Abstract:
An RFID tag (20) has an electrically non-conductive substrate (22) with a mounting surface (24), an electrically conductive member (26), a conductive bridge (28), a dielectric strip (30), and a semiconductor device (32). The member (26) is mounted to the surface (24) and has an inner section (38), an outer section (40) and a connecting section (42). The section (38) has windings (44) and a free end (46) extending from one of the windings. The section (40) substantially surrounds the section (38) and has a winding (50) and a free end (52) that extends from a portion (54) of the winding (50) towards the section (38). A segment (56) of the section (42) is disposed between the ends (46, 52). The bridge (28) spans from the end (46) to the end (52). With the strip (30) disposed between the bridge (28) and the member (26), capacitive sections are thereby formed along the strip (30).
Abstract:
The hydraulic tool (10) having a frame (12) and a movable adapter (18). The frame (12) defines a workspace (48) with an anvil adapter (16) at one end and a substantially flat face guide surface (32) on one side of the workspace (48). The movable adapter (18) is used for working a piece in the workspace (48) against the anvil adapter (16). The movable adapter (18) is movably mounted to the frame (12) to move in the workspace (48) relative to the frame (12) along an axis of translation (A). The movable adapter (18) has a substantially flat face seating surface (98) seated against the guide surface of the frame (32). When the movable adapter (18) is moved, the seating surface (98) of the movable adapter (18) rides upon the guide surface (32). The seating surface (98) and guide surface (32) interface with each other for maintaining the movable adapter (18) in a predetermined orientation relative to the frame (12).
Abstract:
A mid-plane is disclosed. The mid-plane includes a first printed circuit board having a plurality of plated vias adapted to receive tails attached to a first connector and having a plurality of unplated clearance holes adapted to receive tails attached to a second connector. The second printed circuit board has a plurality of plated vias adapted to receive tails attached to the second connector and has a plurality of unplated clearance adapted to receive tails attached to the first connector.
Abstract:
A fore-end portion (7) of a locking arm (4) provided on a rear holder (1) is inserted in a hole portion (25) of a housing body (21), and the locking arm (4) is supported at both ends in a bridging manner. The housing body (21) enters into a hood portion (44) of a mating housing (41) and connection terminals (32, 42) are fitted to each other for electrical connection. A locking claw (5) provided on a locking arm (4) is once bent downward and then restored after it passed under a locking claw (43) of the mating housing (41), and engaged for locking with the locking claw (43). The locking prevents unforeseen separation between the housing body (21) and the mating housing (41).
Abstract:
An electrical connector including a housing, electrical contacts and a connector position assurance (CPA) member. The housing has deflectable cantilevered mating connector latch arms. The latch arms are movable between a latched position and an unlatched position. The CPA member is movably mounted to the housing between an open position and a closed position. The CPA member includes a first section and a deflectable second section. The second section includes a cam surface for contacting a housing of the mating electrical connector and being deflected as the CPA member is moved from the open position to the closed position and an interference portion adapted to contact the latch arms when the latch arms are not in their latched position such that the CPA member is blocked from reaching the closed position unless the latch arms are in their latched positions.
Abstract:
A ball grid array connector (10) having a housing (14) with a major surface with a first portion (44) and a second portion (46) forming a stepped portion. The first portion and second portion have cavities (48a, 48b) for accommodating first and second contacts (18a, 18b), each with a solder tail (28) with a fusible element (50) for mounting on a substrate (12).