Terminal device with electric input and output functions
By redesigning the housing, the puller and the conductive module of the terminal device, the problem of the operational effort of the puller and the limited electrical output mode is solved, and the operation simplicity and multi-electric input and output mode is achieved, reducing manufacturing complexity and cost.
Patent Information
- Application Number
- CN202422207918.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The operating force arm of the existing terminal device is short, which makes the operation difficult and difficult to operate. At the same time, the structure limits the design form and function of the electrical input and electrical output, and requires additional settings of different conductive modules or modifying the circuit path, which increases manufacturing difficulty and cost.
A terminal device including a housing, a swing member and a conductive module is designed. By reconfiguring the metal shrapnel and the pivot part of the conductive module, it provides a simple operational rotary structure, and supports multiple electrical input and electrical output modes to meet different functional requirements.
It realizes the operation of the puller easily and effortlessly, supports multiple electrical input and electrical output modes, reduces manufacturing complexity and cost, and improves the flexibility and stability of the terminal device.
Smart Images

Figure CN223167669U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a design structure of a terminal device with functions of electrical input and output; in particular, it refers to a terminal device that provides multiple electrical conductors for insertion and connection to establish electrical input and output mechanisms, and combines a lever, an elastic device, and a metal spring piece technology. Background Art
[0002] It is a well-known technique to use a conductive frame (or conductive module) installed inside an insulating housing (usually made of plastic material) to combine or press the wires input from the wire inlet hole of the housing to form a terminal device for electrical connection or release of conductors. For example, Chinese patents CN 102204015 A "Electrical Connection Terminal" and CN 111989826 B "Module System for Manufacturing an Electrical Device" provide typical embodiments.
[0003] Such terminal devices generally include an insulating housing and a lever that can reciprocate and is assembled on the housing. The housing has a wire inlet hole for wires to be inserted into the interior of the housing. The housing also defines a chamber for assembling a metal spring piece, and with the operation control of the lever, the metal spring piece is forced to form a bite (contact) or electrical connection with the above-mentioned wires inserted into the housing; unless the operator presses the lever to release the above-mentioned electrical connection, the state of the metal spring piece pressing the wires can be released. Also, the metal spring piece is connected to a relatively thin or narrow terminal pin in a symmetrical form to output current (or be inserted on a circuit board to form current conduction).
[0004] A problem with the terminal device of the prior art in terms of structure and operation application is that due to the limitation of the structure of the terminal or the form of the use space, the operating force arm of the above-mentioned lever is relatively short, and relatively, when the operator operates the lever, it becomes more laborious and difficult to operate.
[0005] As those skilled in the art know, after the old-fashioned terminal device is pivotally connected to the input (IN-PUT) wire to form an electrical connection, it is also necessary to provide a structural form for electrical output (OUT-PUT; for example, the above-mentioned conductive frame protruding terminal pin structure). Such terminal devices or structures limit their electrical input and output design forms and functions.
[0006] In particular, in some application cases, in order to meet different usage and / or function mode requirements, in practice, it is necessary to set different conductive (or circuit) modules or use specific conductive frame structures (or conductive frames), or modify the circuit path or additionally increase connection interfaces to be able to connect to each other to achieve the function of changing the circuit module; this makes the structural design and manufacturing operations troublesome and the cost relatively high, and this situation is not what we expect.
[0007] Typically, these references show the structure and operational use of conventional terminal devices or their related combined components. If the terminal device is redesigned considering the above application scenarios to be different from the conventional ones, its usage pattern can be changed and its application effect can be enhanced, thus differentiating from the prior art. For example, under the condition of considering the structure and conforming to the ability to maintain the overall stability and suppress the wire, the following issues should be included:
[0008] 1. Provide a structural form of a combined actuating member for a terminal device, which can overcome or improve the situation that the operating force arm of the actuating member in the prior art is relatively short, making it relatively laborious and difficult for personnel to operate the actuating member, and achieve the effects of easy operation and labor saving.
[0009] 2. Provide a terminal device to improve the design form and function of its electrical input and output restricted by the prior art or structure; and, according to different usage and / or function mode requirements, provide a structure with different or multiple electrical input and output functions in cooperation with the wire characteristics, improving the situation that the prior art must set different conductive (or circuit) modules or apply specific conductive frame structures (or conductive frames), or modify the circuit path or additionally increase connection interfaces, etc., making the structural design and manufacturing operations troublesome and the cost relatively high.
[0010] None of these issues are taught or specifically disclosed in the above references. SUMMARY OF THE UTILITY MODEL
[0011] Therefore, the main object of the present utility model is to provide a terminal device with electrical input and output functions, providing functions such as easy operation, labor saving, and facilitating the change of the circuit path according to the function and / or usage requirements. It includes a combination of a housing, a conductive module, and an actuating member; the housing defines a chamber, and the chamber is provided with a metal spring piece, which can respond to the movement of the actuating member to press the conductor to form an electrical connection or release the conductor. And, the conductive module has a first pivot portion, a second pivot portion connected to the first pivot portion, and a third pivot portion connected to the first pivot portion and the second pivot portion, used to electrically connect (external) conductors to jointly establish the functions of electrical input and output; improving the situation that the prior art must set different conductive (or circuit) modules or apply specific conductive structures according to different usage and / or function mode requirements.
[0012] According to the terminal device with electric input and output functions of the present utility model, the first pivoting portion is configured with a first actuating member and a first metal elastic sheet, and the second pivoting portion is configured with a second actuating member and a second metal elastic sheet; and, the third pivoting portion is located between the first pivoting portion and the second pivoting portion. Moreover, the first pivoting portion, the second pivoting portion, and the third pivoting portion can be electrically connected to different conductors (or the first conductor, the second conductor, and the third conductor) according to different usage and / or functional mode requirements, respectively forming electrical input and / or output forms. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It shows a three-dimensional structural schematic diagram of the present utility model; depicting the structural combination of parts such as the housing, the conductive module, the actuating member, and the metal elastic sheet.
[0014] Figure 2 It shows an exploded structural schematic diagram of the present utility model; showing the structural conditions of parts such as the housing, the conductive module, the actuating member, and the metal elastic sheet.
[0015] Figure 3 It shows a planar structural schematic diagram of an operation embodiment of the present utility model; depicting the structural cooperation of parts such as the actuating member, the conductive module, and the metal elastic sheet.
[0016] DESCRIPTION OF REFERENCE NUMERALS IN THE DRAWINGS
[0017] 10: Housing
[0018] 10A: First insertion hole
[0019] 10B: Second insertion hole
[0020] 10C: Third insertion hole
[0021] 11: Chamber
[0022] 12: Sub-positioning portion
[0023] 13: Axial post
[0024] 14: Post
[0025] 15: Column
[0026] 16: Stop portion
[0027] 17: Guide portion
[0028] 18: Arc-shaped concave surface
[0029] 19: Positioning portion
[0030] 20: Actuating member
[0031] 20A: First actuating member
[0032] 20B: Second actuating member
[0033] 21: Pivoting end
[0034] 22: Operating end
[0035] 24: Pressing part
[0036] 25: Shoulder
[0037] 26: Mouth
[0038] 27: Restricting part
[0039] 30: Metal shrapnel
[0040] 30A: First metal shrapnel
[0041] 30B: Second metal shrapnel
[0042] 31: First section
[0043] 32: Second section
[0044] 40: Conductive module
[0045] 40A: First pivoting part
[0046] 40B: Second pivoting part
[0047] 40C: Third pivoting part
[0048] 40D: Fitting part
[0049] 41: First inlet
[0050] 42: Second inlet
[0051] 43: Wall
[0052] 44: Empty area
[0053] 45: Substrate
[0054] 46: Fixing part
[0055] 47: Base
[0056] 48: Auxiliary fixing part
[0057] 49: Connecting part
[0058] 50: Conductor
[0059] 51: First conductor
[0060] 52: Second conductor
[0061] 53: Third conductor
[0062] 55: Space
[0063] 60: Clasp
[0064] 61: Axial connection end
[0065] 62: Free end
[0066] 64: Back
[0067] 70: Spring
[0068] 71: First end
[0069] 72: Second end
[0070] 80: Elastic device
[0071] 81: First side
[0072] 82: Second side
[0073] 83: Fixed end
[0074] 84: Actuating end
[0075] 85: Bent section
[0076] 86: Straight section
[0077] 87: Secondary bent section
[0078] 88: Extension section Detailed implementation mode
[0079] Please refer to Figure 1 、 2 and Figure 3 , the terminal device with the functions of electrical input and output of the present utility model includes a combination of a housing, a toggling member and a conductive module, which are generally represented by reference numerals 10, 20, and 40 respectively. The housing 10 defines a chamber 11, and a metal spring piece 30 and a conductive module 40 are assembled in the chamber 11; the housing 10 also includes a plug hole communicating with the chamber 11, so that an (external) conductor 50 (the number is marked in Figure 3 ) can be inserted into the chamber 11 through the plug hole and be pressed by the metal spring piece 30 to form an electrically connected state with the conductive module 40.
[0080] In the following description, the upper (part), lower (part), bottom end, left side, right side, front (part), rear (part), external, internal... etc. mentioned are based on the directions shown in the figure as the reference directions.
[0081] The figure shows the form of the insertion holes of the housing 10 facing the interior of the housing 10 or the direction of the chamber 11, including the first insertion hole 10A (located in the left region of the figure), the second insertion hole 10B located on the opposite side of the first insertion hole 10A (or the right region of the figure), and the third insertion hole 10C located between the first insertion hole 10A and the second insertion hole 10B (or the middle region of the housing 10). Also, the form in which the third insertion hole 10C extends from the upper region of the housing 10 towards the interior of the housing 10 (or the direction of the chamber 11, or the lower direction in the figure); a structure in which a positioning portion 19 and / or a secondary positioning portion 12 is provided in the third insertion hole 10C.
[0082] In the adopted embodiment, the metal elastic piece 30 can respond to the movement of the actuating member 20 to press the conductor 50 to form an electrical connection or release the conductor 50.
[0083] Specifically, in cooperation with the first insertion hole 10A and the second insertion hole 10B, the actuating member 20 includes a first actuating member 20A and a second actuating member 20B. The actuating member 20 (or the first actuating member 20A and the second actuating member 20B) includes a pivoting end 21 and an operating end 22; the pivoting end 21 is pivotally connected to a shaft column 13 of the housing 10 or the chamber 11, so that the operating end 22 forms a reciprocating motion (or enables the actuating member 20 to reciprocate between an open position and a closed position). A pressing portion 24 protrudes in the region close to the pivoting end 21 for pressing the metal elastic piece 30; and, at least one side of the pressing portion 24 is provided with a shoulder 25.
[0084] In a feasible embodiment, corresponding to the shoulder 25 of the actuating member 20, the housing 10 or the chamber 11 is provided with a guiding portion 17 and an arc-shaped concave surface 18 formed on the guiding portion 17. When operating the actuating member 20 (pushing upwards), making the shoulder 25 move along the guiding portion 17 or the arc-shaped concave surface 18 helps to obtain a smooth and gentle effect in the movement cooperation between the shoulder 25 (or the pressing portion 24) of the actuating member 20 and the arc-shaped concave surface 18 (or the guiding portion 17).
[0085] The figure also depicts the metal elastic piece 30 corresponding to the first actuating member 20A and the second actuating member 20B (or the first insertion hole 10A and the second insertion hole 10B), including a first metal elastic piece 30A and a second metal elastic piece 30B; the metal elastic piece 30 (or the first metal elastic piece 30A and the second metal elastic piece 30B) has a first section 31 and a second section 32. Also, the first section 31 (or its head end) contacts the pressing portion 24 of the actuating member 20, allowing the pressing portion 24 to press down the first section 31 (or its head end) of the metal elastic piece 30, so that the second section 32 (or its tail end) moves to press or bite the conductor 50 entering the chamber 11; or after the actuating member 20 is operated and pushed upwards, the state of the second section 32 pressing the conductor 50 is released; this part will be further described below.
[0086] In the adopted embodiment, the conductive module 40 includes a substrate 45 and a fixing portion 46 (a convex portion structure and / or a hole-like structure) provided on the substrate 45 (or the middle area of the substrate 45). Corresponding to the first insertion hole 10A and the second insertion hole 10B, the conductive module 40 (or the two side areas of the substrate 45) is provided with a first pivoting portion 40A, a second pivoting portion 40B, and a void area 44 located between the first pivoting portion 40A and the second pivoting portion 40B. Moreover, the first pivoting portion 40A and the second pivoting portion 40B respectively form a U-shaped cross-sectional structure, and respectively have a first entrance 41, a second entrance 42, and a wall 43 that defines the first entrance 41 and the second entrance 42.
[0087] In a feasible embodiment, the wall 43 (cooperating with the substrate 45) also defines a space 55 for receiving the conductor 50; moreover, the wall 43 can also establish an effect of regulating the movement of the metal elastic sheet 30 or the second section 32, preventing the metal elastic sheet 30 or the second section 32 from being deflected during the movement process.
[0088] The figure depicts that the conductive module 40 also includes a third pivoting portion 40C, which is (electrically) connected to the first pivoting portion 40A and the second pivoting portion 40B, and extends in the direction from the upper region to the lower region of the housing 10 (or the direction of the chamber 11, or the lower direction in the figure). Moreover, the third pivoting portion 40C has a base portion 47 in the shape of an L-body, a secondary fixing portion 48 (a hole-like structure and / or a convex portion structure) provided at the bottom of the base portion 47, a ring-shaped connecting portion 49 connecting the base portion 47, and / or a fitting 40D for assisting in restricting the connecting portion 49.
[0089] In a feasible embodiment, the secondary fixing portion 48 of the base portion 47 is connected (or combined) with the fixing portion 46 of the substrate 45 (or a structure in which the base portion 47, the connecting portion 49, and the substrate 45 are integrally formed), so that the third pivoting portion 40C (or at least a partial region of the base portion 47, the connecting portion 49, and the fitting 40D) is located inside the third insertion hole 10C of the housing 10. And / or in cooperation with the positioning portion 19 (and / or the secondary positioning portion 12) to position the third pivoting portion 40C (or the base portion 47, the connecting portion 49).
[0090] Therefore, the conductors 50 corresponding to entering the first pivoting portion 40A, the second pivoting portion 40B, and the third pivoting portion 40C (or the first insertion hole 10A, the second insertion hole 10B, and the third insertion hole 10C) are respectively defined as the first conductor 51, the second conductor 52, and the third conductor 53.
[0091] In the adopted embodiment, the chamber 11 is equipped with a reciprocating fastener 60; the fastener 60 is combined with a spring 70, and normally positions the fastener 60 at the position of fastening the actuating member 20.
[0092] The figure shows that the trigger member 20 (or the first trigger member 20A or the second trigger member 20B) is provided with a mouth 26 and a restriction portion 27 formed on the mouth 26 in the area between the pivot end 21 and the operating end 22 or near the operating end 22. Furthermore, corresponding to the mouth 26 and restriction portion 27 of the trigger member 20, the fastener 60 and the spring 70 are installed together in the cavity 11 of the housing 10.
[0093] Figure 2 、 3 The fastener 60 is depicted as including an axial end 61 and a free end 62; the axial end 61 and the spring 70 are combined together on a pile 14 of the shell chamber 11, so that the free end 62 of the fastener 60 can reciprocate into the mouth 26 of the pull member 20 to form a fastening state with the limiting portion 27, or be pushed away by the limiting portion 27 of the pull member 20 to release the above-mentioned fastening state.
[0094] In a feasible embodiment, the spring 70 has a first end 71 and a second end 72; the first end 71 is pressed on the shell 10, and the second end 72 forms a vertical bending section structure from the spring 70, leaning on a back 64 of the fastener 60, so that the fastener 60 is normally located at the position of the limiting portion 27 of the fastening pull member 20 as described above.
[0095] The figure also shows that an elastic device 80 is provided inside the cavity 11 of the shell 10, which is used to normally move the trigger member 20 and the metal dome 30 toward the position of releasing the conductor 50 (or the upper direction in the figure) when the trigger member 20 (or the first trigger member 20A, the second trigger member 20B) releases the state of the metal dome 30 (or the first metal dome 30A, the second metal dome 30B) pressing the conductor 50.
[0096] In the embodiment, the elastic member 80 is a torsion spring, leaf spring, or the like. Specifically, the elastic member 80 is defined by a first side 81 and a second side 82; a fixed end 83 extending from the first side 81 and an actuating end 84 extending from the second side 82; the fixed end 83 has a (vertical) bent section 85 that bends from the first side 81 toward the second side 82; the actuating end 84 includes a straight section 86 extending from the second side 82 toward the first side 81; an extension section 88 connecting the straight section 86 and extending away from the elastic member 80; and a secondary bent section 87 connecting the extension section 88; the secondary bent section 87 extends (bent) from the first side 81 toward the second side 82.
[0097] Further, the elastic member 80 is assembled on a post 15 in the chamber 11 of the housing 10, such that the actuating end 84 (and / or at least the secondary bending section 87) contacts the lower position of the first section 31 of the metal elastic sheet, and the fixed end 83 or at least the bending section 85 is pressed against a stop portion 16 of the housing 10 to generate a force or preload, so that the actuating end 84 normally pushes the metal elastic sheet 30 (and / or the actuating member 20) in the direction of releasing the conductor 50 (or the upper direction in the figure).
[0098] Please refer to Figure 3 , the right part of the figure shows that the actuating end 84 (and / or at least the secondary bending section 87) of the elastic member 80 pushes the first section 31 of the metal elastic sheet 30 (or the second metal elastic sheet 30B) to the upper position in the figure, and drives the second section 32 (or its tail end) of the metal elastic sheet 30 (or the second metal elastic sheet 30B) to also be in the upper position in the figure.
[0099] Further, the imaginary line part depicts the state in which the conductor 50 (or the second conductor 52) can be inserted into the housing 10 from the second insertion hole 10B, and is electrically connected to the second pivot portion 40B through the second inlet 42 of the conductive module 40.
[0100] The state shown in the right part of the figure or the (open) position of the second actuating member 20B and the second metal elastic sheet 30B also allows personnel to withdraw the conductor 50.
[0101] Figure 3 Or the left part of the figure depicts that after the actuating member 20 (or the first actuating member 20A) moves downward, the pressing portion 24 presses the first section 31 (or its head end) of the metal elastic sheet 30 (or the first metal elastic sheet 30A) and the actuating end 84 (or its secondary bending section 87) of the elastic member 80, causing the second section 32 (or its tail end) of the metal elastic sheet 30 (or the first metal elastic sheet 30A) to swing downward in the figure and press into the housing 10 (or the chamber 11), and electrically connecting to the conductor 50 (or the first conductor 51) that forms an electrical connection with the first pivot portion 40A through the first inlet 41 of the conductive module 40. And, the elastic member 80 is forced to accumulate the above-mentioned elastic force or preload.
[0102] Figure 3 Or the left part of the figure also shows that when the limiting portion 27 of the actuating member 20 (or the first actuating member 20A) reaches the position of the free end 62 of the buckle, the limiting portion 27 will first push open the free end 62 of the buckle 60, causing the back 64 of the buckle 60 to push against the second end 72 of the spring 70, forcing the spring 70 to accumulate energy.
[0103] When the limiting portion 27 passes over the free end 62 of the fastener 60, the spring 70 releases the previously accumulated energy, forcing the free end 62 to enter the mouth 26 and return to the position of the limiting portion 27 of the fastening trigger 20 (or the first trigger 20A), and forms a fastening state with the limiting portion 27 to fix the trigger 20 (or the first trigger 20A) and the second section 32 (or its tail end) of the metal spring 30 (or the first metal spring 30A) to suppress the conductor 50 (or the first conductor 51).
[0104] It is understood that when a person provides an operating force to push the trigger member 20 upward, causing the limiting portion 27 to push the free end 62 of the fastener 60 and release the fastening state, the elastic member 80 releases the previously accumulated force or pre-force, and pops open the metal spring 30, pushing the first section 31 and the second section 32 of the metal spring 30 to the upper position in the figure, and driving the trigger member 20 to automatically move toward Figure 3 At the same time, the second section 32 (or the tail end) of the metal dome 30 is released or released from the state of pressing the conductor 50. In addition, the force or pre-force released by the elastic member 80 pushes the metal dome 30 away, forcing the metal dome 30 (or the second section 32) to actually leave the position of pressing the conductor 50, so that the conductor 50 can be easily withdrawn.
[0105] In the described operating embodiment, the structural form of the pivot end 21 and the operating end 22 of the pull member 20 (or the first pull member 20A, the second pull member 20B) (and / or the cooperation of the metal spring 30, the elastic device 80) provides a better or ideal operating force arm length, which obviously overcomes or improves the relatively short operating force arm of the pull member in the conventional technology, which makes it relatively laborious and difficult for personnel to operate the pull member, and obtains the effects of simple operation and labor saving.
[0106] See also Figure 3 The middle part of the figure shows that the conductor 50 (or the third conductor 53) is inserted into the shell 10 (or the chamber 11) from the third plug hole 10C, and forms an electrical connection with the connecting part 49 and the base 47 of the conductive module 40 (or the third pivot part 40C).
[0107] It must be noted that the first conductor 51 can be pivotally connected to the first pivotal connection portion 40A of the conductive module 40 to form an electrical input (or electrical output) configuration; the second conductor 52 can be pivotally connected to the second pivotal connection portion 40B of the conductive module 40 to form an electrical input (or electrical output) configuration; the third conductor 53 can be pivotally connected to the third pivotal connection portion 40C of the conductive module 40 to form an electrical output (or electrical input) configuration; thus achieving a structure that can provide different or multiple electrical input and output functions according to different usage and / or functional mode requirements, in cooperation with the characteristics of the conductor 50, and improving the electrical input and output design configurations and functions restricted by the conventional art or structure. Moreover, it can also improve the situation in the conventional art where different conductive (or circuit) modules must be set, or specific conductive frame structures (or conductive frames) must be applied, or the circuit path must be modified, or additional connection interfaces must be added, making the structural design and manufacturing operations cumbersome and the cost relatively high.
[0108] Typically speaking, this terminal device with electrical input and output functions, under the condition of meeting the requirement of maintaining the overall stability and suppressing the conductor ability, has the following considerations and advantages compared with the old method:
[0109] 1. The housing 10, the actuating member 20, the metal elastic sheet 30, the conductive module 40 and related cooperating structures have been redesigned and considered. For example, the housing 10 is provided with a first insertion hole 10A, a second insertion hole 10B, and a third insertion hole 10C. The actuating member 20 is composed of a first actuating member 20A, a second actuating member 20B, a pivotal connection end 21, and an operating end 22 to form an operating force arm, in cooperation with the first metal elastic sheet 30A and the second metal elastic sheet 30B. Corresponding to the actuating member 20 and the metal elastic sheet 30 (or the first insertion hole 10A, the second insertion hole 10B, the third insertion hole 10C), the conductive module 40 is provided with structural parts such as a first pivotal connection portion 40A, a second pivotal connection portion 40B, and a third pivotal connection portion 40C, which are significantly different from the conventional ones and change its usage and operation configurations, and are different from the old method.
[0110] 2. In particular, the configuration of the above combination structure can overcome or improve the situation where the operating lever arm of the actuating member in the conventional art is relatively short, making it relatively laborious and difficult to operate for personnel when operating the actuating member, and thus achieve the effects of simple operation and labor saving. Moreover, in cooperation with the structural configurations of the first pivoting portion 40A, the second pivoting portion 40B, and the third pivoting portion 40C (and / or the first insertion hole 10A, the second insertion hole 10B, and the third insertion hole 10C, the first conductor 51, the second conductor 52, and the third conductor 53) of the conductive module 40, it provides different or multiple functions of electrical input and output, and also improves the design configuration and functions of electrical input and output restricted by the conventional art or structure. Furthermore, it can meet the requirements of different usage and / or functional mode needs, improving the situation in the conventional art where different conductive (or circuit) modules must be provided or specific conductive frame structures (or conductive frames) must be applied, or the circuit path must be modified or additional connection interfaces must be added, making the structural design and manufacturing operations cumbersome and the cost relatively high.
[0111] Therefore, the present creation provides an effective terminal device having functions of electrical input and output. Its spatial configuration is different from that of the conventional art and has advantages that cannot be compared in the prior art, demonstrating a significant progress, and fully meeting the requirements of the utility model patent.
[0112] However, the above are only feasible embodiments of the present utility model and are not used to limit the scope of implementation of the present utility model. That is, all equivalent changes and modifications made in accordance with the scope of the patent application of the present utility model are covered by the scope of the present utility model patent.
Claims
1. A terminal device with electrical input and output functions, characterized in that, Comprising: A combination of a housing (10), a conductive module (40), a toggle member (20), and a metal elastic sheet (30); The housing (10) defines a chamber (11), and the housing (10) is provided with a first insertion hole (10A), a second insertion hole (10B), and a third insertion hole (10C) communicating with the chamber (11); The chamber (11) is configured with a metal elastic sheet (30) such that the metal elastic sheet (30) moves in response to the movement of the toggle member (20); In cooperation with the first insertion hole (10A) and the second insertion hole (10B), the toggle member (20) has a first toggle member (20A) and a second toggle member (20B); The toggle member (20) has a pivoting end (21) pivotally connected to the housing (10) and an operating end (22), enabling the toggle member (20) to form a reciprocating motion state; The toggle member (20) is also provided with a pressing portion (24); Corresponding to the first toggle member (20A) and the second toggle member (20B), the metal elastic sheet (30) has a first metal elastic sheet (30A) and a second metal elastic sheet (30B); The metal elastic sheet (30) has a first section (31) and a second section (32), the first section (31) contacts the pressing portion (24), and allows the pressing portion (24) to press the first section (31) of the metal elastic sheet (30), thereby driving the second section (32) to move; The elastic device (80) installed in the chamber (11) has a fixed end (83) and an actuating end (84); The fixed end (83) is fixedly installed on the housing (10), and the actuating end (84) contacts the first section (31) of the metal elastic sheet (30), capable of causing the metal elastic sheet (30) to move; The conductive module (40) has a first pivoting portion (40A), a second pivoting portion (40B) connected to the first pivoting portion (40A), and a third pivoting portion (40C) connecting the first pivoting portion (40A) and the second pivoting portion (40B), for pivotally connecting a conductor (50) entering the housing (10).
2. The terminal device having the functions of electrical input and electrical output according to claim 1, wherein The second insertion hole (10B) is located on the opposite side of the first insertion hole (10A), and the third insertion hole (10C) is located between the first insertion hole (10A) and the second insertion hole (10B); The third insertion hole (10C) extends in a direction from the upper region of the housing (10) towards the lower region of the housing (10); The elastic device (80) selects a torsion spring, which defines a first side (81) and a second side (82); The elastic device (80) extends the fixed end (83) from the first side (81) and extends the actuating end (84) from the second side (82); The fixed end (83) has a bent section (85) that bends from the direction of the first side (81) towards the direction of the second side (82); the actuating end (84) includes a straight section (86) that extends from the direction of the second side (82) towards the direction of the first side (81), an extension section (88) that connects the straight section (86) and extends away from the elastic device (80), and a secondary bent section (87) that connects the extension section (88); the secondary bent section (87) is in a form that bends and extends from the direction of the first side (81) towards the direction of the second side (82); the elastic device (80) is assembled on a column (15) of the housing (10), such that the actuating end (84) contacts the lower position of the first section (31) of the metal elastic sheet, and the fixed end (83) presses against a stop portion (16) of the housing (10) to generate a force, enabling the actuating end (84) to push the metal elastic sheet (30) to move upwards.
3. The terminal device with electrical input and output functions according to claim 1 or 2, characterized in that The pivoting end (21) of the actuating member (20) is pivotally connected to a shaft column (13) of the housing (10), such that the operating end (22) forms a reciprocating motion state; A pressing portion (24) protrudes in the area near the pivoting end (21), and shoulders (25) are provided on at least one side of the pressing portion (24); corresponding to the shoulders (25) of the actuating member (20), the housing (10) is provided with a guiding portion (17) and an arc-shaped concave surface (18) formed on the guiding portion (17).
4. The terminal device having the functions of electrical input and electrical output according to claim 1 or 2, characterized in that The conductive module (40) includes a substrate (45) and a fixing portion (46) provided on the substrate (45), and the fixing portion (46) is at least one of a convex structure and a hole structure; an empty area (44) is formed between the first pivoting portion (40A) and the second pivoting portion (40B) of the substrate (45); The first pivoting portion (40A) and the second pivoting portion (40B) respectively form a U-shaped cross-sectional structure, and respectively have a first entrance (41), a second entrance (42), and a wall (43) that defines the first entrance (41) and the second entrance (42); the wall (43) also defines a space (55) in cooperation with the substrate (45); the third pivoting portion (40C) has a base portion (47) in an L-shaped body, a secondary fixing portion (48) provided at the bottom of the base portion (47), an annular connecting portion (49) that connects the base portion (47), and a fitting member (40D) that assists in restricting the connecting portion (49); The secondary fixing portion (48) is at least one of a hole structure and a convex structure; the secondary fixing portion (48) of the base portion (47) is connected to the fixing portion (46) of the substrate (45), such that at least a partial area of the third pivoting portion (40C) is located inside the third insertion hole (10C) of the housing (10), and at least one of a positioning portion (19) and a secondary positioning portion (12) is provided in cooperation with the third insertion hole (10C) to position the form of the third pivoting portion (40C); and conductors (50) corresponding to entering the first pivoting portion (40A), the second pivoting portion (40B), and the third pivoting portion (40C) are respectively defined as a first conductor (51), a second conductor (52), and a third conductor (53); The first pivoting portion (40A) is electrically connected to the first conductor (51) to form one of the electrical input and output; the second pivoting portion (40B) is electrically connected to the second conductor (52) to form one of the electrical input and output; the third pivoting portion (40C) is electrically connected to the third conductor (53) to form one of the electrical input and output.
5. The terminal device having an electrical input and an electrical output according to claim 3, characterized in that, The conductive module (40) includes a substrate (45) and a fixing portion (46) provided on the substrate (45), and the fixing portion (46) is at least one of a convex portion structure and a hole-like structure; an empty area (44) is formed between the first pivoting portion (40A) and the second pivoting portion (40B) on the substrate (45); The first pivoting portion (40A) and the second pivoting portion (40B) respectively form a U-shaped cross-sectional structure, and respectively have a first inlet (41), a second inlet (42) and a wall (43) defining the first inlet (41) and the second inlet (42); the wall (43) cooperates with the substrate (45) to also define a space (55); the third pivoting portion (40C) has a base portion (47) in an L-shaped body, a secondary fixing portion (48) provided at the bottom of the base portion (47), an annular connecting portion (49) connecting the base portion (47), and a fitting member (40D) assisting in restricting the connecting portion (49); The secondary fixing portion (48) is at least one of a hole-like structure and a convex portion structure; the secondary fixing portion (48) of the base portion (47) is connected to the fixing portion (46) of the substrate (45), so that at least a partial area of the third pivoting portion (40C) is located inside the third insertion hole (10C) of the housing (10), and at least one of a positioning portion (19) and a secondary positioning portion (12) is provided in cooperation with the third insertion hole (10C) to position the shape of the third pivoting portion (40C); and the conductors (50) correspondingly entering the first pivoting portion (40A), the second pivoting portion (40B) and the third pivoting portion (40C) are respectively defined as the first conductor (51), the second conductor (52) and the third conductor (53); The first pivoting portion (40A) is electrically connected to the first conductor (51) to form one of the electrical input and output; the second pivoting portion (40B) is electrically connected to the second conductor (52) to form one of the electrical input and output; the third pivoting portion (40C) is electrically connected to the third conductor (53) to form one of the electrical input and output.
6. The terminal device having the functions of electrical input and electrical output according to claim 1 or 2, characterized in that, The chamber (11) is equipped with a reciprocating fastener (60); the fastener (60) is combined with a spring (70); In the area between the pivoting end (21) and the operating end (22) of the toggling member (20), a mouth portion (26) and a restricting portion (27) formed on the mouth portion (26) are provided; The fastener (60) includes a shaft connecting end (61) and a free end (62); the shaft connecting end (61) and the spring (70) are combined together on a post (14) of the housing (10), so that the free end (62) of the fastener (60) can reciprocatingly enter the mouth portion (26) of the toggling member (20) to fasten the restricting portion (27); The spring (70) has a first end (71) and a second end (72); the first end (71) presses against the housing (10), and the second end (72) forms a structure with a vertical bending section on the spring (70) and leans against a back (64) of the fastener (60).
7. The terminal device having an electrical input and an electrical output function according to claim 3, characterized in that, The chamber (11) is equipped with a reciprocating fastener (60); the fastener (60) is combined with the spring (70). In the area between the pivoting end (21) and the operating end (22) of the actuating member (20), there is provided an opening (26) and a limiting portion (27) formed on the opening (26). The fastener (60) includes a pivot end (61) and a free end (62); the pivot end (61) and the spring (70) are combined together on a post (14) of the housing (10), enabling the free end (62) of the fastener (60) to reciprocate into the opening (26) of the actuating member (20) to engage the limiting portion (27). The spring (70) has a first end (71) and a second end (72); the first end (71) presses against the housing (10), and the second end (72) forms a structure with a vertical bending section on the spring (70) and leans against a back (64) of the fastener (60).
8. The terminal device having the functions of electrical input and electrical output according to claim 4, characterized in that, The chamber (11) is equipped with a reciprocating fastener (60); the fastener (60) is combined with the spring (70). In the area between the pivoting end (21) and the operating end (22) of the actuating member (20), there is provided an opening (26) and a limiting portion (27) formed on the opening (26). The fastener (60) includes a pivot end (61) and a free end (62); the pivot end (61) and the spring (70) are combined together on a post (14) of the housing (10), enabling the free end (62) of the fastener (60) to reciprocate into the opening (26) of the actuating member (20) to engage the limiting portion (27). The spring (70) has a first end (71) and a second end (72); the first end (71) presses against the housing (10), and the second end (72) forms a structure with a vertical bending section on the spring (70) and leans against a back (64) of the fastener (60).
9. The terminal device having an electrical input and an electrical output according to claim 5, characterized in that, The chamber (11) is equipped with a reciprocating fastener (60); the fastener (60) is combined with the spring (70). In the area between the pivoting end (21) and the operating end (22) of the actuating member (20), there is provided an opening (26) and a limiting portion (27) formed on the opening (26). The fastener (60) includes a pivot end (61) and a free end (62); the pivot end (61) and the spring (70) are combined together on a post (14) of the housing (10), enabling the free end (62) of the fastener (60) to reciprocate into the opening (26) of the actuating member (20) to engage the limiting portion (27). The spring (70) has a first end (71) and a second end (72); the first end (71) presses against the housing (10), and the second end (72) forms a structure with a vertical bending section on the spring (70) and leans against a back (64) of the fastener (60).
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