Anti-deformation wireless microphone receiver
By designing a yaw drive component on the wireless microphone receiver, the problem of damage to terminals and jacks during the plugging and unplugging process of traditional wireless microphone receivers is solved, achieving stable connection and convenient disassembly, and extending the service life of the device.
Patent Information
- Application Number
- CN202520400135.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-07
AI Technical Summary
Traditional wireless microphone receivers are prone to damage to terminals and jacks during frequent plugging and unplugging, leading to poor contact.
The design incorporates a yaw drive assembly, including a fixed base, a rotating shaft, and a swing arm. By abutting the terminal with a contact block, it reduces friction between the terminal and the connector, making the disassembly process more stable and preventing wobbling.
It effectively prevents deformation of terminals and terminal sockets, improves the service life of the receiver, and ensures stable connection and easy disassembly.
Smart Images

Figure CN223957633U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wireless microphone technology, and in particular to a deformation-resistant wireless microphone receiver. Background Technology
[0002] Traditional wireless microphones include a transmitter and a receiver. The receiver can be connected to a smart terminal. The wireless microphone includes a transmitter and a receiver. The receiver is plugged into the terminal through the smart terminal interface. The transmitter is used by the user for recording. The recorded signal is transmitted to the receiver wirelessly. The receiver feeds the signal back to the smart terminal through a terminal.
[0003] Most existing terminals have only one plug-in port, such as Type-C or Lightning interfaces. While microphone use is infrequent, it's frequent, leading to frequent plugging and unplugging of the terminal's connector with the receiver. Users typically use their index finger and thumb to pinch the receiver housing and gently shake it to slightly deform the connector, facilitating easy detachment. However, this frequent deformation can damage the connector. The connection between the connector and the internal circuit board is prone to breakage, and the pins of the phone's connector can also be affected, leading to poor contact. Therefore, a receiver removal solution with a stable orientation that minimizes deformation of the connector and port is urgently needed. Utility Model Content
[0004] To overcome the shortcomings of the existing technology, the purpose of this utility model is to provide a deformation-resistant wireless microphone receiver.
[0005] The technical solution adopted by this utility model is as follows: a deformation-resistant wireless microphone receiver includes a housing; a terminal is provided at the end of the housing; and a sway drive assembly is provided on the housing and rotatably connected to the outer wall of the housing at its middle position, one end of the sway drive assembly extends to one side of the terminal, and the other end of the sway drive assembly extends away from the terminal.
[0006] In a preferred embodiment, the yaw drive assembly consists of two sets, which are symmetrically distributed on both sides of the terminal and can rotate synchronously relative to the housing.
[0007] In a preferred embodiment, the yaw drive assembly is configured such that when the terminal is plugged into the smart terminal, the end of the yaw drive assembly facing the terminal abuts against the edge of the smart terminal's interface.
[0008] In a preferred embodiment, the swing driving assembly comprises a fixed seat, a rotating shaft and a swing arm, the fixed seat is arranged on the outer sidewall of the shell, the rotating shaft is rotatably connected to the fixed seat, and the swing arm is connected to the rotating shaft at a middle position and rotatable relative to the fixed seat.
[0009] In a preferred embodiment, the swing arm is provided with an abutting block at an end thereof facing the terminal, the abutting block is movable towards or away from the intelligent terminal, and when the abutting block moves towards the intelligent terminal, the abutting block abuts against the intelligent terminal to move the terminal away from the intelligent terminal to achieve disengagement.
[0010] In a preferred embodiment, the swing arm is provided with a pinching portion at an end thereof away from the abutting block, the pinching portion is used to push the swing arm to move the abutting block towards the intelligent terminal.
[0011] In a preferred embodiment, the swing driving assembly further comprises an elastic member, the elastic member is arranged on the outer sidewall of the shell and located between the swing arm and the shell.
[0012] In a preferred embodiment, the elastic member has a retracted state, and when the elastic member is in the retracted state, the elastic member drives the swing arm to rotate to move the abutting block away from the intelligent terminal.
[0013] In a preferred embodiment, the outer sidewall of the shell is provided with a receiving groove for accommodating the swing driving assembly.
[0014] In a preferred embodiment, the abutting block extends out of the receiving groove, and the top and side of the receiving groove are provided with openings.
[0015] In summary, due to the adoption of the above technical solutions, the utility model has the beneficial effects that: the swing driving assembly is designed on both sides of the terminal, when the receiver needs to be detached, the user only needs to drive the pinching portion to move towards the shell, so that the abutting block is driven to move towards the terminal, and then abuts against the intelligent terminal, the shell is driven away from the terminal by the swing arm, the rotating shaft and the fixed seat, the clamping friction force of the terminal and the terminal plug-in interface is greatly reduced, and the receiver is in a loosened state, so that the user can easily detach the receiver from the intelligent terminal, effectively avoiding the user from adding a shaking action in the process of detaching the receiver, preventing the terminal of the receiver and the terminal plug-in hole from deforming, and thus improving the service life of the receiver. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 FIG. 1 is a plan view of a first embodiment of the utility model combined with an intelligent terminal;
[0017] Figure 2It is the plane structure schematic view of the first embodiment of the utility model;
[0018] Figure 3 It is the principle schematic view of the first embodiment and the intelligent terminal in the dismounting state of the utility model;
[0019] Figure 4 It is the plane structure schematic view of the second embodiment of the utility model;
[0020] Figure 5 It is the plane structure schematic view of the third embodiment of the utility model.
[0021] Markings in the figure:
[0022] 100 - shell, 110 - containing groove;
[0023] 200 - deflection driving assembly, 210 - abutment block, 220 - swing arm, 230 - rotating shaft, 240 - fixed seat, 250 - pinch part, 260 - elastic piece;
[0024] 300 - intelligent terminal;
[0025] 400 - terminal. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the following is further detailed to the utility model by combining with the drawings and embodiment. It should be understood that the specific embodiment described here is only used to explain the utility model, and is not used to limit the utility model.
[0027] A kind of wireless microphone receiver of deformation prevention, refer to Figures 1-5, including the shell 100, the terminal 400 and the eccentric drive assembly 200, the terminal 400 is arranged at the end of the shell 100;The eccentric drive assembly 200 is arranged on the shell 100, and the middle position is rotationally connected with the outer side wall of the shell 100, one end of the eccentric drive assembly 200 extends to one side of the terminal 400, the other end of the eccentric drive assembly 200 extends away from the terminal 400, the eccentric drive assembly 200 includes the fixed seat 240, the rotating shaft 230 and the swing arm 220, the fixed seat 240 is arranged on the outer side wall of the shell 100, the rotating shaft 230 is rotationally connected on the fixed seat 240, the swing arm 220 is connected on the rotating shaft 230 in the middle position, the swing arm 220 can rotate relative to the fixed seat 240, the eccentric drive assembly 200 is designed on both sides of the terminal 400, when the receiver needs to be disassembled, the user only needs to drive the swing arm 220 (far from one end of the terminal 400) to move towards the shell 100, so that the swing arm 220 (towards one end of the terminal 400) moves towards the smart terminal 300, and then abuts against the smart terminal 300, the shell 100 is driven away from the smart terminal 300 through the cooperation of the swing arm 220, the rotating shaft 230 and the fixed seat 240, so that the clamping friction of the terminal 400 and the plug interface of the smart terminal 300 is greatly reduced, and the receiver is in a loose state, so that the user can easily disassemble the receiver from the smart terminal 300, effectively avoiding the user to add shaking action in the process of disassembling the receiver, preventing the terminal 400 of the receiver and the terminal plug hole from deforming, and thereby improving the service life of the receiver.
[0028] In the first embodiment of the utility model, the eccentric drive assembly 200 is two groups, and the two groups of eccentric drive assemblies 200 are symmetrically distributed on both sides of the terminal 400 and can rotate synchronously relative to the shell 100, and the two groups of eccentric drive assemblies 200 can give the abutting force of the smart terminal 300 evenly, so that the terminal 400 can move more stably.
[0029] Further, the eccentric drive assembly 200 is configured to abut against the edge of the plug interface of the smart terminal 300 when the terminal 400 is plugged into the smart terminal 300. The smart terminal 300 can be a mobile phone, a smart watch, a tablet computer or other electronic device.
[0030] In the first embodiment of the utility model, the end of swing arm 220 is provided with abutting block 210, abutting block 210 can move towards or away from intelligent terminal 300, when abutting block 210 moves towards intelligent terminal 300, abutting block 210 abuts against intelligent terminal 300 to make terminal 400 move away from intelligent terminal 300, in initial state (namely not insert intelligent terminal 300), the bottom of abutting block 210 and the bottom connecting seat of terminal 400 are flush, when user inserts intelligent terminal 300, the bottom of intelligent terminal 300 pushes abutting block 210 to make abutting block 210 reverse drive swing arm 220 to rotate to adapt the movement stroke of terminal 400 and intelligent terminal 300. Wherein, abutting block 210 can be arc, hemispherical or other shapes.
[0031] In the first embodiment of the utility model, the end of swing arm 220 is provided with abutting block 210, abutting block 210 can move towards or away from intelligent terminal 300, when abutting block 210 moves towards intelligent terminal 300, abutting block 210 abuts against intelligent terminal 300 to make terminal 400 move away from intelligent terminal 300, in initial state (namely not insert intelligent terminal 300), the bottom of abutting block 210 and the bottom connecting seat of terminal 400 are flush, when user inserts intelligent terminal 300, the bottom of intelligent terminal 300 pushes abutting block 210 to make abutting block 210 reverse drive swing arm 220 to rotate to adapt the movement stroke of terminal 400 and intelligent terminal 300. Wherein, abutting block 210 can be arc, hemispherical or other shapes.
[0032] In the second embodiment of the utility model, referring to Figure 4 The elastic member 260 is arranged on the outer side wall of the shell 100 and located between the swing arm 220 and the shell 100, and the elastic member 260 has a contraction state. When the elastic member 260 is in the contraction state, the elastic member 260 drives the swing arm 220 to rotate, so that the abutting block 210 moves away from the intelligent terminal 300. The designed elastic member 260 can realize the self-retraction operation of the abutting block 210, and the intelligent terminal 300 does not need to overcome the resistance of the abutting block 210 when connecting the terminal 400. At the same time, by using the elastic force of the elastic member 260 itself, the problem of the abutting block 210 accidentally touching and abutting against the intelligent terminal 300 can also be reduced. Preferably, the elastic member 260 is a spring, and in other embodiments, it can also be other materials with elasticity.
[0033] In the third embodiment of the utility model, referring to Figure 5 The outer side wall of the shell 100 is provided with a containing groove 110 for accommodating the swing driving assembly 200, and the abutting block 210 extends out of the containing groove 110. The top and side of the containing groove 110 are provided with openings. The designed containing groove 110 can protect the swing driving assembly 200 from external forces, so that the swing driving assembly 200 is not easy to be accidentally touched. The user needs to put his fingers or other objects into the containing groove 110 to drive it.
[0034] The opening size of the accommodating groove 110 only needs to be able to meet the convenience of extending into the accommodating groove 110 and pressing the pinch portion 250.
[0035] In addition, the technical solutions among the various embodiments can be combined with each other, but must be based on the fact that a person of ordinary skill in the art can realize it, and when the combination of technical solutions appears contradictory or cannot be realized, it should be considered that the combination of such technical solutions does not exist and is not within the protection scope required by the utility model.
[0036] The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made under the utility model concept of the utility model, or direct / indirect application in other related technical fields is included in the patent protection range of the utility model.
Claims
1. A distortionless wireless microphone receiver, characterized by, The utility model relates to a shell, a terminal, a yaw drive assembly, the terminal is arranged at the end of the shell, the yaw drive assembly is arranged on the shell, and the intermediate position is rotationally connected with the outer wall of the shell, one end of the yaw drive assembly extends to one side of the terminal, and the other end of the yaw drive assembly extends away from the terminal. The yaw drive assembly is two groups, and the two groups of yaw drive assemblies are symmetrically distributed on the two sides of the terminal and can be synchronously rotated relative to the shell. The yaw drive assembly is configured to abut against the edge of the insertion port of the intelligent terminal when the terminal is inserted on the intelligent terminal. The yaw drive assembly includes a fixing seat, a rotating shaft and a swing arm, the fixing seat is arranged on the outer wall of the shell, the rotating shaft is rotationally connected on the fixing seat, the swing arm is connected on the rotating shaft at the intermediate position, and the swing arm can rotate relative to the fixing seat.
2. A distortionless wireless microphone receiver as set forth in claim 1, wherein: The swing arm is provided with an abutting block towards the end of the terminal, the abutting block can move towards or away from the intelligent terminal, and when the abutting block moves towards the intelligent terminal, the abutting block abuts against the intelligent terminal to move the terminal away from the intelligent terminal.
3. A distortionless wireless microphone receiver as set forth in claim 1, wherein: The end of the swing arm away from the abutting block is provided with a pinching part for pushing the swing arm to move the abutting block towards the intelligent terminal.
4. A distortionless wireless microphone receiver as set forth in claim 3, wherein: The yaw drive assembly further includes an elastic member arranged on the outer wall of the shell and located between the swing arm and the shell.
5. A distortionless wireless microphone receiver as set forth in claim 4, wherein: The elastic member has a contraction state, and when the elastic member is in the contraction state, the elastic member drives the swing arm to rotate to move the abutting block away from the intelligent terminal.
6. A distortionless wireless microphone receiver as set forth in claim 5, wherein: The outer wall of the shell is provided with a containing groove for accommodating the yaw drive assembly.
7. A distortionless wireless microphone receiver as set forth in claim 6, wherein: The abutting block extends out of the containing groove, and the top and side of the containing groove are provided with openings.
8. A distortionless wireless microphone receiver as set forth in claim 7, wherein: 9. A distortionless wireless microphone receiver as set forth in claim 8, wherein: 10. A distortionless wireless microphone receiver as set forth in claim 9, wherein: