This application is the US national phase of PCT application PCT/EP2007/002215, filed Mar. 13, 2007, published Sep. 20, 2007 as WO 2007/104540, and claiming the priority of German patent application 10 2006 011 825.1 itself filed Mar. 13, 2006, whose entire disclosures are herewith incorporated by reference.
The various embodiments are directed to an arrangement for the generation of an electric field which is significantly shaped with respect to its spatial propagation. Further embodiments are directed to a sensor device including the above mentioned arrangement.
According to various embodiments, solutions which make it possible to create an alternating electric field with quasi-static properties which propagates into a supervision area with a certain focusing effect can be provided.
According to various embodiments this object is performed by a circuit arrangement comprising:
Further details and features of the various embodiments will become evident from the subsequent description in connection with the drawing. Wherein:
On the basis of the above mentioned approach its made possible in an advantageous manner to cut off the lateral indifferent margin regions of the field generated by the field generating electrode and to sharply limit the space observed by the field gene rating electrode.
Preferably the field extinction electrode device is arranged and connected to the respective circuit in such a manner that by means of said extinction electrode an marginal zone of the field generated by the field generating electrode device is clipped off.
Preferably a separation electrode device is provided between the field gene rating electrode device and the field extinction electrode device. This separation electrode device is preferably located between two insulator material layers and coupled with the shielding electrode device. The separation electrode device can be directly electrically coupled with the shielding electrode device, and may be in particular created integral with said shielding electrode device.
According to various embodiments, the field extinction electrode device may be subjected to electric tension with a phase-offset in respect to the electric tension applied to the field gene rating electrode device. The phase-offset is preferably in the range of n and the voltage is preferably in the range of the voltage at the field gene rating electrode device. It is possible to design the circuit in such a manner that the phase-offset and the tension-difference may be varied in adjustable manner.
The separation electrode device may be shaped that same extends substantially bar-like between the field gene rating electrode device and the field extinction electrode device. Said separation electrode device may be made integral with the shield electrode device.
On the basis of the concept according to various embodiments its made possible to provide capacitive sensors which operate at relative low-frequency and which operate with a distinctive detection orientation. The various embodiments allow to provide capacitive sensors by an appropriate sensor structure and appropriate electronics which perform with a directional detection characteristic.
The field gene rating electrode device forms part of an oscillator, whose frequency-determining capacitance is dependent on the dielectric properties of the area in front of the field gene rating electrode device. If a body approaches to the field gene rating electrode device, the capacitance of said field gene rating electrode device is increased and the frequency is changed. In order to prevent a reduction of the sensitivity under the effect of the ground-electrodes, said ground electrodes are faded out by a signal of same phase position and same level of electric tension, (a transimpedance converter may be used as shield driver).
The particular concept as subsequently described in particular in connection with
According to various embodiments, electrodes are provided, which provide the effect of neutralizing or suctioning off the sensors field within a desired space. In the following context said electrodes are thus also called as suctioning electrodes.
The various embodiments can be used with particular advantage, where a distinct directivity is necessary. This is for example the case by the replacement of light barriers or light-barrier grids or in connection with trapping protection systems were only the endangered region has to be observed. It is suitable also for arranging capacitive switches in line on narrow space.
It is possible, to design the respective sensor circuit to be controllable via an address code. It is also possible, to temporarily vary their operation mode. For example the type of the limitation of the detection field—preferably controlled by an address—may be changed for a certain number or a period of cycles of the detection field. Thereby a combined monitoring of the overall observation area and a recognition of the presence of an object within the overall observation area or within the limited or the overall observation area may be performed. It is further also possible to make use of circuit designs which allow to use selected electrodes alternatingly as field gene rating electrodes and field extinction electrodes.
As evident from
Number | Date | Country | Kind |
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10 2006 011 825 | Mar 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2007/002215 | 3/13/2007 | WO | 00 | 1/28/2009 |
Publishing Document | Publishing Date | Country | Kind |
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WO2007/104540 | 9/20/2007 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3406802 | Needham et al. | Oct 1968 | A |
5964478 | Stanley et al. | Oct 1999 | A |
6445294 | McDonnell et al. | Sep 2002 | B1 |
Number | Date | Country | |
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20090321149 A1 | Dec 2009 | US |