The present invention relates to a rotating hinge with an elevating structure, and more particularly to a rotating hinge capable of elevating a screen to a fixed position and producing touch feel when the screen is descended.
In general, a 3C electronic device such as a notebook computer, a personal digital assistant (PDA) a digital camera and a mobile phone, a display and a main body of the electronic device are pivotally connected by a hinge, so that the display can be spread open when the electronic device is in use, or the display can be can be folded onto the main body to reduce the volume for storage and carrying when the electronic device is not in use.
As conventional rotating hinges do not come with a screen elevating structure, the screen may rub a keyboard easily if the screen is rotated and the height is insufficient or the screen is titled. Therefore, it is necessary to elevate the screen, but such arrangement will adversely affect the harmonic appearance of the electronic device.
In a rotating structure as disclosed in R.O.C. Patent Publication No. 495130, a display can be rotated with respect to a main body, such that the display can be turned to provide different angles of views for users. The rotating structure comprises: a rotating base for forming a first cylindrical body, and both external edges of the first cylindrical body include a groove separately, and the two grooves are corresponsive to each other; a pivotal axle pivotally connected to a connecting side of the display and the rotating base; a fixing base fixed onto the main body for forming a second cylindrical body, and the second cylindrical body has a penetrating hole and two insert slots, and the penetrating hole is disposed at the central position of the second cylindrical body, and the penetrating hole is contained precisely in the rotating base, and the insert slots are formed at the penetrating hole, and the two insert slots are corresponsive to each other; and two resilient components contained in the insert slots, and each resilient component has a protruding edge; such that if the rotating base is rotated to a fixed position in the fixing base, the groove will be latched to the protruding edge for the positioning effect.
However, a poor design of the corresponding protruding edges and grooves of the foregoing rotating structure may affect the engagement of the protruding edge with the groove and limit the positioning effect and the touch feel of the positioning. In addition, such device obviously does not come with the function of limiting the rotating path of the display, so that a signal line of the display connected to the main body cannot be twisted too much, and the display must be turned less than 360 degrees with respect to the rotating path of the main body. Since the rotating path of the foregoing rotating structure is not limited, the signal line may be twisted and tangled and the electronic device may even be damaged easily.
The primary objective of the present invention is to provide a rotating hinge with an elevating structure, particularly a rotating hinge applicable to a display of an electronic device. Besides the display can be rotated with respect to the main body of the electronic device, the screen of the display can be driven to elevate or descend with respect to the main body during the rotating process to prevent the display from touching a keyboard, such that the display can be installed at a lower position to reduce the overall volume of the electronic device and give a better and more harmonic appearance to the electronic device.
Another objective of the present invention is to provide a touch feel for the positioning when the display is turned to a predetermined position, so as to resist vibrations of the display and greatly improve the stability of the display.
To achieve the foregoing objectives, a preferred embodiment of the present invention includes a fixed base and a rotating support base that can be rotated with respect to each other. An upper end of the fixed base is fixed to a guide plate, and the guide plate has a through hole for passing a wire, two or more external positioning grooves corresponding to internal positioning grooves, and these positioning grooves are designed according to the required positioning angle such as 0 degree and 180 degrees when the hinge is rotated, and the two external positioning grooves are disposed equidistantly with 180 degrees apart at the external circumference of the guide plate, and the two internal positioning grooves are disposed equidistantly at the internal circumference of the through hole. The number and angle of the internal positioning grooves correspond to those of the internal positioning grooves and disposed alternatively with each other. A lower end of the rotating support base connects and presses the guide plate and a limit plate linked to the rotating support base. The limit plate includes a set of internal positioning protrusion and external positioning protrusion disposed at the positions corresponding to the internal and external positioning grooves of the guide plate. When the rotating support base and the fixed base are rotated, the positioning grooves and positioning protrusions drive the position of the rotating support base to elevate. After the rotating support base rises, there are four or more points of the positioning protrusions situated at the internal and external circumferences of the guide plate, such that a four-point contact can be maintained to prevent and resist vibrations after the rotating support base rises. After the rotating support base is turned to a predetermined position, the positioning grooves and positioning protrusions match with each other, and the rotating support base is descended to a fixed position to enhance the touch feel and the stability after the front side and backside of the screen are positioned.
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The internal and external positioning grooves 42, 41 are designed according to an angle such as 0 degree and 180 degrees required for the positioning, when the hinge is rotated. The two external positioning grooves 41 are disposed equidistantly at the positions 180 degrees apart with each other on the external circumference of the guide plate 40, and the two internal positioning grooves 42 are disposed equidistantly on the internal circumference of the through hole 45, and the number and angle of the internal positioning grooves 42 correspond to those of the external positional grooves 41 and both external and internal positioning grooves 41, 42 are disposed alternately with each other. A lower end of the rotating support base 20 has a limit plate 50 coupled to the guide plate 40 and linked to the rotating support base 20, and the limit plate 50 has a set of internal positioning protrusion 52 and external positioning protrusion 51 corresponding to the positions of the internal and external positioning grooves 42, 41 of the guide plate 40, and the internal and external positioning protrusions 52, 51 keep a four-point contact with the display 1 to achieve the effect of resisting vibrations.
The rotating member 30 is disposed at the bottom of the fixed base 10 and connected with the driving portion 22 to produce a link, and the connection is achieved by connecting a plurality of positioning pillars 220 disposed at the bottom of the driving portion 22 into a plurality of positioning holes 31 of the rotating member 30. The fixed base 10 includes at least one containing portion 12, and the containing portion 12 includes a resilient unit 120 that connects and presses the guide plate 40, and the bottom of the containing portion 12 further includes a fixing plate 60, and another end of the resilient unit 120 connects and presses the fixing plate 60.
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The shape of components of the present invention is not limited to the foregoing embodiments only, but the guide plates 40a, 40b also can be rectangular plates, and the positions of the internal and external positioning grooves 42, 41 can be adjusted slightly on the guide plates 40a, 40b, or an elastic plate 70 can be installed between the guide plate 40b and the fixing plate 60 according to actual needs for changing the detailed structure as shown in
While the invention has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims.