Piezoelectric switch
专利摘要:
A piezoelectric key for actuation by an attentionally directed and dimensioned compressive force includes a piezoelectric transducer for controlling an electrical amplifier element of an electronic circuit. The body of the transducer includes a directionally and permanently polarized piezoelectric material having electrodes situated thereon for taking off an electrical voltage. The body, in each plane perpendicular to the direction of the compressive force, has an approximately constant cross section and a thickness dimension d which is small with respect to another dimension of the body, the body being polarized in the direction of its thickness d. The electrodes are applied to the surfaces of the body which pulls each other in the direction d and the body is arranged in the key in such a way that the dimension d is essentially aligned perpendicular to the direction of application of the compressive force. The body is polarized throughout its volume and a dimension l (corresponding to length or circumference) which is essentially perpendicular to the thickness and to the direction of application of the compressive force is dimensioned several times greater than the dimension d, and the body has a dimension h which is perpendicular with respect to the dimensions d and l and which is larger than approximately ten times the dimension d. 公开号:SU862846A3 申请号:SU742010885 申请日:1974-03-19 公开日:1981-09-07 发明作者:Кляйн Шмидт Петер 申请人:Сименс Аг (Фирма); IPC主号:
专利说明:
The invention relates to a piezo-technician, in particular, to piezoelectric switches, and can be used as a switch-on sensor: on or off in electronic circuits of automation. Piezoelectric switches are known, the main element of which is a piezoelectric element in the form of a plate with fl electrodes. Under the action of the applied force, the piezoelectric element is deformed and, due to the piezoelectric effect, an electrical signal is generated on the electrodes. I A piezoelectric switch, in particular, is known, which contains a transducer made in the form of a plate of piezoelectric crankshaft equipped with electrodes on opposite sides, the planes of which are perpendicular to the direction of polarization, and terminals for connecting the load in such a way that converter surface 2. A disadvantage of the known switch is the sensitivity of the converter to more or less short-term temperature changes; it is able to respond to changes in ambient temperature in the same way as it does to the forces acting according to the purpose. As a result, false positives may occur. In addition, since the converter plate has a relatively small thickness, with a four-dimensional or non-corresponding in the direction of action, uncontrolled distortion of the output signal may occur. The aim of the invention is to improve noise immunity by eliminating false alarms due to temperature changes. The goal is achieved by the fact that in a piezoelectric switch containing a converter made in the form of a plate of piezoceramic material equipped with electrodes On its opposite sides, the planes of which are perpendicular to the direction of polarization, and conclusions for connecting the load in such a way that the pressure side is front surface of the transducer, transducer plate -, located in the lower part opposite to the end of the pressure application; The upper part of the plate is equipped with additional electrodes forming a capacitor connected with load resistors in the high frequency circuit. The polarized part of the plate with electrodes, which forms the capacitance, is included in the locking circuit of low frequencies. The converter plate is provided with stiffening elements made in the form of layers of plastic deposited on the sides of the plate. FIG. 1 shows the proposed piezoelectric switch; in fig. 2 - converter; in fig. 3 is an electrical circuit for switching the converter; in fig. 4 - equivalent electric circuit for switching on a piezoelectric switch. The piezoelectric switch (Fig. 1) includes a housing 1 with a base plate 2, inside which a transducer is installed in fasteners 3 and 4, made in the form of a piezo-ceramic plate 5, equipped with paired electrodes 6 and 7. The piezo plate is equipped with stiffeners 8, made in the form of layers of plastic on opposite surfaces of the plate. Circuit Breaker Can be attached with protrusions 9 with recesses 10. Electrodes have 11, with which they can be connected to an electrical circuit. The direction of operation of the switch is indicated by the arrow F. Converter {FIG. 2) made in the form of a piezoelectric ceramic plate 5 having a size, HxExd, where H is the height, t is the width, ad is the thickness of the plate. On the plate are placed electrodes b and 7. For example, barium titanate and titanium lead zirconate with additives that improve piezoelectric properties can be used as plate material. The plate 5 is polarized only in the zone of the electrodes 7, so that the active region of the converter is formed (in Fig. 2, size h). In the zone of the electrodes 6, the plate is not polarized and forms a passive region L of the converter. The direction of polarization is indicated by arrows. With a finger force, the most favorable values lie within 3-30 mm, the value; H is about an order of magnitude larger than d, and the size d is preferably less than 0, S mm, with its lower limit being limited by the technological possibilities of making a ceramic plate. The passive area of the converter plate serves as a heat insulator, so the converter body is isolated from rapid temperature changes. Due to this, thermal stress increases much slower than piezoelectric effective voltage. An electronic circuit suitable for operation with a piezoelectric switch (FIGS. 3 and 4) contains a resistor 12 which, together with a capacitor 13, formed by electrodes 7, composes a low pass filter for shorting the slow signals caused by temperature changes; and transistors 14 and 15 for amplifying the desired signal to a value sufficient to trigger actuator 16, such as an electromechanical relay. In addition, the circuit contains a resistor 17, which, together with a capacitor 18 formed by the electrodes 6, serves as a circuit for locking high-frequency voltage pulses that can occur with strong breaker voltages. High-frequency pulses with this. 5 almost closes to ground While the useful signal, whose frequency is significantly lower, passes unhindered to the input of transistor 14. "Thus, due to the fact that the plate of a piezotransducer equipped with electrodes is polarized only in the lower part opposite to the end to which the working influence is applied, the noise immunity of the piezoceramic switch is increased by eliminating the possibility of false triggering from both temperature change and vibrations.
权利要求:
Claims (2) [1] 1. A piezoelectric switch containing a converter made in the form of a plate made of a piezoceramic material, provided with electrodes on its opposite sides, the planes of which are perpendicular to the direction of polarization, and terminals for connecting the load in such a way that the side of applying pressure is the front face of the converter, characterized in that, in order to increase the noise immunity by eliminating spurious triggered by a change in temperature, the converter plate is polarized in the lower part opposite to the pressure application end. [2] 2. The switch according to claim 1, about tl and the fact that the top, The unpolarized part of the plate is equipped with additional electrodes that form a capacitor connected with load resistors in the high-frequency locking circuit.
类似技术:
公开号 | 公开日 | 专利标题 SU862846A3|1981-09-07|Piezoelectric switch US4398162A|1983-08-09|Ladder-type piezoelectric filters US2836737A|1958-05-27|Piezoelectric transducer US3699484A|1972-10-17|Width extensional resonator and coupled mode filter US5335210A|1994-08-02|Integrated liquid crystal acoustic transducer US4401956A|1983-08-30|Electronically variable time delay in piezoelectric media GB1332141A|1973-10-03|Piezoelectric resonator circuit component US2875353A|1959-02-24|Electromechanical reed system US4894580A|1990-01-16|Chip-type resonator and method of manufacturing the same US2940035A|1960-06-07|Electrical component of ceramic combined with resistor applied to the surface thereof US3474268A|1969-10-21|Piezoelectric ceramic transducer US3109153A|1963-10-29|Adjustable piezoelectric wave filter having two resonance peaks Umeda et al.2000|Vibration stress and temperature dependence of piezoelectric resonators with lead–zirconate–titanate ceramics GB878375A|1961-09-27|Filter transformer GB1370164A|1974-10-16|Piezoelectric transducer US4137475A|1979-01-30|Thin film, thermoplastic piezoelectric switches GB1285095A|1972-08-09|Piezo-electric thickness vibrator JPH10185727A|1998-07-14|Piezoelectric converter Whatmore1991|Piezoelectric and pyroelectric materials and their applications JP2019216203A|2019-12-19|Piezoelectric element, vibration waveform sensor, and vibration waveform sensor module KR0129958Y1|1999-05-01|Piezo-electric vibration sensor US3546619A|1970-12-08|Tone signalling device using piezo-electric reed oscillators SU387150A1|1973-06-21|ELECTROMECHANICAL CONVERTER GB1374789A|1974-11-20|Force measurement systems SU132732A1|1959-11-30|Electromechanical filter
同族专利:
公开号 | 公开日 DE2314420C3|1978-03-30| US3899698A|1975-08-12| DE2314420A1|1974-10-10| DK143119B|1981-03-30| IE41672B1|1980-02-27| FR2222804A1|1974-10-18| JPS49128275A|1974-12-09| JPS5430511B2|1979-10-01| CA991306A|1976-06-15| ES424476A1|1976-06-16| NL7403685A|1974-09-24| YU37045B|1984-08-31| CH574679A5|1976-04-15| YU75674A|1982-02-25| SE386544B|1976-08-09| ATA106174A|1977-01-15| FR2222804B1|1977-09-30| LU69317A1|1974-05-29| AT338912B|1977-09-26| BE812710A|1974-07-15| DK143119C|1981-11-09| DE2314420B2|1977-08-04| IE41672L|1974-09-22|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US3045491A|1958-12-16|1962-07-24|Robert W Hart|Dynamic pressure sensitive detector| US3274828A|1963-08-27|1966-09-27|Charles F Pulvari|Force sensor| US3541849A|1968-05-08|1970-11-24|James P Corbett|Oscillating crystal force transducer system|JPS542043A|1977-06-07|1979-01-09|Murata Manufacturing Co|Temperature compensating capacitor and oscillator using same| DE2915410C2|1979-04-17|1981-06-19|Siemens AG, 1000 Berlin und 8000 München|Push button device with piezoelectric transducer| DE2915456C2|1979-04-17|1981-05-14|Siemens AG, 1000 Berlin und 8000 München|Push button device with piezoelectric transducer| DE3027583C2|1979-07-20|1986-09-04|Murata Manufacturing Co., Ltd., Nagaokakyo, Kyoto|Piezoelectric component| DE2935837C2|1979-09-05|1981-10-01|Siemens AG, 1000 Berlin und 8000 München|C-MOS circuit for piezo button| US4392074A|1980-09-19|1983-07-05|Siemens Aktiengesellschaft|Trigger device and piezo-ignition coupler with galvanic decoupling| US4339011A|1980-11-24|1982-07-13|General Electric Company|Non-deflection pressure switch apparatus| DE8106455U1|1981-03-06|1981-08-27|Siemens AG, 1000 Berlin und 8000 München|ACCELERATION SENSOR| DE3127406C2|1981-07-10|1986-03-27|Siemens Ag, 1000 Berlin Und 8000 Muenchen|Modulation device for optical signal transmission| US4502146A|1982-02-25|1985-02-26|Antonio Nicholas F D|Adjustment of electronic ski binding circuitry| US4536746A|1982-09-30|1985-08-20|The Mercado Venture|Transducer for converting three dimensional mechanical input displacements into a corresponding electrical output signal| US4490639A|1983-09-06|1984-12-25|Essex-Tec Corporation|Coupling circuit between high impedance piezoelectric signal source and utilizing circuit| CH674111A5|1984-06-13|1990-04-30|Feller Ag| DE3812635A1|1988-03-29|1989-10-12|Tschudin & Heid Ag|DEVICE WITH A CARRIER AND AT LEAST ONE HOUSING AND A PIEZOELECTRICAL ELEMENT, ELECTRICAL SWITCHING DEVICE| US4896069A|1988-05-27|1990-01-23|Makash - Advanced Piezo Technology|Piezoelectric switch| DE3818923C1|1988-06-02|1989-03-30|Rossdeutscher, Wolfram, Dipl.-Ing., 1000 Berlin, De|Manually triggerable, pneumatic-electric switching device| US4931664A|1988-08-02|1990-06-05|Gte Products Corporation|Controller for coded surface acoustical wavesecurity system| US5231326A|1992-01-30|1993-07-27|Essex Electronics, Inc.|Piezoelectric electronic switch| DE19917429A1|1999-04-19|2000-10-26|Sonident Anstalt Vaduz|Impulse sound transducer, for operating in ultrasonic range, utilizes an elementary cell consisting of a piezoceramic block and a collar shaped to it and protruding beyond it.| DE10047113C2|2000-09-22|2003-06-18|Pepperl & Fuchs|sensor device| DE10063305C1|2000-12-19|2001-09-27|Siemens Ag|Electronic light switch has piezoceramic flexure strip provided by flexure element applied to flexible electrically-insulating carrier| US6777856B2|2001-08-02|2004-08-17|Kistler Holding Ag|Crystal element for piezo sensors| US6703761B2|2001-12-21|2004-03-09|Caterpillar Inc|Method and apparatus for restraining temperature induced deformation of a piezoelectric device| US8256254B2|2007-12-27|2012-09-04|Utc Fire & Security Americas Corporation, Inc.|Lock portion with solid-state actuator| US8047031B2|2007-12-27|2011-11-01|Utc Fire & Security Americas Corporation, Inc.|Lock portion with piezo-electric actuator and anti-tamper circuit| DE102009053535B4|2009-11-18|2016-07-21|Diehl Metering Gmbh|Ultrasonic transducer assembly and ultrasonic flowmeter| CN103201867B|2010-11-04|2016-08-03|阿尔格拉控股有限公司|piezoelectric signal generator| US9226481B1|2013-03-14|2016-01-05|Praveen Paripati|Animal weight monitoring system|
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申请号 | 申请日 | 专利标题 DE2314420A|DE2314420C3|1973-03-22|1973-03-22|Piezoelectric button| 相关专利
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