Abstract:
Connector tongues that may provide a high signal quality or signal integrity to allow high speed data transfers, may be reliably manufactured, and may be durable and have good wear performance. One example may provide a connector tongue having contacts and traces formed on a printed circuit board. Using a printed circuit board for pathways through a connector tongue may provide low impedances for power traces, matched impedances for differential signal pairs, and shielding. This may provide a connector tongue that may provide a high signal quality or signal integrity to allow high speed data transfers. These and other examples may provide a connector tongue that is durable and has good wear performance by including side retention features on each side of the printed circuit board. The side retention features may be metallic, ceramic, or other durable material.
Abstract:
A product-display system for displaying and securing a retail product. The system may include a retainer having a retainer bracket and a retainer body coupled to the retainer bracket. A retaining cable may be coupled to the retainer body at an opening in the retainer body. A fastener that may be unfastened to release the product from the retainer may only be accessed through the opening of the retainer body such that when the retaining cable is coupled to the opening, no fasteners of the retainer may be visible or accessible. The system may also include a display stem for holding the retainer and product. The display stem may include a recess for receiving at least a portion of the retainer body. The retaining cable may extend through the display stem and may simultaneously transmit power and data to a displayed product. The retainer may be returned to and held on top of the display stem using a retaining cable. The retainer may be oriented on top of the display stem in one or more predetermined positions through the use of magnetic forces.
Abstract:
Connector tongues that may provide a high signal quality or signal integrity to allow high speed data transfers, may be reliably manufactured, and may be durable and have good wear performance. One example may provide a connector tongue having contacts and traces formed on a printed circuit board. Using a printed circuit board for pathways through a connector tongue may provide low impedances for power traces, matched impedances for differential signal pairs, and shielding. This may provide a connector tongue that may provide a high signal quality or signal integrity to allow high speed data transfers. These and other examples may provide a connector tongue that is durable and has good wear performance by including side retention features on each side of the printed circuit board. The side retention features may be metallic, ceramic, or other durable material.
Abstract:
Connector receptacles that are simple to assemble, provide good shielding, and consume a reduced or limited amount of space inside a device enclosure. To simplify assembly, these receptacles may include a subassembly that is inserted into a hollow tongue. The subassembly may include a first number of contacts that are insert molded in a first overmold, as well as a second number of contacts that may be inserted into a second overmold. To improve ground shielding, one or more ground contacts at a front of the receptacle may be split to provide shielding in a back of the receptacle. The tongue may further include ground contacts on its sides and top. The contacts may terminate in through-hole portions to reduce the space consumed by the receptacle.
Abstract:
Interconnect devices are described. In some examples, an interconnect device can be aligned in a first plane and can include a printed circuit board having a tongue portion and a pin portion. The pin portion can include a plurality of pins extending away from the printed circuit board. The interconnect device can be configured to electrically couple with a main logic board aligned in a second plane. In particular, the plurality of pins can be inserted into corresponding electrical contact locations within the main logic board to form a biplanar connection. The biplanar connection can be made in way that minimizes signal loss for high speed data transfers.
Abstract:
Electrical connections that provide a highly manufacturable, well-shielded path from a cable to a printed circuit board. One example provides a path that includes a card and a connector. Conductors in a cable may be attached to a card. The card may be shielded with a ground plane on one or more sides and edges. The card may insert into a connector that may be attached to a printed circuit board. The connector may include a shield that may have a top portion that forms electrical contact with a ground plane on a top of a card inserted in the connector. The connector may have an opening for accepting the card that is defined by the top portion of the shield and a plurality of rows of contacts. The rows of contacts may include an outer row of ground contacts, and an inner row of signal contacts.
Abstract:
Connector receptacles that are able to withstand insertion and other forces, are reliable, and are easy to manufacture. In various examples, the connector receptacle tongue or other portions may be reinforced such that they may withstand the insertion forces exerted through a connector insert.
Abstract:
Connector receptacles (124, 200) that provide a right-angle translation, may be readily manufactured, and may have an aesthetically pleasing appearance. One example may provide a connector receptacle having contacts (210, 310, 320, 330, 340) that provide a right-angle translation. Another example may provide a connector receptacle having an aesthetically pleasing appearance. By inserting an injection molded housing (350) into an over-mold (630), the interior of a connector may appear to be formed from a single piece of plastic or other material.
Abstract:
Electrical connections that provide a highly manufacturable, well-shielded path from a cable to a printed circuit board. One example provides a path that includes a card and a connector. Conductors in a cable may be attached to a card. The card may be shielded with a ground plane on one or more sides and edges. The card may insert into a connector that may be attached to a printed circuit board. The connector may include a shield that may have a top portion that forms electrical contact with a ground plane on a top of a card inserted in the connector. The connector may have an opening for accepting the card that is defined by the top portion of the shield and a plurality of rows of contacts. The rows of contacts may include an outer row of ground contacts, and an inner row of signal contacts.