Abstract:
An electronic circuit storage case includes a housing made of resin and having a case portion storing an electronic circuit board and a connector portion extending in a direction perpendicular to a board attachment surface of the case portion and incorporating a connector. Interior and exterior opening holes communicate at bottoms via a communication hole. A ventilating hole continuing from the interior of the case portion to the exterior of the connector portion is provided in a solid portion of the housing. The interior opening hole and the communication hole are bent in an L shape and provided to a primary resin mold part forming the housing. The exterior opening hole is provided to a secondary resin mold part of the housing enclosing the primary resin mold part and forming the connector and case portions so as to communicate with one end of the L-shaped communication hole substantially perpendicularly.
Abstract:
An adjustable box extender allows an electrical device to be aligned with a dry wall face. The adjustable box extender includes a fixed ring attached to an electrical box and an adjustable ring adjustably attached to the fixed ring. The adjustable ring includes rectangular top and bottom open back pockets. Rectangular blocks reside inside each pocket. Adjusting screws are held by the adjustable ring with screw heads exposed on the face of the adjustable ring, neither advancing nor retreating with respect to the adjustable ring, and free to rotate with respect to the adjustable ring. The screws engage threads in the blocks and advance and retreat the block out of and into the pockets when the screws are turned, thereby extending the adjustable ring away from the fixed ring to adjust for dry wall thickness. Electrical device screws sandwich the adjustable ring between the electrical device and the fixed ring.
Abstract:
In a seal structure sealing a housing for passing a signal line therethrough, the seal structure includes: a first case; a second case joined to the first case to define the housing, and provided with a recess portion through which the signal line passes at a joining surface joining the first case; a first seal member arranged on a bottom surface of the recess portion, and mounting the signal line; a second seal member including a gelatinous composition arranged to cover the signal line arranged on the first seal member; and a third seal member arranged between the first and second cases, and pushing the second case.
Abstract:
An interface for an enclosure comprises at least one enclosure wall that separates an enclosure interior from an enclosure exterior, an opening in the enclosure wall, and a recess in the enclosure wall. The recess adjoins the opening. A dielectric connector is configured to securely fasten to the enclosure wall. The connector extends into the recess. A seal is situated in the recess between the enclosure wall and the connector. An inserted member is inserted through the opening and surrounded by the seal and the connector. Where the connector is securely fastened to the enclosure wall, the seal is compressed to form a moisture-resistant barrier between the enclosure interior and the enclosure exterior.
Abstract:
A hermetically sealing device includes a conductive seal member (2) which is integrated with a conductive member (1) extending into a casing (3) and seals a space between the conductive member (1) and an inserting section for the conductive member (1) on the casing (3). In the conductive member (1), an electromagnetic wave shield layer (11) is laminated on a cover film which protects the surface of a base film having a circuit pattern, an insulating layer (12) is laminated on the electromagnetic wave shield layer (11), the insulating layer (12) has an opening section (12a) such that a part of the flat section of the electromagnetic wave shield layer (11) is exposed, and the seal member (2) is integrated with the conductive member (1) to cover the opening section (12a) and is brought into contact with the electromagnetic wave shield layer (11) through the opening section (12a).
Abstract:
A security latch device is provided. The device includes a bracket for being attached to a structure and having an outwardly extending flange having a lock pin slot defined therein, a hinged assembly defining a first hinged portion for being attached to the structure and a second hinged portion for being cooperatively engaged with the bracket, the second hinged portion defining a slot for allowing pass-through of the outwardly extending flange of the bracket, and a cup for attaching to the second portion of the hinged assembly and defining a cavity therein and an aperture therethrough that is in general alignment with the lock pin slot of the bracket so that the lock pin is configured for being received in the cavity and extending through the aperture of the cup and the lock pin slot of the bracket for securing the hinged assembly to the bracket.
Abstract:
A method of manufacturing a hermetically sealed electrical connection is provided. The method includes providing an electrically conductive wire, surrounding the electrically conductive wire with a metal layer, providing an insulating layer between the metal layer and the electrically conductive wire, and applying a magnetically-induced compressive force to the metal layer such that the metal layer is compressed against the insulating layer and the insulating layer is compressed against the electrically conductive wire to form a hermetic seal between the metal layer and the conductive wire while maintaining the insulating layer therebetween.
Abstract:
An article for providing a sealing engagement between an electronic component and an encapsulate material is provided, wherein the electronic component extends from the encapsulate material. The article includes a housing including at least one opening for receiving the electronic component. The housing is filled with an encapsulate material such that it provides a seal between the housing and the electrical component. A sealing member is further disposed between the encapsulate material and the housing. A compression member is provided which exerts force onto the sealing member such that the sealing member engages the encapsulate material to provide a sealing engagement therebetween, and thereby provide a secondary seal between the housing and the electronic component.
Abstract:
The invention relates to a seal (5) for a cover (8a, 8b) for an electrical connecting socket (32), with the seal (5) having at least one sealing lip (10) which is provided to make contact with a contact surface (30) when the seal (5) is in the compressed state and thus to seal at least a part of that area of a base body (1) which is covered by the cover (8a, 8b), and wherein the sealing lip (10) has at least one first circumferential rim (25) on its inner face (15), which rim (25) is in each case formed, when the seal (5) is in the unloaded state, by the contact edge of a first (16) and of a second (17) surface element, which each run along the surface of the sealing lip (10), and has at least one second circumferential rim (26) which, when the seal (5) is in the unloaded state, is formed by the contact edge of the second (17) and of the third (18) surface element, which each run along the surface of the sealing lip (10), with the first circumferential rim (25) making contact with the contact surface (30) when the seal (5) is in the compressed state, and bounding the area to be sealed.
Abstract:
An EMI-attenuating air ventilation panel (10, 30) for an electronic device enclosure (100) in accordance with present invention includes an electronically conductive base plate (16) and a plurality of vents (12, 14, 32) defined in the base plate for forming a vents array. Each vent has extruded sidewalls (120, 140, 31) extending from sides therein. In use, the EMI from electronic components within the electronic device enclosure is efficiently attenuated by the sidewalls.