Abstract:
A foldable two seat face-to-face tandem baby carriage includes a pair of wheeled front legs, a pair of wheeled rear legs, and, two pairs of horizontal longitudinal bars extending between the legs. A U-shaped push handle connects pivotally with the rear of the upper bars, and the free ends of the push handle substantially abut the rear legs about midway along the length. Locking means interengage the push handle with the legs in the extended position and bars in the horizontal position to provide a tandem seating construction with seats and backrests facing each other. Folding is effected when the backrests are parallel and an additional locking slot is provided in a support for anchoring the forward backrest in the parallel position. Release of the lock by foot pressure on a transverse bar extending between the rear legs causes the push handle to move downwardly and forwardly and the two legs to collapse and fold towards each other to be substantially parallel with the push handle in the folded position. The two sets of parallel longitudinal bars collapse to be substantially parallel and towards each other in the folded position. A single action permits folding and unfolding of the tandem carriage.
Abstract:
A foldable tandem seat baby carriage including a pair of wheeled front legs, a pair of wheeled rear legs, and, in the operative position, two pairs of horizontal longitudinal bars extending between the legs. A U-shaped push handle connects pivotally with the rear of the upper bars, and the free ends of the push handle substantially abut the rear legs about midway along their length. Locking means interengage the push handle with the rear legs in the extended position and bars in the horizontal position to provide tandem multiple seat construction. Release of the lock by foot pressure on a transverse bar extending between the rear legs causes the push handle to move downwardly and forwardly and the two legs to collapse and fold towards each other to be substantially parallel with the push bar in the folded position. The two pairs of parallel longitudinal bars collapse to be substantially parallel towards each other in the folded position. A single action thereby permits folding of the tandem carriage into the folded position. From a folded position, a similar single action provides unfolding to the extended position.
Abstract:
An optical coupling device includes a substrate loaded with a first optical module and IC drivers, and a second optical module intending to couple with the first optical module. The substrate defines an electrical connection port at one end thereof, the first optical module is located at another end of the substrate. The second optical module includes a first insulating holder and fiber cores embedded in the insulating holder. The first optical module includes a second insulating holders and VCSELS and PDS embedded with the second insulating holder, the fiber cores are directly coupled with VCSELS and PDS to transmit light lines therein.
Abstract:
The present invention is directed to a system and method for visualizing information, e.g., information regarding a sporting event. The method may comprise identifying an event type and generating a plurality of buttons, the plurality of buttons arranged in a button hierarchy. A first level of the button hierarchy comprising one or more first level buttons is displayed with a lens further displayed on a given one of the one or more first level buttons, the lens operative to present first level data for the given first level button.
Abstract:
A slide cover for enclosing a region comprising an active region on a slide is provided. A slide cover and a slide are also provided. A slide cover for enclosing a region comprising an active region on a slide, where the slide is placed in a clamshell slide holder is also provided.
Abstract:
A new method to form an integrated circuit device is achieved. The method comprises providing a substrate. A sacrificial layer is formed overlying the substrate. The sacrificial layer is patterned to form temporary vertical spacers where conductive bonding locations are planned. A conductive layer is deposited overlying the temporary vertical spacers and the substrate. The conductive layer is patterned to form conductive bonding locations overlying the temporary vertical spacers. The temporary vertical spacers are etched away to create voids underlying the conductive bonding locations.
Abstract:
A folding bed frame has a pair of support tubes, two pairs of connection tubes, three pairs of leg sets, a plurality of positioning devices, a plurality of connection bars, a plurality of angle plates, and a plurality of T-shaped plates. Each leg set has a generally S-shaped rod, the generally S-shaped rod having a lower portion, a middle portion and an upper portion, a curved rod disposed on the middle portion of the generally S-shaped rod, a leg rod having an upper end disposed on a bottom of the middle portion of the generally S-shaped rod, and two of the connection bars connected to one of the curved rods, one of the generally S-shaped rods, and one of the leg rods. Two angle plates are connected to one curved rod and one connection tube. Two T-shaped plates are connected to one curved rod and two connection tubes. Each positioning device is disposed in the corresponding connection tube to position the corresponding connection tube and the corresponding support tube.
Abstract:
A circuit component comprising a substrate, and a conductive layer over the substrate, wherein the conductive layer comprises a first portion between a first opening in the conductive layer and a second opening in the conductive layer, wherein the first and second openings are enclosed by the conductive layer, wherein a void is over the substrate and under the conductive layer, wherein the first portion and the first and second openings are over the void.
Abstract:
A new method to form an integrated circuit device is achieved. The method comprises providing a substrate. A sacrificial layer is formed overlying the substrate. The sacrificial layer is patterned to form temporary vertical spacers where conductive bonding locations are planned. A conductive layer is deposited overlying the temporary vertical spacers and the substrate. The conductive layer is patterned to form conductive bonding locations overlying the temporary vertical spacers. The temporary vertical spacers are etched away to create voids underlying the conductive bonding locations.