This application claims the benefits of the Taiwan Patent Application Serial Number 103223436, filed on Dec. 31, 2014, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The present invention relates to a strain relief sleeve and a dock containing the same, and more particularly to a strain relief sleeve for preventing electrical joints from drag-caused damage and to a dock containing the same.
2. Description of Related Art
In recent years, a dock including a connector and plural ports has been developed for connection with multiple peripheral devices to address the issue of most computer cases having insufficient built-in ports. As the circuit board of the dock can be provided with various processing modules (e.g. video processing modules, audio processing modules), the dock can further include video ports (e.g. HDMI ports, VGA ports), audio ports, or network ports in addition to USB ports for connection with USB interface-based electronic devices.
For physical retailers, information operation systems (e.g. Point of Sales, POS) have been used in businesses (such as retail shops or markets) to replace traditional cash registers owing to their various extended functions of recording and tracking customer orders, processing credit cards, connecting to other systems in a network, and managing inventory. In consideration of the extended functions, a dock is required by the POS system to provide ports for connection with I/O devices (e.g. keyboard, mouse, screen, printer etc.) and network connection with other external devices.
In the conventional art, the dock is usually manufactured by welding multiple cables to a circuit board for electrical connection therebetween and then assembling an upper housing and a lower housing by mortise-and-tenon connection or screw-in connection to constitute the exterior of the dock and install the cables and the circuit board in a containing space defined by the upper housing and the lower housing. However, a drawback arising from the conventional method is that improper drag on the cable during assembling or using the conventional dock would result in crack of the solder joints between the cable and the circuit board and degradation of electrical performance and reliability.
For the reasons stated above, an urgent need exists in this industry to develop a strain relief sleeve for preventing electrical joints between the cable and the circuit board from drag- or compression-caused crack or detaching and to develop a dock containing the strain relief sleeve.
The object of the present invention is to provide a strain relief sleeve and a dock containing the same. The strain relief sleeve permits a cable to extend therethrough for electrical connection with a circuit board. Further, by virtue of a distinctive configuration and connection among a cable, a collar, a strain relief sleeve, a housing, a circuit board and a cover plate, the dragging force on the cable would impose stress on the contact regions between the strain relief sleeve and the housing rather than the electrical joints between the cable and the circuit board. As a result, it can prevent electrical joints between the cable and the circuit board from drag-caused crack or detaching. Further, when the cable is compressed, the circuit board can be blocked by the cover plate and maintained stationary. Accordingly, the dock can have improved reliability.
To achieve the object, the present invention provides a strain relief sleeve that is used to be disposed around a cable. The strain relief sleeve includes a tube and a pad connected to one end of the tube, wherein the pad has a through hole, and the cable extends through the tube and the through hole of the pad.
Additionally, the present invention also provides a dock containing the strain relief sleeve, which includes: a cable that includes a first end and a second end opposite to the first end; a housing that includes an inner surface, an outer surface, an opening and a second through hole, wherein the inner surface defines a containing space, the opening and the second through hole extend through the inner surface and the outer surface and communicate with the containing space, respectively, and the cable extends through the second through hole; a strain relief sleeve that is secured to the cable and includes a tube and a pad connected to each other, wherein the pad has a third through hole, the cable extends through the tube and the third through hole, and the pad has a dimension larger than the second through hole and abuts against the inner surface of the housing; a circuit board that includes a plurality of ports and is electrically connected to the first end of the cable and abuts against the pad of the strain relief sleeve; and a cover plate that includes a plurality of apertures and covers the opening of the housing, wherein the ports of the circuit board are exposed from the apertures.
The above or other advantages and features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Hereafter, example will be provided to illustrate the embodiments of the present invention. Advantages and effects of the invention will become more apparent from the disclosure of the present invention. It should be noted that these accompanying figures are simplified and illustrative. The quantity, shape and size of components shown in the figures may be modified according to practical conditions, and the arrangement of components may be more complex. Other various aspects also may be practiced or applied in the invention, and various modifications and variations can be made without departing from the spirit of the invention based on various concepts and applications.
Please refer to
As shown in
Attention is now directed to
The housing 3 includes an inner surface 31, an outer surface 32, an opening 33, a second through hole 34, two guide rails 35 disposed on two opposite sides of the inner surface 31 (it is noted that
With regard to the assembly of the dock 1000, the following detailed description is provided for exemplary illustration. First, the collar 2 and the housing 3 are movably disposed around the cable 1. Then, the fitting structures 24 of the collar 2 are inserted into the guide grooves 36 of the housing 3. After the fitting structures 24 pass through the guide grooves 36, the collar 2 is screwed to tighten the second annular section 23 of the collar 2 in the second through opening 34. As a result, the collar 2 is bonded to the housing 3, and the second through hole 34 of the housing 3 is sealed. Preferably, the fitting structures 22 are configured into a barbed shape so as to fix the collar 2 to the housing 3 in a hooking manner. Further, the second through hole 34 of the housing 3 has a smaller transverse diameter in X axis than a longitudinal diameter in Y axis. Accordingly, the collar 2 can be tightly bonded to the housing 3 owing to the good packing effect induced by the screwing of the collar 2.
In this embodiment, there are illustrated two fitting structures 24 in the collar 2 and two guide grooves 36 in the housing 3. However, in other embodiments of the present invention, the bonding between the collar 2 and the housing 3 can also be achieved by one fitting structure in the collar and one guide groove in the housing. Therefore, the numbers of the fitting structures 24 and the guide grooves 36 are not limited.
Please refer to
Attention is now directed back to
The quantity of the first terminal blocks 16 and the second terminal blocks 51 can be modified according to requirement, and may be one set or three or more sets. It is also feasible to directly solder the conducting wires 13 at the first end 11 of the cable 1 to the circuit board 5 without the first terminal blocks 16 and the second terminal blocks 51.
In accordance with this embodiment, as the second end 12 of the cable 1 is provided only with one connector 15, the housing 3 is shaped to have a containing space 37 with a decreasing cross-sectional area in the direction towards the second end 12 of the cable 1 to reduce the volume. Further, the plane shape of the circuit board 5 is also accordingly tapered in the direction towards the second end 12 of the cable 1 so as to smoothly dispose the circuit board 5 into the containing space 37. However, the shapes of the circuit board 5 and the housing 3 are not limited to those shown in
Please referring to
As illustrated above for the dock of the present invention, the cable 1 extends through the collar 2, the second through hole 34 of the housing 3 and the strain relief sleeve 4, therewith the strain relief sleeve 4 being fixed to the cable 1 and the pad 42 of the strain relief sleeve 4 having a dimension larger than that of the second through hole 34 of the housing 3 and being pressed against the inner surface 31 of the housing 3. By the virtue of the aforementioned configuration, when the cable 1 is dragged, the dragging force would impose stress on the contact regions between the pad 42 of the strain relief sleeve 4 and the housing 3 rather than the electrical joints between the cable 1 and the circuit board 5. Thereby, it can avoid any crack or detaching of the electrical joints between the cable 1 and the circuit board 5 caused by dragging the cable 1. Furthermore, as the circuit board 5 and the strain relief sleeve 4 are enclosed by the housing 3, the cover plate 6 and the collar 2, the circuit board 5 can be blocked by the cover plate 6 and maintained stationary under the cable being compressed, thereby enhancing the reliability of the dock 1000.
The above examples are intended for illustrating the embodiments of the subject invention and the technical features thereof, but not for restricting the scope of protection of the subject invention. Many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed. The scope of the subject invention is based on the claims as appended.
Number | Date | Country | Kind |
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103223436 | Dec 2014 | TW | national |