Abstract:
A method for preventing tungsten contact plug loss problem after a backside pressure fault problem in a deposition chamber is provided. In the method, first deposited by a silane soak step and a tungsten nucleation layer is subsequently deposited, a heat treating step by a rapid thermal process is carried out at a temperature of at least 600° C. for a time period of at least 10 seconds. The heat treating step significantly improves the uniform distribution of the silicon prenucleation layer and substantially prevents the formation of any tungsten silicide layers such that during an etchback process, the dry etchant utilized does not remove a tungsten silicide layer at a much faster rate and thereby does not result in a plug loss problem.
Abstract:
A computer input device, capable of operating in a mouse mode and in a touch mode, includes a body, a control unit and a switch. The body includes a first housing, a second housing and a hinge interconnecting the first and second housings. The body is movable between a flat position where the first and second housings are positioned side by side in a line, and an inverted-V position where the first and second housings co-define an included angle. The control unit provides a first input function which enables the input device to operate in the mouse mode and a second input function which enables the input device to operate in the touch mode. The switch is configured to have the control unit perform the first input function when the body is in the flat position and perform the second input function when the body is in the inverted-V position.
Abstract:
A keyboard including a case, a first fan, an air deflector and a keycap module is provided. The case includes a first side and a second side. The first side has an opening, the second side is disposed at a side of the first side and has at least one hole. The first fan is disposed at the second side and located between the first side and the second side. The air deflector is disposed between the first side and the second side of the case and corresponding to the hole of the second side and the opening of the first side. The keycap module is disposed at the opening of the first side.
Abstract:
A method of manufacturing a self-aligned stylus with high sphericity includes the steps of: forming a polymeric layer on a substrate; placing a sphere on the polymeric layer; softening the polymeric layer to make a portion of the sphere sink into the polymeric layer; forming a specific light absorbing layer on the polymeric layer; illuminating the sphere and the specific light absorbing layer with specific light such that the specific light is focused by the sphere to expose the polymeric layer to form an exposed portion and an unexposed portion; removing the specific light absorbing layer; and baking the polymeric layer and then removing the unexposed portion. A self-aligned stylus with high sphericity is also disclosed.
Abstract:
A keyboard including a case, a first fan, an air deflector and a keycap module is provided. The case includes a first side and a second side. The first side has an opening, the second side is disposed at a side of the first side and has at least one hole. The first fan is disposed at the second side and located between the first side and the second side. The air deflector is disposed between the first side and the second side of the case and corresponding to the hole of the second side and the opening of the first side. The keycap module is disposed at the opening of the first side.
Abstract:
A notebook computer including a bottom case and a top panel is provided, wherein the top panel includes a first supporting element, a top panel body and a second supporting element. The first supporting element has a first side and a second side, wherein the first side pivots to the bottom case, and the top panel body pivots to the first side of the first supporting element. The top panel body has multiple sets of first fixing structure. The second supporting element has a third side and a fourth side, wherein the third side pivots to the second side of the first supporting element. The fourth side has a set of second fixing structures, which is inserted into one set of the first fixing structures.
Abstract:
A fuser member comprising: a substrate comprising an outer substrate surface; and an outer layer comprising compatible first and second fluorothermoplastics disposed over the outer substrate surface, wherein the first fluorothermoplastic is a crosslinked polymer and the second fluorothermoplastic is a linear polymer and wherein the compatible first and second fluorothermoplastics form a semi-interpenetrating polymer network (SIPN). The SIPN provides a relatively compliant layer in comparison to use of the crosslinked polymer alone, and avoids the need for sintering of a layer formed from the linear polymer alone. The SIPN may be formed from an aqueous coated composition of polyperfluoroalkoxy-tetrafluoroethylene (PFA) and THV Fluoroplastics (FLC) polymers along with a soluble organic primary amine for crosslinking the THV Fluoroplastics (FLC).
Abstract:
An apparatus and method of removing carrier from an article are provided. The apparatus includes a heater positioned to direct heat toward an article travel path. The heat has an emission spectrum with a peak emission wavelength and the carrier having an absorption spectrum with a peak absorption wavelength. The peak emission wavelength of the heat substantially corresponds to the peak absorption wavelength of the carrier.
Abstract:
A wheel has a metallic hub with a circumferential surface. A first layer formed of a compliant material surrounds the outer circumferential surface, and a second layer surrounds the first layer. The compliant material has a modulus of elasticity of between about 1 MPa and about 10,000 MPa, and the second layer has a modulus of elasticity between about 10,000 and about 210,000 MPa. The first layer provides compliance and the second layer provides impact resistance to inhibit wear of the wheel thereby minimizing production of metallic contaminants.
Abstract:
A thermal printer is adapted to prevent crease formation in a dye transfer area of a dye donor web that can cause line artifacts to be printed on a dye receiver during a dye transfer from the dye transfer area to the dye receiver in a dye transfer printer.