Wire controller and air conditioner
By designing a vibration module including vibrating body, shrapnel and flexible sheet in the online controller, the problem of poor vibration feedback effect of existing wire controllers is solved, and better vibration feedback effect is achieved and user interaction experience is improved.
Patent Information
- Application Number
- CN202421887604.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The existing wire controllers have poor vibration feedback effect due to the large overall vibration load of the motor.
A wire controller is designed, using a vibration module including a vibrating body, a shrapnel and a flexible sheet. Through the connection between the shrapnel and the shell and the extrusion of the flexible sheet, a buffer space is formed to improve the vibration effect.
It achieves better vibration feedback effect and improves user interaction experience.
Smart Images

Figure CN222911900U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of household appliances, and particularly to a wire controller and an air conditioner. Background Art
[0002] At present, some wire controller products have a vibration feedback function. However, since the wire controller is assembled on the wall, the overall vibration load of the motor is relatively large, and the actual vibration effect is not good. Utility Model Content
[0003] The present application provides a wire controller and an air conditioner, which have the advantage of good vibration feedback effect.
[0004] In one aspect of the present application, a wire controller includes: a housing having a first housing and a second housing connected to each other; and a vibration module connected inside the first housing for providing vibration feedback outward.
[0005] Wherein, the vibration module includes: a vibrating body; a spring piece connected to the first housing, and a space for clamping the vibrating body is formed between the spring piece and the first housing; and a flexible piece pressed between the vibrating body and the spring piece.
[0006] In some embodiments, the first housing and the second housing are connected by at least one fastener made of a metal material, and the vibration module is disposed adjacent to the fastener.
[0007] In some embodiments, the vibration module includes: a double-sided adhesive bonded between the first housing and the vibrating body.
[0008] In some embodiments, one end of the spring piece is screwed to the first housing, and the other end of the spring piece is hooked to the first housing.
[0009] In some embodiments, a hook groove and a third stud are provided on the housing.
[0010] The spring piece includes: a main body portion pressing against the flexible piece; a first leg having a connecting portion and an abutting portion, the connecting portion is connected to the main body portion and inserted into the hook groove, and the abutting portion passes through the hook groove and abuts against the first housing; and a second leg connected to the third stud.
[0011] In some embodiments, the first housing and the second housing are connected by at least one fastener made of a metal material, and the first leg is disposed adjacent to the fastener.
[0012] In some embodiments, the first housing includes a side wall surrounding a frame shape and an enclosing wall connected inside the frame. A rib is provided on the enclosing wall, and the rib encloses a vibration installation groove, and the vibrating body is connected in the vibration installation groove.
[0013] In some embodiments, a notch is provided on the rib, and the power cord of the vibrating body passes out through the notch.
[0014] In some embodiments, a first stud protruding towards the second housing is provided on the first housing;
[0015] The remote controller further includes: a main control circuit board, on which a positioning hole is provided, the positioning hole being adapted to the first stud, and an avoidance groove for avoiding the vibration module is provided on the main control circuit board; the power cord of the vibrating body is connected to the main control circuit board.
[0016] In some embodiments, the flexible sheet is a foam, and the elastic sheet is a metal elastic sheet.
[0017] On the other hand of the present application, an air conditioner includes the above remote controller. Description of the Drawings
[0018] Figure 1 Shows an external view of the remote controller according to some embodiments;
[0019] Figure 2 Shows a state diagram of the remote controller during the installation process according to some embodiments;
[0020] Figure 3 Shows a structural diagram inside the first housing of the remote controller according to some embodiments;
[0021] Figure 4 Shows a structural diagram inside the second housing of the remote controller according to some embodiments;
[0022] Figure 5 Shows an exploded view of the display module and the first housing of the remote controller according to some embodiments;
[0023] Figure 6 Shows an exploded view of the speaker module and the first housing of the remote controller according to some embodiments;
[0024] Figure 7 Shows an exploded view of the microphone module and the first housing of the remote controller according to some embodiments;
[0025] Figure 8 Shows an exploded view of the vibration module and the first housing of the remote controller according to some embodiments;
[0026] Figure 9 Shows a partial cross-sectional view of the vibration module and the first housing of the remote controller according to some embodiments;
[0027] Figure 10 Shows an external view of the elastic sheet of the remote controller according to some embodiments;
[0028] Figure 11 Shows an exploded view of the sensor module and the first housing of the remote controller according to some embodiments.
[0029] In the above figures, 100 is a remote controller; 10 is a housing; 11 is a first shell; 111 is a first side wall; 112 is a second side wall; 1121 is a speaker sound outlet hole; 113 is a third side wall; 114 is a fourth side wall; 115 is a surrounding wall; 1150 is a speaker mounting groove; 1151 is a limiting rib; 1153 is a microphone mounting groove; 1154 is a first stud; 1155 is a second stud; 1156 is a vibration mounting groove; 1157 is a hook groove; 1158 is a third stud; 1159 is a sensor mounting groove; 12 is a second shell; 13 is a display module; 131 is a microphone sound collection hole; 132 is a transparent window; 141 is a blocking rib; 1411 is a notch; 142 is a reinforcing rib; 20 is a speaker module; 21 is a speaker; 22 is a speaker sealing net; 23 is a speaker foam; 30 is a microphone module; 31 is a microphone; 32 is a microphone dustproof net; 33 is a microphone sealing sleeve; 34 is a microphone circuit board; 51 is a main control circuit board; 52 is a power circuit board; 60 is a vibration module; 61 is a vibrating body; 62 is a double-sided tape; 63 is a flexible sheet; 64 is a spring sheet; 641 is a main body part; 642 is a first leg; 6421 is a connecting part; 6422 is an abutting part; 643 is a second leg; 70 is a sensor module; 71 is a proximity sensor; 72 is a gesture recognition sensor; 73 is a sensor cable; 741 is a first sealing sleeve; 742 is a second sealing sleeve; 80 is a metal mounting plate. Detailed implementation manners
[0030] To make the purpose and implementation manners of this application clearer, the following will clearly and completely describe the exemplary implementation manners of this application with reference to the drawings in the exemplary embodiments of this application. Obviously, the described exemplary embodiments are only a part of the embodiments of this application, rather than all of the embodiments.
[0031] In the description of this application, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to this application.
[0032] The terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, unless otherwise specified, the meaning of "a plurality" is two or more.
[0033] In the description of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.
[0034] The following will describe in detail the remote controller and the air conditioner according to the embodiments of the present application with reference to the accompanying drawings.
[0035] Refer to Figures 1 to 3 , the remote controller 100 according to the embodiment of the present application includes a housing 10.
[0036] The housing 10 forms the general appearance of the remote controller. The housing 10 includes a first housing 11, a second housing 12, and a display module 13.
[0037] The first housing 11 can be in the shape of a square frame. The first housing 11 has four side walls connected end to end: a first side wall 111, a second side wall 112, a third side wall 113, and a fourth side wall 114; the four side walls enclose a frame body. The first housing 11 further has an enclosing wall 115 connected inside the frame body.
[0038] When the remote controller 100 is in use, the side facing the user is defined as the front, and the side opposite thereto is defined as the rear. Then, the first housing 11 is at the front, and the second housing 12 is connected to the rear end of the first housing 11.
[0039] The enclosing wall 115 and the rear parts of the four side walls enclose a rear installation cavity, and the front part of the second housing 12 is connected inside the rear installation cavity.
[0040] The second housing 12 can be in the shape of a rectangular parallelepiped box. The first housing 11 and the second housing 12 can be made of plastic materials and are formed by injection molding.
[0041] The interiors of the first housing 11 and the second housing 12 enclose a receiving cavity for installing various electrical components.
[0042] Among them, refer to Figure 3 and Figure 4 , the part of the receiving cavity formed by the first housing 11 is mainly used for installing the main control circuit board 51 and various functional modules (such as the speaker module 20, the microphone module 30, the sensor module 70, the vibration module 60, etc.) to be introduced later. The part of the receiving cavity formed by the second housing 12 is mainly used for installing the power circuit board 52.
[0043] In the actual application scenario, refer to Figure 2, first, install the metal mounting plate 80 in the junction box by screws, and then snap the second shell 12 of the remote controller 100 onto the metal mounting plate 80.
[0044] Refer to Figure 1 and Figure 5 , the display module 13 is connected to the side of the first shell 11 opposite to the second shell 12, that is, the display module 13 is connected to the front end of the first shell 11.
[0045] The enclosure wall 115 and the front parts of the four side walls enclose a front mounting cavity, and the rear part of the display module 13 is mounted in the front mounting cavity. The display module 13 can be fixed on the first shell 11 by a dispensing process.
[0046] The display module 13 is used to display the operation information of the air conditioner and the instruction information of the user for the air conditioner.
[0047] According to the embodiment, the display module 13 can be a liquid crystal screen for realizing touch interaction.
[0048] Continue to refer to Figure 3 , the remote controller 100 includes a main control circuit board 51. The main control circuit board 51 is connected to the first shell 11. The outer shape of the main control circuit board 51 is irregular, and avoidance grooves for avoiding each functional module are provided thereon.
[0049] In some embodiments, a plurality of first studs 1154 extending backward are provided on the enclosure wall 115. Positioning holes corresponding to the first studs 1154 are provided on the main control circuit board 51. The first studs 1154 are adapted to be inserted into the positioning holes of the main control circuit board 51.
[0050] Screws are inserted through the second shell 12 and connected to the first studs 1154. The second shell 12 presses against the main control circuit board 51 so that the main control circuit board 51 is fixed in the outer shell 10.
[0051] The display module 13 is electrically connected to the main control circuit board 51 through a flexible cable.
[0052] In some embodiments, the remote controller 100 can implement a voice interaction function, which includes a speaker module 20 and a microphone module 30.
[0053] According to the embodiment, a speaker sound outlet hole 1121 can be provided on the second side wall 112 of the first shell 11. The speaker module 1121 is connected to the enclosure wall 115 of the first shell 11 corresponding to the speaker sound outlet hole 1121. The speaker module 20 transmits sound outward through the speaker sound outlet hole 1121.
[0054] Refer to Figure 6 , the speaker module 20 includes a speaker 21 for sound expansion. The speaker 21 can be fixed to the enclosure wall 115 in a form of screw connection.
[0055] The enclosure wall 115 is provided with a speaker mounting groove 1150 for mounting the speaker module 20.
[0056] Specifically, the enclosure wall 115 is provided with a limiting rib 1151 extending backward. The limiting rib 1151 and the second side wall 112 enclose the speaker mounting groove 1150. On the one hand, the limiting rib 1151 has a limiting effect on the speaker module 20; on the other hand, the limiting rib 1151 can enhance the structural strength of the enclosure wall 115.
[0057] The speaker module 20 includes a speaker sealing net 22 for dust prevention and sound tuning. The speaker sealing net 22 is connected to the first shell 11 corresponding to the speaker sound outlet hole 1121. Specifically, the speaker sealing net 22 can be attached to the second side wall 112 in a bonding manner.
[0058] In some embodiments, speaker foams 23 are attached to both the front and rear sides of the speaker 21. The speaker foams 23 can absorb the design gap and eliminate the noise and vibration caused during the vibration of the speaker 21.
[0059] According to the embodiment, continue to refer to Figure 1 and Figure 3 , the display module 13 is provided with a microphone sound receiving hole 131. The microphone module 30 is mounted on the first shell 11 corresponding to the microphone sound receiving hole 131.
[0060] The speaker sound outlet hole 1121 is located at a position on the second side wall 112 close to the first side wall 111; the microphone module 30 is arranged close to the third side wall 113 or the fourth side wall 114 of the first shell 11, so as to increase the distance between the speaker module 20 and the microphone module 30 and avoid interference of sound signals.
[0061] Exemplarily, the first side wall 111 is the upper side wall of the first shell 11, the second side wall 112 is the left side wall, the third side wall 113 is the lower side wall, and the fourth side wall 114 is the right side wall.
[0062] The speaker module 20 is located in the upper left area of the first shell 11, and the microphone module 30 is located in the lower area of the first shell 11.
[0063] In this way, the microphone sound receiving hole 131 is close to the lower part of the display module 13, which can ensure the aesthetics of the display module 13.
[0064] Refer to Figure 7 , the microphone module 30 includes a microphone 31 for receiving voices.
[0065] The enclosure wall 115 is provided with a microphone mounting groove 1153 for mounting the microphone 31. The enclosure wall 115 is also provided with a through hole, and the front and rear of the through hole are respectively communicated with the microphone sound receiving hole 131 of the display module 13 and the microphone mounting groove 1153.
[0066] The microphone module 30 may include a microphone dustproof net 32. The microphone dustproof net 32 is connected to the enclosure wall 115 corresponding to the microphone sound receiving hole 131, and is mainly used for dust prevention and sound tuning.
[0067] The microphone module 30 may include a microphone sealing sleeve 33. The microphone sealing sleeve 33 is sleeved outside the microphone 31. On the one hand, the microphone sealing sleeve 33 can seal the microphone 31 to improve the sound receiving effect of the microphone 31; on the other hand, the microphone sealing sleeve 33 is squeezed in the microphone installation groove 1153, which can ensure the installation stability of the microphone 31.
[0068] The microphone module 30 may include a microphone circuit board 34. The microphone 31 is connected to the microphone circuit board 34, and the microphone circuit board 34 can be connected to the first housing 11 in the form of screw connection, so as to realize the connection of the microphone 31 on the first housing 11.
[0069] Specifically, the microphone 31 can be fixed on the microphone circuit board 34 by means of soldering.
[0070] The enclosure wall 115 is provided with a second stud 1155 extending backward. The screw passes through the microphone circuit board 34 and is connected to the second stud 1155.
[0071] Here, the position of the second stud 1155 is close to the microphone installation groove 1154, which can ensure the firmness of the microphone 31 on the first housing 11.
[0072] The microphone circuit board 34 and the microphone sealing sleeve 33 can ensure the overall sealing of the microphone 31, thereby improving the sound receiving effect of the microphone 31.
[0073] According to the embodiment, the microphone circuit board 34 may be in a long strip shape. There are two microphones 31, which are respectively located at both ends of the length direction of the microphone circuit board 34.
[0074] The microphone circuit board 34 is designed to be in a long strip shape, which will not occupy too much space of the first housing 11. The two microphones 31 are spaced apart on the microphone circuit board 34, which can improve the sound amplification performance of the microphone module 30.
[0075] The speaker module 20 is electrically connected to the main control circuit board 51 through a speaker power cord. The microphone circuit board 34 can be electrically connected to the main control circuit board 51 through a flexible cable.
[0076] In some embodiments, referring to Figures 8 to 10 , the wire controller 100 includes a vibration module 60, so that the wire controller 100 has a vibration feedback function.
[0077] The vibration module 60 can be disposed close to the speaker module 20. On the one hand, the positions of the functional modules are relatively concentrated, which can reduce the number of relief grooves on the main control circuit board 51, making the area of the main control circuit board 51 concentrated and ensuring that the effective installation area of the electrical components on the main control circuit board 51 is relatively large. On the other hand, the vibration sound of the vibration module 60 can be transmitted out from the sound outlet hole 1121 of the speaker, improving the vibration feedback effect.
[0078] Specifically, the vibration module 60 is close to the first side wall 111 and the second side wall 112, and the speaker module 20 is close to the vibration module 60 and the second side wall 112.
[0079] The vibration module 60 includes a vibrating body 61. The vibrating body 61 can be a linear motor, and the linear motor has a relatively fast response speed and a relatively long vibration stroke. Among them, the linear motor can be an X-axis linear motor.
[0080] The vibrating body 61 can be bonded in the vibration installation groove 1156 through a double-sided adhesive 62.
[0081] The vibration module 60 includes a flexible sheet 63. The flexible sheet 63 is attached to the side of the vibrating body 61 away from the double-sided adhesive 62, that is, the front surface of the vibrating body 61 is bonded with the double-sided adhesive 62, and the back surface of the vibrating body 61 is attached with the flexible sheet 63.
[0082] The vibration module 60 includes a spring piece 64. The spring piece 64 presses the flexible sheet 63 from the rear side and is connected to the enclosure wall 115 to achieve a firm connection of the vibrating body 61 in the first shell 11.
[0083] The flexible sheet 63 fills the gap between the vibrating body 61 and the spring piece 64, forming a buffer space and increasing the vibration effect of the vibrating body 61.
[0084] After the vibration module 60 is assembled, the flexible sheet 63 has a certain compression amount, and the spring piece 64 and the flexible sheet 63 are assembled with interference, and the compression rebound of the flexible sheet 63 is used to provide a pre-tightening force for the entire vibration module 60.
[0085] Among them, the calculation formula of the pre-tightening force is: F(25% compression, kgf)=S*K, where S is the interference area between the spring piece 64 and the flexible sheet 63, and K is the elastic coefficient of the flexible sheet at a 25% compression amount.
[0086] The pre-tightening force has a great influence on the vibration feedback effect. In this application, the pre-tightening force can be adjusted by adjusting the interference area between the spring piece 64 and the flexible sheet 63, thereby improving the vibration feedback effect.
[0087] For vibrating bodies 61 of different specifications and powers, the pre-tightening force of the installation of the vibrating body 61 can be simply adjusted by controlling the contact area and compression amount between the spring piece 64 and the flexible sheet 63, without major changes to the design scheme, saving product development time.
[0088] The flexible sheet 63 can be a foam, and the foam can be attached to the vibrating body 61 in an adhesive form. The elastic sheet 64 can be a metal elastic sheet.
[0089] In some embodiments, the elastic sheet 64 can be a metal elastic sheet. If the strength of the elastic sheet 64 is relatively large and it cannot be deformed, then when the flexible sheet 63 is relatively thick, it may be necessary to change the size of the elastic sheet 64 in order to be installed on the first shell 11; and if the elastic sheet 64 has a certain amount of deformation, it can still be used normally through its deformation. Therefore, the present application expands the applicable range of the elastic sheet 64
[0090] The elastic sheet 64 can be in a "ji" shape, including a main body portion 641, and the main body portion 641 presses against the flexible sheet 63.
[0091] The elastic sheet 64 includes a first leg 642 and a second leg 643 respectively located at opposite ends of the main body portion 641.
[0092] The first leg 642 is hooked to the enclosure wall 115, and the second leg 642 is screwed to the enclosure wall 115.
[0093] According to an embodiment, a through hook groove 1157 is provided on the enclosure wall 115. The front end of the first leg 642 extends into the front side of the enclosure wall 115 from the hook groove 1157 and hooks the front surface of the enclosure edge 115.
[0094] Specifically, the first leg 642 includes a connecting portion 6421 and an abutting portion 6422. The connecting portion 6421 extends substantially in the front-rear direction, its rear end is connected to the main body portion 641, and its front end is connected to the abutting portion 6422. The abutting portion 6422 is connected to the connecting portion 6421 at an angle.
[0095] The connecting portion 6421 of the first leg 642 is inserted into the hook groove 1157, and the abutting portion 6422 of the first leg 642 abuts against the front surface of the enclosure wall 115, thereby realizing the hooking of the first leg 642 to the enclosure wall 115.
[0096] A third stud 1158 extending rearward is provided on the enclosure wall 115. The second leg 642 abuts against the rear end of the third stud 1158, and a screw passes through the second leg 642 and is connected to the third stud 1158.
[0097] A locknut is embedded in the third stud 1158, which can prevent the problem of the screw slipping out when the vibrating body 61 vibrates.
[0098] The connection method of screwing and hooking between the elastic sheet 64 and the first shell 11 can reduce the use of screws and improve the assembly efficiency; and the hooking is not as firm as screwing, which can provide a buffer space for the vibrating body 61.
[0099] The enclosure wall 115 is provided with a vibration installation groove 1156, and the vibrator 61 is installed in the vibration installation groove 1156.
[0100] Specifically, the enclosure wall 115 has a retaining rib 141 that surrounds the vibration module 60.
[0101] A plurality of spaced reinforcing ribs 142 are provided on the inner side of the first side wall 111. The retaining rib 141 and the reinforcing ribs 142 enclose the vibration installation groove 1156.
[0102] A chamfer is provided on the rear side of the reinforcing rib 142 facing the vibrator 61, which has a guiding effect on the installation of the vibrator 61 into the vibration installation groove 1156 and is beneficial to improving the installation efficiency.
[0103] The retaining rib 141 is provided with a notch 1411. The power cord of the vibrator 61 passes through the notch 1411 and is welded to the main control circuit board 51 to form a functional path of the vibration module 60.
[0104] In some embodiments, the vibration module 60 is disposed adjacent to the first stud 1154. Since a metal screw is connected inside the first stud 1154. Thus, by utilizing the characteristic that metal is conducive to transmitting vibration, the vibration effect can be improved.
[0105] According to the embodiment, a first stud 1154 is provided at each of the four corners of the first housing 11, and the vibration module 60 is adjacent to the first stud 1154 in the upper left corner.
[0106] The first leg 642 of the elastic piece 64 is adjacent to the first stud 1154. Since the first leg 642 is hooked and the second leg 643 is screwed, the connection of the first leg 642 is looser than that of the second leg 643. Therefore, when the vibrator 61 vibrates, the vibration at the first leg 642 is stronger, which is more conducive to the transmission of vibration to the screw.
[0107] In the current example, the first leg 642 and the second leg 643 are arranged left and right, the first leg 642 is on the left side, and the second leg 642 is on the right side. In other embodiments, the first leg 642 and the second leg 643 can also be arranged up and down.
[0108] In some embodiments, referring to Figure 3 and Figure 11 , the wire controller 100 includes a sensor module 70 for sensing the human body. The sensor module 70 includes a human body sensor, and the human body sensor is a sensor for collecting sensors related to the human body, such as a proximity sensor 71, a gesture recognition sensor 72, etc.
[0109] Combined with Figure 5 , a transparent window 132 is provided on the display module 13. The light transmittance of the transparent window 132 > 90%.
[0110] The human body sensor is installed on the first housing 11 corresponding to the transparent window 132. Specifically, a sensor installation groove 1159 is provided on the enclosing wall 115 of the first housing 11, and the human body sensor is installed in the sensor installation groove 1159.
[0111] The sensor module 70 includes a sensor flexible cable 73. The human body sensor is fixed on the sensor flexible cable 73 in a patch form, and the sensor flexible cable 73 is connected to the main control circuit board 51 to realize the electrical connection between the human body sensor and the main control circuit board 51.
[0112] The patching of the flexible cable is beneficial to the overall structural stacking to reduce the occupied space; the flexible cable can be bent, which is also beneficial to installation.
[0113] The human body sensor includes a proximity sensor 71. When the user approaches the remote controller 100, the remote controller 100 is automatically awakened.
[0114] The human body sensor may include a gesture recognition sensor 72. By recognizing the user's gestures, corresponding responses are made to control the air conditioner functions.
[0115] In some embodiments, the proximity sensor 71 and the gesture recognition sensor 72 are respectively located on the left and right sides of the microphone module 30.
[0116] There are two transparent windows 132, one of the transparent windows 132 corresponds to the proximity sensor 71, and the other transparent window 132 corresponds to the gesture recognition sensor 72.
[0117] The proximity sensor 71, the gesture recognition sensor 72 and the microphone module 30 are arranged in a "one" shape, which can make the structural arrangement more compact and reduce the occupied space of the functional modules on the first housing 11.
[0118] Both the transparent window 132 and the microphone sound collection hole 131 are located at the lowermost part of the display module 13, without damaging the overall aesthetics of the display module 13.
[0119] The front sides of the left and right ends of the sensor flexible cable 73 are respectively connected to the proximity sensor 71 and the gesture recognition sensor 72, and the middle part of the sensor flexible cable 73 is connected to the main control circuit board 51.
[0120] The sensor module 70 includes sealing sleeves: a first sealing sleeve 741 and a second sealing sleeve 742. The first sealing sleeve 741 is sleeved outside the proximity sensor 71, and the second sealing sleeve 742 is sleeved outside the gesture recognition sensor 72.
[0121] The sealing sleeves are connected to the sensor installation groove 1159 with interference fit. On the one hand, it can ensure the stability of the sensors in the sensor installation groove 1159; on the other hand, the sealing sleeves are dark in color, such as black, which can provide the function of shielding interfering light sources.
[0122] After the sensor collects the user's command information from the transparent window 132, the remote controller makes corresponding responses according to the command information.
[0123] According to an embodiment of the present application, an air conditioner is further provided. The air conditioner includes the above-mentioned remote controller 100. Among them, the relevant content of the remote controller 100 has been described in the above embodiments and will not be elaborated here.
[0124] According to the present application, the user can touch on the display module 13 to control the air conditioner. When different operations are performed, for example, when the temperature is increased, the remote controller 100 will give a vibration feedback through the vibration module 60.
[0125] According to the present application, the user can interact with the remote controller 100 through voice. For example, after waking up the remote controller 100 through a wake-up word, the user can control the remote controller 100 by voice. After the command is completed, the remote controller 100 will give a voice or vibration feedback.
[0126] According to the present application, there is a proximity sensor and a gesture recognition sensor. After this function is turned on, when the user approaches the remote controller 100, it will be automatically woken up, and the user can interact by recognizing the user's gestures to control the air conditioner functions.
[0127] As described above, according to the embodiments of the remote controller and the air conditioner of the present application, by setting the speaker module 20 and the microphone module 30, the voice interaction function of the remote controller 100 is realized. The user can operate the remote controller 100 through voice, avoiding the problem that it is inconvenient for the user to operate on the remote controller 100 in the prior art and improving the user's interaction experience.
[0128] In addition, the microphone module 30 is close to the third side wall 113 or the fourth side wall 114 of the first housing 11, and the speaker module 20 is close to the second side wall 112 of the first housing 11, so as to separate the microphone module 30 and the speaker module 20 to avoid sound interference.
[0129] In addition, the microphone module 30 connects the microphone 31 to the microphone circuit board 34, and a microphone dust-proof net 32 is wrapped outside the microphone 31. The overall sealing of the microphone 31 is realized through the microphone circuit board 34 and the microphone dust-proof net 32, improving the sound collection effect of the microphone 31.
[0130] In addition, in the vibration module 60, the flexible sheet 63 fills the gap between the vibrating body 61 and the elastic sheet 64 to form a buffer space, increasing the vibration effect of the vibrating body 61.
[0131] In addition, the flexible sheet 63 has a certain compression amount in the vibration module 60, so as to provide a pre-tightening force for the vibrating body 61; by adjusting the pre-tightening force, the vibration feedback effect can be improved.
[0132] In addition, for vibrating bodies 61 of different specifications and powers, the pre-tightening force of the installation of the vibrating body 61 can be simply adjusted by controlling the contact area and compression amount between the shrapnel 64 and the flexible sheet 63, without the need for major changes to the design scheme, saving product development time.
[0133] In addition, the vibration module 60 is arranged close to the first stud 1154 inside the housing, and the metal fastener inside the first stud 1154 is conducive to vibration transmission, thereby improving the vibration feedback effect.
[0134] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, rather than limiting them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
[0135] For the sake of convenience in explanation, the above description has been made in conjunction with specific embodiments. However, the above exemplary discussions are not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. According to the above teachings, various modifications and variations can be obtained. The selection and description of the above embodiments are for the purpose of better explaining the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.
Claims
1. A wire controller, characterized in that: include: A housing having a first shell and a second shell connected to each other; and A vibration module, connected to the first shell, for providing vibration feedback to the outside; Wherein, the vibration module comprises: vibrating body; A spring sheet connected to the first shell, wherein a space for clamping the vibrating body is formed between the spring sheet and the first shell; The flexible sheet is squeezed between the vibrating body and the elastic sheet.
2. The wire controller according to claim 1, characterized in that: The first shell and the second shell are connected by at least one fastener made of metal material, and the vibration module is arranged adjacent to the fastener.
3. The wire controller according to claim 1, characterized in that: The vibration module comprises: Double-sided tape is bonded between the first shell and the vibrating body.
4. The wire controller according to claim 1, characterized in that: One end of the spring sheet is screwed to the first shell, and the other end of the spring sheet is hooked to the first shell.
5. The wire controller according to claim 4, characterized in that: The shell is provided with a hook groove and a third stud; The shrapnel comprises: A main body, pressed against the flexible sheet; A first leg, comprising a connecting portion and an abutting portion, wherein the connecting portion is connected to the main body and inserted into the hook groove, and the abutting portion passes through the hook groove and abuts against the first shell; A second support leg is connected to the third stud.
6. The wire controller according to claim 4, characterized in that: The first shell and the second shell are connected by at least one fastener made of metal material, and one end of the spring sheet hooked with the first shell is arranged adjacent to the fastener.
7. The wire controller according to claim 1, characterized in that: The first shell includes a side wall forming a frame shape, and a retaining wall connected to the frame, the retaining wall is provided with retaining ribs, the retaining ribs form a vibration installation groove, the vibrator is connected to the vibration installation groove, the retaining ribs are provided with a notch, and the power cord of the vibrator passes through the notch.
8. The wire controller according to claim 1, characterized in that: The first shell is provided with a first stud protruding toward the second shell; The wire controller also includes: A main control circuit board is provided with a positioning hole, the positioning hole is adapted to the first stud, and the main control circuit board is provided with an avoidance groove for avoiding the vibration module; The power line of the vibrating body is connected to the main control circuit board.
9. The wire controller according to claim 1, characterized in that: The flexible sheet is foam, and the spring sheet is a metal spring sheet.
10. An air conditioner, characterized in that: include: A wired controller as claimed in any one of claims 1 to 9.