A streaming player protection device

By employing a hinged design and a snap-fit ​​assembly for dual-point locking, the issues of locking reliability and unlocking operation experience in the protection device for streaming media players are resolved, achieving the effects of simplified operation, reduced costs, and enhanced protection.

CN224538453UActive Publication Date: 2026-07-21SHENZHEN SIBAICHUANG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SIBAICHUANG TECHNOLOGY CO LTD
Filing Date
2025-06-25
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Traditional streaming media player protection devices suffer from problems such as insufficient locking reliability, poor unlocking experience, and low structural redundancy. These include easy lock detachment, difficult unlocking, and loss of function due to foreign object intrusion.

Method used

The design features a hinged first and second housing, with the buckle assembly and the card hole assembly working together. Combined with the unlocking component and the unlocking protrusion, it enables quick locking and simplified unlocking operations. The rigid engagement and dual-point locking of the buckle assembly and the card hole assembly reduce the probability of accidental touches and provide tactile feedback.

Benefits of technology

It improves locking reliability, simplifies operation procedures, reduces production costs, enhances product applicability and protective capabilities, and prevents damage from dust and liquids.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a streaming media player protection device, include: first casing, second casing and open lock spare, one end of first casing and one end of second casing articulate, the other end of first casing is equipped with buckle assembly, the other end of second casing is equipped with card hole subassembly, when buckle assembly is configured in card hole subassembly, first casing is connected with second casing and is surrounded and is formed with the closed space for accommodating streaming media player, open lock spare sets up in the side of second casing away from first casing, open lock spare includes open lock convex, open lock convex is used for moving to card hole subassembly until the buckle assembly of opening card hole subassembly in configuration, to open first casing and second casing, the utility model discloses through first casing and second casing articulate and realize the rotation open and close, and first casing and second casing are locked through buckle assembly and card hole subassembly cooperation between the quick realization, and simplify the operation process, through open lock convex and open buckle assembly, need not complex operation to open and close.
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Description

Technical Field

[0001] This utility model belongs to the field of streaming media equipment technology, and specifically relates to a protective device for a streaming media player. Background Technology

[0002] Traditional media player protection devices often suffer from the following technical drawbacks in their housing locking structures: 1. Insufficient locking reliability: Single-point latch designs are prone to accidental disengagement due to vibration or impact, and have a high risk of failure after wear; protruding latches are prone to breakage after long-term use, leading to protection failure. 2. Poor unlocking experience: The housing needs to be pried open forcefully, which is laborious for users and can easily damage the latch due to uneven force; there is a lack of clear unlocking feedback, and the closed state is difficult to judge intuitively. 3. Low structural redundancy: Traditional latch-hole designs are single-fit with no fault tolerance; foreign object intrusion or unilateral wear can lead to loss of overall function; the mold requires a complex slider mechanism to form the protruding latch, resulting in high production costs and short lifespan. Utility Model Content

[0003] To address the aforementioned issues, the primary objective of this invention is to provide a streaming media player protection device that solves the technical problems of insufficient locking reliability, poor unlocking operation experience, and low structural redundancy.

[0004] To achieve the above objectives, the technical solution of this utility model is as follows:

[0005] This utility model provides a protective device for a streaming media player, comprising: a first housing, a second housing, and a locking component;

[0006] One end of the first housing is hinged to one end of the second housing; the other end of the first housing is provided with a snap-fit ​​assembly; the other end of the second housing is provided with a snap-hole assembly.

[0007] When the buckle assembly is disposed on the card hole assembly, the first housing and the second housing are connected and enclosed to form a sealed space for accommodating the streaming media player;

[0008] The unlocking component is disposed on the side of the second housing away from the first housing; the unlocking component includes an unlocking protrusion; the unlocking protrusion is used to move toward the latch assembly until it opens the latch assembly disposed within the latch assembly, so as to open the first housing and the second housing.

[0009] Furthermore, the latch assembly includes a first latch and a second latch, which extend from the first housing toward the second housing and are bent to form the first latch and the second latch. The first latch and the second latch are spaced apart to form an movable space. The unlocking protrusion is used to insert into the movable space to open the latch assembly disposed within the latch hole assembly.

[0010] Furthermore, the card slot assembly includes a card slot and a stop block. The card slot penetrates the second housing, and the stop block is adapted to the card slot and spaced apart to form a first card slot and a second card slot.

[0011] When the buckle assembly is disposed on the card hole assembly, the first buckle engages with the first card hole, and the second buckle engages with the second card hole.

[0012] Furthermore, the side of the stop block away from the first housing includes a first contact surface and inclined surfaces respectively connected to opposite sides of the first contact surface; the first contact surface and the two inclined surfaces are connected to form an inverted trapezoidal structure; the side of the stop block closer to the first housing includes a second contact surface; any one of the first contact surface, the inclined surfaces, and the second contact surface is located inside the first card hole and the second card hole.

[0013] Furthermore, the first buckle has a first engaging portion recessed on the side near the second buckle, and the second buckle has a second engaging portion recessed on the side near the first buckle.

[0014] When the buckle assembly is disposed on the card hole assembly, either the first engaging portion or the second engaging portion engages with the stop block; and either the first engaging portion or the second engaging portion contacts the inclined surface.

[0015] Furthermore, the first buckle includes a first extension and a first bend, the first extension being formed by extending from the first housing toward the second housing, and the first bend being formed by bending from the first extension.

[0016] The second buckle includes a second extension and a second bend, the second extension being formed by extending from the first housing toward the second housing, and the second bend being formed by bending from the second extension.

[0017] The unlocking protrusion is used to open the first extension and the second extension until they abut against the stop block, so as to release the first engaging part and the second engaging part.

[0018] Furthermore, when the unlocking protrusion opens the latch assembly, the unlocking protrusion opens the movable space until the unlocking protrusion and the side of the stop block away from the first housing abut against each other, and the first engaging part and the second engaging part disengage from the stop block, so that the latch assembly disengages from the latch hole assembly.

[0019] Furthermore, the cross-section of the unlocking protrusion is rhomboid or elliptical. In the vertical direction from the first housing to the second housing, the unlocking protrusion has a long diagonal dimension and a short diagonal dimension. The first buckle and the second buckle are spaced apart by an inner diameter dimension, wherein the long diagonal dimension is greater than or equal to the inner diameter dimension, and the short diagonal dimension is less than or equal to the inner diameter dimension.

[0020] Furthermore, either the first housing or the second housing is provided with a heat dissipation hole, which is connected to the sealed space.

[0021] Furthermore, the second housing has a groove on the side facing the first housing, the groove being used to configure a post head, the post head being used to connect to a fixing post located outside the streaming media player protection device.

[0022] Compared with the prior art, this application offers the following advantages: It comprises a first housing, a second housing, and an unlocking component; one end of the first housing is hinged to one end of the second housing; the other end of the first housing is provided with a latching assembly, and the other end of the second housing is provided with a locking hole assembly; when the latching assembly is configured in the locking hole assembly, the first housing and the second housing are connected and enclosed to form a sealed space for accommodating a streaming media player; the unlocking component is located on the side of the second housing away from the first housing; the unlocking component includes an unlocking protrusion; the unlocking protrusion is used to move toward the locking hole assembly until it opens the latching assembly configured within the locking hole assembly, thereby opening the first housing and the second housing. The hinged connection between the first and second housings enables rotational opening and closing; the latching assembly and locking hole assembly facilitate quick locking between the first and second housings, simplifying the operation process; pushing the unlocking protrusion to open the latching assembly allows for opening and closing without complex operations, improving the user experience. The rigid engagement of the latching assembly and the locking hole assembly ensures that the connection between the first and second housings is not easily accidentally dislodged during vibration or drops. The unlocking mechanism is located on the side of the second housing away from the first housing, reducing the probability of accidental touches. The unlocking protrusion provides clear anti-accidental touch design, such as tactile feedback, facilitating blind operation and conforming to ergonomic design. Furthermore, opening or locking can be achieved using only the first housing and its latching assembly, the second housing and its latching assembly, and the unlocking mechanism and its unlocking protrusion, reducing the number of parts and lowering production costs. In addition, the sealed space formed by the first and second housings prevents damage to the streaming media player from dust, liquids, or physical impacts. Adjusting the internal dimensions of this sealed space allows for compatibility with streaming media players of different sizes, enhancing product versatility. Attached Figure Description

[0023] Figure 1 This is a three-dimensional schematic diagram of a protective device for a streaming media player according to this utility model.

[0024] Figure 2This is a top view of a protective device for a streaming media player according to this utility model.

[0025] Figure 3 yes Figure 2 A cross-sectional view of a protective device for a streaming media player.

[0026] Figure 4 This is a structural schematic diagram of the first housing and the snap-fit ​​assembly.

[0027] Figure 5 This is a structural schematic diagram of the second housing and the card slot assembly.

[0028] Figure 6 yes Figure 5 A structural schematic diagram of the second housing and the card slot assembly from another perspective.

[0029] Figure 7 yes Figure 6 Top view of the second housing and the card slot assembly.

[0030] Figure 8 yes Figure 7 Cross-sectional view along the AA direction.

[0031] In the figure: 10, first housing; 100, buckle assembly; 110, first buckle; 111, first engaging portion; 112, first extension portion; 113, first bending portion; 120, second buckle; 121, second engaging portion; 122, second extension portion; 123, second bending portion; 130, movable space; 20, second housing; 200, card hole assembly; 210, card slot; 211, first card hole; 212, second card hole; 220, stop block; 221, inclined surface; 222, first contact surface; 223, second contact surface; 30, unlocking component; 300, unlocking protrusion; 1, sealed space; 2, heat dissipation hole; 230, groove. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0033] To achieve the above objectives, the technical solution of this utility model is as follows:

[0034] See Figures 1-8As shown, this utility model provides a protective device for a streaming media player, including: a first housing 10, a second housing 20, and an unlocking member 30. One end of the first housing 10 is hinged to one end of the second housing 20; the other end of the first housing 10 is provided with a snap-fit ​​assembly 100; the other end of the second housing 20 is provided with a locking hole assembly 200; when the snap-fit ​​assembly 100 is disposed in the locking hole assembly 200, the first housing 10 and the second housing 20 are connected and enclosed to form a sealed space 1 for accommodating the streaming media player; the unlocking member 30 is disposed on the side of the second housing 20 away from the first housing 10; the unlocking member 30 includes an unlocking protrusion 300; the unlocking protrusion 300 moves toward the locking hole assembly 200 until it opens the snap-fit ​​assembly 100 disposed in the locking hole assembly 200, so as to open the first housing 10 and the second housing 20.

[0035] Therefore, the streaming media player protection device provided by this utility model achieves rotational opening and closing by hinged connection between one end of the first housing 10 and one end of the second housing 20. The other end of the first housing 10 and the other end of the second housing 20 are quickly locked together through the cooperation of the snap-fit ​​assembly 100 and the locking hole assembly 200, simplifying the operation process. Furthermore, by pushing the unlocking protrusion 300 to open the snap-fit ​​assembly 100, opening and closing can be achieved without complex operations, improving the user experience. The rigid engagement of the snap-fit ​​assembly 100 and the locking hole assembly 200 ensures that the connection between the first housing 10 and the second housing 20 is not easily accidentally disengaged during vibration or drops. Additionally, the unlocking member 30 is located on the side of the second housing 20 away from the first housing 10, reducing the probability of accidental touch. The unlocking protrusion 300 provides a clear anti-accidental touch design, such as tactile feedback, facilitating blind operation and conforming to ergonomic design. Meanwhile, this streaming media player protection device only requires a first housing 10 and its latching assembly 100, a second housing 20 and its latching hole assembly 200, and an unlocking component 30 and its unlocking protrusion 300 to achieve the need for opening or locking, reducing the number of parts and lowering production costs. Furthermore, the closed enclosure 1 formed by the first housing 10 and the second housing 20 prevents damage to the streaming media player from dust, liquids, or physical impacts. Adjusting the internal dimensions of the enclosure 1 allows for compatibility with streaming media players of different sizes, enhancing product versatility.

[0036] Furthermore, the latch assembly 100 includes a first latch 110 and a second latch 120, which extend from the first housing 10 toward the second housing 20 and are bent to form the first latch 110 and the second latch 120. A movable space 130 is formed between the first latch 110 and the second latch 120. The unlocking protrusion 300 is used to insert into the movable space 130 to open the latch assembly 100 disposed within the latch hole assembly 200. Either the first latch 110 or the second latch 120 is integrally formed with the first housing 10. Both the first latch 110 and the second latch 120 are elastic latches.

[0037] It should be noted that when the unlocking protrusion 300 is inserted into the movable space 130, it can simultaneously act on the opposite sidewalls of the first latch 110 and the second latch 120. The unlocking protrusion 300 opens the opposite sidewalls of the first latch 110 and the second latch 120, allowing them to disengage synchronously from the locking assembly 200, thus preventing unsmooth unlocking due to one-sided jamming. The movable space 130 provides redundancy for the deformation of the first latch 110 or the second latch 120, reducing sliding friction between the first latch 110, the second latch 120 and the inner wall of the locking assembly 200 during unlocking, preventing jamming after prolonged use. The movable space 130 allows for slight elastic deformation of the first latch 110 and the second latch 120 under force, preventing breakage due to rigid impact and extending their service life.

[0038] Furthermore, the latch assembly 200 includes a latching groove 210 and a stop 220. The latching groove 210 penetrates the second housing 20, and the stop 220 is fitted into the latching groove 210, forming a first latching hole 211 and a second latching hole 212. When the latching assembly 100 is disposed in the latch assembly 200, the first latch 110 engages with the first latching hole 211, and the second latch 120 engages with the second latching hole 212. The stop 220 and the second housing 20 are integrally molded, requiring no additional assembly and reducing production costs.

[0039] Furthermore, the side of the stop block 220 away from the first housing 10 includes a first contact surface 222 and inclined surfaces 221 respectively connected to opposite sides of the first contact surface 222; the first contact surface 222 and the two inclined surfaces 221 are connected to form an inverted trapezoidal structure, and both the first contact surface 221 and the inclined surfaces 221 are recessed in the surface of the second housing 20 away from the first housing 10, that is, the first contact surface 222 and the inclined surfaces 221 are both located inside the first locking hole 211 and the second locking hole 212. The side of the stop block 220 near the first housing 10 includes a second contact surface 223, which is recessed in the surface of the second housing 20 near the first housing 10 and is located inside the first locking hole 211 and the second locking hole 212. Both the first contact surface 222 and the second contact surface 223 are planar; the inclined surface 221 is an inclined surface or an arc surface.

[0040] The head of the unlocking protrusion 300 needs to be designed with an inverted trapezoidal or rectangular cross-section, complementing the inverted trapezoidal structure of the stop 220. The first contact surface 222 of the stop 220 connects with the inclined surface 221 to form an inverted trapezoidal structure, ensuring that it can slide in along the inclined surface 221 and open the movable space 130 when inserted. The width of the top of the unlocking protrusion 300 is slightly smaller than the distance between the bottom edges of the two inclined surfaces 221 of the stop 220, but larger than the inner diameter of one side of the first locking hole 211 or the second locking hole 212. The length of the unlocking protrusion 300 needs to meet the following conditions: When fully inserted: the end of the unlocking protrusion 300 abuts against the second contact surface 223 of the stop 220, at which time the first engaging part 112 and the second engaging part 122 are completely disengaged from the stop 220; When not inserted: the unlocking protrusion 300 does not interfere with the normal engagement of the latching assembly 100.

[0041] First, the slot 210 is divided into a first locking hole 211 and a second locking hole 212 by the stop 220. The first locking hole 211 corresponds one-to-one with the first buckle 110 and the two are used to cooperate with each other. The second locking hole 212 corresponds one-to-one with the second buckle 120 and the two are used to cooperate with each other, forming a double-point locking, which prevents the housing from misaligning or warping when subjected to force on one side. The double locking points suppress the relative rotation between the first housing 10 and the second housing 20 when subjected to lateral force. Furthermore, the through-type design of the slot 210 guides the first buckle 110 and the second buckle 120 to be inserted vertically, and the stop 220 restricts the lateral displacement of the first buckle 110 and the second buckle 120, ensuring that when the first housing 10 and the second housing 20 are closed, the first buckle 110 automatically aligns with the first locking hole 211 and the second buckle 120 automatically aligns with the second locking hole 212, reducing the assembly difficulty. Furthermore, the unlocking protrusion 300, by pressing on both sides of the stop block 220, simultaneously opens the opposing sidewalls of the first latch 110 and the second latch 120, allowing the first latch 110 and the second latch 120 to disengage evenly under force, making unlocking easier. It should be noted that the physical separation design of the stop block 220 requires that the unlocking protrusion 300 must simultaneously cover the first latch hole 211 and the second latch hole 212 to trigger unlocking, preventing external objects from accidentally opening a single first latch 110 or second latch 120, which could cause the housing to loosen. In addition, the stop block 220 serves as a reinforcing rib within the latch groove 210 to disperse the impact force when the first housing 10 and the second housing 20 are closed, preventing fatigue cracking of the material surrounding the latch groove 210. Moreover, the independent structure of the first latch hole 211 and the second latch hole 212 ensures that even after the first latch 110 or the second latch 120 on one side wears out, the first latch hole 211 or the second latch hole 212 on the other side can still maintain its locking function, extending the overall lifespan.

[0042] Furthermore, the first latch 110 has a recessed first engaging portion 111 on the side near the second latch 120, and the second latch 120 has a recessed second engaging portion 121 on the side near the first latch 110. When the latch assembly 100 is disposed in the latch hole assembly 200, either the first engaging portion 111 or the second engaging portion 121 engages with the stop block 220. Furthermore, either the first engaging portion 111 or the second engaging portion 121 makes inclined or arc-shaped contact with the stop block 220. Locking is achieved by either the first engaging portion 111 or the second engaging portion 121 engaging with the stop block 220, forming a double-security mechanism. The unlocking protrusion 300 only needs to release the connection between the first engaging portion 111 or the second engaging portion 121 and the stop block 220 to release the first housing 10 and the second housing 20, reducing the unlocking force required. Preferably, the engagement surfaces of the stop block 220 and the first engaging portion 111 or the second engaging portion 121 are inclined or arc-shaped, which decomposes the impact force into lateral and longitudinal components, reducing the risk of the first buckle 110 or the second buckle 120 breaking at the root.

[0043] The first engaging portion 111 and the second engaging portion 121 are formed by surface recesses and form an embedded engagement with the stop block 220. This allows the recessed structures of the first engaging portion 111 and the second engaging portion 121 to restrict the displacement of the stop block 220 in three dimensions, thereby improving the tensile strength. The recessed structures of the first engaging portion 111 and the second engaging portion 121 have inclined or arc-shaped inner walls. When closed, the inclined or arc-shaped inner walls guide the stop block 220 to automatically slide into the engaging position, reducing the assembly accuracy requirements.

[0044] Furthermore, the first buckle 110 includes a first extension 112 and a first bending portion 113, the first extension 112 being formed by extending from the first housing 10 toward the second housing 20, and the first bending portion 113 being formed by bending from the first extension 112; the second buckle 120 includes a second extension 122 and a second bending portion 123, the second extension 122 being formed by extending from the first housing 10 toward the second housing 20, and the second bending portion 123 being formed by bending from the second extension 122.

[0045] The recessed design of the first latch 110 and the second latch 120 is equivalent to a one-way elastic latch structure. When the latch assembly 100 is inserted into the latch hole assembly 200, the first latch 110 and the second latch 120, i.e., the latches, spring into the first latch hole 211 and the second latch hole 212 of the latch groove 210 due to deformation, thus completing the locking. At this time, the inclined design of the first engaging part 111 only allows the first latch 110 to enter in one direction, and the inclined design of the second engaging part 121 only allows the second latch 120 to enter in one direction. When the first engaging part 111 or the second engaging part 121 is subjected to reverse force, the first latch 110 will be locked by the first latch hole 211 and the stop block 220, and the second latch 120 will be locked by the second latch hole 212 and the stop block 220, forming a backstop effect to prevent the latch assembly 100 from accidentally disengaging from the latch hole assembly 200. Thus, when the first housing 10 and the second housing 20 are closed, the first latch 110 of the latch assembly 100, i.e., the elastic latch tongue, engages with the first latch hole 211 of the latch hole assembly 200, and the second latch 120 of the latch assembly 100, i.e., the elastic latch tongue, engages with the second latch hole 212 of the latch hole assembly 200, thereby achieving automatic locking.

[0046] Furthermore, when the unlocking protrusion 300 opens the latch assembly 100, the unlocking protrusion 300 expands the movable space 130 until the side of the unlocking protrusion 300 away from the first housing 10 abuts against each other, and the first engaging part 111 and the second engaging part 121 disengage from the stop block 220, so that the latch assembly 100 disengages from the latch hole assembly 200. After the unlocking protrusion 300 is inserted into the movable space 130, the unlocking protrusion 300 contacts the stop block 220 and forms a fulcrum effect, converting the vertical force of the user pressing the unlocking part 30 into a lateral opening force, so that the first engaging part 111 and the second engaging part 121 disengage from the stop block 220 simultaneously, reducing the operating force. It should also be noted that when the unlocking protrusion 300 abuts against the stop block 220, it reaches the critical point where the first engaging part 111 or the second engaging part 121 is completely disengaged, avoiding excessive pressing that could cause structural damage. The unlocking protrusion 300 must simultaneously open the first extension 112 and the second extension 122 until they abut against the stop block 220 in order to release the first locking part 111 and the second locking part 121 to prevent the risk of accidental disengagement on one side.

[0047] Furthermore, the cross-section of the unlocking protrusion is rhomboid or elliptical. In the vertical direction from the first housing 10 to the second housing 20, the unlocking protrusion 300 has a long diagonal dimension and a short diagonal dimension. The first latch 110 and the second latch 120 are spaced apart by an inner diameter dimension, wherein the long diagonal dimension is greater than or equal to the inner diameter dimension, and the short diagonal dimension is less than or equal to the inner diameter dimension. Alternatively, when the inner diameter dimension is the minimum spacing of the movable space 130, the long diagonal length is slightly greater than the minimum spacing of the movable space 130.

[0048] When the user presses the unlocking component 30, the long diagonal of the unlocking protrusion 300 aligns with the opposite sidewalls of the first latch 110 and the second latch 120. Through mechanical leverage, the first latch 110 and the second latch 120 are opened and disengaged from the first latch hole 211 and the second latch hole 212, thereby releasing the latch assembly 100. Specifically, the unlocking protrusion 300 is used as a tool of a specific shape or size in this utility model. When unlocking the streaming media player protection device of this utility model, the unlocking protrusion 300 needs to be inserted into the first latch hole 211 and the second latch hole 212. The long diagonal length of the unlocking protrusion 300 is slightly greater than the minimum spacing of the movable space 130, thereby opening the latch assembly 100, forcing the first latch 110 and the second latch 120 to open and disengage from the first latch hole 211 and the second latch hole 212, and releasing the anti-lock.

[0049] The first housing 10 and the second housing 20 are in a closed state: the first engaging part 112 is embedded in the first locking hole 211 and engages with the second contact surface 223 of the stop block 220; the second engaging part 122 is embedded in the second locking hole 212 and engages with the second contact surface 223 of the stop block 220; the recessed depth of the first engaging part 112 / the second engaging part 122 must ensure that the planar contact area with the second contact surface 223 accounts for a large proportion to prevent vibration from loosening.

[0050] The first housing 10 and the second housing 20 are in the unlocking process: the unlocking protrusion 300 is inserted into the movable space 130, and its end contacts the inclined surface 221 of the stop block 220; the unlocking protrusion 300 is pressed further, and its end opens the first extension 111 / second extension 121, forcing the first engaging part 112 / second engaging part 122 to disengage from the second contact surface 223; when the unlocking protrusion 300 abuts against the second contact surface 223, the first housing 10 and the second housing 20 are completely unlocked.

[0051] Furthermore, either the first housing 10 or the second housing 20 is provided with a heat dissipation hole 2, which is connected to the sealed space 1.

[0052] Furthermore, the second housing 20 has a groove 230 on the side facing the first housing 10. The groove 230 is used to configure the post head, which is used to connect to the fixing post located outside the streaming media player protection device.

[0053] The locking process of the streaming media player protection device provided by this utility model is as follows:

[0054] The first housing 10 and the second housing 20 close together until they enclose a sealed space 1; the first latch 110 and the second latch 120 of the latch assembly 100 are equivalent to elastic latches sliding into the first latch hole 211 and the second latch hole 212 of the latch hole assembly 200; when the first engaging part 112 and the second engaging part 122 engage with the stop block 220, they are equivalent to forming a backstop structure; the backstop structure prevents the first latch 110 and the second latch 120 from falling out in the opposite direction.

[0055] The unlocking process for a streaming media player protection device provided by this utility model is as follows:

[0056] Press the unlocking component 30; the long diagonal of the unlocking protrusion 300 opens the opposite sidewalls of the first latch 110 and the second latch 120; the first latch 110 and the second latch 120, i.e. the elastic latch tongue, disengage from the first latch hole 211 and the second latch hole 212; the first housing 10 and the second housing 20 open.

[0057] This utility model provides a protective device for a streaming media player. The device achieves rotational opening and closing by hinged connection between one end of the first housing 10 and one end of the second housing 20. The other ends of the first housing 10 and the second housing 20 are quickly locked together via a latching assembly 100 and a locking hole assembly 200, simplifying the operation process. Furthermore, by pushing the unlocking protrusion 300 to open the latching assembly 100, opening and closing can be achieved without complex operations, improving the user experience. The rigid engagement of the latching assembly 100 and the locking hole assembly 200 ensures that the connection between the first housing 10 and the second housing 20 is not easily accidentally disengaged during vibration or drops. Additionally, the unlocking member 30 is located on the side of the second housing 20 away from the first housing 10, reducing the probability of accidental touch. The unlocking protrusion 300 provides clear anti-accidental touch design, such as tactile feedback, facilitating blind operation and conforming to ergonomic design. Meanwhile, this streaming media player protection device only requires a first housing 10 and its latching assembly 100, a second housing 20 and its latching hole assembly 200, and an unlocking component 30 and its unlocking protrusion 300 to achieve the need for opening or locking, reducing the number of parts and lowering production costs. Furthermore, the closed space 1 formed by the first housing 10 and the second housing 20 prevents damage to the streaming media player from dust, liquids, or physical impacts. Adjusting the internal dimensions of the closed space 1 allows for compatibility with streaming media players of different sizes, enhancing product versatility. Therefore, the streaming media player protection device provided by this utility model achieves self-locking and anti-detachment through the anti-reverse latching principle; and achieves precise and effortless unlocking using the unlocking component 30 and its unlocking protrusion 300.

[0058] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A protective device for a streaming media player, characterized in that, include: First housing, second housing, and unlocking mechanism; One end of the first housing is hinged to one end of the second housing; the other end of the first housing is provided with a snap-fit ​​assembly; the other end of the second housing is provided with a snap-hole assembly. When the buckle assembly is disposed on the card hole assembly, the first housing and the second housing are connected and enclosed to form a sealed space for accommodating the streaming media player; The unlocking component is disposed on the side of the second housing away from the first housing; the unlocking component includes an unlocking protrusion; the unlocking protrusion is used to move toward the latch assembly until it opens the latch assembly disposed within the latch assembly, so as to open the first housing and the second housing.

2. The streaming media player protection device as described in claim 1, characterized in that, The latch assembly includes a first latch and a second latch, which extend from the first housing toward the second housing and are bent to form the first latch and the second latch. The first latch and the second latch are spaced apart to form an movable space. The unlocking protrusion is used to insert into the movable space to open the latch assembly disposed in the latch hole assembly.

3. The streaming media player protection device as described in claim 2, characterized in that, The card slot assembly includes a card slot and a stop block. The card slot penetrates the second housing, and the stop block is adapted to the card slot and spaced the card slot to form a first card slot and a second card slot. When the buckle assembly is disposed on the card hole assembly, the first buckle engages with the first card hole, and the second buckle engages with the second card hole.

4. A streaming media player protection device as described in claim 3, characterized in that, The side of the stop block away from the first housing includes a first contact surface and inclined surfaces respectively connected to opposite sides of the first contact surface; the first contact surface and the two inclined surfaces are connected to form an inverted trapezoidal structure; the side of the stop block closer to the first housing includes a second contact surface; any one of the first contact surface, the inclined surface, and the second contact surface is located inside the first card hole and the second card hole.

5. A streaming media player protection device as described in claim 4, characterized in that, The first buckle has a first engaging portion recessed on the side near the second buckle, and the second buckle has a second engaging portion recessed on the side near the first buckle. When the buckle assembly is disposed on the card hole assembly, either the first engaging portion or the second engaging portion engages with the stop block; and either the first engaging portion or the second engaging portion contacts the inclined surface.

6. A streaming media player protection device as described in claim 5, characterized in that, The first buckle includes a first extension and a first bend, the first extension being formed by extending from the first housing toward the second housing, and the first bend being formed by bending from the first extension. The second buckle includes a second extension and a second bend, the second extension being formed by extending from the first housing toward the second housing, and the second bend being formed by bending from the second extension. The unlocking protrusion is used to open the first extension and the second extension until they abut against the stop block, so as to release the first engaging part and the second engaging part.

7. A streaming media player protection device as described in claim 6, characterized in that, When the unlocking protrusion opens the buckle assembly, the unlocking protrusion opens the movable space until the unlocking protrusion and the side of the stop block away from the first housing abut against each other, and the first engaging part and the second engaging part disengage from the stop block, so that the buckle assembly disengages from the card hole assembly.

8. A streaming media player protection device as described in claim 7, characterized in that, The cross-section of the unlocking protrusion is rhomboid or elliptical. In the vertical direction from the first housing to the second housing, the unlocking protrusion has a long diagonal dimension and a short diagonal dimension. The first buckle and the second buckle are spaced apart by an inner diameter dimension, wherein the long diagonal dimension is greater than or equal to the inner diameter dimension, and the short diagonal dimension is less than or equal to the inner diameter dimension.

9. A streaming media player protection device as described in claim 1, characterized in that, Either the first housing or the second housing is provided with a heat dissipation hole, which is connected to the sealed space.

10. A streaming media player protection device as described in claim 1, characterized in that, The second housing has a groove on the side facing the first housing. The groove is used to configure a column head, which is used to connect to a fixed column located outside the streaming media player protection device.