1. Technical Field
The present invention relates to the field of headphone technology, and more particularly, to a fine tuning structure for headphones and a headphone.
2. Description of Related Art
Headphones and ear buds are common audio devices. Compared with the ear bud, the headphone has a larger size and includes two larger audible units, and the two larger audible units are connected together via an elastic head band. When the headphone is used, the audible units are pressed to closely contact with human ears. Since the headphone with an integrative structure has bad adaptability to human heads with different shapes and human ears at different positions, it is necessary to improve the adaptability via a tuning structure able to tune the position of the audible unit.
In prior art, the headphone can be tuned via tuning the length of the head band or the length of connecting parts between the head band and audible units. The tuning of the length of the head band can apply to the human heads with different shapes, the tuning of the length of connecting parts can apply to the human ears at different positions, however, both of the tuning manners can't tune the angle of the audible unit, the wearing adaptability of the headphone is affected. Furthermore, the headphone adopts a surrounding manner to make a sound, that is the audible units adopt enclosed spaces formed by surrounding auricles using soft objects, such as sponges, to transmit sound. Therefore, if the angle of the audible unit doesn't match with the auricle, the space will not be completely enclosed, which will cause sound to leak.
The tuning structure can't meet user's requirements in the prior art, especially, in the high-end headphone field with higher sound quality and comfortableness requirements.
The object of the present invention is to provide a fine tuning structure for headphones, to overcome the problem of bad comfortableness and possible leakage of sound.
An embodiment of the present invention provides a fine tuning structure for headphones, configured for tuning an angle between a head band and an audible unit of the headphone, is characterized in that the fine tuning structure comprises an upper assembly connected to an end of the head band and a lower assembly connected to the audible unit, the upper assembly and the lower assembly are hinged together, the upper assembly is provided with a limiting step, the lower assembly is movably connected to a limiting part, an end face of the limiting part is provided with a limiting curved surface abutted against the limiting step and configured for limiting an angle of the lower assembly relative to the upper assembly.
Furthermore, the limiting part includes a rotating shaft rotatable in an axial direction thereof and inserted in the lower assembly and a rotating plate provided at an end of the rotating shaft, an edge of an end face of the rotating plate surrounding the rotating shaft is provided with an annular band, the limiting curved surface is formed by an outer end faces of the annular band, thickness of the annular band is gradually increased in a clockwise direction or anti-clockwise direction.
Furthermore, the fine tuning structure further includes a connecting shaft configured for connecting the upper assembly and the lower assembly, an upper end of the lower assembly is provided with a connecting gap, the upper end of the lower assembly is provided with first corresponding axle holes close to two ends of the connecting gap, a lower end of the upper assembly is provided with a protruded block inserted in the connecting gap, a second axle hole is transversely defined in the protruded block, the limiting step is defined in the protruded block.
Furthermore, the protruded block is further provided with a rotating cavity configured for preventing the rotating plate from interfering with the protruded block when the rotating plate is rotated.
Furthermore, the protruded block is further provided with a rotating sliding chute configured for preventing the protruded block from interfering with the rotating plate, a lower end of the rotating sliding chute is connected to the rotating cavity.
Furthermore, the lower assembly further includes a knob configured for tuning a rotating angle of the limiting part, the rotating shaft is inserted and fixed in the knob.
Furthermore, an outer side face of the knob is provided with a plurality of grooves, an outer end face of the knob is provided with scales configured for identifying rotation angles.
Furthermore, the fine tuning structure further includes a soft rubber ring configured for increasing rotating resistance of the limiting part, the soft rubber ring is fixed in the lower assembly, the rotating shaft is passed through the soft rubber ring.
The fine tuning structure according to the present invention can select a different place on the limiting curved surface to abut against the limiting step, so that a limit angle between the upper assembly and the lower assembly can be limited so as to tune the angle between the head band and the audible unit. Thus, the wearing comfort of the headphone can be improved, and the leakage of sound is avoided.
According to the present invention, a headphone is provided and includes a head band and two audible units, and further includes the above-mentioned fine tuning structure.
Furthermore, the fine tuning structure is arranged between each audible unit and the head band.
The headphone according to the present invention includes the fine tuning structure which can fine tune the angle of the audible unit, so that the wearing comfort of the headphone can be improved, and the leakage of sound is avoided.
In order to make clearer the objects, technical solutions and advantages of the invention, the present invention will be explained below in detail with reference to the accompanying drawings and embodiments. It is to be understood that the following description of the embodiments is merely to explain the present invention and is no way intended to limit the invention.
Implementations of embodiments of the present invention will be explained below in detail with reference to the accompanying drawings.
As shown in
When it is needed to fine tune the audible unit 3, the headphone can be worn on the head to make the head band 2 open to provide elastic force, so that the two audible units 3 can closely contact with two ears, the inward-directed elastic force of the head band 2 and reacting force from the head are simultaneously applied on the upper assembly 11 and the lower assembly 12, so that the upper assembly 11 and the lower assembly 12 are rotated to a position at which one largest limit angle is formed. Since different places on the limiting curved surface 12111 are different in height, the different largest limit angles can be formed when the different places of the limiting curved surface 12111 are abutted, so that the angle of the audible unit 3 can be changed after the headphone is worn, that is the audible unit 3 has been fine tuned.
The fine tuning structure 1 according to the embodiment can precisely tune the angle of the audible unit 3 based on different shapes of human heads, so that the audible unit 3 can contact with an ear closely, the comfort is improved. Furthermore, the enclosed space can be easily formed between the audible unit 3 and the ear to avoid the leakage of sound.
Other types of the limiting parts 121 can be used, such as, a sheet structure slidably arranged on the lower assembly 12, an outer side face of the sheet structure can be shaped as the limiting curved surface 12111. In the embodiment, as shown in
In the embodiment, the thickest section of the annular band 1211 is transited to the thinnest section of the annular band 1211 via an arc surface, so that if the limiting part 121 continues to be rotated after rotated to a limit section, the other limit section is arrived naturally. The limiting curved surface 12111 can also be provided with a plurality of grooves, in order to catch the limiting step 112 conveniently after the limiting part 121 is tuned.
As shown in
A soft rubber ring 1215 is fixed in the lower assembly 12, the rotating shaft 1213 of the limiting part 121 passes through and closely contacts with the soft rubber ring 1215, the soft rubber ring 1215 can increase the rotating resistance of the limiting part 121, thereby providing a buffer at some extent and improving the rotation feel, thus too much rotation caused by too small rotating resistance can be avoided.
There may be a plurality of hinging connections, such as, a combination of a protruded column and a concave cylindrical cavity, between the upper assembly 11 and the lower assembly 12. In the embodiment, a connecting shaft 13 is provided to hinge the upper assembly 11 and the lower assembly 12. As shown in
As shown in
The protruded block 111 is also provided with a rotating sliding chute 113, a lower end of the rotating sliding chute 113 is connected to the rotating cavity 114, so that a cavity extending around the axis of the protruded block 111 can be formed. When the headphone isn't worn, the lower assembly 12 can be rotated in a larger angle scope, the rotating plate 1212 of the limiting part 121 can be slide in the rotating sliding chute 113 and will not interfere with the protruded block 111.
As shown in
In actual design, it is possible that only one fine tuning structure 1 is arranged, then the angles of the audible units 3 at left and right sides can be balanced via elasticity of the head band 2, thus the fine tuning is completed, at the same time, the cost of the headphone can be saved. In the embodiment, there is the fine tuning structure 1 between each audible unit 3 and the head band 2. The two fine tuning structures 1 arranged at two sides of the headphone can be tuned synchronously or asynchronously, so that the wearing effect can be finely improved.
The above-mentioned is only the preferred embodiments of the present invention, but places no limit to the invention. Therefore, any modification, equivalent replacement and improvement etc on the basis of the spirit and principle of invention shall be within the protective scope of the present invention.
Number | Date | Country | |
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Parent | PCT/CN2014/081231 | Jun 2014 | US |
Child | 14622991 | US |