Wireless microphone charging bin and wireless microphone charging system
By designing a power display mechanism in the wireless microphone charging chamber, directly displaying the power of the transmitter and receiver, the cumbersome operation of users in using external terminals to view the power, and achieving more convenient power inquiry.
Patent Information
- Application Number
- CN202422437562.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-09
AI Technical Summary
In the existing wireless microphone charging system, users need to check the power of the transmitter or receiver through the external terminal operation switching interface, resulting in cumbersome operation.
A wireless microphone charging chamber is designed, including a bin body, a charging base and a power display mechanism, which directly displays the power of the transmitter and receiver on the bin body, simplifying operation.
Users can directly view the power of the transmitter and receiver through the power display mechanism, which is more convenient to operate and more practical.
Smart Images

Figure CN223230910U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of microphone technology, and in particular to a wireless microphone charging compartment and a wireless microphone charging system. Background Art
[0002] The wireless microphone charging system includes a charging base, a transmitter and a receiver. The transmitter is used to receive sound, and the receiver is used to connect to the user terminal and transmit the audio signal to the user terminal. The charging base is provided with an open charging slot, and the transmitter and receiver can be installed one by one on the corresponding charging slot.
[0003] In related technologies, transmitters and receivers are typically connected to external terminals (such as mobile phones or computers). To check the remaining battery life of a transmitter or receiver, users can only do so by opening the external terminal. Because the display interface of the external terminal is typically used for other purposes, users must perform specific operations to switch the display interface to the battery level display, which is cumbersome. Utility Model Content
[0004] The embodiments of the present application provide a wireless microphone charging case and a wireless microphone charging system, which can solve the problem in related technologies that users have to use external terminals to display the remaining power of a transmitter or receiver, which causes cumbersome operations.
[0005] In the first aspect, an embodiment of the present application provides a wireless microphone charging case; the wireless microphone charging case includes a case body, a charging seat and a power display mechanism, the case body defines a accommodating cavity with an open top, the charging seat is at least partially disposed in the accommodating cavity, the charging seat has a charging slot with a notch facing the cavity opening of the accommodating cavity, the charging slot is used to accommodate a transmitter and a receiver, the power display mechanism is disposed in the case body, and the power display mechanism is used to display the power of at least one of the transmitter and the receiver.
[0006] In a second aspect, an embodiment of the present application provides a wireless microphone charging system; the wireless microphone charging system includes a transmitter, a receiver and the above-mentioned wireless microphone charging compartment; the transmitter and the receiver are installed in the charging slot.
[0007] Based on the wireless microphone charging case and wireless microphone charging system of the embodiment of the present application, a power display mechanism is designed, which can directly display the power level of at least one of the transmitter and the receiver, so that the user can directly determine the power level of the transmitter and / or receiver based on the power display mechanism; compared with the related technology of using external terminals such as mobile phones and computers to check the power level of the transmitter and / or receiver, the operation is more convenient and more practical. BRIEF DESCRIPTION OF THE DRAWINGS
[0008] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.
[0009] Figure 1 This is a schematic diagram of the structure of a wireless microphone charging compartment in one embodiment of the present application;
[0010] Figure 2 This is a schematic diagram of a partially exploded structure of a wireless microphone battery charging compartment in one embodiment of the present application;
[0011] Figure 3 for Figure 2 Schematic diagram of the structure from another perspective;
[0012] Figure 4 This is a schematic diagram of the structure of a power supply and a circuit board in one embodiment of the present application;
[0013] Figure 5 This is a schematic structural diagram of a wireless microphone charging compartment in another embodiment of the present application;
[0014] Figure 6 This is a structural diagram of a connection base provided on a charging base in one embodiment of the present application;
[0015] Figure 7 This is a schematic structural diagram of a fixing base in one embodiment of the present application;
[0016] Figure 8 for Figure 7 Schematic diagram of the structure from another perspective.
[0017] Figure markings: 1. Wireless microphone charging compartment; 10. Combination body; 11. Accommodating cavity; 12. Notch; 20. Charging seat; 21. Charging slot; 21a. First charging slot; 21b. Second charging slot; 30. Power display mechanism; 31. First indicator light; 311. First lamp bead; 32. Second indicator light; 321. Second lamp bead; 33. Third indicator light; 331. Third lamp bead; 34. Display screen; 40. Circuit board; 50. Power supply; 60. Top cover; 70. Fixing seat; 80. Connecting seat; 91. Snap-in block; 92. Snap-in slot; 93. First positioning portion; 94. Second positioning portion; 95. Third positioning portion; 96. Fourth positioning portion; 2. Transmitter; 3. Receiver; MM', first preset direction; NN', second preset direction. DETAILED DESCRIPTION
[0018] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0019] Please refer to Figure 1-Figure 3 As shown, on the first aspect, the present application proposes a wireless microphone charging box 1, and the user can directly determine the power level of the transmitter 2 and / or receiver 3 according to the power display mechanism 30, which is more convenient to operate and more practical.
[0020] The wireless microphone charging station 1 comprises a station body 10, a charging base 20, and a battery level indicator 30. The station body 10 defines an open-topped receiving chamber 11. The charging base 20 is at least partially disposed within the receiving chamber 11 and includes a charging slot 21 with its opening facing the opening of the receiving chamber 11. The charging slot 21 is configured to accommodate the transmitter 2 and the receiver 3. The battery level indicator 30 is disposed within the station body 10 and is configured to display the battery level of at least one of the transmitter 2 and the receiver 3.
[0021] The following combination Figures 1-8 The specific structure of the wireless microphone charging box 1 is introduced in detail.
[0022] like Figure 1-Figure 3 As shown, the wireless microphone charging compartment 1 includes a compartment body 10 , a charging base 20 and a power display mechanism 30 .
[0023] The housing 10 serves as the shell of the wireless microphone charging pod 1. The specific shape of the housing 10 is not limited here, and designers can reasonably design it according to actual needs. For example, the outer contour of the housing 10 can be, but is not limited to, a rectangular parallelepiped or a cylindrical shape. The specific material used to make the housing 10 is also not limited here, and designers can reasonably choose it according to actual needs. For example, the material used to make the housing 10 can be, but is not limited to, plastic or one of the other plastics. This raw material is widely available and easily accessible, and can effectively reduce the cost of the wireless microphone charging pod 1.
[0024] The hopper body 10 defines a receiving chamber 11 with an open top.
[0025] The charging base 20 serves as a support for the wireless microphone charging compartment 1, supporting the transmitter 2 and receiver 3. The specific material used for the charging base 20 is not limited here, and designers can make reasonable choices based on actual needs. For example, the charging base 20 can be made of, but is not limited to, plastic or a combination of plastics. This allows for a wide range of raw materials, making them readily available, and effectively reducing the cost of the wireless microphone charging compartment 1.
[0026] The charging base 20 is at least partially located within the accommodating cavity 11 of the housing 10. The specific connection method between the charging base 20 and the housing 10 is not limited herein, and designers may reasonably design it based on actual needs. For example, the charging base 20 may be, but is not limited to, a detachable connection to the housing 10 via at least one of a screw connection, a snap connection, or a plug-in connection. For another example, the charging base 20 may be, but is not limited to, a non-detachable connection to the housing 10 via a riveted connection or an adhesive connection.
[0027] The charging seat 20 has a charging slot 21 with a notch facing the cavity opening of the accommodating cavity 11 of the housing 10 ; the charging slot 21 is used to accommodate the transmitter 2 and the receiver 3 .
[0028] The power display mechanism 30 serves as the power display structure of the wireless microphone charging compartment 1; the specific form of the power display mechanism 30 will be introduced in detail below.
[0029] The power display mechanism 30 is arranged on the warehouse body 10; there is no limitation on the arrangement method of the power display mechanism 30 on the warehouse body 10 and the specific connection method between the power display mechanism 30 and the warehouse body 10. Designers can make reasonable designs according to actual needs, and it can be understood that for power display mechanisms 30 with different specific forms, the arrangement method of the power display mechanism 30 on the warehouse body 10 and the specific connection method between the power display mechanism 30 and the warehouse body 10 are also different.
[0030] The power display mechanism 30 is used to display the power level of at least one of the transmitter 2 and the receiver 3. For example, the power display mechanism 30 can be used to display the power level of the transmitter 2 alone. For another example, the power display mechanism 30 can also be used to display the power level of the receiver 3 alone. For another example, the power display mechanism 30 can also be used to display the power level of both the transmitter 2 and the receiver 3. It should be noted that the power level displayed by the power display mechanism 30 can be the remaining power level of the transmitter 2 and / or the receiver 3, or the charged power level of the transmitter 2 and / or the receiver 3. For example, when the transmitter 2 and the receiver 3 are in use, the user can determine the current remaining power level of the transmitter 2 and / or the receiver 3 based on the power display mechanism 30. For another example, when the transmitter 2 and the receiver 3 are in charging state, the user can determine the current charged power level of the transmitter 2 and / or the receiver 3 based on the power display mechanism 30.
[0031] Based on the wireless microphone charging case 1 in the embodiment of the present application, by designing a power display mechanism 30, the power display mechanism 30 can directly display the power level of at least one of the transmitter 2 and the receiver 3, so that the user can directly determine the power level of the transmitter 2 and / or the receiver 3 based on the power display mechanism 30; compared with the related technology of using external terminals such as mobile phones and computers to check the power level of the transmitter 2 and / or the receiver 3, the operation is more convenient and more practical.
[0032] like Figure 1-Figure 3 As shown, the charging slot 21 includes a first charging slot 21a for accommodating the transmitter 2; the power display mechanism 30 includes a first indicator light 31 for displaying the power level of the transmitter 2; the first indicator light 31 is arranged on the side wall of the housing 10 corresponding to the first charging slot 21a. A first mounting hole (not shown) is provided in the area of the side wall of the housing 10 corresponding to the first charging slot 21a, and the first indicator light 31 is inserted into the first mounting hole. By designing the first indicator light 31, the user can determine the power level of the transmitter 2 based on the display status of the first indicator light 31; by designing the first indicator light 31 on the side wall of the housing 10 corresponding to the first charging slot 21a, on the one hand, it is convenient for the user to more intuitively determine the power level of the transmitter 2 based on the display status of the first indicator light 31, and on the other hand, the spatial layout of the first indicator light 31 and the first charging slot 21a is more compact, which is convenient for wiring.
[0033] like Figure 1-Figure 3 As shown, the charging slot 21 also includes a second charging slot 21b for accommodating the receiver 3; the power display mechanism 30 also includes a second indicator light 32 for displaying the power level of the receiver 3; the second indicator light 32 is arranged on the side wall of the warehouse body 10 corresponding to the second charging slot 21b. Among them, a second mounting hole (not shown in the figure) is provided in the area of the side wall of the warehouse body 10 corresponding to the second charging slot 21b, and the second indicator light 32 is inserted into the second mounting hole. By designing the second indicator light 32, the user can determine the power level of the receiver 3 according to the display status of the second indicator light 32; by designing the second indicator light 32 on the side wall of the warehouse body 10 corresponding to the second charging slot 21b, on the one hand, it is convenient for the user to more intuitively determine the power level of the receiver 3 according to the display status of the second indicator light 32, and on the other hand, the second indicator light 32 and the second charging slot 21b are more compact in spatial layout, which is convenient for wiring.
[0034] like Figure 1-Figure 3As shown, the first charging slot 21a and the second charging slot 21b are arranged along the first preset direction MM'. The first indicator light 31 includes a plurality of first lamp beads 311 disposed on the side wall of the housing 10; the plurality of first lamp beads 311 are arranged at intervals along the second preset direction NN', and the plurality of first lamp beads 311 display the power level of the transmitter 2 according to the first preset display mode. The second indicator light 32 includes a plurality of second lamp beads 321 disposed on the side wall of the housing 10; the plurality of second lamp beads 321 are arranged at intervals along the second preset direction NN', and the plurality of second lamp beads 321 display the power level of the receiver 3 according to the second preset display mode. The second preset direction NN' intersects with the first preset direction MM'.
[0035] Among them, when the outer contour shape of the warehouse body 10 is a rectangular parallelepiped, the number of first charging slots 21a can be one, and the number of second charging slots 21b can be two. At this time, one first charging slot 21a and two second charging slots 21b are arranged along the length direction of the warehouse body 10 (one of the above-mentioned first preset directions MM').
[0036] The number of the first lamp beads 311 can be two, three, four, five, six or more; when the outer contour of the warehouse body 10 is a rectangular parallelepiped, multiple first lamp beads 311 can be arranged along the height direction of the warehouse body 10 (one of the above-mentioned second preset directions NN').
[0037] The first lamp bead 311 displays the power level of the transmitter 2 in accordance with the first preset display mode; wherein the first lamp bead 311 has different display states such as constant on, constant off, and flashing. The power level of the transmitter 2 can be determined according to the arrangement and combination of the different display states of the first lamp bead 311. For example, the power level of the transmitter 2 is defined as Q1, and the fully charged power level of the transmitter 2 is defined as Q f , take the first indicator light 31 including four first lamp beads 311 as an example for illustration; when 0.75Q f ≤Q1≤Q f When 0.5Q f ≤Q1<0.75Q f When 0.25Q f ≤Q1<0.5Q f When 0<Q1<0.25Q f When Q1=0, one of the first lamp beads 311 is in a constantly on display state, and the remaining three first lamp beads 311 are in a constantly off display state; when Q1=0, all four first lamp beads 311 are in a constantly off display state.
[0038] The number of the second lamp beads 321 can be two, three, four, five, six, or more; when the outer contour of the warehouse body 10 is a rectangular parallelepiped, the plurality of second lamp beads 321 can be arranged along the height direction of the warehouse body 10. Of course, in other embodiments, the plurality of second lamp beads 321 can also be arranged in a third predetermined direction different from the first predetermined direction MM' and the second predetermined direction NN'.
[0039] The second lamp bead 321 displays the power level of the receiver 3 in a second preset display mode; wherein the second lamp bead 321 has different display states such as constant on, constant off, and flashing. The power level of the receiver 3 can be determined according to the arrangement and combination of the different display states of the second lamp bead 321. For example, the power level of the receiver 3 is defined as Q2, and the fully charged power level of the receiver 3 is defined as Q r , the second indicator light 32 includes four second lamp beads 321 as an example for illustration; when Q2 = Q r When 0.75Q r <Q2<Q r When Q2=0.75Q, three second lamp beads 321 are in a constantly on display state, and the remaining second lamp bead 321 is in a flashing display state; r When 0.5Q r <Q2<0.75Q r When Q2=0.5Q, two second lamp beads 321 are in a constantly on display state, one of the remaining second lamp beads 321 is in a flashing display state, and the other remaining second lamp bead 321 is in a constantly off display state; r When the 0.25Q r <Q2<0.5Q r When Q2=0.25Q, one of the second lamp beads 321 is in a constantly on display state, one of the remaining second lamp beads 321 is in a flashing display state, and the remaining two second lamp beads 321 are in a constantly off display state; r When 0<Q2<0.25Q rWhen Q2=0, one of the second lamp beads 321 is in a flashing display state, and the remaining three second lamp beads 321 are in a permanently off display state. When Q2=0, all four second lamp beads 321 are in a permanently off display state. Of course, in other embodiments, multiple first lamp beads 311 and multiple second lamp beads 321 can also display the power levels of the transmitter 2 and the receiver 3 in the same preset display mode.
[0040] It should be noted that the first indicator light 31 may also include a first lamp bead 311. In this case, the first lamp bead 311 can display different colors, and the power level of the transmitter 2 can be determined based on the different colors displayed by the first lamp bead 311. The second indicator light 32 may also include a second lamp bead 321. In this case, the second lamp bead 321 can display different colors, and the power level of the receiver 3 can be determined based on the different colors displayed by the second lamp bead 321.
[0041] like Figure 2 and Figure 4 As shown, the wireless microphone charging compartment 1 also includes a circuit board 40 and a power supply 50. The circuit board 40 is disposed in the accommodating cavity 11 of the compartment body 10 and is located below the charging slot 21. The charging terminals of the circuit board 40 (not shown) pass through the bottom wall of the charging slot 21 for electrical connection to the charging ports of the transmitter 2 and receiver 3. The power supply 50 is disposed in the accommodating cavity 11 of the compartment body 10 and is electrically connected to the circuit board 40. The power display mechanism 30 is electrically connected to the circuit board 40 and is also used to display the power level of the power supply 50.
[0042] Among them, the circuit board 40 serves as an electrical connector of the wireless microphone charging compartment 1, and is used to realize the electrical connection between the power supply 50, the transmitter 2, the receiver 3 and the power display mechanism 30. The circuit board 40 can be a rigid circuit board 40, a flexible circuit board 40, or a rigid-flexible circuit board 40. It should be noted that when the circuit board 40 is a flexible circuit board 40, the wireless microphone charging compartment 1 can also include a reinforcement plate, which is arranged on one side of the flexible circuit board 40 to provide support for the flexible circuit board 40. The specific connection method between the circuit board 40 and the compartment body 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the circuit board 40 can be, but is not limited to, detachably connected to the compartment body 10 by at least one of screw connection, snap connection or plug connection; for another example, the circuit board 40 can also be, but is not limited to, non-detachably connected to the compartment body 10 by gluing.
[0043] The power supply 50 serves as the power transmission component of the wireless microphone charging compartment 1. On the one hand, it can supply power to the transmitter 2 and the receiver 3, and on the other hand, it can receive power from an external power supply 50 (such as a power bank or a 220V AC power supply). The power supply 50 can include, but is not limited to, a battery. The specific connection method between the power supply 50 and the compartment body 10 is not limited here, and designers can make reasonable designs based on actual needs. For example, the power supply 50 can be, but is not limited to, detachably connected to the compartment body 10 by at least one of screw connection, snap connection, or plug connection. For another example, the power supply 50 can also be, but is not limited to, non-detachably connected to the compartment body 10 by gluing.
[0044] The power level display mechanism 30 is also used to display the power level of the power supply 50. It should be noted that the power level displayed by the power level display mechanism 30 can be the remaining power level of the power supply 50 or the charged power level of the power supply 50. For example, when the wireless microphone charging compartment 1 is in a discharging state, the user can use the power level display mechanism 30 to determine the current remaining power level of the power supply 50. For another example, when the wireless microphone charging compartment 1 is in a charging state, the user can use the power level display mechanism 30 to determine the current charged power level of the power supply 50.
[0045] The circuit board 40 is designed to be electrically connected to the power supply 50, so that the power supply 50 can charge the transmitter 2 and the receiver 3 accommodated in the charging slot 21 through the charging terminals of the circuit board 40. The power display mechanism 30 is designed to be electrically connected to the power supply 50 through the circuit board 40, so that the power display mechanism 30 can obtain the power level of the power supply 50 and display the power level of the power supply 50, so that the user can determine the power level of the power supply 50 based on the power display mechanism 30.
[0046] like Figure 1-Figure 2 As shown, when the power display mechanism 30 is also used to display the power level of the power source 50, the power display mechanism 30 also includes a third indicator light 33; the third indicator light 33 is used to display the power level of the power source 50, and the third indicator light 33 is farther away from the cavity opening of the accommodating cavity 11 of the warehouse body 10 than the first indicator light 31 and the second indicator light 32.
[0047] The side wall of the housing 10 is provided with a third mounting hole, into which the third indicator light 33 is inserted. By designing the third indicator light 33, the user can determine the power level of the power supply 50 according to the display status of the third indicator light 33.
[0048] The third indicator light 33 includes a plurality of third lamp beads 331 disposed on the sidewall of the warehouse body 10. The plurality of third lamp beads 331 are arranged at intervals along the first predetermined direction MM'. For example, the number of third lamp beads 331 can be two, three, four, five, six, or more. When the outer contour of the warehouse body 10 is a rectangular parallelepiped, the plurality of third lamp beads 331 can be arranged along the longitudinal direction of the warehouse body 10 (one of the first predetermined directions MM').
[0049] The third lamp bead 331 displays the power level of the power supply 50 according to a preset display mode; the third lamp bead 331 has different display states, such as constantly on, constantly off, and flashing. The power level of the power supply 50 can be determined based on the arrangement and combination of the different display states of the multiple third lamp beads 331. The specific display placement of the third lamp bead 331 is not limited here, and designers can make reasonable designs based on actual needs. It should be noted that the multiple third lamp beads 331 and the aforementioned multiple second lamp beads 321 or the aforementioned multiple first lamp beads 311 can display the power level of the power supply 50 according to the same preset display mode, or according to different preset display modes. Of course, the third indicator light 33 can also include a third lamp bead 331. In this case, the third lamp bead 331 can display different colors, and the power level of the power supply 50 can be determined based on the different colors displayed by the third lamp bead 331.
[0050] like Figure 1 As shown, the wireless microphone charging case 1 further includes a top cover 60; the top cover 60 is rotatably connected to the case body 10 to open or close the opening of the accommodating chamber 11 of the case body 10. When the top cover 60 is rotated to open the opening of the accommodating chamber 11 of the case body 10, the first indicator light 31 displays the power level of the transmitter 2 according to the first preset display mode, the second indicator light 32 displays the power level of the receiver 3 according to the second preset display mode, and the third indicator light 33 displays the power level of the power supply 50 according to the preset display mode; when the top cover 60 is rotated to cover the opening of the accommodating chamber 11 of the case body 10, the first indicator light 31, the second indicator light 32, and the third indicator light 33 are turned off.
[0051] Of course, the specific form of the power display mechanism 30 can also be other forms different from the above-mentioned first indicator light 31, second indicator light 32 and third indicator light 33; Figure 5 As shown, the power display mechanism 30 includes a display screen 34 for displaying the power levels of the transmitter 2 and receiver 3; the display screen 34 is disposed on the side wall of the housing 10. When the top cover 60 is rotated to open the opening of the receiving chamber 11 of the housing 10, the display screen 34 illuminates for a preset time; when the top cover 60 is rotated to cover the opening of the receiving chamber 11 of the housing 10, the display screen 34 turns off.
[0052] The display screen 34 is used to display the power levels of the transmitter 2 and receiver 3. The specific connection method between the display screen 34 and the housing 10 is not limited here, and designers can reasonably design it according to actual needs. For example, the front side wall of the housing 10 is provided with a window connected to the storage cavity 11, and the display screen 34 extends into the storage cavity 11 of the housing 10 corresponding to the window. The display screen 34 can be, but is not limited to, detachably connected to the housing 10 by snap-fitting. The display screen 34 can also be, but is not limited to, non-detachably connected to the housing 10 by gluing. The specific value of the "preset time" is not limited here, and designers can reasonably design it according to actual needs. For example, the specific value of the preset time can be, but is not limited to, 3 seconds, 5 seconds, 6 seconds, or 10 seconds, etc. Of course, the display screen 34 can also be used to display the power level of the power supply 50.
[0053] By designing the display screen 34, when the top cover 60 is rotated under external force to open the cavity 11 of the compartment body 10, the display screen 34 is illuminated. At this time, the user can directly obtain the power level of the transmitter 2 and receiver 3 through the data displayed on the display screen 34. By designing the display screen 34 to be illuminated for a preset time, power conservation can be achieved. In addition, if the top cover 60 is accidentally rotated to open the cavity 11 of the compartment body 10, it will not remain illuminated.
[0054] Other structural designs between the charging base 20 and the compartment body 10 may be, but are not limited to, one or more of the following embodiments.
[0055] like Figure 2 and Figure 3 As shown, in the first embodiment, the charging base 20 is connected to the warehouse body 10 by snapping. This facilitates the installation and removal of the charging base 20 and the warehouse body 10. Specifically, the periphery of the charging base 20 is provided with at least one of a snap-in block 91 and a snap-in groove 92; the edge of the cavity opening of the accommodating cavity 11 of the warehouse body 10 is provided with at least the other of the snap-in block 91 and the snap-in groove 92; the snap-in block 91 and the snap-in groove 92 are snap-connected to position the charging base 20 in the warehouse body 10. The snap-in block 91 can be, but is not limited to, integrally formed with the charging base 20 and / or the warehouse body 10 by injection molding or 3D printing.
[0056] like Figure 2 and Figure 3As shown, in the second embodiment, the back of the housing 10 is provided with a notch 12 at the edge of the cavity 11; the wireless microphone charging compartment 1 also includes a fixing base 70 and a connecting base 80; the fixing base 70 is connected to the housing 10 corresponding to the notch 12; the top cover 60 is rotatably connected to the fixing base 70; the connecting base 80 is connected to the charging base 20 corresponding to the notch 12, and the connecting base 80 and the fixing base 70 are detachably connected. The connecting base 80 can be, but is not limited to, integrally formed with the charging base 20 by injection molding or 3D printing.
[0057] Specifically, the specific connection method between the fixing seat 70 and the warehouse body 10, and the specific connection method between the connecting seat 80 and the fixing seat 70 can include but is not limited to one or more of the following embodiments.
[0058] like Figure 6 and Figure 7 As shown, in the first embodiment, the connecting base 80 and the fixing base 70 are connected by locking screws, which facilitates the assembly between the charging base 20 and the storage body 10.
[0059] like Figure 6 and Figure 7 As shown, in the second embodiment, a first positioning portion 93 is provided on the side of the connecting seat 80 facing the fixed seat 70; a second positioning portion 94 is provided on the side of the fixed seat 70 facing the connecting seat 80; and the second positioning portion 94 is engaged with the first positioning portion 93. By designing the second positioning portion 94 to be engaged with the first positioning portion 93, it is convenient to achieve the assembly between the fixed seat 70 and the connecting seat 80, thereby achieving the assembly between the warehouse body 10 and the charging seat 20. Among them, the first positioning portion 93 can be, but not limited to, a physical structure such as a positioning block, a positioning shaft, etc. provided on the connecting seat 80; in this case, the second positioning portion 94 can correspond to, but not be limited to, a virtual structure such as a positioning hole, a positioning groove, etc. formed on the fixing seat 70. The first positioning portion 93 can also be, but not limited to, a virtual structure such as a positioning hole, a positioning groove, etc. formed on the connecting seat 80; in this case, the second positioning portion 94 can correspond to, but not be limited to, a physical structure such as a positioning block, a positioning shaft, etc. provided on the fixing seat 70. Of course, the first positioning portion 93 can also be but is not limited to a combination of a physical structure such as a positioning shaft provided on the connecting seat 80 and a virtual structure such as a positioning hole formed on the connecting seat 80; at this time, the second positioning portion 94 can correspond to but is not limited to a combination of a virtual structure such as a positioning hole formed on the fixing seat 70 and a physical structure such as a positioning block provided on the fixing seat 70.
[0060] like Figure 3 and Figure 8As shown, in the third embodiment, a third positioning portion 95 is provided on the bottom wall of the notch 12; a fourth positioning portion 96 is provided on the side of the bottom wall of the fixing base 70 facing the notch 12; and the fourth positioning portion 96 is engaged with the third positioning portion 95. The design of the fourth positioning portion 96 and the third positioning portion 95 engaging with each other facilitates assembly between the fixing base 70 and the hopper body 10; and when the fourth positioning portion 96 and the third positioning portion 95 are engaged with each other, the outer surface of the fixing base 70 is flush and coplanar with the outer surface of the hopper body 10. The third positioning portion may be, but is not limited to, a physical structure provided on the hopper body 10, such as a positioning block or a positioning shaft; in this case, the fourth positioning portion 96 may correspond to, but is not limited to, a virtual structure formed on the fixing base 70, such as a positioning hole or a positioning slot. The third positioning portion 95 may also be, but is not limited to, a virtual structure formed on the hopper body 10, such as a positioning hole or a positioning slot; in this case, the fourth positioning portion 96 may correspond to, but is not limited to, a physical structure provided on the fixing base 70, such as a positioning block or a positioning shaft. Of course, the third positioning portion 95 can also be but is not limited to a combination of a physical structure such as a positioning block provided on the warehouse body 10 and a virtual structure such as a positioning groove formed on the connecting seat 80; at this time, the fourth positioning portion 96 can correspond to but is not limited to a combination of a virtual structure such as a positioning groove formed on the fixing seat 70 and a physical structure such as a positioning block provided on the fixing seat 70.
[0061] It should be noted that the first-level snap-fit adaptation is achieved between the fixing seat 70 and the warehouse body 10 through the fourth positioning portion 96 and the third positioning portion 95; the second-level snap-fit adaptation is achieved between the fixing seat 70 and the connecting seat 80 through the second positioning portion 94 and the first positioning portion 93, and the fixing seat 70 is connected to the connecting seat 80 through screws. Such multiple snap-fitting and screwing greatly improves the connection stability between the fixing seat 70, the connecting seat 80 and the warehouse body 10.
[0062] Please refer to Figure 1 and Figure 5 As shown, in the second aspect, the present application proposes a wireless microphone charging system; the wireless microphone charging system includes a transmitter 2, a receiver 3 and the above-mentioned wireless microphone charging compartment 1; the transmitter 2 and the receiver 3 are installed in the charging slot 21.
[0063] Based on the wireless microphone charging system in the embodiment of the present application, which has the above-mentioned wireless microphone charging compartment 1, the user can directly determine the power level of the transmitter 2 and / or receiver 3 according to the power display mechanism 30, which is more convenient to operate and more practical.
[0064] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this application, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate an orientation or position relationship, they are based on the orientation or position relationship shown in the drawings. This is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.
[0065] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.
Claims
1. A wireless microphone charging compartment, characterized in that: include: a bin body defining a receiving cavity with an open top; a charging base, at least partially disposed in the accommodating cavity, having a charging slot with a notch facing the cavity opening of the accommodating cavity, the charging slot being used to accommodate the transmitter and the receiver; A power display mechanism is provided on the compartment body and is used to display the power level of at least one of the transmitter and the receiver.
2. The wireless microphone charging compartment according to claim 1, wherein: The charging slot includes a first charging slot for accommodating the transmitter; the power display mechanism includes a first indicator light for displaying the power level of the transmitter; the first indicator light is arranged on the side wall of the compartment body corresponding to the first charging slot.
3. The wireless microphone charging compartment according to claim 2, wherein: The charging slot also includes a second charging slot for accommodating the receiver; the power display mechanism also includes a second indicator light for displaying the power level of the receiver; the second indicator light is arranged on the side wall of the warehouse body corresponding to the second charging slot.
4. The wireless microphone charging compartment according to claim 3, wherein: The first charging slot and the second charging slot are arranged along a first preset direction; The first indicator light includes a plurality of first lamp beads arranged on the side wall of the compartment body, the plurality of first lamp beads are arranged at intervals along a second preset direction, and the plurality of first lamp beads display the power level of the transmitter according to a first preset display mode; The second indicator light includes a plurality of second lamp beads arranged on the side wall of the warehouse body, and the plurality of second lamp beads are arranged at intervals along the second preset direction. The plurality of second lamp beads display the power level of the receiver according to a second preset display method; wherein the second preset direction intersects with the first preset direction.
5. The wireless microphone charging compartment according to claim 1, wherein: Also includes: a circuit board, disposed in the accommodating cavity and below the charging slot, wherein the charging terminals of the circuit board penetrate the bottom wall of the charging slot for electrical connection with the charging ports of the transmitter and the receiver; a power supply, disposed in the accommodating cavity and electrically connected to the circuit board; The power display mechanism is electrically connected to the circuit board, and is also used to display the power level of the power supply.
6. The wireless microphone charging compartment according to claim 5, wherein: The power display mechanism includes a first indicator light, a second indicator light and a third indicator light which are arranged on the side wall of the compartment body and electrically connected to the circuit board; the first indicator light is used to display the power level of the transmitter; the second indicator light is used to display the power level of the receiver; the third indicator light is used to display the power level of the power supply, and the third indicator light is farther away from the cavity opening of the accommodating cavity than the first indicator light and the second indicator light.
7. The wireless microphone charging compartment according to claim 1, wherein: The wireless microphone charging compartment further includes a top cover, which is rotatably connected to the compartment body to open or close the opening of the accommodating cavity; The power display mechanism includes a display screen for displaying the power levels of the transmitter and the receiver, and the display screen is arranged on the warehouse body; When the top cover is rotated to open the opening of the accommodating cavity, the display screen is lit for a preset time; when the top cover is rotated to cover the opening of the accommodating cavity, the display screen is turned off.
8. The wireless microphone charging compartment according to any one of claims 1 to 7, wherein: The charging base is connected to the compartment body by snapping; and / or The back of the compartment body is provided with a notch at the edge of the cavity opening of the accommodating cavity; the wireless microphone charging compartment also includes a fixing seat and a connecting seat; the fixing seat is connected to the compartment body corresponding to the notch; the connecting seat is connected to the charging seat corresponding to the notch, and the connecting seat and the fixing seat are detachably connected.
9. The wireless microphone charging compartment according to claim 8, wherein: The connecting seat and the fixing seat are connected by means of locking screws; and / or A first positioning portion is provided on a side of the connecting seat facing the fixing seat, and a second positioning portion is provided on a side of the fixing seat facing the connecting seat, wherein the second positioning portion is engaged with the first positioning portion; and / or A third positioning portion is provided on the bottom wall of the notch, and a fourth positioning portion is provided on a side of the fixing seat facing the bottom wall of the notch, and the fourth positioning portion is engaged with the third positioning portion.
10. A wireless microphone charging system, characterized in that: include: The wireless microphone charging compartment according to any one of claims 1 to 9; and The transmitter and the receiver are installed in the charging slot.