Patent classifications
H01R13/521
WATER RESISTANT ELECTRICAL DEVICES
An electrical outlet device includes water-resistant components to prevent the ingress of water to electrical components. One example includes a faceplate having a front surface, an outer edge extending around the front surface, and a first outlet opening extending through the front surface. A water-resistant seal is connected to the front surface of the faceplate. The seal has a first slit aligned with the first opening, a first flap adjacent the slit, and a second flap adjacent the slit. The first flap and the second flap are resiliently biased to a closed position and are moveable upon insertion of a plug.
CONNECTOR
A connector includes a first insulator, contacts joined to the first insulator, a contact insulator integrally holding the contacts in a vicinity of rear end portions thereof, a ground plate which extends along the contacts, a metal peripheral shell placed over the first insulator so as to surround a periphery of front end portions of the contacts and a front end portion of the ground plate and electrically connected to the ground plate, and a second insulator that is formed so as to cover a rear part of the first insulator, a rear part of the peripheral shell, central parts of the contacts and a central part of the ground plate, with the rear end portions of the contacts, the contact insulator and a rear end portion of the ground plate being exposed.
CONNECTOR ASSEMBLY AND BATTERY MODULE
Proposed are a connector assembly and a battery module. The connector assembly may include a connector formed so that an external connector is inserted therein through a connector insertion portion formed in a casing, and a cover part coupled to the connector while surrounding an outer peripheral surface of the connector so as to seal a gap between the connector and the connector insertion portion. Accordingly, it is possible to block or delay discharge of a flame through the connector insertion portion of the battery module.
Vaporizer cartridge for a vaporizer
Features relating to a cartridge for use with a vaporizer body are provided. The cartridge mates with the vaporizer body in a cartridge receptacle. The cartridge may include a cartridge body defining a reservoir configured to contain vaporizable material; a mouthpiece coupled to a proximal end region of the cartridge body; at least one proximal absorbent pad wedged within an internal volume of the mouthpiece; a mouthpiece seal with sealing ribs; a cannula defining a vaporization chamber extending through the cartridge body; a resistive heating element; a porous wick configured to draw the vaporizable material in the reservoir towards the vaporization chamber; an internal sealing gasket positioned in a distal end region of the cartridge body; a lower support structure positioned in the distal end region of the cartridge body; and at least one distal absorbent pad configured to wedge within a recess located in the lower support structure.
PLUG CONNECTOR FOR FLEXIBLE CONDUCTOR FILMS
A plug connector for flexible conductor films having film-insulated conductors, includes a plug connector housing in which at least one plug contact element is arranged, and a connection region in which blades electrically conductively connected to the at least one plug contact element penetrate and fix at least one film-insulated conductor and produce an electrical contact. The plug connector housing includes two housing parts which can be pushed into one another, of which the first housing part supports the blades and the at least one plug contact element electrically conductively connected thereto, and the second housing part receives and supports the flexible conductor film and has the at least one blade receptacle which is adapted to the blades and whose boundary surfaces are designed such that the at least a part of the blades is bent towards the film-insulated conductor when the two housing parts are pushed into one another.
Connector assembly with sealed symmetrical split lever
The present disclosure provides a connector assembly. The connector assembly includes a connector housing adapted to engage with a corresponding counter-connector housing. A lever including a first lever arm and a second lever arm is pivotably and sealingly mounted to the connector housing. Each lever arm includes interlocking means for connecting the first lever arm to the second lever arm at a first location. The interlocking means of each of the first lever arm and the second lever arm are configured to define complementary symmetrical surfaces that interlock with one another when the lever arms are pivotably mounted to the connector housing. On mounting the lever arms to the connector housing, the lever is configured to move about the connector housing between an open state and a closed state to secure the counter-connector housing to the connector housing.
Secondary Side Heatsink Techniques for Optical and Electrical Modules
A module for use in a hardware platform for networking, computing, and/or storage includes a printed circuit board assembly having a primary side and a secondary side, wherein the primary side includes more physical space, in a vertical direction extending out from the printed circuit board assembly, than the secondary side; electrical and/or optical components disposed on the primary side of the printed circuit board assembly; and a secondary side heatsink located on and extending from the secondary side, wherein the secondary side heatsink is disposed to one of i) an electrical and/or optical component disposed on the secondary side, and ii) an optical component disposed on the primary side, for thermal management.
Adapter assembly
The present disclosure provides an adapter assembly. Portion of the main body of the plug adapter is penetrated through the opening and exposed to the exterior of the accommodation space. Each protrusion is penetrated through the concave and exposed to the exterior of the accommodation space. Each protrusion exposed to the exterior of the accommodation space is connected with the position-limiting portion through the rotation of the plug adapter. Each fastening element is plugged into the first hole and the second hole. The plug adapter is fastened to the casing through the fastening element and the connection between the protrusion and the position-limiting portion. The adapter assembly includes two impact bearing points. One is formed by the fastening element, and the other is formed by the connection between the protrusion and the position-limiting portion. The stability and the waterproof capability of the adapter assembly are enhanced.
ARRANGEMENT FOR MAKING CONTACT WITH A PRINTED CIRCUIT BOARD
The present disclosure pertains to an arrangement comprising a housing, a circuit board arranged in the housing and at least one flat contact to connect the circuit board with an electrical component arranged outside of the housing, whereby the housing has a breakthrough that the flat contact protrudes from, whereby the circuit board has breakthrough that the flat contact reaches through, that the circuit board has a contact tab on the side facing away from the housing breakthrough and whereby a molded seal is inserted in the housing breakthrough and the molded seal positively encloses the flat contact and whereby the contact tab is connected with the flat contact in an electrically conductive manner.
WET CONNECTOR FOR TRIDENT RIGLESS ELECTRICAL SUBMERSIBLE PUMP (ESP) TECHNOLOGY
A wet connector for a downhole tool string includes an insulating material body, a conductive core and an insulating piston. The insulating material body is provided with a first chamber, and the first chamber is filled with insulating oil. A conductive core chamber of the conductive core is communicated with the first chamber. The insulating piston is hermetically connected to a first opening through a first sealing lip. When a male connector abuts against the insulating piston and moves toward the bottom of the conductive core chamber, the male connector is in contact with and electrically connected to the conductive core chamber, so that the insulating oil in the first chamber is compressed, and a pressure of the insulating oil in the first chamber is enabled to be greater than a pressure of well fluid outside the wet connector.