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    • 3. 发明申请
    • INTERACTION DEVICE
    • US20110187539A1
    • 2011-08-04
    • US12989812
    • 2009-05-20
    • Laurent JeanneteauThibaut RigolleMassimo NostroArturo NegrettiAndrea RossiAndrea Zangoli
    • Laurent JeanneteauThibaut RigolleMassimo NostroArturo NegrettiAndrea RossiAndrea Zangoli
    • G08B17/00G06F3/041G06F3/044
    • F24C7/082H05B6/12
    • The invention relates to an interaction device (1), comprising a) a first input unit (20) with a first sensitive surface, especially a touch display, and a first sensor unit, b) a second input unit (2-12) with a second sensitive surface and a second sensor unit, c) wherein the second input unit (2-12) is used for protection of the first input unit (20), especially against overheating and/or mechanical damaging. Furthermore, the invention relates to a glass ceramic hob (22), especially induction cooking hob, with an interaction device (1) according to the invention a) wherein preferably the interaction device (1) is arranged in a side and/or edge area of the glass ceramic hob and/or arranged at the lower surface of the glass ceramic hob (22) and/or b) wherein preferably the glass ceramic hob comprises a fan for ventilation. Furthermore, the invention relates to a method for protection of an input unit, preferably for an interaction device and/or a glass ceramic hob according to the invention, comprising a) a first input unit (20) with a first sensitive surface, especially a touch display, and a first sensor unit, b) a second input unit (2-11) with a second sensitive surface and a second sensor unit, c) wherein the second input unit protects the first input unit, d) wherein after an input has been detected by the second input unit, especially after a preselected threshold value has been exceeded, e) the input value is compared with at least one preselected threshold value, f) wherein the at least one threshold value is preferably larger than a threshold value generated by the press or the touch of a finger, g) wherein after exceeding the at least one threshold value, g1) the first input unit (20) is turned off and/or g2) the heating energy for the glass ceramic hob, especially the induction current, is turned off to decrease the temperature and/or g3) an alarm is generated, especially an optical or acoustical alarm, to warn the operator and/or g4) the speed of the fan is increased to decrease the temperature.
    • 4. 发明授权
    • Interaction device
    • US08981944B2
    • 2015-03-17
    • US12989812
    • 2009-05-20
    • Laurent JeanneteauThibaut RigolleMassimo NostroArturo NegrettiAndrea RossiAndrea Zangoli
    • Laurent JeanneteauThibaut RigolleMassimo NostroArturo NegrettiAndrea RossiAndrea Zangoli
    • G08B17/00F24C7/08H05B6/12
    • F24C7/082H05B6/12
    • The invention relates to an interaction device (1), comprising a) a first input unit (20) with a first sensitive surface, especially a touch display, and a first sensor unit, b) a second input unit (2-12) with a second sensitive surface and a second sensor unit, c) wherein the second input unit (2-12) is used for protection of the first input unit (20), especially against overheating and/or mechanical damaging. Furthermore, the invention relates to a glass ceramic hob (22), especially induction cooking hob, with an interaction device (1) according to the invention a) wherein preferably the interaction device (1) is arranged in a side and/or edge area of the glass ceramic hob and/or arranged at the lower surface of the glass ceramic hob (22) and/or b) wherein preferably the glass ceramic hob comprises a fan for ventilation. Furthermore, the invention relates to a method for protection of an input unit, preferably for an interaction device and/or a glass ceramic hob according to the invention, comprising a) a first input unit (20) with a first sensitive surface, especially a touch display, and a first sensor unit, b) a second input unit (2-11) with a second sensitive surface and a second sensor unit, c) wherein the second input unit protects the first input unit, d) wherein after an input has been detected by the second input unit, especially after a preselected threshold value has been exceeded, e) the input value is compared with at least one preselected threshold value, f) wherein the at least one threshold value is preferably larger than a threshold value generated by the press or the touch of a finger, g) wherein after exceeding the at least one threshold value, g1) the first input unit (20) is turned off and/or g2) the heating energy for the glass ceramic hob, especially the induction current, is turned off to decrease the temperature and/or g3) an alarm is generated, especially an optical or acoustical alarm, to warn the operator and/or g4) the speed of the fan is increased to decrease the temperature.
    • 7. 发明申请
    • METHOD AND METHOD AND ARRANGEMENT FOR DYNAMIC WAVE FORM CORRECTION FOR DYNAMIC WAVE FORM CORRECTION
    • US20110036832A1
    • 2011-02-17
    • US12988070
    • 2009-03-03
    • Erik Svend ChristiansenLaurent JeanneteauAlex ViroliMassinmo ZangoliThibaut RigolleMichael Herzog
    • Erik Svend ChristiansenLaurent JeanneteauAlex ViroliMassinmo ZangoliThibaut RigolleMichael Herzog
    • H05B6/04
    • H05B6/06H05B6/04
    • The invention relates to a method for dynamic wave form correction of a power supply of an induction heating device (3), a) where an input power signal (Uin), especially an input voltage signal, comprising waves with an input power frequency (fin) is provided by an AC power source (1), b) where a frequency converter (2) rectifies the input power signal (Uin) into a half waves signal (Uh), especially a half wave voltage signal, b1) where a half wave of the half waves signal is delimited by two subsequent zero-crossings (tθ, t1;t1, t2; t2, t3), b2) where the time lag between the two zero-crossings defines a half wave duration (th), c) where the frequency converter (2) further converts the half waves signal (Uh) into to a working signal (Iw), especially a working current signal, for supplying the induction heating device (3), d) where in a frequency shifting operation (5) a working frequency (fw) of the working signal (Iw) is first increased from a first working base frequency (f1) to a maximum frequency of (fmax) and then decreased to a second base frequency (f2) within a time, which is smaller than the half wave duration (th), e) where the first working base frequency (f1) is not equal to the second working base frequency (f2) and/or a zero crossing (t0, t1, t2, t3) of the half wave signal (Uh) is passed within the frequency shifting operation. Furthermore, the invention relates a an arrangement for dynamic wave form correction of a power supply of an induction heating device (3), particularly according to one of the preceding claims, a) with an AC power source (1) for providing an input power signal (Uin), especially an input voltage signal, comprising waves with an input power frequency (fin), b) with a frequency converter (2) for rectifying the input power signal (Uin) into a half waves signal (Uh), especially a half wave voltage signal, b1) where the frequency converter (2) preferably comprises at least one full bridge and/or at least one half bridge and/or a single switch, b2) where a half wave of the half waves signal is delimited by two subsequent zero-crossings (tθ, t1;t1, t2; t2, t3), b3) where the time lag between the two zero-crossings defines a half wave duration (th), c) where by the
    • 9. 发明授权
    • Keyboard with a plurality of sensitive key elements
    • 带有多个敏感键元件的键盘
    • US08264382B2
    • 2012-09-11
    • US12745767
    • 2008-12-17
    • Thibaut RigolleAndrea RossiLaurent Jeanneteau
    • Thibaut RigolleAndrea RossiLaurent Jeanneteau
    • H03K17/94
    • G06F3/0202G06F3/044H03K17/9622
    • The present invention relates to a keyboard with a plurality of sensitive key elements (10, 12, 14) arranged on said keyboard according to a predetermined scheme. Each of the key elements (10, 12, 14) provides an analogue electric signal (U1, U2, U3). The analogous electric signal (U1, U2, U3) depends on the position of a fingertip. A contact surface of the key element (12) is subdivided into zones (A, B, C, D). The zones (A, B, C, D) are defined in such a way, that the zones (A, B, C, D) have different distances from the adjacent key elements (10, 14). Each zone (A, B, C, D) corresponds with a range of relationships between the signal (U2) of the key element (12) and the signal (U1, U3) of at least one adjacent key element (10, 14).
    • 本发明涉及一种键盘,其具有根据预定方案布置在所述键盘上的多个敏感键元件(10,12,14)。 每个键元件(10,12,14)提供模拟电信号(U1,U2,U3)。 类似的电信号(U1,U2,U3)取决于指尖的位置。 键元件(12)的接触表面被细分成区域(A,B,C,D)。 这些区域(A,B,C,D)以这样的方式定义,使得区域(A,B,C,D)与相邻键元件(10,14)的距离不同。 每个区域(A,B,C,D)对应于键元件(12)的信号(U2)与至少一个相邻键元件(10,14)的信号(U1,U3)之间的关系范围, 。
    • 10. 发明申请
    • COOKING DEVICE FOR A COOKING CONTAINER
    • 烹饪容器的烹饪装置
    • US20110180530A1
    • 2011-07-28
    • US12993937
    • 2009-05-20
    • Laurent JeanneteauThibaut RigolleErik Svend ChristiansenMassimo Zangoli
    • Laurent JeanneteauThibaut RigolleErik Svend ChristiansenMassimo Zangoli
    • H05B6/12
    • H05B6/062A47J27/022F24C15/102H05B6/1227H05B2213/04
    • The invention relates to a cooking device (1, 12) for a cooking container (10, 11), a) wherein the cooking device (1, 12) comprises at its lower surface (20) a curved, especially concave, cooking surface (2) adapted to the form of the cooking container (10, 11), b) wherein the cooking surface (2) comprises a first (2a) and a second (2b) partial surface, c) wherein the cooking container (10, 11) comprises a first area (20a) adjacent to the first partial surface (2a) and a second area (20b) adjacent to the second partial surface (2b), d) wherein the first area (20a) is heated by a first induction element (3) and the second area (20b) is heated by a second induction element (4), e) wherein each induction element (3, 4) comprises an individual heat sensor (3d, 4d) and f) wherein at least the second induction element (4) can be controlled independently from the first induction element (3).
    • 本发明涉及一种用于烹饪容器(10,11)的烹饪装置(1,12),a)其中烹饪装置(1,2)在其下表面(20)处包括弯曲的,特别是凹形的烹饪表面 2)适于烹饪容器(10,11)的形式,b)其中烹饪表面(2)包括第一(2a)和第二(2b)部分表面,c)其中烹饪容器(10,11) )包括与第一部分表面(2a)相邻的第一区域(20a)和与第二部分表面(2b)相邻的第二区域(20b),d)其中第一区域(20a)被第一感应元件 (3)和所述第二区域(20b)由第二感应元件(4)加热,e)其中每个感应元件(3,4)包括单独的热传感器(3d,4d)和f),其中至少所述第二感应元件 感应元件(4)可以独立于第一感应元件(3)进行控制。