Abstract:
A device housing is provided. The device housing includes a base device housing, a decorative pattern area, and a plurality of metallic balls. The base device housing defines a plurality of receiving holes. The decorative pattern area is formed in the exterior surface of the base device housing. The metallic balls are positioned in the receiving holes and located inside or outside the decorative pattern area. A method of manufacturing the device housing is also provided.
Abstract:
An automatic tea maker comprises a cover body, a tube base, and a bottom base, wherein the cover body is covered on the tube base, which is eccentrically disposed on the bottom base. A partition is disposed on an interior of the tube base to partition an independent drainage area. A vent disposed on the partition communicates with the tube base. Each of water exits, provided with a stopping members, are disposed on a base surface of the tube base. A baffle extends from an internal periphery of the bottom base with push rods placed on the baffle protruding outward from the water exits. The push rods placed on the baffle extend corresponding to the stopping members of the water exits, is able to push the stopping members away from the water exits, when the tube base is slanted corresponding to the bottom base.
Abstract:
An automatic tea maker comprises a cover body, a tube base, and a bottom base, wherein the cover body is covered on the tube base, which is eccentrically disposed on the bottom base. A partition is disposed on an interior of the tube base to partition an independent drainage area. A vent disposed on the partition communicates with the tube base. Each of water exits, provided with a stopping members, are disposed on a base surface of the tube base. A baffle extends from an internal periphery of the bottom base with push rods placed on the baffle protruding outward from the water exits. The push rods placed on the baffle extend corresponding to the stopping members of the water exits, is able to push the stopping members away from the water exits, when the tube base is slanted corresponding to the bottom base.
Abstract:
Integrated circuits having a large number of transmission gate logic stages have been found to draw a large current surge on power-up. This is due to the floating input node of complementary inverters causing current to flow briefly before clock pulses arrive. The present invention provides a DC voltage on the gates of the pass transistors until the system clock pulses arrive, thereby eliminating the floating node. An optional periodic window may be generated to examine the system clock after power-up, to detect a loss of clock condition.