Abstract:
Die Erfindung betrifft ein Anbaugehäuse (1) zur Aufnahme von Steckereinsätzen (2). Dabei sind in einem Innenraum (5) des Anbaugehäuses (1) erste Befestigungsmittel (6) sowie zweite Befestigungsmittel (7) vorgesehen. Die Befestigungsmittel (6, 7) sind im Innenraum (5) des Anbaugehäuses (1) beweglich angeordnet und zur Aufnahme der Steckereinsätze (2) vorgesehen. Dabei sind die ersten Befestigungsmittel (6) und die zweiten Befestigungsmittel (7) in einer Montageebene (M.1, M.2) ausrichtbar, welche parallel zu einer Steckebene (S) des Anbaugehäuses (1) ausgerichtet ist.
Abstract:
A shroud (18, 118) configured to connect a leadframe (12, 112, 212) to a battery system for a hybrid motor vehicle is provided. The shroud is removably attachable to the leadframe. The shroud has at least one shroud alignment feature (20, 20A, 20B, 220A, 220B) and is removably attached to the leadframe in a predetermined orientation. The shroud alignment feature is aligned with a complimentary leadframe alignment feature (22A, 22B, 122A, 122B, 222A, 222B). The shroud may include a hollow cylindrical portion (28) and at least one connecting feature (40, 240) configured to attach the shroud to the leadframe. The shroud may be provided as part of a connector system (10, 110, 210) that includes the leadframe. In this case, the leadframe is configured to provide an electrical and mechanical connection between a power inverter (14) and the battery system of the electric motor.
Abstract:
Certain aspects relate to systems and techniques for flexibly and movably mounting a charge port in front-facing portions of an electric vehicle. When not in use the charge port can be concealed by the body of the vehicle. In a pre-charging or charging mode the charge port can be automatically moved to a charging position where it is exposed through the vehicle body and thus available for coupling with a charging connector at a charging station. Further, the charge port can be flexibly mounted to the vehicle so as to absorb impact forces in one or more directions. The charge port can include oscillation dampening mechanisms for electrical cables coupled to the charge port.
Abstract:
A replaceable unit for an electrophotographic image forming device according to one example includes a housing having a toner reservoir. An electrical connector mounted on the housing is movable between a retracted position and an operative position. The electrical connector includes an electrical contact for contacting a corresponding electrical contact in the image forming device. The electrical contact is electrically connected to processing circuitry on the housing. In the retracted position, the electrical connector is tucked into a portion of the housing. In the operative position, the electrical connector is exposed to permit the electrical contact to contact the corresponding electrical contact in the image forming device. A linkage is operatively connected to the electrical connector and includes an engagement surface accessible on an exterior of the housing to receive an actuation force. Movement of the actuation linkage moves the electrical connector between the retracted position and the operative position.
Abstract:
Die Erfindung betrifft eine Kupplungsvorrichtung für eine lösbare Steckerverbindung zwischen einer Schleppantenne und einem Wasserfahrzeug, mit einem ersten Steckerelement und einem zweiten Steckerelement zum Kuppeln von Schleppantenne und Wasserfahrzeug, einem Verriegelungssystem, über die das eine Steckerelement der ersten und zweiten Steckerelemente zwischen einer Entriegelungsstellung und einer Verriegelungsstellung überführbar ist und wobei das Verriegelungssystem das eine Steckerelement über ein erstes und ein zweites Riegelelement in die Verriegelungsstellung beaufschlagt.
Abstract translation:
本发明涉及一种连接装置用于导航使用R A Lö一个尾随天线,和一个水车辆,其包括第一连接器元件和用于连接后天线和水车辆中,锁定系统OVER所述第二连接器元件之间的可释放的插塞连接 在解锁位置和锁定位置导航用途之间的第一和第二连接器元件中的所述一个连接器元件是YOURSELFSOFTWAREUPDAT E,并且其中,所述锁定系统包括插头元件导航用途; Berf导航使用通过第一和在锁定位置的第二锁定元件作用时 p>
Abstract:
A connector system includes a plug assembly that has a front connector mounted to a circuit board. The connecter has two wafers that each support a row of terminals and uses shims and pegs to precisely control the spatial relationship of the two wafers to the circuit board. The wafers need not be directly contacting the circuit board and the terminals can have tails that can be positioned slightly above the circuit board and connector to pads on the circuit board via solder connections. The connector system is optimized so as to enable support of 25 Gbps data rates.