1. Field of the Invention
The present invention relates to exercisers and more specifically, to a safety switch control mechanism of an exerciser.
2. Description of the Related Art
An exerciser, for example, a treadmill has a safety switch to prevent a child's arbitrary, careless, or accidental triggering of the power control switch thereof from endangering the child, or to automatically switch off the power supply when the user falls from the machine accidentally during exercise. Without the safety switch, the user's clothes may be rolled into the machine when the user falls from the machine accidentally during exercise, potentially injuring the user. In such exerciser, the safety switch is installed in the instrument panel for switching on/off the power supply of the exerciser, and an extractable plug pin is inserted into the safety switch in linkage with the plug pin for turning on the power supply of the exerciser. A cord member is linked between the plug pin and the user's body. When the user falls from the treadmill accidentally during exercise, the cord member will wrest the plug pin to further pull the plug pin away from the safety switch, causing the safety switch to switch off the power supply of the exerciser. Further, after the exercise, the user can pull the plug pin away from the safety switch to switch off the power supply of the exerciser, preventing potentially accidental triggering of the power control switch.
The aforesaid safety switch design is still not satisfactory in function. It does not use any linking means or position limiter to assure high reliability. Simply by means of inserting the plug pin into the safety switch or pulling the plug pin away from the safety switch cannot assure accurate operation of the safety switch. The safety switch may be not activated after insertion or separation of the plug pin.
Further, this design cannot prohibit a child from inserting a similar rod member into the safety switch and then potentially switching on the power supply of the exerciser. Briefly, the security level of this design of safety switch is low.
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide a safety switch control mechanism for exerciser, which accurately drives the power control switch to switch on/off the power supply of the exerciser.
It is another object of the present invention to provide a safety switch control mechanism for exerciser, which is structurally special to prohibit any other external object from driving the power control switch to assure high security.
To achieve the foregoing objects of the present invention, the safety switch control mechanism is installed in an instrument panel of an exerciser for controlling the power supply of the exerciser. The safety switch control mechanism is composed of a linkage and a safety control key. The linkage includes a bracket fixedly mounted to an inner wall of the instrument panel, and a pivot unit mounted to the bracket. The instrument panel has a keyhole formed at an outer wall thereof, and a micro switch for switching on/off the power supply of the exerciser. The pivot unit includes a wheel rotatably supported inside the bracket, having at least one hook portion formed at an outer periphery of the wheel, and a holding portion and a releasing portion, both of which are formed at one side of the wheel. The holding portion and the releasing portion are located at different planes. The safety control key includes a grip, and a plate-like actuation portion extending from one end of the grip for inserting into the keyhole. The actuation portion has a through hole cut through two opposite sides thereof. When inserting the plate-like actuation portion of the safety control key into the keyhole, a sidewall of the through hole of the plate-like actuation portion of the safety control key forces the wheel to rotate clockwise and to further shift the releasing portion to contact against the micro switch, causing the micro switch to switch on the power supply of the exerciser. When the safety control key is pulled away from the keyhole, the through hole of the plate-like actuation portion of the safety control key forces the wheel to rotate counterclockwise and to further enable the micro switch to lie on the holding portion, causing the micro switch to switch off the power supply of the exerciser.
Referring to
The linkage 10 includes a bracket 11, a pivot unit 12, and a limiting springy piece 13. The bracket 11 is fixedly mounted to an inner sidewall 91 of an instrument panel (not shown) of an exerciser (not shown), having a central accommodation space 111 and two pivot holes 112 aligned at two opposite sides of the central accommodation space 111. The pivot unit 12 includes a pivot rod 14 and a wheel 15. The wheel 15 has a central axial hole 151. The pivot rod 14 is inserted through the central axial hole 151 of the wheel 15, having two opposite ends inserted through the two pivot holes 112 of the bracket 11 respectively to support the wheel 15 in the central accommodation space 111, allowing rotation of the wheel 15 on the pivot rod 14. The wheel 15 further has a radial retaining slot 152, a first hook portion 153 and a second hook portion 154 formed at two sides of the radial retaining slot 152 respectively, a flat first stop face 155 formed on an outer periphery thereof, a second stop face 156 formed on the outer periphery thereof and abutted against the first stop face 155, a sloping edge 157 formed at an outer side thereof, a relatively thicker holding portion 158 formed at an end of the sloping edge 157, and a relatively thinner releasing portion 159 formed at the other end of the sloping edge 157. The limiting springy piece 13 has two ends, one of which is fixedly fastened to the inner sidewall 91 of the instrument panel of the exerciser and the other defined as a free end is located in the central accommodation space 111 of the bracket 11.
The safety control key 20 has a grip 21 for holding by the user, and a plate-like actuation portion 22 extending from one end of the grip 21. The actuation portion 22 has a through hole 221 cut through two opposite sides thereof. In this embodiment, the through hole 221 is rectangular in shape.
The features and method as to how to use of the safety switch control mechanism 100 are described hereinafter with reference to
When intending to turn on the power supply of the exerciser, as shown in
When the user pulls the safety control key 20 away from the keyhole 921 directly or if the user falls accidentally during exercise to wrest the drag rope connected between the user's body and the safety control key 20 and to further pull the safety control key 20 away from the keyhole 921, as shown in
Therefore, by inserting the safety control key 20 into the keyhole 921 to rotate the wheel 12 of the linkage 10 in one direction or pulling the safety control key 20 out of the keyhole 921 to rotate the wheel 12 of the linkage 10 in the reversed direction, the actuating rod 931 of the micro switch 93 is shifted between the power-on position and the power-off position to turn on or off the power supply of the exerciser, achieving safety control of the exerciser.
In addition, the safety control key 20 is provided with the particularly shaped through hole 221 for driving rotation of the wheel 12 of the linkage 10, such that any other external object inserted into the through hole 221 cannot do the same work. Therefore, the invention prevents a child from turning on the power supply of the exerciser accidentally or arbitrarily.
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims
Number | Date | Country | Kind |
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96203793 | Mar 2007 | TW | national |