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    • 11. 发明授权
    • Electrical plug-and-socket connector
    • 电插头插座连接器
    • US4531796A
    • 1985-07-30
    • US493257
    • 1983-05-10
    • Willi GansertDieter HussmannGert Jakob
    • Willi GansertDieter HussmannGert Jakob
    • H01R13/52H01R13/623H01R11/00
    • H01R13/5221H01R13/623
    • An electrical connector combination thoroughly sealed against moisture and dirt and resistant to temperature variations and shaking forces consists of a male connector (1) equipped with connector prongs (3) set in a casing (2) and a female connector (10) having corresponding sockets (12) disposed in a casing (13) in which a compressible seal plug (22) is set which surrounds the conductors which are electrically and mechanically affixed to the connector sockets (12). The seal plug 12 is compressed by an assembly of rigid parts including the casing plug (13), a metallic washer (25) and a cap nut (27), the last of which can be screwed tight with a certain torque to clamp the assembly. A sealing effect is exerted on the conductors (11) and the casing plug (13) in a radial direction without exposing the seal plug (22) to rotary movement. A seal ring (9) is seated on a forward section (15) of the socket casing plug (13) extending into the male connector casing (2). This seal ring seals the joint of the connector parts with the help of a connection sleeve acting through a bayonnet lock, without the seal ring being able to yield radially.
    • 电气连接器组合完全密封防潮和污垢,并且耐温度变化和抖动力包括设置在壳体(2)中的连接器插脚(3)的阳连接器(1)和具有相应插座的阴连接器(10) (12),其设置在其中设置有可压缩的密封塞(22)的壳体(13)中,所述可压缩密封塞(22)围绕所述导体,所述导体被电和机械地固定到所述连接器插座(12)。 密封塞12由包括壳体塞(13),金属垫圈(25)和盖螺母(27)的刚性部件的组件压缩,最后一个可以以一定的扭矩拧紧以夹紧组件 。 导体(11)和套管塞(13)沿径向施加密封效果,而不会使密封塞(22)暴露于旋转运动。 密封环(9)位于延伸到阳连接器壳体(2)中的插座壳塞(13)的前部(15)上。 该密封环借助于通过卡口锁定的连接套筒来密封连接器部件的接头,而密封环不能径向屈服。
    • 16. 发明授权
    • Water spray-resistant, ventilated housing structure
    • 防水防水,通风的外壳结构
    • US3973477A
    • 1976-08-10
    • US586583
    • 1975-06-13
    • Gert JakobWilli Gansert
    • Gert JakobWilli Gansert
    • H05K7/20H01H9/04
    • H05K7/20009H05K7/20
    • To protect electronic components located within a housing structure, or casing, which contains ventilation openings, against corrosion due to intrusion of water, for example being sprayed thereon upon cleaning of the area on which the structure is mounted, the housing is formed with an attachment surface having ventilation ducts formed therein which are generally Y-shaped having two branch ducts terminating at the outside of the housing in spaced position, and forming an angle with respect to each other, for example terminating at essentially right angled housing edges, and a third trunk duct connected to the interior of the housing, and branching off from the two branch ducts, so that water sprayed against the housing may run through the branch ducts, without impingement on a back wall, and ventilation is provided by additional movement of air through the trunk of the Y-shaped duct; the ducts are preferably mounted with respect to the housing in such a manner that any liquid which might accumulate within the housing structure, due to condensation, can drain off, that is, can flow out through one of the branch ducts by gravity.The present invention relates to a housing structure which is so constructed that it contains ventilating openings, and yet is resistant to intrusion by water, or other liquids which may be sprayed against the housing structure, or in the immediate vicinity, and more particularly to a housing structure for electronic apparatus, especially for electronic apparatus to be used in automotive vehicles.Electronic apparatus used in automotive vehicles is frequently mounted in the engine compartment; the apparatus is thus subjected to the rough environmental conditions of the motor vehicle itself. Frequently it is located at a position where it is accessible for testing or servicing, thus at a position which is not well protected. The electronic components within the housing may include various electronic elements such as semiconductors, capacitors, resistors, integrated circuits, and other electronic elements which are mounted on organic or inorganic carrier substrates, such as XXXP circuit boards, epoxy-glass fiber substrates or carriers, ceramic substrates, or the like. It is important that water and high atmospheric humidity be excluded from the interior of the housing, in order to prevent corrosion and to retain the high insulation resistances of the electronic elements as well as of the carrier plates themselves. Hermetically sealing the housing is one solution which, however, is expensive, leads to cooling difficulties, and is, in general, commercially not suitable.Ventilating the housing prevents establishment within the housing of peculiar climatic conditions within the housing itself. It has previously been proposed to include electronic apparatus in housings which are formed with ventilating ducts so constructed that they form a tortuous, or labyrinth path from the outside into the housing. Spray water used to clean surrounding areas may, however, penetrate into such apparatus through the ventilating path, even if the duct itself has various turns or changes of directions, particularly if a stream of water directly impinges on the ventilating duct. It is particularly difficult to prevent penetration of water into the housing if pressure of a water spray or stream directed against the housing or surrounding area is high, or if the spray time is comparatively long. This condition may obtain, for example, when pressure-cleaning the engine compartment of a motor vehicle.It is an object of the present invention to provide a housing structure for electronic apparatus, and an electronic apparatus, in general, which is so constructed that water will not penetrate thereinto even if a stream of water is directed against the ventilating opening itself.SUBJECT MATTER OF THE PRESENT INVENTIONBriefly, the ventilating duct is so constructed that, in the projection of the back side of the housing, it is essentially Y-shaped, with the two branches of the Y terminating at the edges of the housing to form a through-duct; the trunk of the Y is connected to the interior of the housing, that is, to an internal ventilating duct; the two branches of the Y terminate at different sides of the housing.The structure of the present invention, therefore, provides a through-duct for water which is directed against the ventilating opening of the housing, to prevent reflection, or ricochet effects of streams of water directed against any one of the ventilating openings, the trunk of the Y branching off at the direction which is preferably so located that any water penetrating therein will, automatically, drain off.In accordance with a feature of the invention, the branch ducts terminating at the edges of the housing have approximately the same size, or diameter, or diametrical area. The housing is so located on the branch ducts that they terminate at the lowest point of the housing, to provide for drainage of water by gravity. Additionally, and in accordance with a preferred feature, the trunk duct leading to the interior of the housing is formed with a constriction, that is, tapers, in funnel form, to a constricted point and then extends to an opening which is perpendicular to the direction of the trunk duct, the trunk duct enlarging, again, to enhance the funnel effect. The opening leading into the interior of the housing, preferably, is curved, for example formed as a circular segment.
    • 为了保护位于包含通风开口的壳体结构或壳体内的电子部件,防止由于水的侵入而被腐蚀,例如在清洁安装结构的区域时被喷洒在其上,壳体形成有附件 表面具有形成在其中的通风管道,其通常为Y形,其具有两个分支管道,其以间隔的位置终止在壳体的外部,并且形成相对于彼此的角度,例如在基本上直角的壳体边缘处终止, 主干管道连接到壳体的内部,并从两个分支管道分支,使得喷射到壳体上的水可以穿过分支管道,而不会撞击在后壁上,并且通过空气的额外运动提供通风 Y形管道的主干; 优选地,管道相对于壳体安装,使得由于冷凝而积聚在壳体结构内的任何液体可以排出,也就是说,可以通过重力从一个分支管道流出。