Abstract:
Power connector systems that can have an asymmetric insertion-to-extraction force ratio such that they are easy to mate and can reliably remain connected during use. The power connector systems can have a low-profile for use in thin electronic devices.
Abstract:
Power connectors that are easy to connect, have a low profile, and can convey one or more data signals. One example can provide a power connector that is easy to connect by providing an axisymmetric connector receptacle and connector insert. Magnets can be used to help guide a connection between a connector insert and a connector receptacle. Canted springs can be used to provide a tactile response to the insertion of the connector insert into the connector receptacle and to help to secure the connector insert in place when mated with the connector insert. Keying or self-aligning features can be included on either or both the connector insert and the connector receptacle to help guide mating.
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 may be modular, may be reliable and durable, and may provide a high signal quality. Examples may provide modular connector receptacles having a shielded housing around a tongue supporting a number of contacts. They may provide a high signal quality by using printed circuit boards as tongues and for routing signals, and they may be made durable by using through-hole contacting portions soldered to the printed circuit board and mechanically supported by a header.
Abstract:
Connector receptacles that are arranged to avoid inadvertent connections. One example may provide contacts for a first connector receptacle that may be located behind a movable gate. The first connector receptacle may be combined with a second connector receptacle that is user accessible to save space and simplify device assembly. Combining the first connector receptacle and a second connector receptacle may also remove the movable gate from a surface of an electronic device, thereby further preventing inadvertent connections.
Abstract:
Structures, methods, and apparatus for soldering contacts of multiple connector receptacles to pads on a board while also providing high-speed data paths between the multiple connector receptacles and the pads on the board.
Abstract:
Sockets that have a simplified design and are readily manufactured, and also provide easy access for users to change cards while allowing the use of thinner device enclosures.
Abstract:
Connector receptacles that are arranged to avoid inadvertent connections. One example may provide contacts for a first connector receptacle that may be located behind a movable gate. The first connector receptacle may be combined with a second connector receptacle that is user accessible to save space and simplify device assembly. Combining the first connector receptacle and a second connector receptacle may also remove the movable gate from a surface of an electronic device, thereby further preventing inadvertent connections.
Abstract:
Connector receptacles and connector inserts that may be reliable, may readily manufactured, and may provide high signal quality for high speed signals with minimized signal noise, distortion losses, radiation, and interference. An example may provide a reliable connector receptacle by including a plurality of contacts, where each contact includes a first bend angling a contacting portion away from a tongue and a second bend angling a contacting portion towards the tongue, where the second bend is between the first bend and a front of the connector receptacle. Another example may provide a connector receptacle that may be readily manufactured by providing a tongue having tapered lead-ins for receiving contacting portions of contacts during assembly. Another example may provide a connector receptacle that provides isolation among signals by arranging through-hole portions of signal contacts in lines that are separated from each other by intervening through-hole portions of ground contacts.
Abstract:
Combined connector receptacles that provide isolation between individual connector receptacles and have structures arranged to reduce or eliminate damage to through-hole contact portions during insertion of the combined connector into a board.