This application claims the priority, under 35 U.S.C. ยง119, of German Application DE 10 2013 220 853.7, filed Oct. 15, 2013; the prior application is herewith incorporated by reference in its entirety.
The invention relates to a method for actuating an electromagnetic actuator device having a coil, in which at least one section of a plunger which is to be activated is movably disposed in a magnetic field of the coil and in which, after activation of the plunger, a voltage is reduced again by applying an electrical voltage to end the activation.
A large number of electromagnetic actuator devices are used in motor vehicles. In addition to electric motors such as, for example, window lifter motors or windshield wiper motors, coils having a magnetic field which activates plungers are also used. The actuator devices can, for example, be components of electromagnetic injection valves, but also components of actuator devices due to the position of which, for example, sliding cams can be activated.
Such an electromagnetic actuator device for actuating, for example, a sliding cam for a variable valve setting for an internal combustion engine in a motor vehicle is known from International Publication No. WO 03/021612 A1, corresponding to U.S. Pat. No. 6,967,550. In that document, on one hand, an actuator device having a non-magnetic plunger is described in which, in order to activate the plunger, for example in order to intervene in the groove of a sliding cam of a variable valve drive, a coil has to be energized and that energization must also be maintained in the extended state of the plunger. On the other hand, an actuator device is also described which has a permanent magnet which holds the plunger in a retracted state of the actuator device counter to a spring force. In that case, only brief energization is necessary, which generates a force against the retraction force of the permanent magnet in order to set the plunger in motion on the basis of the prestress of a spring, and then to hold the plunger in the extended state on the basis of the spring force. However, in both cases by virtue of an eccentric configuration of the groove of the sliding cam, the plunger is pushed back again into the actuator device and into its position of rest by using a corresponding rotation of the sliding cam.
It is necessary to ensure that the plunger has been pushed back again into its position of rest. When a permanent magnet is used, that can be done by determining the voltage in the coil which is induced by the movement of the plunger, and therefore also of the permanent magnet attached thereto, and of the current flowing through the coil, which current can be detected by using a current-measuring resistor. That will be explained with reference to
Due to the use of a permanent magnet, the induced voltage is sufficiently high, but a permanent magnet does not entail inexcessive costs. However, a non-magnetic plunger does not induce any voltage during its movement within the coil.
It is accordingly an object of the invention to provide a method for actuating an electromagnetic actuator device having a coil, which overcomes the hereinafore-mentioned disadvantages of the heretofore-known methods of this general type and in which a detection of a movement, even of a non-magnetic plunger in a coil, is made possible.
With the foregoing and other objects in view there is provided, in accordance with the invention, a method for actuating an electromagnetic actuator device having a coil with a magnetic field, which comprises providing at least one section of a plunger to be activated so as to be movably disposed in the magnetic field, reducing a voltage again, after activation of the plunger, by applying an electrical voltage to end the activation, and after an end of the electrical activation of the plunger, applying a magnetization voltage, which is not sufficient for an activation, to the coil for a predefined time period.
Advantageous developments are specified in the dependent claims.
After the activation of the plunger of the electromagnetic actuator device, energization of the coil is therefore to take place according to the invention, in which the energization is not sufficient to activate the plunger but magnetizes it to a sufficient degree to induce, by virtue of its movement, a voltage in the coil which can easily be detected. The energization of the coil can be continuous in a first embodiment, but in a second embodiment can also be embodied as an alternating signal, in particular a pulse signal, since in this way a signal which is significant for the movement of the plunger can also be detected.
Other features which are considered as characteristic for the invention are set forth in the appended claims.
Although the invention is illustrated and described herein as embodied in a method for actuating an electromagnetic actuator device having a coil, it is nevertheless not intended to be limited to the details shown, since various modifications and structural changes may be made therein without departing from the spirit of the invention and within the scope and range of equivalents of the claims.
The construction and method of operation of the invention, however, together with additional objects and advantages thereof will be best understood from the following description of specific embodiments when read in connection with the accompanying drawings.
Referring now to the figures of the drawings in detail and first, particularly, to
According to the invention, the voltage at the coil is not switched off but instead reduced to a value which is, on one hand, not sufficient to reactivate the plunger due to the current which is caused thereby, but on the other hand, is large enough to magnetize the plunger, with the result that a sufficiently high opposing voltage is induced on the basis of the movement of the plunger which is brought about mechanically from the outside, and the opposing voltage can be detected with simple measures.
Number | Date | Country | Kind |
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102013220853.7 | Oct 2013 | DE | national |