DUAL COMPARTMENT INSTRUMENT HOUSING
    71.
    发明申请
    DUAL COMPARTMENT INSTRUMENT HOUSING 审中-公开
    双舱仪表房

    公开(公告)号:WO9857186A3

    公开(公告)日:1999-03-25

    申请号:PCT/US9812044

    申请日:1998-06-09

    申请人: MAGNETROL INT

    摘要: A dual compartment housing (22) has a wiring compartment (40) containing a customer accessible wiring board (98) and openings for a conduit connection. The wiring compartment (40) is separated from an electronics compartment (38) by a tunnel (58). The tunnel (58), which can be potted with a sealing compound (110), provides environmental and explosion proof protection for the electronics. An intrinsically safe barrier can be housed in the explosion proof wiring compartment (40), and the electronics compartment (38) is then intrinsically safe. This relieves any constraint on separating the intrinsically safe electronics exposed to the process by an explosion proof boundary, and the process seal can be a "soft" seal. The housing is designed so that both compartments (38, 40) face the same direction.

    摘要翻译: 双室壳体(22)具有包含顾客可接触的布线板(98)和用于导管连接的开口的布线室(40)。 接线室(40)通过隧道(58)与电子室(38)分离。 可以用密封化合物(110)封装的隧道(58)为电子设备提供环境和防爆保护。 本质安全的隔离物可以容纳在防爆接线室(40)中,电子室(38)然后是本质安全的。 这避免了通过防爆边界将暴露于该过程的本质安全电子线分开的任何限制,并且过程密封件可以是“软”密封件。 壳体被设计成使得两个隔间(38,40)面向相同的方向。

    SENSOR
    72.
    发明申请
    SENSOR 审中-公开
    PROBE

    公开(公告)号:WO1997030345A1

    公开(公告)日:1997-08-21

    申请号:PCT/DE1996002041

    申请日:1996-10-25

    发明人: ROBERT BOSCH GMBH

    IPC分类号: G01N27/407

    摘要: The invention relates to a sensor, in particular for determining the oxygen content in internal combustion engine exhaust gases. Said sensor has a sensor element (22) which is surrounded and fixed by a seal (19) to be gas-tight in a housing (12). The seal (19) is arranged in the form of a pre-sintered, deformable sealing structure (19') in the housing (12) between a moulded ceramic structure (18) on the side of the gas to be measured and a moulded ceramic structure (20) on the side of the connection, wherein the pre-sintered sealing structure (19') can be deformed under pressure. The moulded ceramic structures (18, 20) and the sealing structure (19') have holes (32, 42, 52) extending axially therethrough. The sealing structure (19') has integrally moulded components which narrow the cross-section of the hole (42) and can be deformed by the sensor element (22) when it (22) is inserted in such a manner that said sensor element (22) is locked by the integrally moulded components in the assembly position. The moulded ceramic structures (18, 20) and the sealing structure (19') also have members each which engage positively in each other on the mutually contacting end surfaces and which orientate the moulded ceramic structures (18, 20) and the sealing structure (19') radially so that the holes (32, 42, 52) are aligned with each other.

    摘要翻译: 有一个传感器,尤其是用于确定在内燃机的废气中的氧气含量,提出了用一个传感器元件(22),其在壳体(12)由一个密封件(19)包括一个气密的和固定的。 所述密封件(19)“布置在测量气体侧和连接侧的陶瓷成型部件(18,20)之间的壳体(12),其中,所述预烧结的密封体(19和预烧结的可变形的密封体(19)”)是在压力下变形的。 陶瓷模具部件(18,20)和所述密封体(19“)具有轴向延伸的通孔(32,42,52)。 密封体(19“)具有通孔(42)变窄的突起,其从所述传感器元件(22)的传感器元件(22)的插入过程中被如此变形的横截面,该传感器元件(22)是通过在装配位置的凸起锁定。 陶瓷模具部件(18,20)和所述密封体(19“)还具有在每个互锁形锁合接合元件的相互接触的端表面在其上的陶瓷成型部件(18,20)和所述密封体(19”)径向对齐,使得通孔 (32,42,52)延伸彼此齐平。

    ELECTRO-OPTIC INTERFACE FOR FIELD INSTRUMENT
    73.
    发明申请
    ELECTRO-OPTIC INTERFACE FOR FIELD INSTRUMENT 审中-公开
    现场仪表的电光接口

    公开(公告)号:WO1997012206A1

    公开(公告)日:1997-04-03

    申请号:PCT/US1996015239

    申请日:1996-09-24

    申请人: ROSEMOUNT INC.

    IPC分类号: G01D11/24

    CPC分类号: G01R1/04 G01D11/24

    摘要: A remotely powered field instrument (14) comprises a housing (22) with an electronics compartment (26), a terminal compartment (24), and a bulkhead (28) separating the electronics compartment (26) from the terminal compartment (24). A first electrical lead (40) extends through the bulkhead. A mounting plate (66) is secured within the terminal compartment (24). An interface module (20) is positioned within the terminal compartment (24) and secured to the mounting plate (66). The interface module (20) comprises an optical connector (62), an optical-to-electrical converter (72) coupled to the optical connector and a second electrical lead (68) coupled between the optical-to-electrical converter (72) and the first electrical lead (40).

    摘要翻译: 远程供电的现场仪器(14)包括具有电子室(26),端子室(24)和将电子室(26)与端子室(24)分开的隔板(28)的壳体(22)。 第一电引线(40)延伸穿过隔板。 安装板(66)固定在端子室(24)内。 接口模块(20)定位在端子室(24)内并固定到安装板(66)上。 接口模块(20)包括光学连接器(62),耦合到光学连接器的光电转换器(72)和耦合在光电转换器(72)和 第一电引线(40)。

    복합센서 하우징
    74.
    发明申请

    公开(公告)号:WO2019004682A1

    公开(公告)日:2019-01-03

    申请号:PCT/KR2018/007183

    申请日:2018-06-25

    IPC分类号: G01D11/24 G01N31/22

    CPC分类号: G01D11/24 G01N31/22

    摘要: 본 발명은 복합센서 하우징에 관한 것으로서, 더욱 상세하게는, 센서의 작동에 악영향을 초래하는 태양광, 물방울, 먼지 등을 완벽하게 차단할 수 있고 통풍성을 확보함으로써 센서 측정값의 정밀도와 내구성을 향상시킬 수 있으며, 구조가 단순하고 복수의 센서나 관련 부품이나 소자를 효과적으로 배치, 구성할 수 있을 뿐만 아니라 조립성 및 호환성을 향상시킬 수 있으며 사용시 편의성을 향상시킬 수 있는 복합센서 하우징에 관한 것이다.

    表示装置
    76.
    发明申请
    表示装置 审中-公开

    公开(公告)号:WO2018190143A1

    公开(公告)日:2018-10-18

    申请号:PCT/JP2018/013215

    申请日:2018-03-29

    摘要: 表示装置は、第1の光を発する第1発光部2と、第1の光とは異なる第2の光を発する第2発光部3と、第1の面4aに入射する光を反射し、第2の面4bに入射する光を透過する半透過反射部としてのハーフミラー4と、第1発光部2からハーフミラー4の第1の面4aへと向かう第1の光により第1マーク51を形成する第1マーク形成部5と、第2発光部3からハーフミラー4の第2の面4bへと向かう第2の光により第2マーク61を形成する第2マーク形成部6と、第1発光部2と第2発光部3とにおける発光状態を制御する制御部7と、を備え、第1マーク形成部5及び第2マーク形成部6のそれぞれは、マーク51,52の態様に合致した凹部5a,6aと、凹部5a,6a以外の部分が遮蔽された遮光部5b、6bと、を備える。

    누수감지장치 및 이를 적용한 누수감지시스템

    公开(公告)号:WO2018186633A1

    公开(公告)日:2018-10-11

    申请号:PCT/KR2018/003838

    申请日:2018-04-02

    发明人: 윤대훈 윤상조

    IPC分类号: G01M3/04 G01D11/24

    CPC分类号: G01D11/24 G01M3/04

    摘要: 전기를 도통하는 제1전도체가 구성되되, 상기 제1전도체가 서로 단선이 되어있는 상태로 이격하여 구성되고, 상기 단선이 되어있는 부분에서 평행하게 이격하여 제2전도체를 구성하고, 상기 제2전도체에 이웃하여 수팽창재질을 삽입하여 상기 수팽창재질에 물이 유입될 때에 부피가 팽창하여 이웃하는 상기 제2전도체를 밀어내어 상기 제1전도체에 단선된 부분에 접촉하여 단선부분이 쇼트되도록 구성한 것을 특징으로 하는 누수감지장치에 관한 것이다.

    METHOD OF MANUFACTURING A PROBE AND PROBE
    78.
    发明申请

    公开(公告)号:WO2018158580A1

    公开(公告)日:2018-09-07

    申请号:PCT/GB2018/050531

    申请日:2018-03-01

    IPC分类号: G01D11/24

    摘要: Methods of manufacturing probes for high temperature environments and corresponding probes are disclosed. In one arrangement, an elongate stem body (2) having a longitudinal lumen filled with a first insulating powder and a plurality of stem leads (6) running longitudinally through the first insulating powder from a proximal end of the stem body to a distal end of the stem body are provided. Electrical connections between sensor leads (36) from a sensor (12) and the stems leads are formed. A volume (14) through which the sensor leads pass is filled with a second insulating powder and the second insulating powder is sealed within a tip housing (30).