The present invention relates to a rotary control device having a lock function.
Conventionally, there exist, for example, rotary switches as rotary control devices. In this rotary switch, a knob is provided on a body, which incorporates therein a switch main body such as a pair of contacts, so as to be rotated. The switch main body is actuated by rotatably operating the knob (for example, refer to JP-A-7-335076).
However, the conventional rotary switch does not have a lock function for restraining a rotary operation of the knob. Therefore, the knob can be freely rotated, thereby erroneous operations may occur easily. In particular, in such a situation that the rotary switch is provided in a location where the switch is often subjected to a touch by a hand of an user (a driving person) as on an upper face portion of a console box disposed between a driver's seat and a front passenger's seat in a vehicle, there is a higher possibility that such erroneous operations of the rotary switch occur.
On the contrary to the conventional rotary switch described above, there have also been provided rotary switches which become operative only when a knob is depressed once in an axial direction of the knob and then is rotated. This type of rotary switch cannot be rotated as long as the knob is once depressed in the axial direction of the knob. In short, the rotary switch includes a lock function to keep the knob restrained from being rotated as long as the knob is not depressed once in the axial direction of the knob.
In the case of this type of rotary switch, however, when the knob is rotated, the whole of the knob has to be depressed once in the axial direction. Therefore, the operability of the rotary switch is deteriorated since the whole of the knob has to be depressed for rotary operation.
The invention has been made in view of the situations described above, and an object thereof is to provide a rotary control device which includes a lock function to lock a knob to restrain the rotary operation of the knob with good operability.
In order to achieve the above object, according to the present invention, there is provided a rotary control device, comprising:
a body;
a knob rotatably provided on the body;
a push button provided on a side portion of the knob so as to be depressed;
a lock member that moves in response to a depressing operation of the push button; and
a lock portion provided in the body,
wherein the lock member is retained to the lock portion of the body so as to restrain a rotary operation of the knob before the push button is depressed; and
wherein when the push button is depressed, the lock member is moved to a space where the lock member is movable in conjunction with the rotary operation of the knob so that a restraint of the rotary operation of the knob is released.
According to the rotary control device described above, the knob is restrained from being rotated until the push button is depressed, and the restraint of the rotary operation of the knob is released when the push button is depressed. The rotary control device includes a lock function to restrain the rotary operation of the knob, and a necessary operation to release the restraint of the rotary operation of the knob is only to depress the push button. The push button can be depressed by fingers of the hand of the driver who grips the knob, and following this operation, the knob can be rotated. Consequently, compared with the conventional rotary switch in which the knob is rotated after the whole of the knob is completely depressed, the operability can be improved.
The above objects and advantages of the present invention will become more apparent by describing in detail preferred exemplary embodiments thereof with reference to the accompanying drawings, wherein:
Hereinafter, an embodiment (an example) in which the invention is applied to a rotary switch will be described by reference to the drawings.
Firstly,
In addition, the body 1 incorporates therein a switch main body (not shown) such as a pair of contacts, and in this case, LEDs 6, 7, 8, which are all light emitting devices, are installed in three locations of the guide wall 4, that is, two end portions and one intermediate portion in an interior of the guide wall 4. Additionally, necessary indications 9, 10, 11 are provided on an outer face of the body so as to correspond to the LEDs 6, 7, 8 as shown in
In addition, as shown in
By the configuration of the above rotary switch, when the knob 12 is attempted to be rotated clockwise without the push button 14 is depressed, the lock member 19 is retained on the end wall 4c of the light guide wall 4 in the body 1, whereby the rotation of the knob 12 is locked, and hence, there occurs no case where the knob 12 rotates. In other words, the knob 12 is locked to restrain the rotary operation of the knob 12 and the light guide wall 4 functions as a lock portion which restrains the rotation of the knob 12 with the lock member 19.
On the contrary to the above operation, when the knob 12 is gripped with fingers of the hand of the driving person and the push button 14 is depressed with the fingers, as shown in
Since the knob 12 is rotated as described above, the indications 9, 10, 11 on the body 1 are indicated sequentially by the index marking 13. In this case, a switching of the driving torque of a vehicle, in particular, a four-wheel-drive vehicle is conducted by the rotating operation of the knob 12. Consequently, the indications 9, 10, 11 indicate driving torque switching modes of the four-wheel-drive vehicle, and an appropriate sensation of a detent (a clicking) is applied to the knob 12 at each of the indications by a detent mechanism (not shown).
When the knob 12, which has been rotated, is rotated in a reverse direction to return to an initial position, the lock member 19 is returned from the position where the lock member 19 is positioned in the space 5 of the body 1 to the position where the lock member 19 is in abutment with the end face 4c of the light guide wall 4 by the spring force of the spring 20. As result, the knob 12 returns to the state in which the knob 12 is locked to restrain the rotary operation of the knob 16. At the same time, the push button 14 also returns to the state in which the outer portion 14a projects outwards of the knob 12.
In the above rotary switch according to this embodiment, the knob 12 is locked to restrain the rotary operation of the knob 12 before the push button 14 is depressed. When the push button 14 is depressed, the restraint of the rotary operation of the knob 12 is released. Consequently, the rotary switch includes the lock function to restrain the rotary operation of the knob 12, and the necessary operation to release the restraint of the rotary operation of the knob 12 is only to depress the push button 14 provided at the side portion of the knob 12. Therefore, the depressing operation can be implemented by the fingers of the hand with which the knob 12 is gripped, and the depressing operation is followed by the rotating operation of the knob 12. Consequently, compared with the conventional rotary switch in which the knob is rotated after the whole of the knob is completely depressed once, the operability of the rotary switch according to this embodiment can be improved.
The application of the invention is not limited to the rotary switch. In addition, the lock portion may be made up of a portion or a member other than the light guide wall 4.
The invention is not limited only to the embodiment described and illustrated above but can be modified as required for enforcement of the invention without departing from the spirit and scope thereof.
The present application is based on Japanese Patent Application No. 2008-259566 filed on Oct. 6, 2008, the contents of which are incorporated herein for reference.
Number | Date | Country | Kind |
---|---|---|---|
P2008-259566 | Oct 2008 | JP | national |