram of the rotating shaft structure shown is as follows. Figure 3B for Figure 2 The exploded view of the shaft structure shown is as follows. Figure 4 for Figure 2 Please refer to the front view of the rotating structure and some electronic devices shown below. Figure 1 , Figure 2 , Figure 3A , Figure 3B and Figure 4 As shown. First, in this embodiment, the electronic device 1 is a detachable webcam, which can be magnetically attached to electronic products such as laptops, tablets, or all-in-one PCs. In other embodiments, the electronic device 1 can also be other electronic devices that require adjustment of the angle between two components. In this embodiment, the electronic device 1 includes a first component 10, a second component 20, and a hinge structure 30. The hinge structure 30 is used to connect the first component 10 and the second component 20, and can adjust the angle between the first component 10 and the second component 20. For example, the first component 10 is the housing of a lens module, while the second component 20 can be a bracket for the electronic device 1 (i.e., the detachable webcam), used to connect to electronic products such as laptops, and the angle between the first component 10 and the second component 20 can be adjusted via the hinge structure 30. It should be noted that... Figure 2 The first component 10 shown is divided into a front half 101 and a rear half 102, and the second component 20 is also divided into a front half 201 and a rear half 202. Figure 4 Only the rear halves 102 and 202 of the first component 10 and the second component 20 are shown. The front half 201 of the second component 20 may include the surface to which it is assembled to an electronic product.

[0048] The rotating shaft structure 30 of this embodiment includes a connector 31, a first rotating shaft 32, and a second rotating shaft 33. For example... Figure 3A and Figure 3BAs shown, the connector 31 includes a body portion 311, a first connecting portion 312, and a second connecting portion 313. The first connecting portion 312 and the second connecting portion 313 are respectively connected to opposite sides of the body portion 311. Preferably, as shown... Figure 3B As shown, in this embodiment, the first connecting portion 312 includes two opposing first shaft holes 3121, while the second connecting portion 313 includes two opposing second shaft holes 3131. The two first shaft holes 3121 and the two second shaft holes 3131 are respectively located near the four corners of the body portion 311, forming an H-shaped structure for the connector 31. Specifically, the connector 31 in this embodiment also includes two side wall portions 314, located on opposite sides of the body portion 311 and perpendicular to the body portion 311. Figure 3A and Figure 3B For example, the two side wall portions 314 are located on the left and right sides of the main body portion 311, respectively. Furthermore, the first connecting portion 312 and the second connecting portion 313 are located at opposite ends of the two side wall portions 314, respectively. Similarly... Figure 3A and Figure 3B For example, the two first shaft holes 3121 of the first connecting part 312 are located at the upper end of the two side wall parts 314, while the two second shaft holes 3131 of the second connecting part 313 are located at the lower end of the two side wall parts 314, so that the connecting part 31 forms an H-shaped structure.

[0049] Furthermore, the main body 311 is located between the first component 10 and the second component 20, with the first connecting portion 312 facing the first component 10 and the second connecting portion 313 facing the second component 20, as shown below. Figure 4 As shown. A better option is, as... Figure 1 , Figure 2 and Figure 4 As shown, in this embodiment, the first component 10 includes a first groove 11, and the second component 20 includes a second groove 21. For example... Figure 1 and Figure 2 As shown, the first groove 11 is a recessed groove extending inward from the bottom side of the first component 10 toward the lens, forming two cantilever arms 13 below the lens of the first component 10. The second groove 21 is a recessed groove extending inward from one side wall of the second component 20 (i.e., the side wall facing the first component 10). When the first component 10 and the second component 20 are adjacent, the first groove 11 and the second groove 21 can together form a space for a portion of the rotating shaft structure 30. Specifically, the rotating shaft structure 30 in this embodiment also includes a connecting housing 34. For example... Figure 4As shown, the connector 31 is disposed within the connecting housing 34, with the first connecting portion 312 and the second connecting portion 313 located on the upper and lower sides of the connecting housing 34, respectively. The main body 311 can be screwed into the connecting housing 34, thereby fixing the connector 31 within the connecting housing 34. Furthermore, the connecting housing 34, together with the connector 31, is placed between the first component 10 and the second component 20, and positioned within the space formed by the first groove 11 and the second groove 21. At this time, the first connecting portion 312 is also located within the first groove 11, and the second connecting portion 313 is also located within the second groove 21, as shown. Figure 4 As shown.

[0050] Better, such as Figure 2 As shown, the first component 10 has two first openings 12, which are respectively disposed on the sidewalls of the two cantilever 13 facing the first groove 11, such that the first openings 12 are located on opposite sides of the first groove 11, that is, on the left and right sides of the first groove 11. Similarly, the second component 20 has two second openings 22, located on opposite sides of the second groove 21. In this embodiment, the left and right sides of the second groove 21 are open second openings 22. In other embodiments, the left and right sides of the second groove 21 may also have closed sidewalls, and the second openings 22 are formed on the sidewalls, which is not limited by this utility model. Correspondingly, the connecting housing 34 includes two first connecting holes 341 and two second connecting holes 342. The first connecting holes 341 are located above the left and right sidewalls of the connecting housing 34, corresponding to the first openings 12 located on the left and right sides of the first groove 11, respectively. The second connecting holes 342 are located below the left and right sidewalls of the connecting housing 34, corresponding to the second openings 22 on the left and right sides of the second groove 21, respectively.

[0051] like Figure 3A , Figure 3B and Figure 4As shown, in this embodiment, the first rotating shaft 32 includes a first fixing part 321 and a first rotating shaft 322, with the first rotating shaft 322 connected to the first fixing part 321. The first fixing part 321 is fixed to the first component 10, for example, but not limited to, by screwing, welding, or bonding. Preferably, the first fixing part 321 has a U-shaped structure and is accommodated around the first groove 11, with a portion located within the cantilever 13. In this embodiment, the first fixing part 321 has screw-lockable areas on opposite sides and is fixed to the first component 10 by screwing. Furthermore, in this embodiment, the first rotating shaft 322 is connected to the end of the first fixing part 321, so that the first rotating shaft 322 can correspond to the first connecting part 312 of the connector 31. Specifically, the first rotating shaft 322 can pass through the first opening 12 and the first connecting hole 341, so that the first rotating shaft 322 and the first connecting part 312 are pivotally connected to each other. Preferably, in this embodiment, the first rotating shaft 322 includes two opposing first shafts 3221a and 3221b, which are respectively connected to shaft holes 3211 at opposite ends of the first fixing part 321, such as... Figure 3B As shown. Furthermore, the two first shafts 3221a and 3221b can pass through the first openings 12 and the first connecting holes 341 on the left and right sides respectively, so as to pivotally connect with the two first shaft holes 3121 of the first connecting part 312. In other embodiments, the first rotating shaft 322 can be a single shaft passing through both first shaft holes 3121, and this utility model is not limited thereto.

[0052] Preferably, in this embodiment, the first shafts 3221a and 3221b on the left and right sides can be pivotally mounted on the first connecting portion 312 in different ways. Figure 3A and Figure 3B For example, the outer diameter of the first shaft 3221a is larger on the side near the first connecting portion 312 (i.e., the right side), while the left side has a first fixing ring 3223. The first shaft 3221a passes through the first shaft hole 3121 on the left side and the shaft hole 3211 of the first fixing portion 321 from the inside to the outside. The larger outer diameter portion of the first shaft 3221a on the right side directly abuts against the inner side of the side wall portion 314, while the first fixing ring 3223 is sleeved on the left side of the first shaft 3221a, so that the first shaft 3221a is pivotally connected to the first connecting portion 312. The first shaft 3221b passes through the shaft hole 3211 of the first fixing portion 321 and the first shaft hole 3121 on the right side from the outside to the inside, and is then locked to the inner side of the right side wall portion 314 by the nut of the first torque element 323, thereby pivotally connecting the first shaft 3221b to the first connecting portion 312.

[0053] Similarly, the second rotating shaft 33 includes a second fixing part 331 and a second rotating shaft 332. The second rotating shaft 332 is connected to the second fixing part 331. The second fixing part 331 is fixed to the second component 20. Preferably, the second fixing part 331 is also a U-shaped structure and is disposed around the second groove 21. Similarly, the opposite sides of the second fixing part 331 have areas for screwing and are fixed to the second component 20 by screwing. Furthermore, in this embodiment, the second rotating shaft 332 is connected to the end of the second fixing part 331. The second rotating shaft 332 can pass through the second opening 22 and the second connecting hole 342, so that the second rotating shaft 332 and the second connecting part 313 are pivotally connected to each other. Preferably, in this embodiment, the second rotating shaft 332 includes two opposing second shafts 3321a and 3321b, which are respectively connected to the opposite ends of the second fixing part 331. The two second shafts 3321a and 3321b can pass through the second openings 22 and the second connecting holes 342 on the left and right sides, respectively, to pivotally connect with the two second shaft holes 3131 of the second connecting part 313. In other embodiments, the second rotating shaft 332 can be a single shaft connecting two second shaft holes 3131, which is not a limitation of this invention.

[0054] Preferably, in this embodiment, the second shafts 3321a and 3321b on the left and right sides can be pivotally mounted on the second connecting portion 313 in different ways. Figure 3A and Figure 3B For example, the outer diameter of the second shaft 3321a is larger on the side (i.e., the right side) closer to the second connecting portion 313, while the left side has a second retaining ring 3323. The second shaft 3321a passes through the second shaft hole 3131 on the left side and the shaft hole 3311 of the second fixing portion 331 from the inside to the outside. The larger outer diameter portion of the second shaft 3321a on the right side directly abuts against the inner side of the side wall portion 314, while the second retaining ring 3323 is sleeved on the left side of the second shaft 3321a, so that the second shaft 3321a is pivotally connected to the second connecting portion 313. The second shaft 3321b passes through the shaft hole 3311 of the second fixing portion 331 and the second shaft hole 3131 on the right side from the outside to the inside, and is then locked to the inner side of the right side wall portion 314 by the nut of the second torque element 333, thereby pivotally connecting the second shaft 3321b to the second connecting portion 313.

[0055] Figure 5 for Figure 1 The side view of the electronic device shown. Figure 6 for Figure 5 The diagram shown illustrates the forward adjustment of the rotating shaft structure. Figure 7A and Figure 7B for Figure 5 Please refer to the schematic diagram showing the rearward adjustment angle of the rotating shaft structure. Figure 5 , Figure 6 , Figure 7A and Figure 7BAs shown. When electronic device 1 is assembled into electronic products such as laptops, the angle of the first component 10 (i.e., the housing of the lens assembly) can be adjusted through the aforementioned structure. Specifically, after the second component 20 is connected to electronic products such as laptops, force can be applied to the first component 10, allowing the first component 10 to rotate relative to the connector 31 about the first pivot 322 (e.g., ...). Figure 7B As shown), and can rotate relative to the second component 20 about the second pivot 332 (as shown). Figure 6 and Figure 7A (As shown). Because the rotating shaft structure 30 has two rotating shafts (i.e., the first rotating shaft 322 and the second rotating shaft 332), the two rotating shafts can rotate independently, thus greatly increasing the range of rotation. When the first component 10 is moved forward, the first component 10 rotates forward relative to the second component 20 about the second rotating shaft 332 as an axis, as shown. Figures 5 to 6 The action. Then, as needed, it can continue to rotate forward around the first pivot 322. Conversely, when the first component 10 is moved backward, the first component 10 rotates backward relative to the second component 20 around the second pivot 332, such as... Figures 5 to 7A The action. Next, if it is necessary to store the first component 10 (i.e., the housing of the lens assembly), it can still be rotated backward around the first pivot 322 until the first component 10 and the second component 20 are in contact, such as... Figures 7A to 7B Therefore, compared to known technologies, the rotating shaft structure 30 of this invention can significantly increase the rotation range.

[0056] like Figure 3A , Figure 3B and Figure 4 As shown, preferably, the first rotating shaft 32 in this embodiment further includes a first torque element 323, which is sleeved on one of the two first shafts 3221a and 3221b. Figure 3A and Figure 4For example, in this embodiment, the first torque element 323 is sleeved on the right side of the first shaft 3221b. Similarly, the second rotating shaft 33 also includes a second torque element 333, which is sleeved on one of the two second shafts 3321a and 3321b. In this embodiment, the second torque element 333 is also sleeved on the right side of the second shaft 3321b. In other embodiments, the first torque element 323 and the second torque element 333 may be sleeved on the left side of the first shaft 3221a and the second shaft 3321a, respectively, or they may be sleeved on different sides, for example, on the left side of the first shaft 3221a and the right side of the second shaft 3321b, or on the right side of the first shaft 3221b and the left side of the second shaft 3321a, respectively. This utility model is not limited to these embodiments. The first torque element 323 and the second torque element 333 may include friction plates, cams, springs, and nuts. The friction plate, cam, and spring are fitted onto the first shaft 3221b and the second shaft 3321b, and then secured with a nut. The angle between the first component 10 and the second component 20 is fixed by the first torque element 323 and the second torque element 333. In other words, after the user applies force to the first component 10 and adjusts its angle, they can release it directly, and the position of the first component 10 is maintained by the first torque element 323 and the second torque element 333.

[0057] like Figure 3A and Figure 4 As shown, in this embodiment, the two first shafts 3221a and 3221b, the two second shafts 3321a and 3321b, together with the body portion 311, form a wiring space R. Preferably, one of the two first shafts 3221a and 3221b in this embodiment has a first hollow portion 3222, such as... Figure 3A and Figure 3B As shown. For example, the first shaft 3221a without the first torque element 323, i.e., the first shaft 3221a located on the left side, has a first hollow portion 3222. Similarly, one of the two second shafts 3321a and 3321b has a second hollow portion 3322, as shown. Figure 3A and Figure 3B As shown. For example, the second shaft 3321a without the second torque element 333 (i.e., the left side) has a second hollow portion 3322. Furthermore, the first hollow portion 3222 and the second hollow portion 3322 are interconnected with the wiring space R. Therefore, the wiring inside the first component 10 (i.e., the housing of the lens device) can sequentially pass through the first hollow portion 3222, the wiring space R, and the second hollow portion 3322 to the second component 20 (e.g., the body of the electronic device 1).

[0058] In summary, according to the electronic device and its rotating shaft structure of this utility model, the rotating shaft structure is used to connect a first component and a second component. The rotating shaft structure includes a connector, a first rotating shaft component, and a second rotating shaft component. The connector includes a body portion, a first connecting portion, and a second connecting portion, which are respectively connected to opposite sides of the body portion. The body portion of the connector is located between the first component and the second component. The first and second rotating shaft components each include a first and a second fixing portion and a first and a second rotating shaft. The first fixing portion is fixed to the first component, and the first rotating shaft is pivotally connected to the first connecting portion. The second fixing portion is fixed to the second component, and the second rotating shaft is pivotally connected to the first connecting portion. With the aforementioned structure, the first component can rotate relative to the connector about the first rotating shaft and can rotate relative to the second component about the second rotating shaft, thereby significantly increasing the range of rotation.

[0059] It should be noted that the above embodiments are examples for ease of illustration, and the scope of the claims of this utility model should be determined by the claims, and not limited to the above embodiments.

Claims

1. A rotating shaft structure, characterized in that, The pivot structure, used to connect the first component and the second component of an electronic device, includes: The connector includes: The main body is located between the first component and the second component; and The first connecting part and the second connecting part are respectively connected to the opposite sides of the main body; The first rotating shaft component includes: A first fixing part is fixed to the first component; and A first rotating shaft is connected to the first fixed part and pivotally connected to the first connecting part; and The second rotating shaft component includes: The second fixing part is fixed to the second component; and The second rotating shaft is connected to the second fixed part and pivotally connected to the first connecting part; wherein... The first component rotates relative to the connector about the first pivot axis, and rotates relative to the second component about the second pivot axis.

2. The rotating shaft structure as described in claim 1, characterized in that, The first connecting portion includes two opposing first shaft holes, and the second connecting portion includes two opposing second shaft holes, the two first shaft holes and the two second shaft holes being located close to the four corners of the main body portion.

3. The rotating shaft structure as described in claim 2, characterized in that, The first rotating shaft includes two opposing first shafts, and the second rotating shaft includes two opposing second shafts. The two first shafts are pivotally connected to the two first shaft holes, and the two second shafts are pivotally connected to the two second shaft holes.

4. The rotating shaft structure as described in claim 3, characterized in that, The two first shafts and the two second shafts together form a wiring space with the main body.

5. The rotating shaft structure as described in claim 3, characterized in that, One of the two first shafts has a first hollow portion, and one of the two second shafts has a second hollow portion.

6. The rotating shaft structure as described in claim 3, characterized in that, The first rotating shaft further includes a first torque element, which is sleeved on one of the two first shafts, and the second rotating shaft further includes a second torque element, which is sleeved on one of the two second shafts.

7. The rotating shaft structure as described in claim 1, characterized in that, The first component includes a first groove, the second component includes a second groove, and the rotating shaft structure further includes: A connecting housing is located within the first groove and the second groove, and the connecting member is disposed on the connecting housing.

8. The rotating shaft structure as described in claim 7, characterized in that, The first component has two first openings located on opposite sides of the first groove, and the second component has two second openings located on opposite sides of the second groove. The connecting housing includes two first connecting holes and two second connecting holes, with the two first connecting holes corresponding to the two first openings and the two second connecting holes corresponding to the two second openings.

9. The rotating shaft structure as described in claim 8, characterized in that, The first rotating shaft passes through the two first openings and the two first connecting holes and is pivotally connected to the first connecting part, and the second rotating shaft passes through the two second openings and the two second connecting holes and is pivotally connected to the second connecting part.

10. The rotating shaft structure as described in claim 1, characterized in that, The first fixing part and the second fixing part are both U-shaped structures.

11. An electronic device, characterized in that, include: First component; Second component; as well as A rotating shaft structure connects the first component and the second component, the rotating shaft structure comprising: A connector includes a body portion, a first connecting portion, and a second connecting portion. The body portion is located between the first component and the second component, and the first connecting portion and the second connecting portion are respectively connected to opposite sides of the body portion. A first rotating shaft component includes a first fixing part and a first rotating shaft. The first fixing part is fixed to the first component, and the first rotating shaft is connected to the first fixing part and pivotally connected to the first connecting part. The second rotating shaft component includes a second fixing part and a second rotating shaft. The second fixing part is fixed to the second component, and the second rotating shaft is connected to the second fixing part and pivotally connected to the first connecting part. The first component rotates relative to the connector about the first pivot axis, and rotates relative to the second component about the second pivot axis.