Abstract:
Embodiments of a bypass system for a multi-cell power supply are provided. An aspect includes a plurality of power cells, each of the plurality of power cells comprising a respective bypass device comprising one or more contactors. Another aspect includes a central control. Yet another aspect includes a fiber optic ring comprising a plurality of fiber optic links that connect the respective bypass device in each of the plurality of power cells and the central control in series, wherein the fiber optic ring starts and ends at the central control, and the central control is configured to communicate with the one or more contactors in the plurality of bypass devices via the fiber optic ring.
Abstract:
A magnetically latching solenoid and method of determining a position of a plunger contained therein. The solenoid includes a frame, a plunger configured to move through the frame between a first stable position and a second stable position, and at least one magnet mounted near the center of the frame such that a first and second magnetic fields are produced by the magnet through the frame and the plunger, wherein each of the first and second magnetic fields drive a separate portion of the frame into magnetic saturation depending on the position of the plunger. The solenoid also includes a first and second sensors mounted on the frame at different locations configured to detect and measure the first and second magnetic fields. The detected and measured magnetic fields are then used to determine the position of the plunger in the solenoid.
Abstract:
An electrical contact apparatus is disclosed. The contact apparatus has first contact member having a first contact, a movable contact member received adjacent to the first contact member, the movable contact member having an opposing contact positioned adjacent the first contact, and an armature operable to produce an electromagnetic closing force to cause the movable contact member to remain closed upon application of current through the first contact member, movable contact member. Contact assemblies and methods of operating the contact apparatus are disclosed, as are other aspects.
Abstract:
A three-phase, multi-winding includes a core, the core including a hub and an outer shell around a perimeter of the hub. wherein the hub and the outer shell are in a fixed position with respect to each other. The core also includes multiple slots. In addition to the core, the multi-winding device includes a primary winding positioned in at least two of the slots; and multiple spatially distributed secondary windings, wherein at least one of the secondary windings is positioned proximate the primary winding in at least one of the two slots.
Abstract:
A system for cooling a multi-cell power supply, the system including a water pump, a water-to-air heat exchanger in fluid communication with the water pump, and a supply water manifold in fluid connection with the water-to-air-heat exchanger. The system further includes a plurality of power cells in fluid communication with the supply water manifold via one or more water hoses, and a multi-winding device in fluid communication with the plurality of power cells via at least one water-cooled bus, wherein the at least one water cooled bus electrically connects the power cells to secondary windings of the multi-winding device. The water-cooled buses provide both electrical current as well as cooling fluid to each winding of the multi-winding device, thereby eliminating a need for separate cooling and power connections.
Abstract:
A system for bypassing a power cell of a power supply, the system including a multi-winding device having a primary winding and a plurality of three-phase secondary windings, a plurality of power cells, wherein each power cell is connected to a different three-phase secondary winding of the multi-winding device, and a bypass device connected to first and second input terminals of at least one of the power cells and to first and second output terminals of the at least one of the power cells.
Abstract:
Embodiments include a liquid cooled electronic device including a compartment configured to enclose an electronic module therein. The compartment includes a stationary cooling plate disposed on an interior portion of the compartment, the stationary cooling plate comprising a liquid cooling system configured to remove heat from the stationary cooling plate and a plurality of electrical connectors configured to connect to the electronic module. The electronic module includes a mobile cooling plate configured to intimately fit with the stationary cooling plate when the plurality of electrical connectors are connected to the electronic device module. The heat generated by the electronic module is removed by the mobile cooling plate and the stationary cooling plate.