WO2026037018A1 - Ensemble de support - Google Patents

Ensemble de support

Info

Publication number
WO2026037018A1
WO2026037018A1 PCT/CN2025/107642 CN2025107642W WO2026037018A1 WO 2026037018 A1 WO2026037018 A1 WO 2026037018A1 CN 2025107642 W CN2025107642 W CN 2025107642W WO 2026037018 A1 WO2026037018 A1 WO 2026037018A1
Authority
WO
WIPO (PCT)
Prior art keywords
support member
housing
rotating
gap
support
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
PCT/CN2025/107642
Other languages
English (en)
Chinese (zh)
Inventor
伍红星
宋建成
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Anker Innovations Co Ltd
Original Assignee
Anker Innovations Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Anker Innovations Co Ltd filed Critical Anker Innovations Co Ltd
Publication of WO2026037018A1 publication Critical patent/WO2026037018A1/fr
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/04Supports for telephone transmitters or receivers

Definitions

  • This application relates to the field of electronic device bracket technology, and in particular to a bracket assembly.
  • a stand assembly is an electronic device accessory, typically mounted on the back of portable electronic devices (such as mobile phones) to protect, decorate, or support the device.
  • Electronic devices can wirelessly charge using the principle of electromagnetic induction.
  • at least some components of the stand assembly are made of metal.
  • the stand assembly When the stand assembly is in the electromagnetic induction zone of wireless charging, it will change the distribution of the electromagnetic field, affecting the electromagnetic induction between the wireless charging device and the electronic device.
  • Some electronic devices have foreign object detection functions for wireless charging, which may cause the charging to stop.
  • the stand assembly is not compatible with these electronic devices, resulting in poor compatibility.
  • the bracket assembly provided in this application has at least one first gap on the outer periphery of the first through hole.
  • the first gap breaks the continuity of the support member extending circumferentially along the first through hole, thereby reducing the maximum size of the support member continuously extending circumferentially along the first through hole. This allows the maximum size of the support member to be controlled within the limit of the foreign object detection size during wireless charging of electronic devices, preventing charging interruptions.
  • the bracket assembly can be adapted to electronic devices with wireless charging foreign object detection function, thereby improving the compatibility of the bracket assembly.
  • FIG. 2 is a structural schematic diagram of an embodiment of the housing provided in this application.
  • Figure 3 is an exploded structural diagram of an embodiment of the support assembly provided in this application, excluding the housing;
  • Figure 4 is a partial cross-sectional view of an embodiment of the support assembly provided in this application from a certain perspective;
  • Figure 5 is a partial cross-sectional view of an embodiment of the support assembly provided in this application from another perspective;
  • “multiple” means at least two, such as two, three, etc., unless otherwise explicitly specified.
  • the terms “first,” “second,” and “third” in the embodiments of this application are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as “first,” “second,” or “third” may explicitly or implicitly include at least one of that feature. All directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationships and movements between components in a specific orientation (as shown in the figures). If the specific orientation changes, the directional indication will also change accordingly.
  • the support assembly 100 may include a housing 10 and a support member 20.
  • the housing 10 can be used to house an electronic device.
  • the electronic device may be a mobile phone or a tablet computer. Holes may be provided in the housing 10 at positions corresponding to components such as cameras, buttons, and data interfaces of the electronic device, allowing these components to be exposed within the housing 10.
  • the housing 10 may be made of one or more of plastic, leather, silicone, ceramic, or glass.
  • the housing 10 can both decorate the electronic device, enhancing its appearance, and protect it from drops, scratches, water, and shocks.
  • the support member 20 supports the electronic device, meeting the user's support needs when using the device and facilitating screen viewing or operation.
  • the support member 20 is made of metal.
  • the support member 20 has high strength and can withstand large loads, allowing the support member 20 to provide stable support for the electronic device.
  • the support member 20 is movably connected to one side of the housing 10. Specifically, the support member 20 may be connected to the other side of the housing 10 that houses the electronic device for convenient support.
  • the support member 20 can be directly connected to the housing 10, or it can be indirectly connected to the housing 10 through other components.
  • the support member 20 and the housing 10 are movably connected, allowing the support member 20 and the housing 10 to move relative to each other, such as rotating or sliding, thereby changing the support height or angle of the support member 20 on the electronic device to meet the user's personalized needs.
  • the support member 20 has a first through hole 21.
  • the first through hole 21 can be circular, elliptical, polygonal, or other shapes. The user's fingers can pass through the first through hole 21, and then hold the electronic device through the support member 20.
  • the support member 20 also has at least one first gap 22 on the outer periphery of the first through hole 21.
  • the number of first gaps 22 can be one, two, three, or more, and is not specifically limited here.
  • the first gap 22 communicates with the first through hole 21, and the first gap 22 disconnects the support member 20 at the outer periphery of the first through hole 21, so as to reduce the maximum dimension of the support member 20 continuously extending circumferentially along the first through hole 21.
  • the support member 20 is disconnected at the outer periphery of the first through hole 21.
  • the first gap 22 breaks the continuity of the support member 20 extending circumferentially along the first through hole 21, reducing the maximum size of the support member 20 continuously extending circumferentially along the first through hole 21. This allows the maximum size of the support member 20 to be controlled within the limit of the foreign object detection size when the electronic device is wirelessly charging, preventing the electronic device from being interrupted in charging.
  • the bracket assembly 100 can be adapted to electronic devices with wireless charging foreign object detection function, thereby improving the compatibility of the bracket assembly 100.
  • the first gap 22 can be located at the connection between the support member 20 and the housing 10, or it can be located outside the connection between the support member 20 and the housing 10. Referring to Figures 1 and 6, in one embodiment, one of the first gaps 22 is located at the connection between the support member 20 and the housing 10, and the two ends of the support member 20 formed by the first gap 22 are respectively connected to the housing 10. By placing one of the first gaps 22 at the connection between the support member 20 and the housing 10, the relatively independent segments formed by the first gap 22 in the support member 20 can be interconnected through the housing 10, thereby enhancing the overall integrity of the support member 20.
  • the support member 20 can be directly connected to the housing 10, or indirectly connected to the housing 10 through other components.
  • the bracket assembly 100 includes a rotating member 40.
  • the support member 20 is connected to the housing 10 via the rotating member 40.
  • a first gap 22 is provided at the connection between the support member 20 and the rotating member 40.
  • the two ends of the support member 20, separated by the first gap 22, are respectively connected to the rotating member 40.
  • a circular mounting hole 11 is provided on the housing 10.
  • the mounting hole 11 can be a through hole or a blind hole; that is, the mounting hole 11 can penetrate both sides of the housing 10, or it can only penetrate the side of the housing 10 closest to the support member 20.
  • the rotating member 40 can be approximately disk-shaped, and its area is approximately equal to the opening area of the mounting hole 11.
  • the rotating member 40 is rotatably connected to the mounting hole 11 of the housing 10, and the rotating member 40 can rotate within the plane of the mounting hole 11.
  • the support member 20 is rotatably connected to one side of the rotating member 40. Rotation of the support member 20 changes the angle between it and the housing 10.
  • the rotating member 40 is rotatably connected to the mounting hole 11 of the housing 10, and the support member 20 is rotatably connected to one side of the rotating member 40. This allows the support member 20 to be connected to the housing 10 via the rotating member 40.
  • the support member 20 can change the angle between itself and the housing 10 by rotating relative to the rotating member 40, thus changing the height of the supported electronic device.
  • the support member 20 can rotate within the plane of the mounting hole 11 under the influence of the rotating member 40, changing the angle of the supported electronic device. This increases the freedom of rotation for the support member 20, providing support at different heights and angles to meet the user's personalized
  • the support member 20 can be directly rotatably connected to the rotating member 40.
  • the rotating member 40 has a rotating shaft
  • the support member 20 has a bushing.
  • the bushing of the support member 20 is fitted onto the rotating shaft of the rotating member 40, and the angle between the support member 20 and the housing 10 can be changed when the support member 20 rotates around the rotating shaft.
  • the rotating connection is usually formed by stamping, and its processing technology is relatively complex.
  • the bracket assembly 100 includes a connecting assembly 50.
  • the support member 20 is rotatably connected to the rotating member 40 through the connecting assembly 50.
  • a first gap 22 is provided at the connection between the support member 20 and the connecting assembly 50.
  • the two ends of the support member 20 formed by being disconnected by the first gap 22 are respectively connected to the connecting assembly 50.
  • the connecting assembly 50 is relatively independent from the support member 20 and the rotating member 40.
  • the support member 20 and the rotating member 40 do not need to have components with complex processing technology, which can simplify the processing technology of the support member 20 and the rotating member 40.
  • the connecting component 50 can be made of metal or non-metal.
  • the connecting component 50 is made of metal. Compared to non-metallic materials, metal materials have higher strength, and the metal connecting component 50 can improve the reliability of the connection between the support member 20 and the rotating member 40. If the metal connecting component 50 is connected at the first gap 22 of the support member 20, the disconnected support member 20 will be connected and conductive through the connecting component 50, thereby changing the maximum continuous circumferential extension of the support member 20 along the first through hole 21. This may cause the maximum continuous extension of the support member 20 to exceed the foreign object detection size limit during wireless charging of the electronic device.
  • the connecting component 50 has a second gap 55 at the corresponding position of the first gap 22 of the support member 20, and the second gap 55 disconnects the connecting component 50.
  • the connecting component 50 By providing the second gap 55 on the connecting component 50 to disconnect it, the disconnected support member 20 can be prevented from being connected and conductive through the connecting component 50, thereby ensuring that the maximum continuous extension of the support member 20 is within the foreign object detection size limit during wireless charging of the electronic device.
  • the number of first gaps 22 can be one, two, three, or more. Referring to Figure 6, in one embodiment, there are two first gaps 22. Setting the number of first gaps 22 to two has two advantages: firstly, the two first gaps 22 allow the support member 20 to be broken into two relatively independent segments at the outer periphery of the first through hole 21, thereby reducing the maximum dimension of the support member 20 extending continuously along the circumference of the first through hole 21; secondly, the relatively small number of first gaps 22 means that the number of independent segments formed by the first gaps 22 is correspondingly smaller, which helps to improve the overall integrity of the support member 20.
  • a gap can be formed at the opening of the first gap 22 in the support member 20 to interrupt the continuity of the support member 20 extending circumferentially along the first through hole 21.
  • One first gap 22 is located at the connection between the support member 20 and the connecting assembly 50, and the other first gap 22 is located outside the connection between the support member 20 and the connecting assembly 50.
  • a spacer 30 is provided at the opening of the first gap 22.
  • the spacer 30 is connected to the support member 20 and is made of a non-metallic material.
  • the two relatively independent segments of the support member 20 formed by the break at the first gap 22 can be connected to each other through the spacer 30, thereby enhancing the overall integrity of the support member 20 and improving its strength.
  • the isolator 30 is made of a non-metallic material, making it non-conductive.
  • the support member 20, disconnected by the first gap 22, cannot be connected through the isolator 30, thus maintaining the maximum continuous circumferential extension of the support member 20 along the first through hole 21. This ensures that the maximum continuous extension of the support member 20 remains within the foreign object detection size limit during wireless charging of the electronic device.
  • the isolator 30 can be made of plastic, silicone, ceramic, or glass.
  • connection between the spacer 30 and the support 20 can be achieved by bonding, snap-fitting, or screwing.
  • the support 20 has multiple connecting holes 23 at the connection point with the spacer 30.
  • the spacer 30 is made of plastic, and at least partially fits into the connecting holes 23.
  • the spacer 30 can be injection molded, thereby ensuring that it is at least partially fitted into the connecting holes 23.
  • Two first gaps 22 are spaced apart on the outer periphery of the first through hole 21 of the support member 20, thereby breaking the support member 20 into two relatively independent segments at the outer periphery of the first through hole 21.
  • the specific location of the first gaps 22, located outside the connection point between the support member 20 and the connecting assembly 50, can be determined based on the foreign object detection size limit during wireless charging of the electronic device, in order to control the maximum dimension of the support member 20 continuously extending circumferentially along the first through hole 21.
  • the first through hole 21 is circular, and the line connecting the centers of the two first gaps 22 passes through the center of the first through hole 21.
  • This arrangement makes the two first gaps 22 approximately symmetrical about the center of the first through hole 21, thereby breaking the support member 20 into two segments of approximately equal size at the outer periphery of the first through hole 21, which facilitates the processing of the support member 20 and improves the appearance of the bracket assembly 100.
  • the support member 20 can be stored in the mounting hole 11 of the housing 10 to reduce the space occupied by the support member 20 and facilitate the use of the electronic device.
  • a notch 24 is provided on the side of the support member 20 near the rotating member 40 when it is stored. The notch 24 can be used for locking when the user operates the support member 20.
  • the support member 20 is stored in the mounting hole 11 of the housing 10, the distance between the support member 20 and the rotating member 40 is small.
  • the notch 24 on the side of the support member 20 and the rotating member 40 can increase the distance between the support member 20 and the rotating member 40, so that the user's fingers can at least partially insert into the notch 24, thereby facilitating the rotation operation of the support member 20.
  • the notch 24 is opened at one of the first gaps 22 of the support member 20, that is, the notch 24 is in the same position as one of the first gaps 22 located outside the connection between the support member 20 and the connecting assembly 50. This can reduce the volume of the isolation member 30 at the first gap 22 and save the material of the isolation member 30.
  • first gaps 22 there are two first gaps 22, both of which are located outside the connection between the support member 20 and the housing 10, and both first gaps 22 are provided with a spacer 30.
  • the first through hole 21 is circular, and the line connecting the centers of the two first gaps 22 passes through the center of the first through hole 21.
  • Providing two first gaps 22 allows the support member 20 to be broken into two relatively independent segments at the outer periphery of the first through hole 21, thereby reducing the maximum dimension of the support member 20 continuously extending circumferentially along the first through hole 21.
  • both first gaps 22 are located outside the connection between the support member 20 and the housing 10, no gap is needed at the connection between the support member 20 and the housing 10, simplifying the processing of the connection.
  • each of the two first gaps 22 is provided with a separator 30, so that the two relatively independent sections of the support member 20 formed by the first gaps 22 can be connected to each other through the separator 30, thereby enhancing the integrity of the support member 20.
  • the dimension of the first gap 22 along the circumference of the first through hole 21 can be relatively small.
  • the dimension of the first gap 22 along the circumference of the first through hole 21 can be much smaller than the dimension of the support member 20 along the circumference of the first through hole 21.
  • the ratio of the dimension of the first gap 22 along the circumference of the first through hole 21 to the total dimension of the support member 20 along the circumference of the first through hole 21 (when the support member 20 is divided into multiple segments by the first gap 22, the total dimension is the sum of the dimensions of each segment) is less than 0.1, so that the dimension of the first gap 22 along the circumference of the first through hole 21 is relatively small, which can reduce the impact of opening the first gap 22 on the integrity of the support member 20.
  • the dimension of the first gap 22 along the circumference of the first through hole 21 can also be relatively large.
  • An isolating member 30 is provided at the opening of the first gap 22.
  • the isolating member 30 extends circumferentially along the first through hole 21, and its dimension along the circumference of the first through hole 21 is greater than or equal to the dimension of the support member 20 continuously extending circumferentially along the first through hole 21.
  • the isolating member 30 can be a segment of a ring to fill the first gap 22 in the support member 20.
  • the size of the isolator 30 along the circumference of the first through hole 21 is greater than or equal to the size of the support 20 continuously extending along the circumference of the first through hole 21. This makes the isolator 30 have a relatively large size along the circumference of the first through hole 21.
  • the opening of the first gap 22 is larger, which can reduce the maximum size of the support 20 continuously extending along the circumference of the first through hole 21. This is beneficial to control the maximum size of the support 20 continuously extending within the limit of the foreign object detection size when wirelessly charging electronic devices.
  • the connecting assembly 50 includes a movable part 51, a fixed part 52, and a connecting shaft 53.
  • One end of the movable part 51 is connected to the support member 20, and the other end of the movable part 51 is sleeved on the connecting shaft 53.
  • One end of the fixed part 52 is sleeved on the connecting shaft 53, and the other end of the fixed part 52 is connected to the rotating member 40.
  • the movable part 51 can rotate around the connecting shaft 53 under the drive of the support member 20 to change the included angle between the support member 20 and the rotating member 40.
  • the connecting assembly 50 is relatively independent from the support member 20 and the rotating member 40, which simplifies the processing technology of the support member 20 and the rotating member 40.
  • the connecting assembly 50 has a second gap 55, the second gap 55 disconnects the movable part 51, the fixed part 52 and the connecting shaft 53 respectively. That is, the movable part 51, the fixed part 52 and the connecting shaft 53 all have a second gap 55, which can prevent the disconnected support member 20 from being connected and conductive through the connecting assembly 50.
  • the movable part 51 and the fixed part 52 are typically formed by stamping, which limits the thickness of the material.
  • the movable part 51 is connected to the support member 20, which is made of metal.
  • the support member 20 reinforces the movable part 51, ensuring its strength.
  • the fixed part 52 is connected to the rotating member 40, which is typically made of plastic. This may result in insufficient strength of the fixed part 52, affecting the reliability of the rotational connection between the support member 20 and the rotating member 40.
  • the connecting assembly 50 further includes a reinforcing member 54, which is made of metal.
  • the reinforcing member 54 is attached to one side of the fixed part 52, clamping the fixed part 52 between the reinforcing member 54 and the rotating member 40.
  • the reinforcing member 54 By attaching the reinforcing member 54 to one side of the fixed part 52, the reinforcing member 54 provides reinforcement in the thickness direction of the fixed part 52, thereby ensuring the strength of the fixed part 52.
  • the connecting component 50 has a second gap 55
  • the second gap 55 will disconnect the reinforcing member 54. That is, the reinforcing member 54 has a second gap 55, which can prevent the disconnected support member 20 from being connected and conductive through the connecting component 50.
  • the rotating component 40 and the housing 10 can be connected by an interference fit.
  • the outer periphery of the rotating component 40 has a groove, and the housing 10 is interference-fitted into the groove.
  • the bracket assembly 100 includes an elastic element 60, which is connected to the rotating component 40.
  • a plurality of positioning grooves 12 are provided on one side of the housing 10. The plurality of positioning grooves 12 are arranged at intervals along the outer periphery of the mounting hole 11, and the elastic element 60 abuts against the side of the housing 10 where the positioning grooves 12 are provided.
  • Multiple spaced positioning grooves 12 are formed on the housing 10, allowing one side of the housing 10 to form a wavy curved surface structure.
  • the rotating component 40 rotates, it drives the elastic component 60 to rotate.
  • the elastic component 60 slides on the curved surface structure, and its elastic deformation changes periodically. This causes the damping between the rotating component 40 and the housing 10 to change periodically, improving the feel when rotating the rotating component 40.
  • the periodically changing damping between the rotating component 40 and the housing 10 also produces a "clicking" sound, which helps the user perceive the rotation operation of the rotating component 40.
  • the elastic component 60 is at least partially engaged in one of the positioning grooves 12 to limit further rotation of the rotating component 40.
  • the elastic component 60 engages in the positioning groove 12, so that the groove wall of the positioning groove 12 can hinder the relative movement between the elastic component 60 and the housing 10, thereby limiting the further rotation of the rotating component 40.
  • the rotating component 40 and the housing 10 are in a relatively stable position, which makes it easier for the support component 20 to provide stable support for the electronic device.
  • the elastic portion 62 is bent, allowing the rebound force of the elastic element 60 to be adjusted by changing its length, thereby regulating the feel when rotating the rotating member 40.
  • the abutment portion 61 is a curved surface structure that matches the shape of the positioning groove 12. The abutment portion 61 protrudes towards the side of the housing 10 where the positioning groove 12 is formed. When the rotating member 40 rotates to the preset position, the outer wall of the abutment portion 61 at least partially fits against the inner wall of the positioning groove 12.
  • the contact area between the elastic member 60 and the groove wall of the positioning groove 12 can be increased. This allows the housing 10 to provide greater resistance after the rotating member 40 has rotated to its position, further improving the stability of the support member 20 in supporting the electronic device.
  • the rotating component 40 can be a one-piece structure.
  • the outer periphery of the rotating component 40 has a groove
  • the housing 10 is a separate unit, so that the housing 10 can be interference-fitted into the groove.
  • the one-piece rotating component 40 has better overall integrity.
  • the rotating component 40 is a separate structure.
  • the rotating component 40 includes a first rotating component 41 and a second rotating component 42 connected to each other.
  • the connection between the first rotating component 41 and the second rotating component 42 can be by bonding, snap-fitting, or threaded connection.
  • the first rotating component 41 is plate-shaped, and a mounting groove 411 is formed on the first rotating component 41, and the elastic component 60 is installed in the mounting groove 411.
  • the mounting hole 11 penetrates through the opposite sides of the housing 10, the first rotating component 41 is attached to one side of the housing 10, and the elastic component 60 is clamped between the first rotating component 41 and the housing 10. Installing the elastic component 60 in the mounting groove 411 makes it difficult for the elastic component 60 to shift, which can ensure the reliability of the connection between the elastic component 60 and the rotating component 40.
  • the second rotating member 42 is annular and is attached to the side of the housing 10 away from the first rotating member 41, clamping the housing 10 between the second rotating member 42 and the first rotating member 41.
  • the rotating member 40 includes the first rotating member 41 and the second rotating member 42, with the elastic member 60 clamped between the first rotating member 41 and the housing 10, and the housing 10 clamped between the second rotating member 42 and the first rotating member 41.
  • the support member 20 can change the angle between itself and the housing 10 by rotating relative to the rotating member 40.
  • the user can apply a force to the support member 20 to rotate it, making the angle between the support member 20 and the housing 10 zero degrees, thereby storing the support member 20 in the mounting hole 11, reducing the space occupied by the support member 20 and facilitating the use of the electronic device.
  • the bracket assembly 100 includes a reset member 70, which is connected to one side of the rotating member 40.
  • the connection between the reset member 70 and the rotating member 40 can be by adhesive, snap-fit, or threaded connection.
  • the reset member 70 and the support member 20 magnetically engage, causing the support member 20 to rotate and fit against the reset member 70.
  • the reset component 70 can magnetically engage with the support component 20 to rotate the support component 20 to fit with the reset component 70.
  • the support component 20 can be stored in the mounting hole 11 without user operation, which can improve the user experience.
  • the reset element 70 can be an electromagnet or a permanent magnet, allowing it to magnetically engage with the support element 20.
  • the reset element 70 includes a pad 71, magnetic elements 72, and a cover plate 73.
  • the pad 71 is connected to one side of the rotating element 40.
  • Multiple magnetic elements 72 are arranged at intervals on the pad 71.
  • the cover plate 73 is attached to the side of the magnetic elements 72 away from the pad 71.
  • Using multiple magnetic elements 72 increases the magnetic attraction between the reset element 70 and the support element 20, facilitating the magnetic engagement of the reset element 70 with the support element 20 for storage.
  • the pad 71 and the cover plate 73 are respectively attached to opposite sides of the magnetic elements 72, facilitating the integration of multiple magnetic elements 72 into a single unit and simplifying the installation of the reset element 70.
  • the bracket assembly 100 includes a decorative element 80, which is attached to one side of the rotating member 40, and a reset member 70 surrounds the outer periphery of the decorative element 80.
  • the reset member 70 may be strip-shaped.
  • the connection between the decorative element 80 and the rotating member 40 may be by adhesive, snap-fit, or threaded connection.
  • the decorative element 80 may be made of plastic and may have decorative patterns to enhance the appearance of the bracket assembly 100.

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

La présente demande se rapporte au domaine technique des supports de dispositif électronique, et concerne un ensemble de support. L'ensemble de support comprend un boîtier et un élément de support. L'élément de support est constitué de métal, relié de façon mobile à un côté du boîtier, et pourvu d'un premier trou traversant. L'élément de support est également pourvu d'au moins un premier espace sur la périphérie externe du premier trou traversant, et le premier espace permet à l'élément de support d'être déconnecté au niveau de la périphérie externe du premier trou traversant, de façon à réduire la dimension maximale de l'élément de support s'étendant en continu le long de la circonférence du premier trou traversant. Dans l'ensemble de support fourni par la présente demande, le premier espace perturbe la continuité de l'élément de support s'étendant le long de la circonférence du premier trou traversant, réduisant la dimension maximale de l'élément de support s'étendant en continu le long de la circonférence du premier trou traversant, de sorte que la dimension maximale de l'élément de support s'étendant en continu peut être maintenue dans une valeur limite correspondant à une taille de détection d'objet étranger pendant la charge sans fil d'un dispositif électronique afin d'empêcher toute interruption de charge du dispositif électronique. L'ensemble de support peut être adapté à des dispositifs électroniques dotés d'une fonction de détection d'objets étrangers de charge sans fil, ce qui permet d'améliorer la compatibilité de l'ensemble de support.
PCT/CN2025/107642 2024-08-16 2025-07-09 Ensemble de support Pending WO2026037018A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202422004783.2 2024-08-16
CN202422004783.2U CN223141965U (zh) 2024-08-16 2024-08-16 支架组件

Publications (1)

Publication Number Publication Date
WO2026037018A1 true WO2026037018A1 (fr) 2026-02-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2025/107642 Pending WO2026037018A1 (fr) 2024-08-16 2025-07-09 Ensemble de support

Country Status (2)

Country Link
CN (1) CN223141965U (fr)
WO (1) WO2026037018A1 (fr)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN223141965U (zh) * 2024-08-16 2025-07-22 安克创新科技股份有限公司 支架组件

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CN208442490U (zh) * 2018-06-28 2019-01-29 深圳市虎天翼科技有限公司 无线充电支架
CN218040930U (zh) * 2022-08-01 2022-12-13 深圳市图拉斯科技有限公司 电子设备支架和电子设备保护壳
CN219124233U (zh) * 2022-12-09 2023-06-02 深圳市蓝禾技术有限公司 支架保护壳和电子设备支架
CN219437039U (zh) * 2023-03-14 2023-07-28 深圳市图拉斯科技有限公司 支架保护壳
CN220173292U (zh) * 2023-05-22 2023-12-12 深圳市图拉斯科技有限公司 一种带支架的电子设备保护壳
CN221058340U (zh) * 2023-11-10 2024-05-31 深圳市时熙科技有限公司 电子设备保护壳
CN223141965U (zh) * 2024-08-16 2025-07-22 安克创新科技股份有限公司 支架组件

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