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    • 3. 发明授权
    • Pressure sensor device
    • 压力传感器装置
    • US08505386B2
    • 2013-08-13
    • US13000287
    • 2009-06-17
    • Paolo ColomboDomenico CantarelliMarco BigliatiMauro ZorzettoFabio NebbiaGiorgio Martinengo
    • Paolo ColomboDomenico CantarelliMarco BigliatiMauro ZorzettoFabio NebbiaGiorgio Martinengo
    • G01L19/14G01L19/04
    • G01L19/0084G01L19/0038G01L19/0092G01L19/06G01L19/0609G01L19/141
    • A pressure sensor device comprises a casing (2a, 3 a) defining a chamber (20) and an inlet passage (14a, 14b) of the chamber. Accommodated in the chamber (20) is a pressure sensor (17) having a sensor body with a cavity and a membrane capable of deformation under pressure action of a fluid present in the inlet passage (14a, 14b). The device further comprises a circuit arrangement (26, 27, 30) to which the pressure sensor (17) is electrically connected, the circuit arrangement including a circuit support at least partially accommodated in the chamber (20). The sensor body is not rigidly associated to the casing (2a, 3 a) and/or to other parts of the device (26, 27, 30, 35), i.e. it is mounted elastically or in a moveable manner with respect to the casing (2a, 3 a) and/or to said other parts (26, 27, 30, 35) inside the chamber (20).
    • 压力传感器装置包括限定腔室(20)和腔室的入口通道(14a,14b)的壳体(2a,3a)。 容纳在腔室(20)中的是一个压力传感器(17),该压力传感器(17)具有一个具有空腔的传感器主体和能够在入口通道(14a,14b)中存在的流体的压力作用下变形的膜。 该装置还包括一个电路装置(26,27,30),压力传感器(17)被电连接到该电路装置上,电路装置包括至少部分地容纳在腔室(20)中的电路支架。 传感器体不与壳体(2a,3a)和/或与装置(26,27,30,35)的其它部分刚性地相关联,即其相对于壳体弹性地或以可移动的方式安装 (2a,3a)和/或所述室(20)内的所述其它部分(26,27,30,35)。
    • 5. 发明授权
    • Pressure sensor device
    • 压力传感器装置
    • US08051719B2
    • 2011-11-08
    • US12520641
    • 2007-12-18
    • Marco BigliatiPaolo ColomboGiorgio MartinengoDaniel Verner MuellerMauro Zorzetto
    • Marco BigliatiPaolo ColomboGiorgio MartinengoDaniel Verner MuellerMauro Zorzetto
    • G01L7/00
    • G01L9/0052G01L19/0672G01L19/143G01L19/147
    • A pressure-sensor device (1) comprises: —a pressure-sensitive component (9) having a body, defined in which is a blind cavity, and having a membrane portion (9a), operatively associated to which is a detection element (R); and —a connection structure (2), which has a duct in communication with the cavity of the pressure-sensitive component (9) and is to receive a fluid, a pressure of which is to be detected. The connection structure (2) comprises a supporting body (2a) of the pressure-sensitive component (9), which defines a respective passage (2b), and a compressible element (12, 18) that is designed to be in contact with the fluid and is configured for compensating possible variations of volume thereof. The compressible element (12, 18) is positioned at least in part within the cavity (11) of the pressure-sensitive component (9) and/or in a stretch of the passage (2b) of the supporting body (2a) that is close to the cavity (11) of the pressure-sensitive component (9).
    • 一种压力传感器装置(1)包括: - 具有主体的压敏部件(9),其限定为盲腔,并且具有膜部分(9a),其可操作地与检测元件(R ); 和 - 连接结构(2),其具有与压敏部件(9)的空腔连通的管道,并且接收要被检测的压力的流体。 连接结构(2)包括限定相应通道(2b)的压敏部件(9)的支撑体(2a)和设计成与所述压力敏感部件(9)接触的可压缩元件(12,18) 并且被配置为补偿其体积的可能变化。 可压缩元件(12,18)至少部分地位于压敏部件(9)的空腔(11)内和/或定位在支撑体(2a)的通道(2b) 靠近压敏部件(9)的空腔(11)。
    • 6. 发明授权
    • Pressure-sensor device
    • 压力传感器装置
    • US08453513B2
    • 2013-06-04
    • US13200323
    • 2011-09-23
    • Marco BigliatiPaolo ColomboGiorgio MartinengoDaniel Verner MuellerMauro Zorzetto
    • Marco BigliatiPaolo ColomboGiorgio MartinengoDaniel Verner MuellerMauro Zorzetto
    • G01L7/00
    • G01L9/0052G01L19/0672G01L19/143G01L19/147
    • A pressure-sensor device (1) comprises: —a pressure-sensitive component (9) having a body, defined in which is a blind cavity, and having a membrane portion (9a), operatively associated to which is a detection element (R); and —a connection structure (2), which has a duct in communication with the cavity of the pressure-sensitive component (9) and is to receive a fluid, a pressure of which is to be detected. The connection structure (2) comprises a supporting body (2a) of the pressure-sensitive component (9), which defines a respective passage (2b), and a compressible element (12, 18) that is designed to be in contact with the fluid and is configured for compensating possible variations of volume thereof. The compressible element (12, 18) is positioned at least in part within the cavity (11) of the pressure-sensitive component (9) and/or in a stretch of the passage (2b) of the supporting body (2a) that is close to the cavity (11) of the pressure-sensitive component (9).
    • 一种压力传感器装置(1)包括: - 具有主体的压敏部件(9),其限定为盲腔,并且具有膜部分(9a),其可操作地与检测元件(R ); 和 - 连接结构(2),其具有与压敏部件(9)的空腔连通的管道,并且接收要被检测的压力的流体。 连接结构(2)包括限定相应通道(2b)的压敏部件(9)的支撑体(2a)和设计成与所述压力敏感部件(9)接触的可压缩元件(12,18) 并且被配置为补偿其体积的可能变化。 可压缩元件(12,18)至少部分地位于压敏部件(9)的空腔(11)内和/或定位在支撑体(2a)的通道(2b) 靠近压敏部件(9)的空腔(11)。
    • 7. 发明申请
    • Pressure-sensor device
    • 压力传感器装置
    • US20120011937A1
    • 2012-01-19
    • US13200323
    • 2011-09-23
    • Marco BigliatiPaolo ColomboGiorgio MartinengoDaniel Verner MuellerMauro Zorzetto
    • Marco BigliatiPaolo ColomboGiorgio MartinengoDaniel Verner MuellerMauro Zorzetto
    • G01L7/00
    • G01L9/0052G01L19/0672G01L19/143G01L19/147
    • A pressure-sensor device (1) comprises: —a pressure-sensitive component (9) having a body, defined in which is a blind cavity, and having a membrane portion (9a), operatively associated to which is a detection element (R); and —a connection structure (2), which has a duct in communication with the cavity of the pressure-sensitive component (9) and is to receive a fluid, a pressure of which is to be detected. The connection structure (2) comprises a supporting body (2a) of the pressure-sensitive component (9), which defines a respective passage (2b), and a compressible element (12, 18) that is designed to be in contact with the fluid and is configured for compensating possible variations of volume thereof. The compressible element (12, 18) is positioned at least in part within the cavity (11) of the pressure-sensitive component (9) and/or in a stretch of the passage (2b) of the supporting body (2a) that is close to the cavity (11) of the pressure-sensitive component (9).
    • 一种压力传感器装置(1)包括: - 具有主体的压敏部件(9),其限定为盲腔,并且具有膜部分(9a),其可操作地与检测元件(R ); 和 - 连接结构(2),其具有与压敏部件(9)的空腔连通的管道,并且接收要被检测的压力的流体。 连接结构(2)包括限定相应通道(2b)的压敏部件(9)的支撑体(2a)和设计成与所述压力敏感部件(9)接触的可压缩元件(12,18) 并且被配置为补偿其体积的可能变化。 可压缩元件(12,18)至少部分地位于压敏部件(9)的空腔(11)内和/或定位在支撑体(2a)的通道(2b) 靠近压敏部件(9)的空腔(11)。
    • 8. 发明授权
    • Pressure sensor device
    • 压力传感器装置
    • US08408067B2
    • 2013-04-02
    • US13057118
    • 2009-07-30
    • Mauro ZorzettoGiorgio Martinengo
    • Mauro ZorzettoGiorgio Martinengo
    • G01L7/00
    • G01L19/06G01L9/0051G01L19/0038
    • A pressure sensor device (1) comprises: a pressure sensor (9) having a sensor body (9a) defined in which is a cavity (11) with a bottom surface (11a) belonging to a membrane portion (9′) of the body itself, a detection element operatively being associated to the membrane portion (9′), a connection structure (2) having a duct (2a, 15, 19) in communication with the abovementioned cavity (11), designed to receive a fluid a pressure of which is to be detected. The connection structure comprises a body (2) for supporting the pressure sensor (9), defining at least one respective passage (2a), and one compressible element (12) designed to be in contact with the fluid and configured to compensate possible volume variations thereof, the compressible element (12) being positioned at least partially within the cavity (11), in such a manner to substantially divide it into two opposite regions. The device (1) is provided with connection passages (12f) for maintaining different regions of the cavity (11) in fluid communication, i.e. equilibrate in pressure.
    • 压力传感器装置(1)包括:压力传感器(9),其具有传感器本体(9a),所述传感器主体(9a)被限定为空腔(11),所述腔体(11)具有属于所述主体的膜部分(9')的底面 本身,与所述膜部分(9')可操作地相关联的检测元件,具有与上述空腔(11)连通的管道(2a,15,19)的连接结构(2),其被设计成接收流体的压力 将被检测。 连接结构包括用于支撑压力传感器(9)的主体(2),限定至少一个相应的通道(2a)和设计成与流体接触并被配置为补偿可能的体积变化的一个可压缩元件(12) 所述可压缩元件(12)至少部分地位于所述空腔(11)内,从而基本上将其分成两个相对的区域。 设备(1)设置有连接通道(12f),用于保持空腔(11)的不同区域流体连通,即在压力下平衡。
    • 9. 发明申请
    • PRESSURE SENSOR DEVICE
    • 压力传感器装置
    • US20110174080A1
    • 2011-07-21
    • US13057118
    • 2009-07-30
    • Mauro ZorzettoGiorgio Martinengo
    • Mauro ZorzettoGiorgio Martinengo
    • G01L9/00
    • G01L19/06G01L9/0051G01L19/0038
    • A pressure sensor device (1) comprises: a pressure sensor (9) having a sensor body (9a) defined in which is a cavity (11) with a bottom surface (11a) belonging to a membrane portion (9′) of the body itself, a detection element operatively being associated to the membrane portion (9′), a connection structure (2) having a duct (2a, 15, 19) in communication with the abovementioned cavity (11), designed to receive a fluid a pressure of which is to be detected. The connection structure comprises a body (2) for supporting the pressure sensor (9), defining at least one respective passage (2a), and one compressible element (12) designed to be in contact with the fluid and configured to compensate possible volume variations thereof, the compressible element (12) being positioned at least partially within the cavity (11), in such a manner to substantially divide it into two opposite regions. The device (1) is provided with connection passages (12f) for maintaining different regions of the cavity (11) in fluid communication, i.e. equilibrate in pressure.
    • 压力传感器装置(1)包括:压力传感器(9),其具有传感器本体(9a),所述传感器主体(9a)限定为空腔(11),所述腔体(11)具有属于所述主体的膜部分(9')的底面 本身,与所述膜部分(9')可操作地相关联的检测元件,具有与上述空腔(11)连通的管道(2a,15,19)的连接结构(2),其被设计成接收流体的压力 将被检测。 连接结构包括用于支撑压力传感器(9)的主体(2),限定至少一个相应的通道(2a)和设计成与流体接触并被配置为补偿可能的体积变化的一个可压缩元件(12) 所述可压缩元件(12)至少部分地位于所述空腔(11)内,从而基本上将其分成两个相对的区域。 设备(1)设置有连接通道(12f),用于保持空腔(11)的不同区域流体连通,即在压力下平衡。
    • 10. 发明授权
    • Modular signal-processing system
    • 模块化信号处理系统
    • US4366535A
    • 1982-12-28
    • US111942
    • 1980-01-14
    • Riccardo CedolinWolmer ChiarottinoGiuseppe GiandonatoSilvano GiorcelliGiorgio MartinengoGiorgio SofiSergio Villone
    • Riccardo CedolinWolmer ChiarottinoGiuseppe GiandonatoSilvano GiorcelliGiorgio MartinengoGiorgio SofiSergio Villone
    • G06F11/16G06F15/16G06F15/177G06F15/80H04Q3/545G06F11/00G06F13/00
    • G06F11/1654G06F11/1633G06F11/165G06F11/1683G06F11/1691G06F15/177G06F15/8007H04Q3/5455H04Q3/54591
    • A signal-processing system, e.g. for a telephone exchange, comprises n modular processing units each including a pair of identical microprocessors operating in parallel on binary signals arriving over an internal bus, only one microprocessor of each pair being enabled to transmit outgoing messages to that bus while the other operates as a dummy. The two microprocessors are interlinked by a correlating connection enabling verification of their correct operation in response to microinstructions read out from respective microprogram memories thereof under the control of a common clock. A momentary divergence, resulting from a relative lag in the response of one microprocessor to an asynchronously arriving signal bit, results in a delay of the microprogram by one clock cycle to permit resynchronization; longer-lasting disparities lead to a deactivation of the microprocessor pair and to the emission of an alarm signal. Processing information individual to the associated peripheral unit is stored in an internal memory connected to the bus; general information utilizable by any processing unit is stored in several outside memory banks accessible through external extensions of the internal bus of any such unit. The processing units may be hierarchically organized in several tiers of different ranks.
    • 信号处理系统,例如, 对于电话交换机,包括n个模块化处理单元,每个模块化处理单元包括一对相同的微处理器,其并行操作通过内部总线到达的二进制信号,每对中只有一个微处理器能够将输出消息发送到该总线,而另一个微处理器作为 假。 两个微处理器通过相关连接相互连接,使得能够在公共时钟的控制下响应于从其相应微程序存储器读出的微指令来验证其正确操作。 由于一个微处理器对异步到达的信号位的响应相对滞后而导致的瞬时差异导致微程序延迟一个时钟周期以允许重新同步; 更长久的差距导致微处理器对的停用和报警信号的发射。 处理关联的外围单元的信息存储在连接到总线的内部存储器中; 任何处理单元可使用的一般信息存储在可通过任何此类单元的内部总线的外部扩展访问的多个外部存储器中。 处理单元可以分级地组织在不同级别的几层中。