Electronic device and card holder assembly
Patent Information
- Application Number
- CN202522239081.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-23
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-23
AI Technical Summary
在电子设备意外丢失或遭暴力盗抢的情况下,设备内置的用户身份识别卡会随电子设备一同遗失,进而导致用户个人信息泄露与账户安全风险的增加
[0005]根据本申请技术方案的电子设备,电子设备设置有壳体和卡托组件,卡托组件包括卡托,卡托用于放置用户身份识别(Subscriber Identity Module,SIM)卡。挂接部件与卡托靠近第一开口的一侧连接,且外露于壳体,挂接部件用于安装挂绳。由于卡托设置于卡槽内,且延伸至第一开口处,所以拉动挂接部件上的挂绳,可以使卡托与卡槽分离,进而将卡托由电子设备的壳体中拉出。当电子设备受到外力拉扯时,由于挂绳可以挂套在用户手部,用户可以拉住挂绳,进而通过挂接部件拉住卡托组件,从而带动卡托从卡槽中退出。在电子设备遭到突然拉扯时,用户身份识别卡能够保持在卡托内而不随电子设备一同丢失。由于通过挂接部件可以防止用户身份识别卡随电子设备一起被夺走,因此用户也无需在电子设备丢失后单独补办用户身份识别卡,节省用户时间成本。同时,保留用户身份识别卡可以降低用户信息泄露的风险,由于电子设备在脱离用户身份识别卡后电子设备暂时无法加入移动网络,避免他人利用用户的手机号码接收短信验证码、拨打电话或使用移动数据网络进行在线交易,也降低了用户丢失的电子设备被他人利用从而进行犯罪的风险,保护了用户的财产安全,也进一步保护了用户的个人隐私。
Smart Images

Figure CN224790640U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of electronic device technology, specifically relating to an electronic device and a card tray assembly. Background Technology
[0002] In related technologies, users may face the risk of accidental loss or violent theft of their electronic devices while carrying them daily. In the event of accidental loss or violent theft, the user's built-in identification card will be lost along with the device, leading to increased risks of personal information leakage and account security breaches. Utility Model Content
[0003] This application aims to provide an electronic device and a card tray component that can keep the user's identity card in the card tray and prevent it from being lost along with the electronic device when the electronic device is suddenly pulled, thereby reducing the risk of leakage of user's personal information and account security risks.
[0004] In a first aspect, embodiments of this application provide an electronic device including a housing and a card tray assembly. The housing has a first opening and a card slot, the card slot communicating with the first opening. The card tray assembly includes a card tray and a hooking component. The card tray is disposed in the card slot and extends to the first opening. The hooking component is connected to the side of the card tray near the first opening and is exposed outside the housing. The hooking component is used to install a hanging rope.
[0005] According to the electronic device of this application, the electronic device is provided with a housing and a card tray assembly. The card tray assembly includes a card tray for holding a Subscriber Identity Module (SIM) card. A hook-on component is connected to the side of the card tray near the first opening and is exposed outside the housing. The hook-on component is used to attach a lanyard. Since the card tray is located in the card slot and extends to the first opening, pulling the lanyard on the hook-on component can separate the card tray from the card slot, thereby pulling the card tray out of the electronic device's housing. When the electronic device is pulled by an external force, since the lanyard can be hooked onto the user's hand, the user can pull the lanyard, which in turn pulls the card tray assembly through the hook-on component, thereby causing the card tray to exit from the card slot. When the electronic device is suddenly pulled, the SIM card can remain in the card tray and will not be lost with the electronic device. Since the hook-on component prevents the SIM card from being taken away with the electronic device, the user does not need to apply for a replacement SIM card after the electronic device is lost, saving the user time and costs. Meanwhile, retaining the user identification card can reduce the risk of user information leakage. Since electronic devices cannot join the mobile network temporarily after being disconnected from the user identification card, it prevents others from using the user's mobile phone number to receive SMS verification codes, make phone calls, or use the mobile data network for online transactions. It also reduces the risk that lost electronic devices may be used by others for criminal purposes, protecting the user's property security and further protecting the user's personal privacy.
[0006] Secondly, embodiments of this application provide a card holder assembly, including a card holder and a hooking component, wherein the hooking component is connected to the card holder and is used to install a hanging rope.
[0007] According to the card holder component of this application, the card is connected to a lanyard via a hook-and-loop mechanism, preventing the user's identification card from being lost along with the electronic device. Therefore, users do not need to separately replace the user's identification card after the electronic device is lost, saving them time and costs. Simultaneously, retaining the user's identification card reduces the risk of user information leakage, preventing others from using the user's mobile phone number to receive SMS verification codes, make phone calls, or use mobile data networks for online transactions. It also reduces the risk of lost electronic devices being used by others for criminal purposes, protecting the user's property and further safeguarding their personal privacy. Attached Figure Description
[0008] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which: Figure 1 This is a schematic diagram of the structure of an electronic device according to an embodiment of this application; Figure 2This is one of the partial structural schematic diagrams of an electronic device according to an embodiment of this application; Figure 3 This is a second schematic diagram of a partial structure of an electronic device according to an embodiment of this application; Figure 4 This is a front view of the card tray assembly according to an embodiment of this application; Figure 5 This is a cross-sectional view of a card tray assembly according to an embodiment of this application; Figure 6 This is a third schematic diagram of a partial structure of an electronic device according to an embodiment of this application; Figure 7 yes Figure 6 The diagram shown is a partial schematic diagram of the electronic device at point A according to an embodiment of this application; Figure 8 This is a fourth partial structural schematic diagram of an electronic device according to an embodiment of this application; Figure 9 yes Figure 8 The diagram shown is a partial schematic diagram of the electronic device at point B according to an embodiment of this application; Figure 10 This is the fifth partial structural schematic diagram of an electronic device according to an embodiment of this application; Figure 11 This is a partial structural schematic diagram of an electronic device according to an embodiment of this application; Figure 12 This is the seventh partial structural schematic diagram of an electronic device according to an embodiment of this application; Figure 13 This is the eighth partial structural schematic diagram of an electronic device according to an embodiment of this application.
[0009] Figure label: 100 Electronic device, 110 Housing, 112 First opening, 114 Card slot, 120 Card holder assembly, 122 Card holder, 124 Hanging cord, 126 Bayonet, 130 Hanging component, 132 Mounting cavity, 134 Second opening, 136 First support, 138 Second support, 140 Hanging part, 150 Snap-fit assembly, 152 Bracket, 154 First link, 156 Second link, 158 Lock, 160 First elastic element, 162 Protrusion, 170 Drive assembly, 172 Paddle, 174 Push rod, 176 Pin, 178 Second elastic element, 180 Card pin, 190 First rod body, 192 Second rod body, 194 Third rod body, 196 Fourth rod body. Detailed Implementation
[0010] The embodiments of this application will now be described in detail. Examples of these embodiments are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0011] The terms "first" and "second" in the specification and claims of this application may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise stated, "multiple" means two or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0012] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0013] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0014] The following is combined Figures 1 to 13 This application describes an electronic device 100 and a card tray assembly 120 according to embodiments thereof.
[0015] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, an electronic device 100 according to some embodiments of this application includes a housing 110 and a card tray assembly 120. The housing 110 is provided with a first opening 112 and a card slot 114. The card slot 114 communicates with the first opening 112. The card tray assembly 120 includes a card tray 122 and a hooking member 130. The card tray 122 is disposed in the card slot 114 and extends to the first opening 112. The hooking member 130 is connected to the side of the card tray 122 near the first opening 112 and is exposed outside the housing 110. The hooking member 130 is used to install a lanyard 124.
[0016] According to an embodiment of this application, the electronic device 100 includes a housing 110 and a card tray assembly 120. The card tray assembly 120 includes a card tray 122 for holding a user identification card. A hooking member 130 is connected to the side of the card tray 122 near the first opening 112 and is exposed outside the housing 110. The hooking member 130 is used to attach a lanyard 124. Since the card tray 122 is disposed within a card slot 114 and extends to the first opening 112, pulling the lanyard 124 on the hooking member 130 can separate the card tray 122 from the card slot 114, thereby pulling the card tray 122 out of the housing 110 of the electronic device 100. When the electronic device 100 is pulled by an external force, the lanyard 124 can be attached to the user's hand. The user can pull the lanyard 124, which in turn pulls the card tray assembly 120 through the hook-and-hold component 130, causing the card tray 122 to be disengaged from the card slot 114. When the electronic device 100 is suddenly pulled, the user's identification card remains in the card tray 122 and is not lost along with the electronic device 100. Because the card tray assembly 120 prevents the user's identification card from being lost with the electronic device 100, the user does not need to apply for a replacement card after the electronic device 100 is lost, saving the user time. At the same time, retaining the user's identification card reduces the risk of user information leakage. Since the electronic device 100 cannot join the mobile network temporarily after being disconnected from the user's identification card, it prevents others from using the user's mobile phone number to receive SMS verification codes, make phone calls, or use mobile data networks for online transactions. This also reduces the risk of the lost electronic device 100 being used by others for criminal purposes, protecting the user's property and further protecting the user's personal privacy.
[0017] Specifically, by using the card holder assembly 120 to prevent theft of user identification cards, there is no need to install additional protective covers or other anti-theft accessories, thus reducing usage costs.
[0018] Specifically, a user identification card and a storage card can be installed separately or simultaneously within the card holder 122.
[0019] Since the card tray 122 extends to the first opening 112 and the hook component 130 is connected to the side of the card tray 122 near the first opening 112, when the electronic device 100 is violently pulled, the card tray 122 can be detached from the electronic device 100 during the pull, preventing the user identification card or memory card in the card tray 122 from being stolen. This facilitates the user to restore communication as soon as possible after the electronic device 100 is lost, avoids the user identification card being stolen by others, and reduces the risk of the user's user identification card being maliciously stolen and used for fraud.
[0020] Specifically, the housing 110 is provided with a first opening 112 and a slot 114. Since the slot 114 is connected to the first opening 112, the first opening 112 can facilitate the installation and removal of the card holder 122.
[0021] like Figure 1 , Figure 3 and Figure 4 As shown, according to some embodiments of this application, the card tray 122 is provided with a slot 126, and the electronic device 100 also includes a card-connecting component 150, which is disposed in the housing 110. The card-connecting component 150 has a first state and a second state; wherein, when the card-connecting component 150 is in the first state, at least a portion of the card-connecting component 150 is located within the slot 126; when the card-connecting component 150 is in the second state, the card-connecting component 150 is separated from the slot 126.
[0022] In this embodiment, the card tray 122 is provided with a slot 126, and the electronic device 100 also includes a snap-fit component 150. The snap-fit component 150 is disposed in the housing 110 and has a first state and a second state. When the snap-fit component 150 is in the first state, at least a portion of the snap-fit component 150 is located within the slot 126, thereby forming a snap-fit relationship between the snap-fit component 150 and the slot 126. Through the relative snap-fit between the snap-fit component 150 and the slot 126, the card tray 122 is fixed in the card slot 114, preventing the card tray 122 from accidentally falling out of the electronic device 100 due to daily vibration, shaking, or accidental pulling.
[0023] When the card receiving component 150 is in the second state, it is separated from the card slot 126, and they are no longer locked together. When it is necessary to remove or replace the user identification card in the card tray 122, the card receiving component 150 can be switched to the second state, separating it from the card slot 126 and releasing the lock on the card tray 122, thus allowing the user to easily remove the card tray 122 from the card slot 114. Simultaneously, in the event of a violent robbery of the electronic device 100, the card receiving component 150 can also be passively switched from the first state to the second state under external force, ensuring that the card tray 122 is detached from the electronic device 100 along with the hook component 130. This prevents the card tray 122 and the user identification card mounted on it from being stolen, protecting user privacy and saving users time, as they do not need to reissue the user identification card.
[0024] like Figure 5 As shown, the bayonet 126 can be set on the side edge of the card holder 122.
[0025] Specifically, such as Figure 6 and Figure 7 As shown, the snap-fit component 150 snaps into the slot 126, so the snap-fit component 150 can lock and fix the card tray 122, which is the first state.
[0026] Specifically, such as Figure 8 and Figure 9 As shown, at this time, the external force continues to push the latching component, and the latching component 150 separates from the latch 126. Therefore, the latching component 150 and the card holder 122 are currently in the unlocked state, which is the second state.
[0027] According to some embodiments of this application, the snap-fit assembly 150 includes a bracket 152, a first connecting rod 154, a second connecting rod 156, and a latch 158. The first end of the first connecting rod 154 is rotatably connected to the bracket 152, the second connecting rod 156 is rotatably connected to the housing 110, the third end of the second connecting rod 156 is rotatably connected to the second end of the first connecting rod 154, and the latch 158 is disposed at the fourth end of the second connecting rod 156. When the snap-fit assembly 150 is in the first state, the latch 158 is disposed inside the bayonet 126; when the snap-fit assembly 150 is in the second state, the latch 158 is located outside the bayonet 126.
[0028] In this embodiment, the snap-fit assembly 150 includes a bracket 152, a first connecting rod 154, a second connecting rod 156, and a latch 158. The first end of the first connecting rod 154 is rotatably connected to the bracket 152, the second connecting rod 156 is rotatably connected to the housing 110, and the third end of the second connecting rod 156 is rotatably connected to the second end of the first connecting rod 154. The latch 158 is disposed at the fourth end of the second connecting rod 156. When the snap-fit assembly 150 is in its first state, the latch 158 is disposed within the bayonet slot 126; when the snap-fit assembly 150 is in its second state, the latch 158 is located outside the bayonet slot 126. When the bracket 152 is driven by an external force, the bracket 152 drives the first connecting rod 154 to rotate. Simultaneously, the rotation of the first connecting rod 154 drives the second connecting rod 156 to rotate, amplifying the stroke and ultimately causing the latch 158 to move. When the latching assembly 150 is in the first state, the latch 158, pushed by the second link 156, engages with the slot 126 of the tray 122, forming a mechanical interlock. This restricts the displacement of the tray 122, ensuring that the tray 122 is securely latched inside the device. When the latching assembly 150 switches to the second state, the link moves in the opposite direction, causing the latch 158 to disengage from the slot 126, releasing the constraint on the tray 122 so that it can be removed. The multi-link structure drives the latch 158, providing a stable driving force for its locking, preventing the tray 122 from falling off due to vibration or accidental drops. Furthermore, the mechanical lever action allows for switching of the latch 158's state with minimal operating force, balancing safety and ease of operation.
[0029] According to some embodiments of this application, the number of bayonets 126 is at least two, and the at least two bayonets 126 are located on both sides of the card holder 122; the first connecting rod 154 includes a first rod body 190 and a second rod body 192, the first rod body 190 is connected to one end of the bracket 152, and the second rod body 192 is connected to the other end of the bracket 152; the second connecting rod 156 includes a third rod body 194 and a fourth rod body 196, the third rod body 194 is connected to the end of the first rod body 190 away from the bracket 152, and the fourth rod body 196 is connected to the end of the second rod body 192 away from the bracket 152; the number of latches 158 is at least two, and the at least two latches 158 are respectively disposed on the at least two second connecting rods 156 and are respectively located in the at least two bayonets 126.
[0030] In this embodiment, when the latching assembly 150 is driven, at least two sets of first connecting rods 154 and second connecting rods 156 can move synchronously, causing the latches 158 on both sides to simultaneously engage or disengage from the corresponding slots 126. This ensures uniform driving of the latches 158 on both sides, and the symmetrical layout ensures that the card holder 122 is subjected to balanced forces and has a smooth movement trajectory during insertion and removal. The number of slots 126 is at least two, and can be set according to the size of the card holder 122.
[0031] At least two bayonets 126 are located on both sides of the bracket 122. The first connecting rod 154 specifically includes a first rod 190 and a second rod 192. The first rod 190 is connected to one end of the bracket 152, and the second rod 192 is connected to the other end of the bracket 152. By setting the first rod 190 and the second rod 192 to be connected to both ends of the bracket 152 respectively, the structural stability is ensured while the transmission efficiency is improved.
[0032] Meanwhile, the second link 156 also specifically includes a third link 194 and a fourth link 196. The third link 194 is connected to the end of the first link 190 away from the bracket 152, and the fourth link 196 is connected to the end of the second link 192 away from the bracket 152. The third link 194 and the fourth link 196 are respectively connected to the two ends of the bracket 152. Therefore, when the snap-fit assembly 150 is driven, the transmission structure of the first link 190, the second link 192, the third link 194 and the fourth link 196 can drive the latches 158 on both sides to simultaneously engage or disengage from the corresponding latches 126, thereby achieving uniform driving of the latches 158 on both sides.
[0033] The number of latches 158 is at least two, and each of the at least two latches 158 is respectively disposed in at least two second links 156 and located in at least two latches 126. This prevents the latch 122 from shaking, tilting, or jamming due to unilateral force within the latch slot 114. Furthermore, the design of at least two latches 158 provides a redundant locking structure; even if a single latch 158 or link fails unexpectedly, the other side can still provide a certain holding force, improving the reliability and safety of the entire locking assembly 150.
[0034] According to some embodiments of this application, the snap-fit assembly 150 further includes a first elastic member 160, the two ends of the first elastic member 160 being connected to the first rod 190 and the second rod 192 respectively, and / or the two ends of the first elastic member 160 being connected to the third rod 194 and the fourth rod 196 respectively; wherein, when the snap-fit assembly 150 is in the second state, the first elastic member 160 is in a compressed state.
[0035] In this embodiment, the latching assembly 150 further includes a first elastic element 160. The two ends of the first elastic element 160 are connected to a first rod 190 and a second rod 192, respectively. When the latching assembly 150 is in the second state, the first elastic element 160 is in a compressed state. When the latching assembly 150 is switched from the first state to the second state, the current latching assembly 150 is unlocked relative to the card holder 122. The first rod 190 and the second rod 192 can compress the two ends of the first elastic element 160 through force transmission, causing the first elastic element 160 to deform and store elastic potential energy. The elastic potential energy of the first elastic element 160 attempts to push the first rod 190 and the second rod 192 to move, thus providing a tendency to reset towards the first state. When switching from the second state to the first state, the first elastic element 160 can complete the reset, facilitating the re-locking of the latching assembly 150 and the card holder 122.
[0036] Alternatively, the two ends of the first elastic element 160 can be connected to the third rod 194 and the fourth rod 196 respectively. When the locking assembly 150 is switched from the first state to the second state, the current locking assembly 150 is in the unlocked state relative to the card tray 122. The third rod 194 and the fourth rod 196 compress the first elastic element 160 through force transmission, causing it to store elastic potential energy. At this time, the elastic potential energy of the first elastic element 160 will attempt to push the third rod 194 and the fourth rod 196 to move, thereby providing a tendency to reset towards the first state. This realizes the automatic reset function of the locking assembly 150. Once the operating force applied to the bracket 152 is released, the first elastic element 160 can drive the latch 158 to move by means of its elastic potential energy, so that at least two latches 158 can move automatically and synchronously, and then re-lock into the slot 126 of the card tray 122, ensuring the timeliness and reliability of locking the card tray 122, and effectively preventing the card tray 122 from being loosely locked or accidentally falling off due to forgetting to manually reset. Meanwhile, the first elastic element 160 is connected to the first rod 190 and the second rod 192 in a symmetrical connection manner, or the first elastic element 160 is connected to the third rod 194 and the fourth rod 196, that is, connected between the two first connecting rods 154 or the second connecting rod 156. This helps to maintain the synchronicity and balance of the movement of the connecting rods on both sides, improves the smoothness of operation and the service life of the entire mechanism.
[0037] According to some embodiments of this application, the electronic device 100 further includes a driving component 170 disposed in the housing 110 for driving the snap-fit component 150 to switch between a first state and a second state.
[0038] In this embodiment, the electronic device 100 further includes a driving component 170, which is disposed in the housing 110 and used to drive the card-connecting component 150 to switch between a first state and a second state. The driving component 170 can lock and unlock the card tray 122. When the electronic device 100 is not forcibly seized, the driving component 170 drives the card-connecting component 150 to the first state, locking the card tray 122 relative to the housing 110 of the electronic device 100, thus preventing the card tray 122 from separating from the electronic device 100. Simultaneously, when the user replaces the user identification card in the card tray 122, the driving component 170 can unlock the card tray 122, facilitating user use and ensuring the security of the user identification card within the card tray 122.
[0039] According to some embodiments of this application, the drive assembly 170 includes a paddle 172 and a push rod 174. The paddle 172 is rotatably connected to the housing 110. The first end of the paddle 172 abuts against the side of the bracket 152 away from the card holder 122. The push rod 174 is disposed in the housing 110 and connected to the second end of the paddle 172. The push rod 174 is used to push the paddle 172 to rotate relative to the housing 110. The paddle 172 is used to push the bracket 152 to move. The bracket 152 is used to drive the latch 158 to enter or disengage from the slot 126.
[0040] In this embodiment of the application, the drive assembly 170 includes a paddle 172 and a push rod 174. The paddle 172 is rotatably connected to the housing 110. The first end of the paddle 172 abuts against the side of the bracket 152 away from the card holder 122. The bracket 152 can be driven by the paddle 172 to drive the card assembly 150.
[0041] A push rod 174 is disposed on the housing 110 and connected to the second end of the lever 172. The push rod 174 can further drive the lever 172, which in turn drives the bracket 152. Specifically, the push rod 174 is used to push the lever 172 to rotate relative to the housing 110, the lever 172 is used to push the bracket 152 to move, and the bracket 152 is used to drive the latch 158 to enter or disengage from the bayonet 126. When the user operates the push rod 174 to move linearly, it pushes the second end of the lever 172, causing it to rotate around a pivot point on the housing 110 as a lever. This, in turn, uses the first end of the lever 172 to push the bracket 152 to move. After being subjected to force, the bracket 152 drives the first connecting rod 154 and the second connecting rod 156 to move, thereby converting the external force acting on the push rod 174 into a switching between the locking and unlocking states of the card holder 122. Multi-stage transmission enables rapid unlocking and locking of the card tray 122, avoiding jamming during operation, improving the smoothness, accuracy and user experience of operation, while ensuring the reliability of the state transition of the latch 158, achieving stable locking of the card tray 122, and convenient retrieval and placement of the card tray 122.
[0042] like Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, according to some embodiments of this application, the mounting component 130 is provided with a mounting cavity 132 and a second opening 134. The mounting cavity 132 communicates with the second opening 134, and the second opening 134 faces the push rod 174. The drive assembly 170 also includes a push pin 176. At least a portion of the push pin 176 is disposed in the mounting cavity 132 and passes through the second opening 134. The push pin 176 abuts against the push rod 174.
[0043] In this embodiment, by pushing the ejector pin 176, which is disposed in the mounting cavity 132 and passes through the second opening 134, the ejector pin 176 can transmit the thrust to the push rod 174, thereby triggering the drive assembly 170 to move. When the user needs to switch the state of the card tray 122, the structure of the ejector pin 176 triggering the drive assembly 170 to move facilitates user operation, simplifies the appearance design, maintains the integrity and aesthetics of the housing 110, and also improves the dustproof and waterproof capabilities of the electronic device 100.
[0044] Specifically, the ejector pin 176 can be composed of a flexible joint connection structure. The ejector pin 176 and the push rod 174 can be either abutting or interconnected.
[0045] According to some embodiments of this application, the bracket 152 is provided with a protrusion 162, which protrudes from the card holder 122 in a direction close to the lever 172; the first end of the lever 172 abuts against the protrusion 162.
[0046] In this embodiment, the bracket 152 is provided with a protrusion 162, which protrudes from the card holder 122 towards the lever 172; the first end of the lever 172 abuts against the protrusion 162. In use, the lever 172 can first abut against the protrusion 162, thereby driving the bracket 152 to drive the locking assembly 150. The lever 172 then abuts against the card holder 122, completing the drive to pop out the card holder 122, making it easy to remove the card holder 122.
[0047] According to some embodiments of this application, the third end to the fourth end of the second link 156 extends obliquely away from the card holder 122.
[0048] In this embodiment, the third to fourth ends of the second link 156 extend at an angle away from the card holder 122. By designing the second link 156 to extend at an angle away from the card holder 122 from its connection end with the first link 154 to the end where the latch 158 is installed, the movement trajectory of the latch 158 is optimized. When the hooking component 130 of the card holder 122 is subjected to a large external force, the angled second link 156 can release the restriction on the card holder 122 under the action of a large external force, thereby preventing the card holder 122 from being lost along with the electronic device 100. This saves users time and reduces the risk of user information leakage, and also facilitates the reinstallation of the card holder 122.
[0049] According to some embodiments of this application, the electronic device 100 can perform anti-theft measures for user identification cards through the card tray component 120. Specifically, it can also simulate various scenarios of accidental removal of user identification cards and then use machine learning algorithms to analyze the data generated by the phone's internal sensors under different scenarios. Specific sensors include accelerometers, light sensors, gyroscopes, etc. Scenarios can include the phone falling from a height, being taken out of a pocket or handbag, being stolen, etc. Machine learning algorithms are used to analyze the data generated by the phone's internal sensors under different scenarios to determine whether the protection mechanism is triggered, providing a basis for software decision-making.
[0050] In daily use, such as Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 and Figure 11 As shown, when the user identification card is removed, the user can push the hook part 140 to move. Under the action of the hook part 140, the pin 176 passes through the second opening 134 and pushes the push rod to move. The push rod then pushes the lever 172, causing the other end of the lever 172 to move in the direction of disengaging from the card tray 122 through leverage, thereby driving the bracket 152 to move. The movement of the bracket 152, the first connecting rod 154, and the second connecting rod 156 causes the latch 158 to separate from the slot 126, thereby unlocking the card tray 122. As the lever 172 continues to push, the card tray 122 is pushed out of the phone body, making it easy for the user to remove.
[0051] When installing a user identity card (SIM card), the user inserts the SIM card into the SIM card tray 122 and then reinstalls the SIM card tray 122 back into the SIM card slot 114. The SIM card tray 122 contacts the inclined surface of the latch 158, pushing the latch 158 outward. After the SIM card tray 122 is fully pushed into the phone, the latch 158 resets and locks the SIM card tray 122 under the action of the first elastic element 160, ensuring that the SIM card tray 122 is securely installed.
[0052] In the event of an accidental drop of the electronic device 100, the material of the latch 158 is of high strength and can withstand the impact of the accidental drop, ensuring that the latch 158 will not be accidentally triggered by daily use or minor drops.
[0053] The SIM card protection mechanism in the SIM card tray 122: When the electronic device 100 is subjected to violent theft, the lanyard 124 connects to the attachment part 130 of the SIM card tray 122, facilitating the separation of the SIM card tray 122 from the card slot 114. In cases of violent theft, such as a drive-by robbery, the material of the latch 158 automatically fails due to stress exceeding the design threshold, causing the SIM card tray assembly 120 to detach from the phone, allowing the user to retain their SIM card. This reduces the cost of replacing the SIM card and recovering data for users who have lost their SIM card. Simultaneously, the electronic device 100 can be set to "lost mode," restricting all operations. To restore normal mode, the user must present valid identification (such as an ID card, proof of purchase, physical SIM card, or account password) at an authorized service center to verify their identity before unlocking. This prevents criminals from forcing users to unlock their phones, protecting users' virtual assets and privacy, and reducing economic and data losses.
[0054] Specifically, hardware and software can be combined to prevent theft of user identification cards. By combining data from internal sensors of the electronic device 100, such as acceleration, light changes, gyroscope signals, and GPS signals, an abnormal state recognition model can be built to accurately identify whether the user is in a theft scenario, providing a basis for subsequent protective measures. Once the electronic device 100 is detected to be in lost mode, it can only be restored to normal use after a strict verification process, preventing criminals from coercing the victim to unlock it. The verification process limits the possibility of normal transactions, blocks illegal resale, and increases the probability of the electronic device being recovered. After loss, the electronic device 100 must be verified by the original cardholder or at a service center to be usable again.
[0055] Specifically, such as Figure 7 As shown, when the lever 172 is pushed, the lever 172 first pushes the protrusion 162, shortening the distance between the plane indicated by arrow D1 and the plane indicated by arrow D2, as... Figure 9 As shown, after the paddle 172 contacts the card holder 122 during the pushing process, that is, after the plane indicated by arrow D1 contacts the plane indicated by arrow D2, the card holder 122 is driven.
[0056] like Figure 8 As shown, during the pushing of the paddle 172, the locking assembly 150 can move along the directions shown in D3 and D4 to unlock the card tray 122.
[0057] like Figure 12 and Figure 13 As shown, the electronic device 100 can also use the SIM card ejector tool 180 to push the push rod 174, which in turn pushes the bracket 152, thereby unlocking and releasing the card tray 122, which is convenient and quick. After the SIM card ejector tool 180 pushes the push rod 174, it pushes the lever 172 to move in the direction shown in D5, and the latch 158 moves in the direction shown in D6 to unlock the card tray 122. After unlocking, the card tray 122 can be pulled out in the direction shown in D7.
[0058] Specifically, electronic device 100 can be a mobile phone.
[0059] Specifically, such as Figure 13 As shown, the first rod 190 and the third rod 194 are located on the same side, and the second rod 192 and the fourth rod 196 are located on the same side.
[0060] like Figure 4 , Figure 5 and Figure 6 As shown, a card holder assembly 120 according to some embodiments of this application includes a card holder 122 and a hooking member 130. The hooking member 130 is connected to the card holder 122 and is used to install a hanging rope 124.
[0061] In this embodiment, the lanyard 124 is connected to the card holder assembly 120 via the hook component 130, preventing the user identification card from being lost along with the electronic device 100. Therefore, the user does not need to separately replace the user identification card after the electronic device 100 is lost, saving the user time. Simultaneously, retaining the user identification card reduces the risk of user information leakage, preventing others from using the user's mobile phone number to receive SMS verification codes, make phone calls, or use mobile data networks for online transactions. It also reduces the risk of the lost electronic device 100 being used by others for criminal purposes, protecting the user's property and further safeguarding the user's personal privacy.
[0062] According to some embodiments of this application, the mounting component 130 is provided with a mounting cavity 132 and a second opening 134, the mounting cavity 132 and the second opening 134 are in communication; the card holder assembly 120 also includes a pin 176, at least a portion of the pin 176 is disposed in the mounting cavity 132 and passes through the second opening 134.
[0063] In this embodiment, the mounting component 130 is provided with a mounting cavity 132 and a second opening 134, the mounting cavity 132 communicating with the second opening 134; the card tray assembly 120 also includes a push pin 176, at least a portion of which is disposed within the mounting cavity 132 and passes through the second opening 134. By pushing the push pin 176 disposed within the mounting cavity 132 and passing through the second opening 134, the push pin 176 can transmit a pushing force to the push rod 174, thereby triggering the drive assembly 170 to move. When the user needs to switch the state of the card tray 122, the structure of the push pin 176 triggering the drive assembly 170 to move facilitates user operation, simplifies the appearance design, maintains the integrity and aesthetics of the housing 110, and also improves the dustproof and waterproof capabilities of the electronic device 100.
[0064] According to some embodiments of this application, the mounting component 130 includes a first support portion 136, a second support portion 138, a mounting portion 140, and a second elastic member 178. The first support portion 136 is connected to the card holder 122; the second support portion 138 is connected to the card holder 122; the mounting cavity 132 is disposed in the second support portion 138; both ends of the mounting portion 140 are slidably connected to the first support portion 136 and the second support portion 138, respectively; and the mounting portion 140 is connected to the ejector pin 176 for driving the ejector pin 176 to slide relative to the second support portion 138. The second elastic member 178 is disposed in the mounting portion 140; one end of the second elastic member 178 is connected to the mounting portion 140, and the other end of the second elastic member 178 is connected to the first support portion 136.
[0065] In this embodiment, the mounting component 130 includes a first support portion 136, a second support portion 138, and a mounting portion 140. The first support portion 136 is connected to the card holder 122, and the second support portion 138 is also connected to the card holder 122. A mounting cavity 132 is disposed in the second support portion 138. Both ends of the mounting portion 140 are slidably connected to the first support portion 136 and the second support portion 138, respectively, and the mounting portion 140 is connected to the ejector pin 176 for driving the ejector pin 176 to slide relative to the second support portion 138. The mounting cavity 132 is disposed within the second support portion 138 and can accommodate the ejector pin 176, reducing structural volume and achieving a lightweight design. The two ends of the mounting portion 140 are slidably connected to the two support portions, allowing the mounting portion 140 to slide when subjected to external force, thereby driving the ejector pin 176 to slide and triggering the drive component 170, improving structural stability and ease of operation. The mounting component 130 also includes a second elastic element 178 disposed within the mounting portion 140. The second elastic element 178 deforms as the mounting portion 140 moves. One end of the second elastic element 178 is connected to the mounting portion 140, and the other end is connected to the first support portion 136. Since the second elastic element 178 deforms after the ejector pin 176 is driven to move by the mounting portion 140, the elastic force generated by the recovery of the deformation of the second elastic element 178 can drive the mounting portion 140 to reset, improving operational convenience. The elastic potential energy of the second elastic element 178 can drive the ejector pin 176 to reset, thus ensuring convenient operation when reinstalling the card holder 122 back into the card slot 114.
[0066] The connecting part 140 can be a hollow tubular structure, and the second elastic element 178 can directly abut against the ejector pin 176.
[0067] Specifically, both the first elastic element 160 and the second elastic element 178 are springs.
[0068] Specifically, the mounting portion 140 may be provided with auxiliary textures to facilitate manual pushing of the mounting portion 140 by the user. In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that the specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0069] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.
Claims
1. An electronic device, characterized in that, include: A housing having a first opening and a slot, the slot communicating with the first opening; A card tray assembly, comprising a card tray and a hooking component, wherein the card tray is disposed within the card slot and extends to the first opening, and the hooking component is connected to the side of the card tray near the first opening and is exposed outside the housing, and the hooking component is used to install a hanging rope.
2. The electronic device according to claim 1, characterized in that, The card tray is provided with a slot, and the electronic device further includes: A snap-fit assembly is disposed on the housing, and the snap-fit assembly has a first state and a second state; Wherein, when the snap-fit component is in the first state, at least a portion of the snap-fit component is located within the bayonet slot; When the snap-fit component is in the second state, the snap-fit component is separated from the bayonet.
3. The electronic device according to claim 2, characterized in that, The snap-fit assembly includes: support; The first link, the first end of the first link being rotatably connected to the bracket; The second link is rotatably connected to the housing, and the third end of the second link is rotatably connected to the second end of the first link; A latch, wherein the latch is disposed at the fourth end of the second connecting rod; When the snap-fit component is in the first state, the latch is disposed inside the bayonet slot; When the latching component is in the second state, the latch is located outside the bayonet.
4. The electronic device according to claim 3, characterized in that, The number of the bayonet slots is at least two, and at least two of the bayonet slots are located on both sides of the card tray; The first connecting rod includes a first rod body and a second rod body, wherein the first rod body is connected to one end of the bracket, and the second rod body is connected to the other end of the bracket; The second link includes a third link and a fourth link. The third link is connected to the end of the first link away from the bracket, and the fourth link is connected to the end of the second link away from the bracket. The number of the latches is at least two, and the at least two latches are respectively disposed on at least two of the second connecting rods and are respectively located in at least two of the bayonets.
5. The electronic device according to claim 4, characterized in that, The snap-fit assembly also includes: A first elastic element, the two ends of which are respectively connected to the first rod and the second rod, and / or the two ends of which are respectively connected to the third rod and the fourth rod; When the snap-fit assembly is in the second state, the first elastic element is in a compressed state.
6. The electronic device according to claim 3, characterized in that, Also includes: A driving component, disposed in the housing, is used to drive the snap-fit component to switch between the first state and the second state.
7. The electronic device according to claim 6, characterized in that, The driving component includes: A lever, which is rotatably connected to the housing, with its first end abutting against the side of the bracket away from the card holder; A push rod, which is disposed in the housing and connected to the second end of the paddle; The push rod is used to push the paddle to rotate relative to the housing, the paddle is used to push the bracket to move, and the bracket is used to drive the latch to enter or disengage from the bayonet.
8. The electronic device according to claim 7, characterized in that, The mounting component is provided with a mounting cavity and a second opening, the mounting cavity communicating with the second opening, the second opening facing the push rod, and the drive assembly further includes: The ejector pin, at least a portion of which is disposed within the mounting cavity and passes through the second opening, abuts against the push rod.
9. The electronic device according to claim 7, characterized in that, The bracket is provided with a protrusion that protrudes from the card holder in a direction close to the lever; The first end of the lever abuts against the protrusion.
10. The electronic device according to any one of claims 3 to 9, characterized in that, The third end to the fourth end of the second link extend at an angle away from the card holder.
11. A card tray assembly, characterized in that, include: Cato; A hook-on component, which is connected to the card holder, is used to install a hanging rope.
12. The card tray assembly according to claim 11, characterized in that, The mounting component is provided with a mounting cavity and a second opening, and the mounting cavity is in communication with the second opening; The card holder assembly also includes a pin, at least a portion of which is disposed within the mounting cavity and passes through the second opening.
13. The card tray assembly according to claim 12, characterized in that, The mounting component includes: A first support portion, which is connected to the card holder; A second support portion is connected to the card holder, and the mounting cavity is disposed in the second support portion; The attachment part has two ends that are slidably connected to the first support part and the second support part, respectively, and the attachment part is connected to the ejector pin for driving the ejector pin to slide relative to the second support part; The second elastic element is disposed in the hook part, one end of the second elastic element is connected to the hook part, and the other end of the second elastic element is connected to the first support part.