The present invention relates to a hinge construction for a folding device.
Mobile devices, such as mobile phones with a body that includes two hingedly connected body parts are well-known. Typically, the body parts can fold together in a closed position and be unfolded to an open position. In the recent past there has been a trend towards thinner mobile phones. A typically bi-stable spring mechanism urges the body parts towards the closed position when the angle between the body parts is relatively sharp, and urges the body parts towards the open position when the angle between the body parts is relatively obtuse. Normally, the bi-stable spring mechanism is integrated in the hinge, with a compression spring attached with one end to one of the two body parts and a stationary part of a cam mechanism attached to the other end of the spring. The non-stationary part of the cam mechanism is attached to the other of the two body parts, and depending on the relative rotational position between the parts of the cam mechanism the compression spring is compressed to various degrees. The torque to angle profile (of the torque applied by the cam mechanism to the body parts) depends on the shape of the complementary parts of the cam mechanism. The diameter of the hinge including the bi-stable spring mechanism has become a limiting factor for further reducing the thickness of fold phones.
On this background, it is an object of the present invention to provide a hinge construction that enables the construction of thinner mobile apparatuses. This object is achieved by providing a hinge construction for a folding apparatus body, comprising a first body part connected to a second body part by a hinge that has a hinge axis, an actuator assembly disposed in said first body part or in said second body part, a link rod operably connected to said actuator, said link rod comprises a substantially first portion and a peg at an angle with said first portion, said peg being connected to said first portion by an elbow portion that substantially coincides with said hinge axis, said first portion is rotatably suspended in said first body part, and said peg is received in a slot in said second body part.
By placing the actuator assembly outside the hinge the diameter of the hinge can be substantially reduced and thereby the construction of thin fold type mobile apparatuses is facilitated.
Preferably, one end of the first portion is connected to the actuator assembly in the first body portion. Alternatively, the peg is connected to the actuator assembly in the second body portion.
The actuator assembly may comprise a cam mechanism that translates a rotating movement into a linear movement.
The hinge may comprise a tubular element and a hinge pin. The connection elbow of the connection rod may have a diameter that is substantially as large as the outer diameter of the tubular element so that the connection rod can handle high torque.
The first portion may include a section with an increased diameter for transmitting axial forces applied to the first portion to the first body part.
The connecting rod may include a second peg at an angle to the first portion, the second peg being received in a slot formed in the actuator assembly.
The actuator assembly may include a compression spring or an extension spring.
The first portion can be placed at an acute angle with the hinge axis.
The actuator assembly can be configured to define a stable closed position and a stable open position.
Further objects, features, advantages and properties of the hinge construction according to the invention will become apparent from the detailed description.
In the following detailed portion of the present description, the invention will be explained in more detail with reference to the exemplary embodiments shown in the drawings, in which:
As shown in
As shown in further detail in
An actuator assembly 20 is located in body part 2, preferably near the hinge 5. The longitudinal axis of the elongated actuator assembly 20 is in this embodiment placed parallel with the hinge axis 6. However, the longitudinal axis of the actuator assembly 20 may also be placed at an angle with the hinge axis 6. The actuator assembly 20 includes a static portion 22 that is secured to the body part 2 and a rotatable portion 21 that can rotate freely with respect to the static portion 22 and with respect to the body part 2. The static portion 22 includes a compression spring 31 and a first portion of a cam mechanism 32. The first portion of the cam mechanism 32 is slidably received inside the static portion 22 of the actuator 20. The compression spring 31 urges the first portion 32 of the cam mechanism towards a second portion 33 of the cam mechanism. The second portion 33 of the cam mechanism is connected to the rotatable portion 21 and the moves in unison there with. The first portion 32 and the second portion 33 of the cam mechanism have a complementary shape. This complementary shape is chosen in accordance with circumstances to achieve the required torque to angle relationship of the actuator assembly 20.
According to an embodiment, the actuator assembly 20 has a torque to angle relationship that results in a bi-stable hinge construction with the actuator 20 urging the body parts 2 and 3 in the closing direction when the body parts 2 and 30 are positioned at an angle between an intermediate angle and the closed position whilst the actuator 20 urges the body parts 2 and 3 in the opening direction when the body parts 2 and 3 are positioned at an angle between an intermediate angle and the open position.
According to an embodiment, the intermediate angle is roughly in the middle between the open position and the closed position, but according to circumstances and requirements this angle could be away from the middle or center position.
According to an embodiment it is also possible that the actuator to angle profile is not bi-stable, but simply urges the body parts 2 and 3 away from one another at relative angular positions of the body parts 2 and 3. In such an embodiment of the actuator assembly 20 can be formed by a torsion spring and does not include any cam mechanism. Further, the mobile apparatus 1 will be provided with a latch mechanism, locking the body parts 2 and 3 in the closed position until the locking mechanism is released by a user.
Any other profiles as desired by the designer of the mobile phone 1 can be applied by selecting the appropriate shapes for the compliment very parts of the cam mechanism.
A connecting rod 10 (as shown in greater detail in
The connecting rod also includes a peg 14 that is connected at an angle to the straight portion 12 by an elbow 13. The elbow 13 falls substantially together with the hinge axis 6. The angle between the peg 14 and the straight portion 12 depends on the angle α between the hinge axis 6 and the straight portion 12, and is chosen so that the peg 14 can be received in slot 19 that is formed in the body part 3. The other end of the straight portion 12 is provided with a hook shaped portion 17 (
FIGS. 4,5 and 6 show the hinge construction in a detailed and partially transparent side view in the closed, intermediate and open position, respectively.
According to an embodiment (not shown) the actuator assembly is disposed in one of the body parts and is connected with the other body parts by a connecting rod with a different shape than the shape shown in the embodiments above.
The embodiment with the actuator 20 in the first body part 2 and the embodiment with the actuator 20′ in the second body part 3 can be combined to obtain a foldable apparatus with an actuator in each housing part. In this combined embodiment one of the actuators could be used for the force in the closing direction and the other actuator can be used for the force in the opening direction.
Although the invention has been described with the “straight portion” 12 being straight, it is understood that this part of the connecting rod 10 can also be curved in a not shown embodiment. The same applies for peg 14 that may in an embodiment be curved.
Although the hinge construction according to the invention has been illustrated by means of a mobile phone 1, it is clear that the hinge construction according to the invention can be applied to any other apparatus with a foldable body. The body parts of the foldable construction do not need to be equal in size, dimension or weight, i.e. one of the body parts could be a main housing while the other body part is a flip or lid.
The invention has numerous advantages. Different embodiments or implementations may yield one or more of the following advantages. It should be noted that this is not an exhaustive list and there may be other advantages which are not described herein. One advantage of the invention is that it allows for a hinge construction with a reduced diameter. Another advantage of the invention is that it allows for a construction in which the actuator assembly is located in one of the body parts as opposed to being located inside the hinge. Yet another advantage of the invention is that it allows for a compact and in particular slim construction of a foldable apparatus. A further advantage of the invention is that it allows for the inside surface of the mobile apparatus that is formed by the two body parts to be almost a continuous surface with only a very thin hinge separating the two inner surfaces of the mobile apparatus. Thus, a more flush operating face is provided. Another advantage of the invention is that it provides for a hinge that is less visible in the closed and open position.
The term “comprising” as used in the claims does not exclude other elements or steps. The term “a” or “an” as used in the claims does not exclude a plurality.
Although the present invention has been described in detail for purpose of illustration, it is understood that such detail is solely for that purpose, and variations can be made therein by those skilled in the art without departing from the scope of the invention.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP06/12172 | 12/18/2006 | WO | 00 | 6/15/2009 |