The present disclosure generally relates to the technical field of electronics, and in particular to a cable winding device of a mobile phone charger.
Along with development of electronic techniques, more and more people use mobile phones. As power stored in a mobile phone battery is limited, a user needs to charge a mobile phone with a mobile phone charger.
Conventionally, the mobile phone charger includes two parts, namely, a power adapter and a data cable. The power adapter is connected with the data cable through a USB (Universal Serial Bus) interface. The power adapter can convert high-voltage alternative current of 220V into low-voltage direct current of 5V, and electric energy can be conducted to a mobile phone charge interface through the data cable, so that power can be charged into the mobile phone.
To widen the moving range of the mobile phone in charge, the data cable is generally long. When being carried over, the data cable can be tangled with other objects disorderly, the user needs to separate the data cable from other objects before charge, and then the efficacy of using the mobile phone charger can be reduced.
Overall, the technical problems to be solved urgently by technicians of the field are to prevent the mobile phone data cable from being tangled with other objects disorderly and to improve the efficiency of using the mobile phone charger.
The embodiment of the present disclosure discloses a cable winding device of a mobile phone charger, and aims to solve the technical problems of preventing a mobile phone data cable from being tangled with other objects disorderly and improving the efficiency of using the mobile phone charger.
To solve the above problems, the embodiment of the present disclosure discloses a cable winding device of a mobile phone charger, including: a shell,
The embodiment of the present disclosure provides the cable winding device of the mobile phone charger. As the groove is formed in the shell of the mobile phone power adapter, the internal mainboard space of the mobile phone power adapter is effectively avoided, and thus the size of the mobile phone power adapter is not increased; the soft rubber is arranged inside the groove, the cable clamping grooves for fixing the mobile phone data cable are formed in the outer side of the soft rubber, and the mobile phone data cable can be orderly wound and fixed on the shell of the mobile phone power adapter and can be prevented from being tangled with other objects disorderly, so that the efficiency of using the mobile phone charger can be improved.
To clearly describe the technical schemes in the embodiments of the present disclosure or in the prior art, figures needing to be used in the description of the embodiments or the prior art are briefly introduced in the followings, obviously, the figures in the following description are some embodiments of the present disclosure, and for common technicians of the field, other figures can be obtained according to the figures without creative work.
To make the purposes, technical schemes and advantages of the embodiments of the present disclosure more clear, the technical schemes in the embodiments of the present disclosure are clearly and completely described with the following figures in the embodiments of the present disclosure, the described embodiments are not all but a part of the embodiments of the present disclosure. Based on the embodiments of the present disclosure, other embodiments obtained by common technicians of the field without creative work all belong to the protection scope of the present disclosure.
The embodiment of the present disclosure provides a cable winding device of a mobile phone charger, as shown in
What needs to be explained is that the shell of the mobile phone power adapter takes the shape of a tetragonal prism with four corners. Of course, the shell of the mobile phone power adapter can also take other shapes, such as a sphere, a cylinder and the like; the tetragonal prism is mentioned only because tetragonal prism is the common shape of the shell of the mobile phone power adapter in the market at present.
In the embodiment of the present disclosure, the groove can be formed in at least one corner of the shell of the mobile phone power adapter, and then the following situations are possible:
As the groove is formed in any corner, the internal mainboard space is not occupied by the groove, the size of the shell of the mobile phone power adapter is identical to that of the shell of a conventional mobile phone power adapter, and the size of the shell of the mobile phone power adapter is not increased; if the groove is formed in a plurality of corners, not only is the friction area of the soft rubber and the mobile phone data cable increased, but the number of the cable clamping grooves for fixing the mobile phone data cable can be also increased, and thus the capacity of fixing the mobile phone data cable can be increased.
In the embodiment of the present disclosure, to conveniently clamp the mobile phone data cable into the cable clamping grooves or take out the mobile phone data cable from the cable clamping grooves, the soft rubber can be TPU (Thermo-plastic Urethane) soft rubber. TPU soft rubber has the advantages of high elasticity, good thermo-plasticity, low price, fireproofing and flame retardancy, and the like.
In the embodiment of the present disclosure, the soft rubber is arranged inside the groove in the injection molding manner. In practical production, a double-material injection molding technique can be adopted to simultaneously form the shell of the mobile phone power adapter and the TUP soft rubber in the injection molding manner, and the TUP soft rubber and the shell of the mobile phone power adapter are integrally combined, so adhesion stability of the TUP soft rubber and the shell of the mobile phone power adapter can be ensured, and moreover the manufactured mobile phone charger is relatively attractive in appearance.
What needs to be explained is that one side where the soft rubber does not contact the groove is the outer side, at least two cable clamping grooves can be formed in the outer side of the soft rubber, and the two cable clamping grooves are respectively formed in two ends of the soft rubber so as to fix two ends of the mobile phone data cable.
As shown in the
What needs to be explained is that, the cross section of the mobile phone data cable takes a circular shape or a shape approximate to the circular shape.
According to the cable winding device of the mobile phone charger, provided according to the embodiment of the present disclosure, as the groove is formed in the shell of the mobile phone power adapter, the internal mainboard space of the mobile phone power adapter can be effectively avoided, and thus the size of the mobile phone power adapter is not increased; the soft rubber is arranged inside the groove, the cable clamping grooves for fixing the mobile phone data cable are formed in the outer side of the soft rubber, and the mobile phone data cable can be orderly wound and fixed on the shell of the mobile phone power adapter and can be prevented from being tangled with other objects disorderly, so that the efficiency of using the mobile phone charger can be improved.
Number | Date | Country | Kind |
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201520560727.5 | Jul 2015 | CN | national |
The present disclosure is a continuation of International Application No. PCT/CN2016/087013 filed on Jun. 24, 2016, which is based upon and claims priority to Chinese Patent Application No. CN 201520560727.5, entitled “CABLE WENDING DEVICE OF MOBILE PHONE CHARGER”, filed on Jul. 29, 2015, the entire contents of all of which are incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/CN2016/087013 | Jun 2016 | US |
Child | 15232637 | US |