Detailed Description
In order to describe the technical contents, the achieved objects and effects of the present utility model in detail, the following description will be made with reference to the embodiments in conjunction with the accompanying drawings.
Referring to fig. 1 to 3, the present utility model provides an earpiece, which includes a front section 1 and a rear section 2, wherein the rear section 2 of the earpiece is curved to fit the auricle of a human ear; the rear section 2 of the glasses leg is further connected with a loudspeaker 3 matched with the auditory canal of the human ear, so that the loudspeaker 3 is plugged into the auditory canal of the human ear when the rear section 2 of the glasses leg is attached to the auricle of the human ear. Specifically, as shown in fig. 1, the auricle is a spiral shape which extends spirally inwards from large to small.
Referring to fig. 1 and 2, it can be seen that, in the glasses leg designed by the present utility model, the rear section 2 of the glasses leg is wrapped around the auricle appearance of the human ear and is bent into the auricle shape, so as to better fit the ear, and the glasses leg is not easy to loosen due to shaking when worn by a user, and meanwhile, the structural design increases the comfort level when worn by the user; in addition, when actually setting up, operating personnel can connect speaker 3 in the afterbody department of rear segment 2 of glasses leg, and speaker 3 is plugged into in the people's ear canal with the adaptation for the sound that speaker 3 released can directly accurately pass into in user's ear, hardly disturb others, also avoided hearing by others simultaneously, and then reinforcing information's privacy.
It should be noted that in some preferred embodiments, the speaker 3 may be directly disposed at the end of the rear section 2 of the temple, that is, the end of the rear section 2 remote from the front section 1 that is only connected, so that the user can directly insert the speaker disposed at the end of the rear section 2 into the auditory canal of the human ear during actual use.
Further, in the temple according to the present utility model, the rear section 2 of the temple is made of a flexible material.
Further, in the temple according to the present utility model, the front section 1 of the temple is made of a hard material.
In the above technical scheme, in order to ensure that a user can obtain better use experience when wearing, when setting up the glasses leg, the back section 2 of the glasses leg can be preferably made of silica gel to avoid the uncomfortable ear of the user caused by overlong wearing time. Accordingly, the front section 1 of the temple may preferably be made of titanium alloy for supporting purposes.
It should be noted that, according to the actual use requirement, the operator may also select other flexible materials when making the rear section of the glasses leg, and similarly, the operator may also select other hard materials when making the front section of the glasses leg.
Further, in the glasses leg of the present utility model, a bluetooth module is further disposed in the speaker 3, and the bluetooth module is communicatively connected to an external mobile terminal, so as to be used for receiving an audio signal from the external mobile terminal.
Further, in the glasses leg of the present utility model, an audio module is further disposed in the speaker 3, and the audio module is connected to the bluetooth module, so as to convert an audio signal received by the bluetooth module into audio.
In the glasses leg designed by the utility model, the Bluetooth module and the audio module which are connected with the external mobile terminal are arranged in the loudspeaker 3, so that the Bluetooth module receives external audio information and transmits the external audio information to the audio module to be converted into audio play, thereby endowing the glasses with the multimedia entertainment effect.
It should be noted that the external mobile terminal mentioned herein may be a mobile phone or a tablet computer, and of course, according to actual use requirements, an operator may also select other devices.
Further, in the glasses leg of the present utility model, a battery accommodating cavity is formed in the speaker 3, the battery accommodating cavity is used for accommodating a battery, and the battery is respectively connected with the bluetooth module and the audio module.
In the above scheme, when in practical application, an operator can place a storage battery in the loudspeaker 3 to provide power for the loudspeaker 3, and meanwhile, the cruising ability is effectively improved.
It should be noted that in some other embodiments, the battery may also be embodied as a rechargeable battery. The charging mode can be a wired charging mode or a wireless charging mode; if the speaker 3 is wired charging type, a charging port needs to be provided on the speaker so that the charging port is connected with a rechargeable battery; in the case of the wireless charging type, a wireless charging coil needs to be provided in the speaker 3 so that the wireless charging coil is connected to the rechargeable battery, and the rechargeable battery is charged by the wireless charging coil.
In addition, referring to fig. 3, it can be seen that another technical scheme of the present utility model is as follows: an intelligent glasses comprises two glasses legs.
Further, in the smart glasses of the present utility model, the smart glasses further comprise a bridge 4 and two frames 5, wherein two ends of the bridge 4 are respectively connected to one of the frames 5, and one end of the frame 5 away from the bridge 4 is connected to the front section 1 of the glasses leg.
Further, in the smart glasses according to the present utility model, the two frames 5 and the nose bridge 4 are integrally formed.
In the smart glasses designed by the utility model, in order to reduce the process and the production cost, an operator can finish the two glasses frames 5 and the nose bridge 4 through single processing, namely, the two glasses frames 5 and the nose bridge 4 are integrally formed.
It should be noted that in some other implementations, the frame 5 and bridge may be assembled together after being manufactured separately.
Further, in the smart glasses of the present utility model, the lens mounting grooves 6 are formed in the lens frame 5, so that the smart lenses are fixed in the lens frame 5 through the lens mounting grooves 6.
It should be noted that, in actual setting, an operator will typically set a projection module on the smart glasses, where the projection module is connected to the smart lens to project an image on the smart lens. Of course, according to the actual situation, the device further includes components such as a sensor, a voice recognition chip, and a microphone, which are not the design emphasis of the present solution and are well known to those skilled in the art, so that the detailed description thereof will not be repeated.
Example 1
Referring to fig. 1-2, a first embodiment of the present utility model is as follows: an earpiece comprises a front section 1 and a rear section 2. Wherein in this embodiment the front section 1 of the temple is made of a rigid material for supporting purposes, while the rear section 2 of the temple is made of a flexible material for better fitting to the auricle of the human ear.
In the present utility model, the rear section 2 of the temple is curved to conform to the auricle of the human auricle; in addition, a loudspeaker 3 which is matched with the auditory canal of the human ear is also connected with the rear section 2 of the glasses leg. When the user wears the glasses, the rear section 2 of the glasses leg is wound around the auricle of the user to be more closely attached to the ear, and is made of silica gel, so that discomfort of the user during wearing is greatly reduced; the front section 1 of the glasses leg is a thin rod made of titanium alloy, and the front section 1 of the glasses leg is usually connected with the glasses frame 5, and the glasses frame 5 has a certain weight, so the front section 1 of the glasses leg is made of hard materials to play a role in supporting the glasses frame 5.
As can be seen by referring to fig. 2, a speaker 3 is connected to the tail of the rear section 2 of the glasses leg, when the rear section 2 of the glasses leg is attached to the auricle of the human ear, the speaker 3 can be directly adaptively plugged into the auditory canal of the human ear, which effectively transmits the sound emitted by the speaker 3 directly into the ear of the user, and meanwhile, the interference of the emitted sound to other people is avoided; in addition, the design of this kind of structure is favorable to protecting user's privacy more, and when user broadcast voice information, this speaker 3 plays the effect to the shutoff of ear canal sound insulation with the inseparable laminating of people's ear, does not need to increase volume and listens to voice information, has also avoided hearing by others simultaneously.
In the present embodiment, the present inventors have provided a bluetooth module connected to an external mobile terminal and an audio module connected to the bluetooth module in the speaker 3. The Bluetooth module can be connected with an external mobile terminal, such as a mobile phone or a tablet personal computer, through Bluetooth, so that audio signals are received and transmitted to the audio module, and the audio module collects and processes the audio signals and converts the audio signals into audio play. Correspondingly, the inventor also provides a battery accommodating cavity in the loudspeaker 3 for accommodating a storage battery, and the Bluetooth module and the audio module are respectively and electrically connected with the storage battery, so that electric energy is obtained from the storage battery.
Example two
Referring to fig. 3, a second embodiment of the present utility model is as follows: an intelligent glasses comprising two glasses legs according to the first embodiment.
Referring to fig. 3, in this embodiment, the smart glasses further include a bridge 4 and two frames 5, wherein two ends of the bridge 4 are respectively connected to one frame 5, and one end of the bridge 4 far away from the bridge 4 is connected to the front section 1 of one glasses leg, and the bridge 4 and the frames 5 are integrally formed.
Referring further to fig. 3, in this embodiment, lens mounting grooves 6 are formed in the lens frame 5 to fix the intelligent lenses in the lens frame 5 through the lens mounting grooves 6, and a projection module is disposed on the intelligent glasses and is connected with the intelligent lenses to project images on the intelligent lenses. When intelligent glasses work, intelligent lens and picture frame act as the screen, can convey visual information to the user, and in addition, the speaker then can convey audible information to the user, also can receive sound information to realize the voice interaction.
Therefore, the structure of the glasses leg is reasonably optimally designed, the glasses leg is applied to the intelligent glasses, when the user wears the intelligent glasses, the glasses leg can be well attached to the auricle of the user, and meanwhile, the loudspeaker 3 can be directly plugged into the ear of the user to answer the audio, so that the comfort level of the user during wearing can be improved, and the privacy of the user can be effectively protected. The glasses leg and the intelligent glasses designed by the utility model can effectively avoid sound leakage, enjoy the pleasure of improving the tone quality when being worn, and have good practicability. The glasses leg is simple in structure and reliable in use, and has good popularization prospect and application value.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent changes made by the specification and drawings of the present utility model, or direct or indirect application in the relevant art, are included in the scope of the present utility model.