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    • 1. 发明申请
    • METHOD FOR CONTROLLING A HOMOGENEOUS BATCH OF PRESSURISED FLUID CYLINDERS
    • 用于控制加压流体缸的均匀分批的方法
    • US20100132437A1
    • 2010-06-03
    • US12597902
    • 2008-03-27
    • Christian BleysFabrice PinPhilippe Deck
    • Christian BleysFabrice PinPhilippe Deck
    • G01N7/00G01M3/04
    • F17C5/005F17C13/003F17C2201/0119F17C2201/0123F17C2205/0323F17C2205/055F17C2250/032F17C2250/034F17C2250/043F17C2250/0473F17C2250/0626
    • The invention relates to a method for controlling a homogeneous batch (1) of pressurised fluid cylinders (2) during at least part of the use cycle of said cylinders. According to the invention, each of the cylinders (2) is provided with a valve (3) having an electronic device (4) including at least one sensor (14) for measuring the pressure (P) inside the cylinder (2), a system (44) for storing/acquiring and processing data and an electromagnetic wave transmitter (34), for example using radio frequency, designed for the remote transmission of at least one of the following items of information: the identity of the cylinder (2) and the pressure (P) measured inside said cylinder. The method includes a transmission step in which all of the cylinders (2) in the batch (1) transmit at least one item of information of the same type when they are in the same phase of the use cycle at the same time and a step in which the same-type items of information transmitted by the cylinders are compared for the automatic detection of an anomaly in the batch (1).
    • 本发明涉及在所述气缸的至少部分使用周期期间控制加压流体缸(2)的均质批料(1)的方法。 根据本发明,每个气缸(2)设置有具有电子装置(4)的阀(3),电子装置(4)包括用于测量气缸(2)内部的压力(P)的至少一个传感器(14) 用于存储/获取和处理数据的系统(44)和例如使用无线电频率的电磁波发射器(34),被设计用于远程传输以下信息项中的至少一个:气缸(2)的身份 和在所述气缸内测量的压力(P)。 该方法包括一个发送步骤,其中当批次(1)中的所有气瓶(2)在同一时间处于使用周期的相同阶段时,传送相同类型的至少一项信息,并且步骤 将由气缸传输的相同类型的信息项目进行比较,以便批量(1)中的异常的自动检测。
    • 2. 发明申请
    • METHOD FOR CONTROLLING AN ELECTRONIC PRESSURE GAUGE AND PRESSURE GAUGE THEREFOR
    • US20100132474A1
    • 2010-06-03
    • US12597864
    • 2008-03-27
    • Christian BleysFabrice PinPhilippe Deck
    • Christian BleysFabrice PinPhilippe Deck
    • G01L7/18
    • F17C13/025F17C2250/043F17C2250/0439
    • The invention relates to a method for controlling an electronic pressure gauge for measuring the pressure (P) inside a pressurised gas container, particularly a pressurised gas cylinder, said pressure gauge (1) including: at least one pressure sensor (14); an electronic unit (44) designed to acquire, store and process data; and at least one information device (34) capable of transmitting at least one item of information (P). The method includes: at least one step in which the pressure (P) in the container is measured by the pressure sensor (14); and a step comprising the automatic modification of the operating mode of the pressure gauge (1) and/or the information (P) transmitted by the pressure gauge (1) in order to adapt the operating mode or the information (P) to the current operating status (A, B-C, D) of the container from among a plurality of pre-defined operating statuses (A, B-C, D), said operating statuses (A, B, C, D) being pre-defined by pre-established reference pressure threshold values (S1 to S3) and chronologically linked so as to form a chronological cycle. According to the invention, the aforementioned modification step is performed following the detection of a transition from a first operating status (A, B-C, D) to a second operating status, i.e. when the pressure values (P) measured during the first operating status and compared to the pre-established reference pressure threshold values (S1 to S3) match the second operating status and the second operating status is the next status in the chronological cycle. The invention is characterised in that the pre-defined operating statuses (A, B-C, D) are linked chronologically in a closed-loop chronological cycle and the pressure gauge (1) is connected to the container and can measure the pressure inside the container during the entire closed-loop chronological cycle.
    • 3. 发明授权
    • Electronic pressure gauge for measuring pressure
    • 用于测量压力的电子压力表
    • US08359171B2
    • 2013-01-22
    • US12597894
    • 2008-04-01
    • Christian BleysFabrice PinPhilippe Deck
    • Christian BleysFabrice PinPhilippe Deck
    • G01F23/00G01L7/00G01L9/00
    • G01L19/086
    • The invention relates to an electronic pressure gauge for measuring the pressure inside a container, particularly a pressurized gas cylinder, said pressure gauge including: at least one pressure sensor; an electronic unit designed to acquire, store and process data; and at least one information device capable of transmitting at least one item of information. The pressure gauge also includes a first radio with a reception port, said first radio being connected to the electronic unit so as to receive external data in order to modify the operation or the configuration of the pressure gauge. The reception port of the first radio is designed to read data modulated in terms of the frequency and/or intensity of an external magnetic field at a first low frequency, for example a frequency between 50 and 300 khz.
    • 本发明涉及一种用于测量容器内,特别是加压气瓶的压力的电子压力计,所述压力表包括:至少一个压力传感器; 设计用于获取,存储和处理数据的电子单元; 以及能够发送至少一个信息项的至少一个信息设备。 压力计还包括具有接收端口的第一无线电设备,所述第一无线电装置连接到电子单元,以便接收外部数据,以便修改压力计的操作或配置。 第一无线电设备的接收端口被设计为读取以第一低频率(例如50-300khz的频率)的外部磁场的频率和/或强度调制的数据。
    • 4. 发明授权
    • Method for controlling a homogeneous batch of pressurized-fluid cylinders
    • 用于控制加压液压缸的均匀批次的方法
    • US09046219B2
    • 2015-06-02
    • US12597902
    • 2008-03-27
    • Christian BleysFabrice PinPhilippe Deck
    • Christian BleysFabrice PinPhilippe Deck
    • G01N7/00G01M3/04F17C5/00F17C13/00
    • F17C5/005F17C13/003F17C2201/0119F17C2201/0123F17C2205/0323F17C2205/055F17C2250/032F17C2250/034F17C2250/043F17C2250/0473F17C2250/0626
    • The invention relates to a method for controlling a homogeneous batch (1) of pressurized fluid cylinders (2) during at least part of the use cycle of said cylinders. According to the invention, each of the cylinders (2) is provided with a valve (3) having an electronic device (4) including at least one sensor (14) for measuring the pressure (P) inside the cylinder (2), a system (44) for storing/acquiring and processing data and an electromagnetic wave transmitter (34), for example using radio frequency, designed for the remote transmission of at least one of the following items of information: the identity of the cylinder (2) and the pressure (P) measured inside said cylinder. The method includes a transmission step in which all of the cylinders (2) in the batch (1) transmit at least one item of information of the same type when they are in the same phase of the use cycle at the same time and a step in which the same-type items of information transmitted by the cylinders are compared for the automatic detection of an anomaly in the batch (1).
    • 本发明涉及在所述气缸的至少部分使用周期期间控制加压流体缸(2)的均质批料(1)的方法。 根据本发明,每个气缸(2)设置有具有电子装置(4)的阀(3),电子装置(4)包括用于测量气缸(2)内部的压力(P)的至少一个传感器(14) 用于存储/获取和处理数据的系统(44)和例如使用无线电频率的电磁波发射器(34),被设计用于远程传输以下信息项中的至少一个:气缸(2)的身份 和在所述气缸内测量的压力(P)。 该方法包括一个发送步骤,其中当批次(1)中的所有气瓶(2)在同一时间处于使用周期的相同阶段时传送相同类型的至少一个信息项,并且步骤 将由气缸传输的相同类型的信息项目进行比较,以便批量(1)中的异常的自动检测。
    • 5. 发明申请
    • Tap For Pressurized Gas Cylinder
    • 龙头用于加压气瓶
    • US20100186837A1
    • 2010-07-29
    • US12593318
    • 2008-02-14
    • Christian BleysPedro ColladoFabrice PinPhilippe Deck
    • Christian BleysPedro ColladoFabrice PinPhilippe Deck
    • F16K1/52F16K31/44F16K27/12
    • F16K1/305Y10T137/7062Y10T137/87981
    • The invention relates to a tap (1) for a pressurized gas cylinder, that comprises a body (2) to be connected to a gas (G) outlet opening (3) of a gas cylinder (4), un gas (G) off-take circuit (C) including at least one gas outlet (5, 25), at least one valve (6) movable between a circuit (C) closing position and a circuit (C) opening position, at least one member (23) for adjusting the release flow of the gas (G), and a single actuation member (9) capable of interaction both with the valve (6) and with the flow adjustment member (23), characterized in that the actuation member (9) is mounted so as to be movable relative to the body (2) according to two distinct movements, said actuation member (9) being arranged relative to the valve (6) and the flow adjustment member (7) so that the two types of movements respectively control the movement of the valve (6) between the opening and closing positions on the one hand and the flow adjustment member (23) on the other hand. The invention can be used as a tap with a built-in expander for a pressurized gas cylinder, e.g. pressurized oxygen in particular for oxygen therapy in medicine.
    • 本发明涉及一种用于加压气瓶的龙头(1),其包括与气瓶(4)的气体(G)出口(3)连接的主体(2),脱气(G) 包括至少一个气体出口(5,25)的至少一个阀芯(C),在电路(C)闭合位置和电路(C)打开位置之间可移动的至少一个阀(6),至少一个构件(23) 用于调节气体(G)的释放流量以及能够与阀(6)和流量调节构件(23)相互作用的单个致动构件(9),其特征在于,致动构件(9)是 安装成能够根据两个不同的运动相对于主体(2)移动,所述致动构件(9)相对于阀(6)和流量调节构件(7)布置成使得分别进行两种运动 另一方面控制阀(6)在开闭位置和流量调节构件(23)之间的运动。 本发明可以用作具有用于加压气瓶的内置膨胀器的水龙头,例如。 特别是加压氧气用于医学中的氧疗。
    • 7. 发明申请
    • ELECTRONIC PRESSURE GAUGE FOR MEASURING PRESSURE
    • 用于测量压力的电子压力计
    • US20100131213A1
    • 2010-05-27
    • US12597894
    • 2008-04-01
    • Christian BleysFabrice PinPhilippe Deck
    • Christian BleysFabrice PinPhilippe Deck
    • G01L19/08
    • G01L19/086
    • The invention relates to an electronic pressure gauge for measuring the pressure (P) inside a container, particularly a pressurised gas cylinder, said pressure gauge (1) including: at least one pressure sensor (14); an electronic unit (44) designed to acquire, store and process data; and at least one information device (34) capable of transmitting at least one item of information (P). The pressure gauge also includes a first radio (34) with a reception port, said first radio (34) being connected to the electronic unit (44) so as to receive external data (D) in order to modify the operation or the configuration of the pressure gauge (1). The reception port of the first radio (34) is designed to read data modulated in terms of the frequency and/or intensity of an external magnetic field at a first low frequency, for example a frequency between 50 and 300 KHz. The first radio includes a first radio transmission port connected to the electronic unit (44) in order to transmit information (P) from the pressure gauge (1). The first transmission port and the reception port of the first radio (34) have a substantially identical transmission and reception operating frequency. The invention is characterised in that it includes a second radio (340) having only a transmission port, said second radio (340) being connected to the electronic unit (44) for the wireless transmission of information (P), in particular information relating to the operation of the pressure gauge (1). The transmission port of the second radio (340) is designed to transmit data by modulation of frequency and/or intensity of a magnetic field at a second high frequency, above the first frequency of the first radio (34), for example between 300 KHz and 800 MHz.
    • 本发明涉及一种用于测量容器(特别是加压气瓶)内的压力(P)的电子压力计,所述压力表(1)包括:至少一个压力传感器(14); 设计用于获取,存储和处理数据的电子单元(44); 以及能够发送至少一个信息项(P)的至少一个信息设备(34)。 压力计还包括具有接收端口的第一无线电(34),所述第一无线电(34)连接到电子单元(44),以便接收外部数据(D),以便改变操作或配置 压力表(1)。 第一无线电设备(34)的接收端口被设计为读取以第一低频率(例如50-300KHz)之间的频率和/或强度的外部磁场调制的数据。 第一无线电设备包括连接到电子单元(44)的第一无线电传输端口,以从压力计(1)发送信息(P)。 第一无线电设备(34)的第一传输端口和接收端口具有基本相同的发送和接收操作频率。 本发明的特征在于它包括仅具有传输端口的第二无线电设备(340),所述第二无线电设备(340)连接到用于无线传输信息(P)的电子单元(44),特别是与 压力表(1)的操作。 第二无线电设备(340)的传输端口被设计成通过调制高于第一无线电(34)的第一频率的第二高频处的频率和/或强度来传输数据,例如在300KHz之间 和800 MHz。
    • 10. 发明申请
    • FILLING OUTLET, ITS USE AND FILLING METHOD
    • 填充出口,其使用和填充方法
    • US20130105037A1
    • 2013-05-02
    • US13808519
    • 2011-05-19
    • Antoine FrenalPhilippe DeckCyril ManscourtPhilippe Pisot
    • Antoine FrenalPhilippe DeckCyril ManscourtPhilippe Pisot
    • B67C3/26
    • B67C3/26F16K1/303F16K1/308F16L37/096F16L37/413F17C2205/0376
    • Filling outlet comprising at least one claw (2) extending in a longitudinal direction about a longitudinal axis (A), the central space situated between the claw or claws (2) and the longitudinal axis (A) forming a housing intended to accommodate a filling connector (1) of cylindrical overall shape, characterized in that the internal face of the at least one claw (2) situated facing the central space is of flat overall shape and has reliefs (12) and/or recesses (22) of set dimensions, the reliefs (12) and/or recesses being spaced relative to one another in a set fashion so that they fit into mating grooves (11) and/or reliefs (21) formed on the exterior face of a filling connector (1), the at least one claw (2) being able to move transversely with respect to the longitudinal axis (A) between a position called the “open” position to allow a connector (1) to be introduced into the central space, and a position called the “closed” position to allow the internal face of the claws (2) to engage on the exterior face of a connector (1), the said outlet comprising a locking member (3) able to move between an active position that locks the claws (2) in the closed position and an inactive position that allows the claws (2) to move into the open position.
    • 填充出口包括围绕纵向轴线(A)在纵向方向上延伸的至少一个爪(2),位于爪或爪(2)和纵向轴线(A)之间的中心空间形成用于容纳填充物的壳体 连接器(1),其特征在于,所述至少一个爪(2)的面向中心空间的内表面具有平坦的整体形状,并且具有设定尺寸的浮雕(12)和/或凹部(22) 浮雕(12)和/或凹部以一定的方式相对于彼此隔开,使得它们适合于形成在填充连接器(1)的外表面上的配合凹槽(11)和/或浮雕(21)中, 所述至少一个爪(2)能够在称为“打开”位置的位置之间相对于纵向轴线(A)横向移动,以允许将连接器(1)引入中心空间,并且称为 “闭合”位置以允许爪(2)的内表面 在所述连接器(1)的外表面上的老化,所述出口包括锁定构件(3),所述锁定构件能够在将所述爪(2)锁定在关闭位置的活动位置和允许所述爪(2) )进入开放位置。