Abstract:
A clamping mechanism automatically adaptable to change of thickness of printed circuit board includes: a frame body having two parallel rail seats; two clamping rail members respectively mounted on the rail seats for clamping a printed circuit board, each clamping rail member including a first clamping rail and a second clamping rail spaced from each other by a clamping gap; and two adjustment units for adjusting the clamping gap of the clamping rail members. Each the adjustment unit includes: a support section mounted on the frame body to provide a support face; a connection section, one end of the connection section being affixed to the first clamping rail, the other end of the connection section being positioned above the support face; and a floating section positioned between the connection section and the support section and supported on the support face to apply a resilient support force to the connection section.
Abstract:
The present invention discloses a piston device which is disposed in a cylinder. The cylinder has a chamber including a bore and an inner wall. The piston device comprises a piston body and at least an annular ring. The piston body has a top side and a bottom side, the diameter of the piston body is smaller than the bore, and either one of the top side or the bottom side has a convex portion. The annular ring is clamped to the top side or the bottom side by engaging said convex portion, and the annular ring has a diameter slightly larger than the diameter of the piston body. While said piston therein moves reciprocally at which the axial direction of the cylinder, the annular ring slides against the inner wall but the piston body has no contact with said inner wall.
Abstract:
An automatic adjustment apparatus comprises a pulley having a spindle hole, an one-way bearing disposed in the spindle hole, a two-way bearing disposed in the spindle hole and located at a side of the one-way bearing, a sleeve and at least one constraint component. The sleeve is disposed in the one-way bearing and the two-way bearing, and a constraint portion is concaved at a side of the sleeve. The constraint component is mounted on the constraint portion for constraining the displacement of the pulley moving at the axial direction of the sleeve. Therefore, the pulley can glide at the sleeve so as to prevent inclination of the installing position of a belt at the pulley which results in rapid abrasion in belt and bad driving safety.
Abstract:
The present invention provides an electron amplification plate placed between a first substrate and a second substrate of a field emission display device. The electron amplification plate comprises at least two insulating layers for electrical insulation; and at least one conductive electrode layer having plural apertures, wherein the conductive electrode layer is sandwiched between the insulating layers. The surface of the inner wall of the apertures is coated with an electron-amplifying material for multiplying the quantity of electrons as the surface is impacted. The inner wall of each aperture comprises an upper concave wall and a lower concave wall, and the lower concave wall is used for collecting electrons, and the upper concave wall is used for focusing electrons. Thereby, the electron beam emitted from the emitters can be effectively amplified, and color purity of the field emission display device is high.
Abstract:
An undeformable transmission mechanism comprises a table, a transmission member, a rotating shaft and a supporting member. The rotating shaft, the transmission member and the supporting member are assembled on the table, and the supporting member is disposed at one end of the rotating shaft. When the transmission member rotates the rotating shaft, the rotating shaft will produce a deviation force, and the supporting member is provided for reducing the deviation force, so as to prolong the life of the rotating shaft and to reduce the cost of maintaining and replacing the rotating shaft.
Abstract:
The present invention provides an electron amplification plate placed between a first substrate and a second substrate of a field emission display device. The electron amplification plate comprises at least two insulating layers for electrical insulation; and at least one conductive electrode layer having plural apertures, wherein the conductive electrode layer is sandwiched between the insulating layers. The surface of the inner wall of the apertures is coated with an electron-amplifying material for multiplying the quantity of electrons as the surface is impacted. The inner wall of each aperture comprises an upper concave wall and a lower concave wall, and the lower concave wall is used for collecting electrons, and the upper concave wall is used for focusing electrons. Thereby, the electron beam emitted from the emitters can be effectively amplified, and color purity of the field emission display device is high.
Abstract:
An air-bearing slide platform having a positioning module includes: at least one slide guide, a carrier mounted on the slide guide, at least one first air bearing provided between an upper surface of the slide guide and the carrier, and the positioning module provided on the slide platform. The air-bearing slide platform is characterized in that the positioning module includes a pair of ramps formed at two lower sides of the slide guide, and at least one second air bearing provided between two extended lower sides of the carrier and the ramps.
Abstract:
A piston device and its manufacturing method are disclosed. The piston device comprises a piston body having at least one annular groove on the side wall of the piston body, and at least one piston ring made of flexible material and mounted in the annular groove. The outer diameter of the piston ring mounted on in the annular groove is larger than the diameter of the piston body, so that the piston ring contacts with the inner wall but the piston body has no contact with the inner wall while the piston device moves reciprocally at the axial direction of the cylinder.
Abstract:
A gantry linear detecting device comprises a base, a gantry and a detecting system. The gantry is located on the base. The detecting system includes a first detector and a second detector. The first detector is slidably disposed on the gantry by a linear motor and a linear guideway. The second detector is slidably disposed on the base by an active linear module and a passive linear module. The linear motor and the active linear module move synchronously, thus improving the detecting precision.