5G mobile phone card holder
By designing the arc structure of the sliding ring, push rod and deformable pad, combined with the vertical arrangement of the rotating ring, the problem of SIM card falling during the tray process is solved, and the rapid limit fixation effect is achieved.
Patent Information
- Application Number
- CN202421978219.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-15
AI Technical Summary
In the prior art, SIM cards are easily dropped when the tray is drawn from the inside of the mobile phone, and are easily dropped due to friction when embedded in the mobile phone, so the limit fixation cannot be quickly formed.
A 5G mobile phone card tray is designed, which drives deformable pads to fix the SIM card limit by using the arc-shaped structure of the sliding ring and push rod. Combined with the design of the rotary ring, the limit effect is further enhanced.
It realizes that the SIM card is not easy to fall during the insertion and removal process, ensuring fast limit fixation, and avoiding the risk of falling of the SIM card during the card tray process.
Smart Images

Figure CN223231176U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of telephone communications, and more specifically, to a 5G mobile phone card tray. Background Art
[0002] A 5G mobile phone is a smartphone that uses the fifth-generation communication system. A mobile phone communicates by inserting a SIM card, which requires a card tray to insert into the phone. A SIM card tray is a small, dedicated card reader that allows small cards to fit into a standard interface. This article provides technical insights into SIM card trays.
[0003] Research on mobile phone card trays found that:
[0004] At present, CN201510483715.1 in the prior art discloses a card tray and a mobile phone, which discloses a mobile phone card tray. In the use state, the SIM card is installed in the card slot, the card tray is inserted into the interior of the mobile phone, and the SIM card is then inserted into the interior of the mobile phone. When the SIM card needs to be replaced, the ejector is inserted into the ejector hole and matched with the ejector hole, and the card tray is pulled out from the interior of the mobile phone, and the SIM card is then pulled out from the interior of the mobile phone. In this way, the SIM card is installed from the mobile phone housing to the interior of the mobile phone through the card tray, which adapts to the development trend of overall integration of mobile phones.
[0005] According to the existing technology and comparative documents, the SIM card is placed inside the card tray. When the card tray is extracted from the inside of the mobile phone, the SIM card and the card tray are interlocked and docked. After the card tray is extracted from the inside of the mobile phone, the SIM card is easily dropped from the inside of the card tray due to its light weight. At the same time, the SIM card is embedded in the card tray. When the card tray is embedded in the mobile phone, the SIM card is easily dropped due to friction with the inner wall of the mobile phone, resulting in the card tray being unable to quickly form a limit fixation for the SIM card to prevent the SIM card from falling during the card tray removal process.
[0006] The utility model can mainly solve the problem that the card tray cannot quickly limit and fix the SIM card. Utility Model Content
[0007] The utility model aims to solve the problem in the background, thereby providing a 5G mobile phone card tray.
[0008] To achieve the above-mentioned purpose, the utility model provides the following technical solution: a 5G mobile phone card tray, comprising a chassis, a side panel is provided on the inner side of the chassis, and a card tray head is provided at one end of the chassis.
[0009] Furthermore, a groove is provided on the inner side of the chassis, the side panels are located on both sides of the groove, and the SIM card is placed inside the groove.
[0010] Furthermore, the inner sides of the side panels and the bottom plate are both provided with cavities, the inner sides of the side panels are connected with convex strips in a sliding nesting manner, and the convex strips are connected to the inner sides of the cavities of the side panels in a vertical sliding nesting manner.
[0011] Furthermore, the lower end of the convex strip is slidably connected to a sliding ring on the side close to the chassis, the outer side of the sliding ring is slidably connected to a track, the track is installed inside the cavity of the chassis, the sliding ring is slidably connected to a push rod on the side away from the convex strip, the push rod is slidably connected to a pad at one end away from the sliding ring, and the pad is horizontally slidably nested inside the cavity of the chassis.
[0012] Furthermore, the sliding ring and the push rod are both arranged in an arc shape, and the overall arc angle of the sliding ring and the push rod is 180°. The sliding ring and the push rod are arranged vertically as a whole, and the sliding ring slides through to the outside of the track.
[0013] Furthermore, the track is matched with the shape of the sliding ring.
[0014] Furthermore, the weight of the pad is 2-5 g greater than the weight of the convex strip, the interior of the pad is hollow, and the pad is made of a deformable material, such as rubber.
[0015] Furthermore, a cross bar is passed through the side of the cushion block close to the chassis, and a rotating ring is rotated on the inner side of the cross bar.
[0016] Furthermore, a hole is passed through the interior of the crossbar, and the rotating ring rotates inside the hole.
[0017] Furthermore, balls are provided on both sides of the rotating ring near the hole, the rotating ring is arranged vertically, the rotating ring is set in an arc shape, the arc angle is 120-150°, the rotating ring takes the ball as the midpoint, and the weight of the lower end of the rotating ring is greater than the weight of the upper end of the rotating ring.
[0018] 1. After the SIM card is squeezed to the upper end of the convex strip, since the sliding ring and the push rod are both arc-shaped, and the overall arc angle of the sliding ring and the push rod is 180 degrees, and the sliding ring and the push rod are arranged vertically as a whole, when the convex strip slides downward, the convex strip can drive the push rod to slide horizontally through the sliding ring, and the push rod can drive the pad to squeeze toward one end of the SIM card. At this time, the pad is deformed as a whole. Therefore, this type of mobile phone card tray can quickly limit and fix the SIM card when the SIM card is placed in the groove of the chassis, preventing the SIM card from falling out of the groove of the chassis during the chassis removal process;
[0019] 2. The SIM card is squeezed to one side of the cushion block. When the cushion block is deformed, since the rotating ring takes the sphere as the midpoint, the weight of the lower end of the rotating ring is greater than the weight of the lower end of the rotating ring. Therefore, after the cushion block is deformed, it is first squeezed to one side of the lower end of the rotating ring. Since the rotating ring is arranged vertically, the rotating ring can swing upward on the inner side of the cross bar, and the upper end of the rotating ring can be squeezed to the inner wall of the cushion block, so that the cushion block forms a reverse extrusion on the SIM card, which can assist the cushion block to further limit the SIM card. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0021] Figure 2 This is a schematic structural diagram of the convex strip assembly of the present utility model.
[0022] Figure 3 This is a schematic diagram of the internal structure of the cushion block of the present invention.
[0023] Figure 4 This is a schematic diagram of the crossbar assembly of the present utility model.
[0024] Figure 5 This is a schematic diagram of the crossbar structure of the present utility model.
[0025] Figure 6 This is a schematic diagram of the rotating ring structure of the present utility model.
[0026] Figure 1-6 Middle: 1- chassis, 101- side panel, 102- tray head, 2- ridge, 201- track, 202- sliding ring, 203- push rod, 3- pad, 301- cross bar, 302- rotating ring. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0028] See also Figures 1 to 6 In the embodiment of the present utility model,
[0029] Example 1: A 5G mobile phone card tray, comprising a chassis 1, a side panel 101 being provided on the inner side of the chassis 1, and a card tray head 102 being provided at one end of the chassis 1;
[0030] Wherein: the chassis 1, the inner side of the chassis 1 is provided with a groove, the side panels 101 are located on both sides of the groove, and the SIM card is placed inside the groove;
[0031] The side panels 101 and the inner sides of the chassis 1 are both provided with cavities. The inner sides of the side panels 101 are slidably nested with ridges 2, which are vertically slidably nested inside the cavities of the side panels 101.
[0032] Wherein: a groove is opened on the inner side of the chassis 1, and the SIM card is manually placed in the groove of the chassis 1. The two sides of the lower end of the SIM card are placed in the groove of the chassis 1 through the ridges 2. When the SIM card is placed on the upper end of the ridge 2, the lower end of the SIM card is squeezed to the upper end of the ridge 2. Then, hold the card holder head 102, insert one side of the chassis 1 into the inside of the mobile phone, and push the card holder head 102 to insert the chassis 1 into the inside of the mobile phone;
[0033] Example 2: Refer to the attached manual Figure 1-3 The difference between Example 2 and Example 1 is that the lower end of the ridge 2 is slidably connected to the side of the chassis 1 with a sliding ring 202, the outer side of the sliding ring 202 is slidably connected to the track 201, the track 201 is installed inside the cavity of the chassis 1, the side of the sliding ring 202 away from the ridge 2 is slidably connected to the push rod 203, the end of the push rod 203 away from the sliding ring 202 is slidably connected to the pad 3, and the pad 3 is horizontally slidably nested inside the cavity of the chassis 1;
[0034] Among them: the sliding ring 202 and the push rod 203, the sliding ring 202 and the push rod 203 are both arranged in an arc shape, and the overall arc angle of the sliding ring 202 and the push rod 203 is 180 degrees. The sliding ring 202 and the push rod 203 are arranged vertically as a whole, and the sliding ring 202 slides through to the outside of the track 201;
[0035] The sliding ring 202 and the push rod 203 are both arranged in an arc shape, and the overall arc angle of the sliding ring 202 and the push rod 203 is 180 degrees. The sliding ring 202 and the push rod 203 are arranged vertically as a whole. When the convex strip 2 slides downward, the convex strip 2 can drive the push rod 203 to slide in the horizontal direction through the sliding ring 202;
[0036] Track 201, track 201 and sliding ring 202 are matched in shape;
[0037] The pad 3 is 2-5g heavier than the convex strip 2. The pad 3 is hollow inside and is made of a deformable material, such as rubber.
[0038] The weight of the pad 3 is 2-5g greater than that of the ridge 2. When the SIM card is not squeezed to the upper end of the ridge 2, the pad 3 as a whole drives the push rod 203 and the sliding ring 202 to slide downward. At this time, the ridge 2 as a whole extends to the upper end of the inner cavity of the side plate 101, making it easy for the SIM card to be quickly squeezed to the upper end of the ridge 2.
[0039] Among them: after the SIM card is squeezed to the upper end of the convex strip 2, since the sliding ring 202 and the push rod 203 are both arranged in an arc shape, and the overall arc angle of the sliding ring 202 and the push rod 203 is 180 degrees, the sliding ring 202 and the push rod 203 are arranged vertically as a whole, when the convex strip 2 slides downward, the convex strip 2 can drive the push rod 203 to slide horizontally through the sliding ring 202, and the push rod 203 can drive the pad 3 to squeeze toward one end of the SIM card. At this time, the pad 3 is deformed as a whole. Therefore, this type of mobile phone card tray can quickly limit and fix the SIM card when the SIM card is placed in the groove of the chassis 1, thereby preventing the SIM card from falling out of the groove of the chassis 1 during the process of taking the chassis 1;
[0040] Example 3: Refer to the attached manual Figure 3-6 The difference between embodiment 3 and embodiments 1 and 2 is that a crossbar 301 is passed through the side of the pad 3 close to the chassis 1, and a rotating ring 302 is rotated on the inner side of the crossbar 301;
[0041] Among them: a crossbar 301, the interior of the crossbar 301 is penetrated by a hole, and the rotating ring 302 rotates inside the hole;
[0042] The crossbar 301 has a hole running through it, and the rotating ring 302 slides inside the hole. Figure 4 As shown;
[0043] The rotating ring 302 is provided with balls on both sides of the rotating ring 302 near the hole. The rotating ring 302 is arranged vertically and is arranged in an arc shape with an arc angle of 120-150 degrees. The rotating ring 302 takes the ball as the midpoint. The weight of the lower end of the rotating ring 302 is greater than the weight of the lower end of the rotating ring 302;
[0044] There are balls on both sides of the rotating ring 302 near the hole, which facilitate the rotating ring 302 to swing vertically. Figure 6 As shown;
[0045] Among them: the SIM card is squeezed to one side of the pad 3. When the pad 3 is deformed, since the rotating ring 302 takes the sphere as the midpoint, the weight of the lower end of the rotating ring 302 is greater than the weight of the upper end of the rotating ring 302. Therefore, after the pad 3 is deformed, it is first squeezed to one side of the lower end of the rotating ring 302. Since the rotating ring 302 is arranged vertically, the rotating ring 302 can swing upward on the inner side of the cross bar 301, and the upper end of the rotating ring 302 can be squeezed to the inner wall of the pad 3, so that the pad 3 forms a reverse extrusion on the SIM card, which can assist the pad 3 to further limit the SIM card.
[0046] The above is only a preferred embodiment of the present invention. It should be pointed out that for those skilled in the art, several modifications and improvements can be made without departing from the concept of the present invention. These should also be regarded as the scope of protection of the present invention. These will not affect the effect of the implementation of the present invention and the practicality of the patent.
Claims
1. A 5G mobile phone card tray, characterized by: The chassis (1) comprises a chassis (1), a side plate (101) is provided on the inner side of the chassis (1), and a card holder (102) is provided on one end of the chassis (1); a groove is provided on the inner side of the chassis (1), the side plates (101) are located on both sides of the groove, and the SIM card is placed inside the groove; and cavities are provided on the inner sides of the side plates (101) and the chassis (1); The convex strip (2) is slidably nested and connected to the interior of the cavity of the side plate (101).
2. The 5G mobile phone card tray according to claim 1, characterized in that: The lower end of the convex strip (2) is slidably connected to a sliding ring (202) on a side close to the chassis (1); the outer side of the sliding ring (202) is slidably connected to a track (201); the track (201) is installed inside the cavity of the chassis (1); the side of the sliding ring (202) away from the convex strip (2) is slidably connected to a push rod (203); the end of the push rod (203) away from the sliding ring (202) is slidably connected to a pad (3); the pad (3) is horizontally slidably nested inside the cavity of the chassis (1).
3. The 5G mobile phone card tray according to claim 2, wherein: The sliding ring (202) and the push rod (203) are both arranged in an arc shape, and the overall arc angle of the sliding ring (202) and the push rod (203) is 180°. The sliding ring (202) and the push rod (203) are arranged vertically as a whole, and the sliding ring (202) slides through to the outside of the track (201).
4. The 5G mobile phone card tray according to claim 3, wherein: The weight of the cushion block (3) is 2-5 g greater than the weight of the convex strip (2), and the interior of the cushion block (3) is hollow.
5. The 5G mobile phone card tray according to claim 4, characterized in that: A crossbar (301) is passed through the side of the cushion block (3) close to the chassis (1), and a rotating ring (302) is rotatably provided on the inner side of the crossbar (301).
6. The 5G mobile phone card tray according to claim 5, characterized in that: The crossbar (301) is provided with a hole therein, and the rotating ring (302) rotates inside the hole.
7. The 5G mobile phone card tray according to claim 6, characterized in that: The rotating ring (302) is provided with balls on both sides close to the hole. The rotating ring (302) is arranged vertically. The rotating ring (302) is arranged in an arc shape with an arc angle of 120-150 degrees. The rotating ring (302) takes the ball as the midpoint. The weight of the lower end of the rotating ring (302) is greater than the weight of the upper end of the rotating ring (302).
Citation Information
Patent Citations
Card support and mobile phone
CN105072225A