Abstract:
A cap assembly includes a valve seat member having a tubular outer wall adapted to be mounted on an open top end of a container, and an inner tube disposed in the outer wall and having an axis parallel to an axis of the outer wall. The inner tube has a bottom end formed with an aperture. The outer wall is formed with a radial outlet. The valve seat member further has an L-shaped fluid conduit with an open bottom end that is adapted to communicate an interior of the container with the radial outlet. A stem member extends upwardly through the inner tube via the aperture and has a bottom end provided with a valve piece. The stem member is biased such that the valve piece seals the open bottom end of the fluid conduit. A cap body has a top portion formed with an opening, and a peripheral portion mounted on a top end of the outer wall of the valve seat member. A press member has an operating portion extending upwardly and slidably through the opening and a pressing portion abutting against a top end of the stem member. The stem member is movable downwardly such that the valve piece is moved away from the open bottom end of the fluid conduit when the operating portion of the press member is pressed downwardly.
Abstract:
A system and method for providing a very short channel memory cell having a double diffuse implant junction is disclosed. The system and method comprise the sequential steps of providing a junction implant, providing a spacer, and providing a double diffuse implant. Because the double diffuse implant is provided after the spacer, the double diffuse implant does not extend as far under the gate of a memory cell after processing. Thus, the memory cell has a graded junction that does not substantially shorten the effective length of the channel. The memory cell can, therefore, function even as the size of the memory cell is decreased. In addition, the thermal cycling of the double diffuse implant may be decoupled from that of the junction implant. This is achieved without complicating processing. Consequently, overall system performance is enhanced.
Abstract:
A sealing mechanism for mounting to one window around a periphery, or the window sash, thereof and being movable to make contact with a surface of another window to create a seal or insulation between the two windows. The sealing mechanism comprises a frame having a first gasket and a second gasket attached on the frame for cooperating with side surfaces on said two windows. A driving mechanism which comprises a rack feed gear and a rack bar movable in a direction substantially perpendicular to the direction of movement of the frame by the feed gear which is provided on one window to convert a linear movement of the rack bar into a backward or forward movement of the frame so as to effect a seal or insulation between an inner side and an outer side defined by the window set by bringing the first gasket in contact with the side surface of said one window and simultaneously bringing the second gasket in contact with the side surface of said another window.