Abstract:
An automatic paper feeding system has a paper-grabbing device and paper-separating device, with a paper tray having a front end that can move up and down. A paper-feeding channel is in front of the front end of the paper tray. The paper-grabbing device is installed on the paper tray and moves paper in the paper tray into the paper-feeding channel. The paper-separating device has a paper-separating roller and a paper-separating friction disk which are respectively installed above and below the paper-feeding channel. These elements together permit only a single sheet of paper to move forward. An actuator mechanism installed under the paper-feeding channel lifts up or pulls down the front end of the paper tray and the paper-separating friction disk. Finally, a driving device drives the paper-grabbing device, the paper-separating device and the actuator mechanism. When the driving device is activated, the actuator mechanism lifts up both the front end of the paper tray and the paper-separating friction disk, and paper placed in the paper tray comes into contact with the paper-grabbing device. The paper-grabbing device moves the paper into the paper-feeding channel. The paper-separating friction disk contacts the paper-separating roller, and the paper-separating roller moves a single sheet along the paper-feeding channel.
Abstract:
Disclosed is a high-loading ratchet tool, which has a main body, a braking structure and a working part, wherein the main body forms a first receiving groove, a second receiving groove and a third receiving groove, and the second receiving groove and the third receiving groove are mainly composed of two circular surfaces, and the braking structure is disposed on the main body. The braking structure has a ratchet, and the two ends of the ratchet respectively form a first shaft segment and a second shaft segment. The first shaft segment is disposed in the second receiving groove, and the second shaft segment is disposed in the third receiving groove. According to this, the relative force of the first shaft segment and the second shaft segment and the main body is dispersed, and enhancing the working part restrictions on external torsion.
Abstract:
A quick-release device for screwdriver bit includes a shank having a polygonal hole longitudinally defined in one end thereof and adapted for partially receiving a bit. At least one slot is longitudinally defined in the shank. An annular groove is defined in an inner periphery of the polygonal hole and communicates with the at least one slot, wherein the annular groove is formed with a tapered section toward the first end of the shank. An expandable limit element is received in the annular groove. A sleeve is movably sleeved on the shank. The sleeve has at least one protrusion inwardly extending therefrom and engaged into the at least one slot and abutting against the limit element when removing the bit form the polygonal hole. A stopper is secured on one end of the shank for preventing the sleeve from removing from the shank.
Abstract:
An adjusting device is provided for solar tracker. The adjusting device is used for testing off-axis beam damage of a CPV module. A universal transmission unit is comprised for adjustment. Thus, a CPV module is exactly focused to a predestined position. Furthermore, a focusing point of the CPV module can be biased to the predestined position for testing off-axis beam damage.
Abstract:
Disclosed is an apparatus for measuring temperature coefficients of a concentrator photovoltaic module. The apparatus includes a solar simulator for providing a radiant source, a environment chamber, a concentrator photovoltaic module, a temperature control unit for controlling the temperature of environment chamber, a circuit-voltage curve measurement unit for measuring current-voltage characteristics of a photovoltaic device and a reference cell for measuring the irradiation of the solar simulator.
Abstract:
Disclosed is an apparatus for measuring the strength of solar cells. The apparatus includes a shell, a flexible element, a fastener unit, an inlet valve and a vent valve. The shell is used to cover the solar cells. The flexible element is disposed in the shell, thus dividing the interior of the shell into a first chamber and a second chamber. The fastener unit is used to firmly attach the flexible element to the shell. The inlet valve is in communication with the first chamber. The vent valve is in communication with the first chamber.
Abstract:
Disclosed is an apparatus for measuring the strength of solar cells. The apparatus includes a shell, a flexible element, a fastener unit, an inlet valve and a vent valve. The shell is used to cover the solar cells. The flexible element is disposed in the shell, thus dividing the interior of the shell into a first chamber and a second chamber. The fastener unit is used to firmly attach the flexible element to the shell. The inlet valve is in communication with the first chamber. The vent valve is in communication with the first chamber.
Abstract:
A scanner, including a contact image sensor module and an elasticity-providing element, is provided. When scanning, the elasticity-providing element is capable of avoiding vertical shift of contact image sensor module resulting from mechanical friction or other unexpected. Therefore, the contact image sensor module can retrieve clear images all the time.
Abstract:
An adjusting device provided on a transmission belt to adjust the tension of the transmission belt. The adjusting device includes a housing and a fastener fixed on the housing, the fastener engaging the transmission belt so that there is no relative displacement between the fastener and the transmission belt. A sliding mechanism is disposed on the housing and is capable of sliding in a linear direction on the housing, the sliding mechanism engaging the transmission belt so that there is no relative displacement between the sliding mechanism and the transmission belt. An elastic device is fixed to the housing at a first end and fixed to the sliding mechanism at a second end for maintaining proper tension in the transmission belt.
Abstract:
An ink-jet printing module, positioned in an ink-jet printing mechanism, includes a first side, a second side opposite to the first side, and a guiding bar between the first side and the second side, a print head movable along the guiding bar, a cleaning device, a covering device, and a printing platform. The cleaning device for cleaning the print head is adjacent to an interior of the first side. The covering device for covering the print head is adjacent to an interior of the second side. The printing platform is located at the bottom of the ink-jet printing module and between the cleaning device and the covering device.