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    • 2. 发明授权
    • Pressure sensor with integrated bi-functional heater and methods of using
    • 具有集成双功能加热器的压力传感器和使用方法
    • US07415884B1
    • 2008-08-26
    • US11820403
    • 2007-06-19
    • Greg ShawTroy PrinceJoseph SnyderMike WillettFrederick Lisy
    • Greg ShawTroy PrinceJoseph SnyderMike WillettFrederick Lisy
    • G01B5/30
    • F02C9/28F02D41/3005F23N5/022G01B5/30G01L1/005
    • The present invention relates to a method of determining both pressures and temperatures in a high temperature environment. The present invention also relates to a method of determining temperatures about a pressure-sensing element using a bi-functional heater. In addition, the present invention preferably relates to a pressure sensor with the pressure-sensing element and a heating element both integrated into the sensor's packaging, preferably onto the diaphragm of the pressure sensor, and particularly to such a pressure sensor capable of operating at high or elevated temperatures, and even more particularly to such a pressure sensor wherein the heating element is capable of both heating, at least in part, the pressure-sensing element and monitoring the temperature of the application area. Preferably, the pressure-sensing element is formed from shape memory alloy (SMA) materials that can be used at high or elevated temperatures as a pressure sensor with high sensitivity.
    • 本发明涉及在高温环境下测定压力和温度的方法。 本发明还涉及使用双功能加热器来确定关于压力感测元件的温度的方法。 此外,本发明优选地涉及具有压力感测元件和加热元件的压力传感器,两者都集成到传感器的包装中,优选地在压力传感器的隔膜上,特别是涉及能够在高压下操作的压力传感器 或升高的温度,并且甚至更具体地涉及这种压力传感器,其中加热元件能够至少部分地加热压力感测元件并监测施加区域的温度。 优选地,压力感测元件由形状记忆合金(SMA)材料形成,其可以在高或高温下用作具有高灵敏度的压力传感器。
    • 3. 发明授权
    • Pressure sensor with system with thermal stabilization and method of using
    • 带热稳定系统的压力传感器及其使用方法
    • US09157392B1
    • 2015-10-13
    • US13975884
    • 2013-08-26
    • Greg S ShawTroy PrinceJoseph SnyderMichael C WillettFrederick J Lisy
    • Greg S ShawTroy PrinceJoseph SnyderMichael C WillettFrederick J Lisy
    • G01B5/30F02D41/30F02C9/28F23N5/02G01L1/00
    • F02C9/28F02D41/3005F23N5/022G01B5/30G01L1/005
    • The present invention relates to a method of determining both pressures and temperatures in a high temperature environment. The present invention also relates to a method of determining temperatures about a pressure-sensing element using a bi-functional heater. In addition, the present invention preferably relates to a pressure sensor with the pressure-sensing element and a heating element both integrated into the sensor's packaging, preferably onto the diaphragm of the pressure sensor, and particularly to such a pressure sensor capable of operating at high or elevated temperatures, and even more particularly to such a pressure sensor wherein the heating element is capable of both heating, at least in part, the pressure-sensing element and monitoring the temperature of the application area. Preferably, the pressure-sensing element is formed from shape memory alloy (SMA) materials that can be used at high or elevated temperatures as a pressure sensor with high sensitivity.
    • 本发明涉及在高温环境下测定压力和温度的方法。 本发明还涉及使用双功能加热器来确定关于压力感测元件的温度的方法。 此外,本发明优选地涉及具有压力感测元件和加热元件的压力传感器,两者都集成到传感器的包装中,优选地在压力传感器的隔膜上,特别是涉及能够在高压下操作的压力传感器 或升高的温度,并且甚至更具体地涉及这种压力传感器,其中加热元件能够至少部分地加热压力感测元件并监测施加区域的温度。 优选地,压力感测元件由形状记忆合金(SMA)材料形成,其可以在高或高温下用作具有高灵敏度的压力传感器。
    • 7. 发明授权
    • Pressure sensor with integrated cooler and methods of using
    • 具有集成冷却器的压力传感器和使用方法
    • US07587944B1
    • 2009-09-15
    • US12220038
    • 2008-07-21
    • Greg ShawTroy PrinceJoseph SnyderMike WillettFrederick Lisy
    • Greg ShawTroy PrinceJoseph SnyderMike WillettFrederick Lisy
    • G01L19/04
    • F02C9/28F02D41/3005F23N5/022G01B5/30G01L1/005
    • The present invention relates to a method of determining both pressures and temperatures in a high temperature environment. The present invention also relates to a method of determining temperatures about a pressure-sensing element using a bi-functional heater. In addition, the present invention preferably relates to a pressure sensor with the pressure-sensing element and a heating element both integrated into the sensor's packaging, preferably onto the diaphragm of the pressure sensor, and particularly to such a pressure sensor capable of operating at high or elevated temperatures, and even more particularly to such a pressure sensor wherein the heating element is capable of both heating, at least in part, the pressure-sensing element and monitoring the temperature of the application area. Preferably, the pressure-sensing element is formed from shape memory alloy (SMA) materials that can be used at high or elevated temperatures as a pressure sensor with high sensitivity.
    • 本发明涉及在高温环境下测定压力和温度的方法。 本发明还涉及使用双功能加热器来确定关于压力感测元件的温度的方法。 此外,本发明优选地涉及具有压力感测元件和加热元件的压力传感器,两者都集成到传感器的包装中,优选地在压力传感器的隔膜上,特别是涉及能够在高压下操作的压力传感器 或升高的温度,并且甚至更具体地涉及这种压力传感器,其中加热元件能够至少部分地加热压力感测元件并监测施加区域的温度。 优选地,压力感测元件由形状记忆合金(SMA)材料形成,其可以在高或高温下用作具有高灵敏度的压力传感器。
    • 8. 发明申请
    • Internal Locking Mechanism for an Externally Locked Door
    • 外部锁门内部锁定机构
    • US20140327249A1
    • 2014-11-06
    • US14268354
    • 2014-05-02
    • Joseph Snyder
    • Joseph Snyder
    • E05C1/00
    • E05B63/18Y10T292/0969
    • An apparatus with a fixed plate and a lock blocking bracket is used to lock doors that can only be locked from outside. The fixed plate has a knob guide opening, a recessed track, and an arm guide opening. The lock blocking bracket has an inner plate, an offset arm, an outer plate, and a control knob. The inner plate and the outer plate are perpendicular to each other and are connected by the offset arm, which allow the lock blocking bracket to brace the corner of a door frame. The outer plate is placed in the recessed track so that the outer plate can slide up and down within the recessed track. The control knob is placed within the knob guide opening. Furthermore, the offset arm is placed within the arm guide opening. The range of motion of the lock blocking bracket is controlled by the control knob.
    • 具有固定板和锁定支架的装置用于锁定只能从外部锁定的门。 固定板具有旋钮导向开口,凹陷轨道和臂引导开口。 锁定支架具有内板,偏移臂,外板和控制旋钮。 内板和外板彼此垂直并通过偏移臂连接,这允许锁定支架支撑门框的角部。 外板被放置在凹进的轨道中,使得外板可以在凹进轨道内上下滑动。 控制旋钮放置在旋钮导向开口内。 此外,偏移臂放置在臂引导开口内。 锁定支架的运动范围由控制旋钮控制。
    • 9. 发明授权
    • Pressure sensor with integrated thermal stabilization and method of using
    • 具有集成热稳定性的压力传感器和使用方法
    • US08006564B1
    • 2011-08-30
    • US12539358
    • 2009-08-11
    • Greg S. ShawTroy PrinceJoseph SnyderMichael C. WillettFrederick J. Lisy
    • Greg S. ShawTroy PrinceJoseph SnyderMichael C. WillettFrederick J. Lisy
    • G01L19/04
    • F02C9/28F02D41/3005F23N5/022G01B5/30G01L1/005
    • The present invention relates to a method of determining both pressures and temperatures in a high temperature environment. The present invention also relates to a method of determining temperatures about a pressure-sensing element using a bi-functional heater. In addition, the present invention preferably relates to a pressure sensor with the pressure-sensing element and a heating element both integrated into the sensor's packaging, preferably onto the diaphragm of the pressure sensor, and particularly to such a pressure sensor capable of operating at high or elevated temperatures, and even more particularly to such a pressure sensor wherein the heating element is capable of both heating, at least in part, the pressure-sensing element and monitoring the temperature of the application area. Preferably, the pressure-sensing element is formed from shape memory alloy (SMA) materials that can be used at high or elevated temperatures as a pressure sensor with high sensitivity.
    • 本发明涉及在高温环境下测定压力和温度的方法。 本发明还涉及使用双功能加热器来确定关于压力感测元件的温度的方法。 此外,本发明优选地涉及具有压力感测元件和加热元件的压力传感器,两者都集成到传感器的包装中,优选地在压力传感器的隔膜上,特别是涉及能够在高压下操作的压力传感器 或升高的温度,并且甚至更具体地涉及这种压力传感器,其中加热元件能够至少部分地加热压力感测元件并监测施加区域的温度。 优选地,压力感测元件由形状记忆合金(SMA)材料形成,其可以在高或高温下用作具有高灵敏度的压力传感器。
    • 10. 发明授权
    • Pressure sensor with integrated thermal stabilization and method of using
    • 具有集成热稳定性的压力传感器和使用方法
    • US08544335B1
    • 2013-10-01
    • US13190910
    • 2011-07-26
    • Greg S. ShawTroy PrinceJoseph SnyderMichael C. WilletFrederick J. Lisy
    • Greg S. ShawTroy PrinceJoseph SnyderMichael C. WilletFrederick J. Lisy
    • G01B5/30
    • F02C9/28F02D41/3005F23N5/022G01B5/30G01L1/005
    • The present invention relates to a method of determining both pressures and temperatures in a high temperature environment. The present invention also relates to a method of determining temperatures about a pressure-sensing element using a bi-functional heater. In addition, the present invention preferably relates to a pressure sensor with the pressure-sensing element and a heating element both integrated into the sensor's packaging, preferably onto the diaphragm of the pressure sensor, and particularly to such a pressure sensor capable of operating at high or elevated temperatures, and even more particularly to such a pressure sensor wherein the heating element is capable of both heating, at least in part, the pressure-sensing element and monitoring the temperature of the application area. Preferably, the pressure-sensing element is formed from shape memory alloy (SMA) materials that can be used at high or elevated temperatures as a pressure sensor with high sensitivity.
    • 本发明涉及在高温环境下测定压力和温度的方法。 本发明还涉及使用双功能加热器来确定关于压力感测元件的温度的方法。 此外,本发明优选地涉及具有压力感测元件和加热元件的压力传感器,两者都集成到传感器的包装中,优选地在压力传感器的隔膜上,特别是涉及能够在高压下操作的压力传感器 或升高的温度,并且甚至更具体地涉及这种压力传感器,其中加热元件能够至少部分地加热压力感测元件并监测施加区域的温度。 优选地,压力感测元件由形状记忆合金(SMA)材料形成,其可以在高或高温下用作具有高灵敏度的压力传感器。