Remote controller shell and remote controller
The integrated injection molding and locking structure design simplifies the assembly process of the remote control shell, solves the problem of complex shell structure, and achieves a neat and uniform appearance and convenient production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GEER TECH CO LTD
- Filing Date
- 2024-10-30
- Publication Date
- 2026-05-01
AI Technical Summary
The existing remote control shell has a complex structure with many parts, resulting in a lot of assembly steps and a lack of overall uniformity, making it complicated to manufacture.
The shell is made of one piece of injection molding, combined with a movable locking structure and cover. The shell and cover are connected by magnetic attraction or plug-in structure, which simplifies the assembly process. The resin material is light-transmitting or infrared-transmitting to meet the requirements of visibility and light transmission.
The number of structural components in the remote control casing has been reduced, simplifying the assembly process, improving the ease of production and processing, and ensuring a neat and uniform appearance for the remote control.
Smart Images

Figure CN121968481A_ABST
Abstract
Description
Remote control casing and remote control Technical Field
[0001] This invention relates to the field of intelligent control equipment technology, and in particular to a remote control housing and a remote control. Background Technology
[0002] Existing VR controllers, TV remotes, and other remote controls have complex product structures and need to meet special infrared transmission functions. This results in the remote control shell being composed of many parts, with a complete remote control shell consisting of several different components. The product structure is not unified as a whole, and this leads to many assembly processes and a large number of structural parts that need to be processed separately, making the manufacturing process complicated. Summary of the Invention
[0003] The main objective of this invention is to provide a remote control housing and a remote control, which aims to make the manufacturing of the remote control housing more convenient.
[0004] To achieve the above objectives, the present invention provides a remote control housing comprising:
[0005] The housing is a one-piece injection-molded structure made of light-transmitting or infrared-transmitting resin material. The housing has a mounting cavity and an opening communicating with the mounting cavity; and
[0006] A cover, which covers the opening of the mounting cavity to close the mounting cavity.
[0007] In one embodiment, a portion of the housing is a developing region, and the wall thickness d of the developing region satisfies 0.05mm ≤ d ≤ 0.2mm;
[0008] And / or, the housing comprises at least one material selected from polyetherimide, polycarbonate, polyphenylene sulfone resin, polysulfone, and fluorinated polymer.
[0009] In one embodiment, the housing is provided with a movable locking structure having a locked position and an unlocked position, and the cover is provided with a plug hole. In the closed state, the locking structure can be moved to the locked position and inserted into the plug hole to lock the cover.
[0010] The remote control housing also includes a cover opening switch, which is movably disposed in the housing. Part of the cover opening switch protrudes from the outside of the housing. The cover opening switch can at least drive the locking structure from the locked position to the unlocked position.
[0011] In one embodiment, the locking structure is provided with a first magnetic attraction member, and the cover is provided with a second magnetic attraction member. When the cover is closed, the first magnetic attraction member and the second magnetic attraction member magnetically engage to move the locking structure to the locking position.
[0012] In one embodiment, the locking structure includes a plug-in structure and a push-off structure. The plug-in structure can be inserted into the plug-in hole. The cover opening switch includes a driving structure and a push-off structure. The driving structure passes through the side wall of the housing and can drive the push-off structure to move.
[0013] The pushing structure is provided with a pushing part, which has a clearance position and a pushing position. When the pushing part is in the clearance position, it is located outside the sliding path of the pushing structure. During the process of the pushing part moving from the clearance position to the pushing position, it pushes the pushing structure to drive the locking structure to slide from the locking position to the unlocking position.
[0014] In one embodiment, the jacking structure is rotatably configured, and the driving structure can drive the jacking structure to rotate.
[0015] In one embodiment, the driving structure is configured as a button, the button having a socket hole, and the pushing structure further includes a connecting rod connected to the pushing part, the connecting rod being inserted into the socket hole;
[0016] The outer wall of the connecting rod is provided with one of a guide groove or a protrusion, and the wall of the socket is provided with the other of the guide groove and the protrusion. The guide groove extends spirally along the length of the connecting rod, and the protrusion is slidably disposed in the guide groove.
[0017] In one embodiment, the cover opening switch further includes an elastic element that acts on the drive structure or the push structure to provide an elastic force to reset the push part to the avoidance position.
[0018] In one embodiment, the cover body has one of a limiting groove and a limiting protrusion on its two opposite sides, and the housing has a side opening on one side of the mounting cavity opening, and the other of the limiting groove and the limiting protrusion is provided on the side walls on both sides of the side opening.
[0019] The cover can slide relative to the housing along the opening direction of the side opening, so that the limiting protrusion moves in and out of the limiting groove.
[0020] The present invention also proposes a remote control, the remote control comprising a remote control housing as described in any of the foregoing embodiments.
[0021] The technical solution of this invention involves a remote control housing formed by integral injection molding. The housing itself encloses a mounting cavity for installing other functional components, thereby reducing the number of structural parts in the remote control housing and simplifying assembly processes. Furthermore, the integral injection molding process is convenient, resulting in a lighter housing and reducing the weight of both the remote control and the housing itself. Simultaneously, the housing is made of a light-transmitting or infrared-transmitting resin material, eliminating the need for light-transmitting holes to meet the display / concealment requirements of icons or infrared transmission, further improving the ease of manufacturing. Moreover, infrared sensors and indicator lights can be completely housed within the remote control housing, resulting in a clean and uniform overall appearance. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0023] Figure 1 is a structural diagram of an embodiment of the remote control housing provided by the present invention;
[0024] Figure 2 is an enlarged view of point A in Figure 1;
[0025] Figure 3 is a structural diagram of the cover of the remote control housing provided by the present invention;
[0026] Figure 4 is an enlarged view of point B in Figure 3;
[0027] Figure 5 shows the state diagram of the remote control housing with the locking structure in the unlocked position and the pushing structure in the avoidance position.
[0028] Figure 6 shows the state diagram of the remote control housing locking structure in the locked position and the push structure in the avoidance position;
[0029] Figure 7 shows the state diagram of the remote control housing locking structure in the unlocked position and the push-up structure in the pushed-down position;
[0030] Figure 8 is an exploded view of Figure 5;
[0031] Figure 9 is a structural diagram of an embodiment of the cover opening switch in the remote control housing;
[0032] Figure 10 is an exploded view of the cover opening switch in Figure 9.
[0033] Explanation of icon numbers:
[0034] 100. Remote control housing; 1. Housing; 11. Mounting cavity; 12. Limiting protrusion; 13. Side opening; 14. Mounting base; 141. Slide groove; 2. Cover; 21. Insertion hole; 22. Limiting groove; 3. Locking structure; 31. First magnetic suction element; 32. Insertion structure; 33. Connection structure; 34. Pushing structure; 35. Sliding structure; 4. Cover opening switch; 41. Drive structure; 411. Button; 412. Socket hole; 413. Protrusion; 42. Pushing structure; 421. Connecting rod; 4211. Guide groove; 422. Pushing part; 43. Elastic element.
[0035] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0037] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0038] Furthermore, if the embodiments of this invention involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this invention.
[0039] Existing VR controllers, TV remotes, and other remote controls have complex product structures and need to meet special infrared transmission functions. This results in the remote control shell being composed of many parts, with a complete remote control shell consisting of several different components. The product structure is not unified as a whole, and this leads to many assembly processes and a large number of structural parts that need to be processed separately, making the manufacturing process complicated.
[0040] Based on the above problems, the present invention proposes a remote control housing 100.
[0041] Please refer to Figure 1. In one embodiment of the present invention, the remote control housing 100 includes a housing 1 and a cover 2. The housing 1 is an integral injection molded structure. The housing 1 is made of light-transmitting or infrared-transmitting resin material. The housing 1 is provided with a mounting cavity 11 and has an opening communicating with the mounting cavity 11. The cover 2 covers the opening of the mounting cavity 11 to close the mounting cavity 11.
[0042] The remote control housing 100 proposed in this application can be used in remote controls such as VR controllers (Virtual Reality), game controllers, and TV remote controls. The remote control can also be equipped with sensing structures such as infrared sensors and radio frequency sensors, as well as indicating structures such as indicator lights.
[0043] In this embodiment, the remote control housing 100 includes a housing 1 and a cover 2. The housing 1 has a mounting cavity 11, and the cover 2 closes the opening of the mounting cavity 11 to seal it. The housing 1 of the remote control housing 100 is formed by integral injection molding, and the housing 1 itself encloses the mounting cavity 11 for mounting other functional devices, thereby reducing the number of structural components in the remote control housing 100 and reducing the assembly process. Furthermore, the integral injection molding process for the housing 1 is relatively convenient, and the resulting housing 1 is lightweight, reducing the weight of the remote control housing 100 and the remote control itself. Simultaneously, the housing 1 is made of a light-transmitting or infrared-transmitting resin material, eliminating the need for light-transmitting holes on the housing 1 to meet the display / concealment requirements of icons and infrared transmission requirements, further improving the ease of manufacturing and processing of the remote control housing 100. Moreover, infrared sensors and indicator lights, and other display / concealment modules, can be completely housed inside the remote control housing 100, resulting in a clean and uniform overall appearance of the remote control.
[0044] Optionally, the connection between the housing 1 and the cover 2 can be, but is not limited to, snap-fit connection, bolt connection, adhesive connection, magnetic connection, and the matching structure of the limiting groove 22 and the limiting protrusion 12 in the following embodiments.
[0045] In one embodiment, a portion of the housing 1 is a developing region, and the wall thickness d of the developing region satisfies 0.05mm≤d≤0.2mm.
[0046] In this embodiment, the developing area corresponds to the installation positions of the infrared sensor, indicator light, etc., and infrared light or indicator light can pass through the developing area. The wall thickness of the developing area can take any value between 0.05mm, 0.06mm, 0.08mm, 0.10mm, 0.12mm, 0.13mm, 0.15mm, 0.18mm, 0.2mm, and 0.05mm to 0.2mm; no limitation is imposed here. This setting avoids the developing area being too thick, ensuring that infrared or indicator light can clearly pass through the developing area, and also avoids the developing area being too thin, which would affect the structural strength.
[0047] Optionally, the wall thickness of the non-developable area on the housing 1 can be the same as or different from the wall thickness of the developed area. It can be within the range of 0.05mm to 0.2mm or greater than 0.2mm, and is not limited here.
[0048] In one embodiment, the housing 1 comprises at least one material selected from polyetherimide, polycarbonate, polyphenylene sulfone resin, polysulfone, and fluorinated polymer.
[0049] In this embodiment of the invention, the shell 1 is integrally injection molded and made of at least one of the following materials: polyetherimide (PEI), polycarbonate (PC), polyphenylene sulfone resin (PPSU), polysulfone (PSU), and fluorinated polymer (PFA). This allows the shell 1 to be transparent while having high structural strength and high temperature resistance, so that the shell 1 can be processed by processes that require high-temperature environments, such as physical vapor deposition, thus making the shell 1 suitable for more post-processing requirements.
[0050] Referring to Figures 1 to 4, in one embodiment, the housing 1 is provided with a movable locking structure 3, which has a locked position and an unlocked position. The cover 2 is provided with a plug hole 21. In the closed state, the locking structure 3 can be moved to the locked position and inserted into the plug hole 21 to lock the cover 2. The remote control housing 100 also includes an opening switch 4, which is movably provided in the housing 1. Part of the opening switch 4 protrudes from the outside of the housing 1. The opening switch 4 can at least drive the locking structure 3 from the locked position to the unlocked position.
[0051] In this embodiment, a groove 141 can be directly provided on the housing 1, or a mounting base 14 connected to the housing 1 can be provided. A groove 141 is provided in the mounting base 14, and the locking structure 3 is slidably disposed in the groove 141. When the locking structure 3 is in the unlocked position, the locking structure 3 is housed in the groove 141. When the locking structure 3 is in the locked position, part of the locking structure 3 protrudes from the groove 141 and can be inserted into the insertion hole 21 of the cover 2 when the cover is closed, so as to lock the cover 2 and the housing 1 together. The insertion hole 21 can be provided on the outer peripheral surface of the cover 2, and the locking structure 3 can be provided on the side wall of the opening of the mounting cavity 11 to be inserted into the mounting hole; in addition, the cover 2 and the housing 1 can also be connected by the limiting groove 22 and the limiting protrusion 12 in the following embodiment, so that the cover 2 can slide relative to the housing 1 to realize opening and closing. At this time, the insertion hole 21 can also be provided on the surface of the cover 2 facing the mounting cavity 11, or on the outer peripheral surface perpendicular to the sliding direction, and the locking structure 3 is inserted into the insertion hole 21 to prevent the cover 2 from sliding.
[0052] The cover opening switch 4 can be used solely to move the locking structure 3 from the locked position to the unlocked position. This can be achieved by using the first magnetic attraction member 31 and the second magnetic attraction member as described in the following embodiment to move the locking structure 3 from the unlocked position to the locked position. Alternatively, the cover opening switch 4 can also be used to drive the locking structure 3 to reciprocate between the locked and unlocked positions.
[0053] Optionally, the cover opening switch 4 can be configured as a slide switch, which can be connected to the locking structure 3. Driving the slide switch to slide will cause the locking structure 3 to slide. The slide switch can also be used to push the locking structure 3, driving the slide switch to slide to push the locking structure 3 to slide. The cover opening switch 4 can also be configured as a rotary switch, which can utilize a gear and rack structure or other transmission structure to drive the locking structure 3. Alternatively, in the following embodiment, a rocking structure can be provided, where rotating the rotary switch will drive the locking structure 3 to move. The cover opening switch 4 can also be configured as a push switch, for example, in the embodiment where a button 411 and a rocking structure are provided, pressing the button 411 will cause the rocking structure to rotate, thereby driving the locking structure 3 to slide.
[0054] Referring to Figures 5 and 6, in one embodiment, the locking structure 3 is provided with a first magnetic 31, and the cover 2 is provided with a second magnetic 31. In the closed state, the first magnetic 31 and the second magnetic 31 magnetically engage to move the locking structure 3 to the locking position.
[0055] In this embodiment, both the first magnetic attractor 31 and the second magnetic attractor can be magnets; or the first magnetic attractor 31 can be either a magnet or a magnetically conductive component that can be attracted by the magnet, and the second magnetic attractor can be either a magnet or a magnetically conductive component. By configuring the first magnetic attractor 31 and the second magnetic attractor, the locking structure 3 can be automatically moved to the locking position to be inserted and held in the insertion hole 21 when the cover is closed, and the connection strength between the housing 1 and the cover 2 can also be improved.
[0056] Referring to Figures 2 to 6, in one embodiment, the locking structure 3 includes a plug-in structure 32 and a push structure 34. The plug-in structure 32 can be inserted into the plug-in hole 21. The cover opening switch 4 includes a driving structure 41 and a pushing structure 42. The driving structure 41 passes through the side wall of the housing 1 and can drive the pushing structure 42 to move. The pushing structure 42 is provided with a pushing part 422, which has a clearance position and a pushing position. When the pushing part 422 is in the clearance position, it is located outside the sliding path of the pushing structure 34. During the process of the pushing part 422 moving from the clearance position to the pushing position, it pushes the pushing structure 34 to drive the locking structure 3 to slide from the locked position to the unlocked position.
[0057] In this embodiment, the locking structure 3 includes a plug-in structure 32 for engaging with the plug-in hole 21, and a push-off structure 34 for engaging with the drive structure 41. The push-off structure 34 and the plug-in structure 32 are interconnected. Optionally, the push-off structure 34 can protrude from the surface of the plug-in structure 32 facing the drive structure 41; alternatively, the push-off structure 34 and the plug-in structure 32 can be spaced apart along the sliding direction and connected by a connecting structure 33. Optionally, the locking structure 3 is disposed in the slide groove 141, and the connecting structure 33 is disposed on the bottom wall side of the slide groove 141 opposite to the drive structure 41, or it can be disposed on the side wall side of the slide groove 141, which is not limited here. In addition, the locking structure 3 can be provided with a sliding structure 35 that fits against the side wall of the slide groove 141 to limit the sliding direction of the locking structure 3 and prevent the locking structure 3 from deviating.
[0058] When the push structure 42 of the drive structure 41 is in its natural state (i.e., when not subjected to other external forces), it remains in the avoidance position. At this time, the push part 422 is located outside the sliding path of the resisting structure 34. The sliding range of the resisting structure 34, as indicated by the sliding path, allows the push part 422 to be located either in front of or to the side of the sliding path, thereby preventing interference between the locking structure 3 and the push part 422 when it moves to the locked position. Specifically, the first magnetic suction member 31 and the second magnetic suction member, as described in the above embodiment, can automatically slide the connecting structure 33 from the unlocked position to the locked position when the lid is closed. When unlocking is required, the drive structure 41 drives the push structure 42 to move, causing the push part 422 to push the resisting structure 34, thereby driving the locking structure 3 to slide from the locked position to the unlocked position.
[0059] Optionally, the pushing structure 42 can be slidably configured, and the driving structure 41 drives the pushing structure 42 to slide in order to push the locking structure 3. In this case, the driving structure 41 can be slidably configured so that the pushing structure 42 can be slidably driven by the sliding driving structure 41. Alternatively, the driving structure 41 can be rotatably configured, and the driving structure 41 can be connected to the pushing structure 42 through a gear rack or other transmission structure, so that the pushing structure 42 can be slidably driven by rotating the driving structure 41. Or, the pushing structure 42 can be rotatably configured. For specific implementation methods, please refer to the following embodiments, which will not be described in detail here.
[0060] Referring to Figures 5 to 7, in one embodiment, the jacking structure 42 is rotatably configured, and the driving structure 41 can drive the jacking structure 42 to rotate.
[0061] In this embodiment, the drive structure 41 drives the push structure 42 to rotate, causing the push part 422 to swing, so that the push part 422 reciprocates between the avoidance position and the pushing position. The drive structure 41 can be a knob, rotating which drives the push structure 42 to rotate; or the drive structure 41 can be a button 411, which engages with the push structure 42 via the guide groove 4211 and the protrusion 413 as described in the following embodiment, so that pressing the drive structure 41 drives the push structure 42 to rotate.
[0062] Referring to Figures 8 to 10, in one embodiment, the drive structure 41 is configured as a button 411, which has a socket 412. The push structure 42 further includes a connecting rod 421 connected to the push part 422, which is inserted into the socket 412. The outer wall of the connecting rod 421 is provided with either a guide groove 4211 or a protrusion 413, and the hole wall of the socket 412 is provided with either the guide groove 4211 or the protrusion 413. The guide groove 4211 extends spirally along the length of the connecting rod 421, and the protrusion 413 is slidably disposed in the guide groove 4211.
[0063] In this embodiment, a protrusion 413 can be provided on the wall of the socket 412, and a spirally extending guide groove 4211 can be provided on the side wall of the connecting rod 421; alternatively, a guide groove 4211 can be provided on the wall of the socket 412, and a protrusion 413 can be provided on the side wall of the connecting rod 421. The protrusion 413 is inserted into the guide groove 4211. When the button 411 is pressed, the protrusion 413 slides along the guide groove 4211, thereby driving the connecting rod 421 to rotate so that the pushing part 422 swings from the avoidance position to the pushing position. For ease of installation, the button 411 can be configured to be formed by two interlocking half-shells.
[0064] Referring to Figures 8 to 10, in one embodiment, the cover opening switch 4 further includes an elastic element 43, which acts on the drive structure 41 or the push structure 42 to provide an elastic force to reset the push part 422 to the avoidance position.
[0065] In this embodiment, the elastic element 43 eliminates the need to manually reset the lid opening switch 4, improving ease of use. It also ensures that the push part 422 is in an avoidance position when the lid is closed, so as to prevent the push part 422 from interfering with the locking structure 3 moving to the locking position.
[0066] Optionally, the elastic element 43 can be driven in conjunction with the drive structure 41 to reset the drive structure 41 by applying an elastic force to it. During the reset process, the drive structure 41 drives the push structure 42 to reset. When the drive structure 41 is configured as a rotating structure such as a knob, the elastic element 43 can be configured as a torsion spring. When the drive structure 41 is configured as a sliding or pressing structure, the elastic element 43 can be configured as a spring that can elastically deform in the direction of movement of the drive structure 41. For example, as in the above embodiment, the drive structure 41 in the cover opening switch 4 is set as a button 411, and it slides with the connecting rod 421 of the push structure 42 through the protrusion 413 and the guide groove 4211. The elastic element 43 can be set in the socket hole 412 of the button 411 and sandwiched between the bottom wall of the socket hole 412 and the connecting rod 421. When the button 411 is released, the elastic element drives the button 411 to reset, and the protrusion 413 slides in the opposite direction to drive the push structure 42 to rotate, so that the push part 422 is reset to the avoidance position.
[0067] The elastic element 43 can also be driven in conjunction with the pushing structure 42, so that the pushing structure 42 is reset by applying an elastic force to the pushing structure 42, and the pushing part 422 is moved to the avoidance position. For example, when the pushing structure 42 is rotatably provided, the elastic element 43 can be set as a torsion spring; when the pushing structure 42 is slidably provided, the elastic element 43 can be set as a spring that can elastically deform in the sliding direction of the pushing structure 42.
[0068] Referring to Figures 1 to 3, in one embodiment, the cover 2 has one of a limiting groove 22 and a limiting protrusion 12 on its two opposite sides, and the housing 1 has a side opening 13 located on one side of the opening of the mounting cavity 11. The side walls on both sides of the side opening 13 have the other of a limiting groove 22 and a limiting protrusion 12. The cover 2 can slide relative to the housing 1 along the opening direction of the side opening 13 so that the limiting protrusion 12 can enter and exit the limiting groove 22.
[0069] In this embodiment, limiting protrusions 12 can be provided on the side walls of the opening 13 on both sides of the housing 1, and limiting grooves 22 can be provided on the outer peripheral surfaces of the two opposite sides of the cover 2; or, limiting grooves 22 can be provided on the side walls of the opening 13 on both sides of the housing 1, and limiting protrusions 12 can be provided on the two opposite sides of the cover 2; in addition, taking the limiting grooves 22 provided on the cover 2 as an example, at least one end of the limiting grooves 22 on both sides of the cover 2 can be connected to each other, and the inner side of the corresponding mounting cavity 11 opening is provided with a limiting protrusion 12 extending along the mounting opening or at least two spaced limiting protrusions 12.
[0070] The cover 2 slides along the opening direction of the side opening 13, allowing the limiting protrusion 12 to enter and exit the limiting groove 22. Through the cooperation of the limiting protrusion 12 and the limiting groove 22, the cover 2 can be limited in the normal direction of the opening of the mounting cavity 11. Furthermore, a locking structure 3 and a plug hole 21 as described in the above embodiment can be provided between the housing 1 and the cover 2 to lock the cover 2 in the sliding direction, thereby completely locking the cover 2 and the housing 1 and preventing the cover 2 from separating from the housing 1.
[0071] The present invention also proposes a remote control, which includes a remote control housing 100 as described in any of the foregoing embodiments. In this embodiment, the remote control may be, but is not limited to, a VR controller (Virtual Reality), a game controller, and a TV remote control. The specific structure of the remote control housing 100 is as described in the above embodiments. The remote control may also be equipped with sensing structures such as infrared sensors and radio frequency sensors, and may also be equipped with indicator structures such as indicator lights. The housing 1 of the remote control housing 100 is made of a resin material that is light-transmitting or infrared-transmitting, eliminating the need to provide light-transmitting holes on the housing 1 to meet the display or hiding requirements of icons and the infrared transmission requirements, thereby improving the ease of production and processing of the remote control housing 100; and the infrared sensors and indicator lights and other display modules can be completely housed inside the remote control housing 100, making the overall structure and appearance of the remote control neat and uniform.
[0072] Since this remote controller adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be repeated here.
[0073] The above description is merely an exemplary embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention specification and drawings under the technical concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.
Claims
1. A remote control casing, characterized in that, Includes: a housing, the housing being an integral injection-molded structure, the housing being made of light-transmitting or infrared-transmitting resin material, the housing having a mounting cavity and an opening communicating with the mounting cavity; and a cover, the cover being disposed over the opening of the mounting cavity to close the mounting cavity.
2. The remote control housing as described in claim 1, characterized in that, A portion of the housing is a developing area, and the wall thickness d of the developing area satisfies 0.05mm≤d≤0.2mm; and / or, the housing comprises at least one material selected from polyetherimide, polycarbonate, polyphenylene sulfone resin, polysulfone, and fluorinated polymer.
3. The remote control housing as described in claim 1, characterized in that, The housing is provided with a movable locking structure, which has a locked position and an unlocked position. The cover is provided with a plug hole. In the closed state, the locking structure can be moved to the locked position and plugged into the plug hole to lock the cover. The remote control housing also includes a cover opening switch, which is movably provided in the housing. Part of the cover opening switch protrudes from the outside of the housing. The cover opening switch can at least drive the locking structure to move from the locked position to the unlocked position.
4. The remote control housing as described in claim 3, characterized in that, The locking structure is provided with a first magnetic attraction element, and the cover is provided with a second magnetic attraction element. When the cover is closed, the first magnetic attraction element and the second magnetic attraction element magnetically engage to move the locking structure to the locking position.
5. The remote control housing as described in claim 3, characterized in that, The locking structure includes a plug-in structure and a push-off structure. The plug-in structure can be inserted into the plug-in hole. The cover opening switch includes a driving structure and a push-off structure. The driving structure passes through the side wall of the housing and can drive the push-off structure to move. The push-off structure is provided with a pushing part, which has a clearance position and a push-off position. When the pushing part is in the clearance position, it is located outside the sliding path of the push-off structure. During the process of the pushing part moving from the clearance position to the push-off position, it pushes the push-off structure to drive the locking structure to slide from the locking position to the unlocking position.
6. The remote control housing as described in claim 5, characterized in that, The jacking structure is rotatably configured, and the driving structure can drive the jacking structure to rotate.
7. The remote control housing as described in claim 6, characterized in that, The driving structure is configured as a button, the button is provided with a socket hole, and the pushing structure further includes a connecting rod connected to the pushing part, the connecting rod being inserted into the socket hole; the outer wall of the connecting rod is provided with one of a guide groove or a protrusion, the hole wall of the socket is provided with the other of the guide groove and the protrusion, the guide groove extends spirally along the length direction of the connecting rod, and the protrusion is slidably provided in the guide groove.
8. The remote control housing as described in claim 5, characterized in that, The cover opening switch also includes an elastic element, which acts on the drive structure or the push structure to provide elastic force to reset the push part to the avoidance position.
9. The remote control housing as described in any one of claims 1 to 8, characterized in that, The cover has one of a limiting groove and a limiting protrusion on its two opposite sides. The housing has a side opening on one side of the mounting cavity opening. The side walls on both sides of the side opening have the other of the limiting groove and the limiting protrusion. The cover can slide relative to the housing along the opening direction of the side opening so that the limiting protrusion can enter and exit the limiting groove.
10. A remote control, characterized in that, Includes the remote control housing as described in any one of claims 1 to 9.