| Patent application number | Description | Published |
| 20090128915 | Antiglare film and coating composition for making the same - The present invention relates to an antiglare film, which comprises a cured transparent resin layer and a type of transparent hollow particles. The hollow particles are distributed in the transparent resin layer and partially exposed therefrom. The ratio of the inner diameter to the outer diameter of the hollow particle is within a range of 0.1 to 0.9, and the ratio of the outer diameter of the hollow particle to the thickness of the transparent resin layer is within a range of 0.1 5 to 1. The hollow particle and the transparent resin layer have different refractive indexes. The hollow particles are partially exposed from the surface of the transparent resin layer, leading the antiglare film to have excellent antiglare properties. | 05-21-2009 |
| 20100027126 | ANTIGLARE FILM AND METHOD OF FORMING THE SAME - The present invention provides an antiglare film, which includes a transparent resin layer, a plurality of transparent hollow particles and a plurality of transparent solid particles. The hollow particles and the solid particles are distributed in the transparent resin layer, while the hollow particles are partially exposed thereon. The refraction index of the hollow particles and the refraction index of the solid particles are different from the refraction index of the transparent resin layer. Applying both the solid particles and the hollow particles mixed together can lead the antiglare film to have an excellent antiglare property, a high contrast and a great clarity. | 02-04-2010 |
| 20100076110 | REACTIVE POLYMER AND HARD COATING COMPOSITION - Disclosed is a reactive polymer of the following representative formula: R | 03-25-2010 |
| 20100104851 | OPTICAL FILM AND METHOD OF MAKING THE SAME - A low reflective, anti-static and anti-fouling optical film, and a forming method thereof are disclosed. The forming method includes mixing an alkoxy silane, a fluoride-modified alkoxy silane, a conductive material and a pores formation agent to form a coating composition. Subsequently, the coating composition is solidified to form an optical film. The optical film includes a silicon oxide compound with fluorine element, the conductive material mixed therein, and a plurality of three-dimensional mesoporous. Therefore, the optical film of the present invention can simultaneously provide a low reflection, an anti-static effect and an anti-fouling effect. | 04-29-2010 |
| Patent application number | Description | Published |
| 20100275420 | Tie Down Apparatus - A tie down apparatus comprising a base, a biasing element, a torsion spring, and a shaft, wherein the base is die cast or plastic rejection molded and includes two side plates disposed on two sides thereof respectively, and between one ends of the side plates is mounted an engaging pillar, between another ends of the side plates is fixed a retaining member, between middle sections of the side plates is secured an abutting shank, the biasing element matches with the torsion spring and is axially fixed between the two side plates of the base by using the shaft, and is die cast or plastic rejection molded, and includes a contacting portion having a pressing piece extending from one side thereof, thereby cooling quickly after die casting or plastic rejection molding process to lower production time and cost, and enabling to decrease production material and cost. | 11-04-2010 |
| 20100287999 | Locking Structure for Helmets - A locking structure for helmets comprises a body including an arcuate groove disposed on a bottom surface thereof, an arcuate engaging member fixed on a motorcycle, the body further including a receiving hole formed on one side thereof for receiving a lock core, one distal end of the lock core being locked to a fixing member, wherein the fixing member includes a foot extending from one side thereof and a slot to receive a resilient element, the body further includes a coupling projection and an inserting bore which are pivotally connected with a U-shaped hook member by using a shaft, the groove of the body includes an elastic piece positioned therein to correspond to the inserting bore. | 11-18-2010 |
| Patent application number | Description | Published |
| 20080278831 | Focus Driving Apparatus With Impact Resistance - A focus driving apparatus with impact resistance is provided, including a lens carrier seat, a fixed base, a hanging element set, and a shake-resistant element set. The lens carrier seat is for carrying a lens. The hanging element set further includes a plurality of metal wires. The shake-resistant element set includes at least a soft resilient plate. One end of the metal wires of hanging element set is fixed to the lens carrier seat, and the other end penetrates the holes on the soft and resilient plate on the fixed base and is fixed to the shake-resistant element set. The shake-resistant element set can absorb the external impact force by deformation to provide protection to the hanging element set and lens carrier seat. | 11-13-2008 |
| 20090077576 | Apparatus For Clamping Large And Small Disks - An apparatus for clamping both large and small disks is provided, including a disk tray inside a base, an upper case and two clamping mechanisms above the disk tray and the base. Each clamping mechanism includes a slider and a gripper structure. The gripper structure further includes a first gripper, a second gripper, and a resilient element located between the first and the second grippers. The second gripper includes a first belt-ring and a second belt-ring. When the disk is loaded, under the force of the resilient element, the first belt-ring and the second belt-ring hold the disk onto the disk tray firmly. When the first gripper moves to a specific position of the groove on the upper case, the first gripper causes the second gripper to rotate so that the resilient element stops to exert the force. Hence, the first belt-ring and the second belt-ring rotate upwards so as to complete the loading process. On the other hand, to reject a disk, the resilient element re-exerts force on the first gripper to cause the first belt-ring and the second belt-ring rotate downwards to hold the disk until the disk is completely rejected to complete the rejecting process. | 03-19-2009 |
| 20090230786 | Linear Power-Generating Apparatus - A linear power-generating apparatus is provided, including a column element having permanent magnetic field, and a coil set surrounding the column element. The column element includes a plurality of permanent magnetic segments and a plurality of yokes placed between two neighboring permanent magnetic segments. The magnetic segments are arranged in the manner that the same polar ends are facing each other. The coil set includes a plurality of coils. The winding directions of two neighboring coils are opposite. The linear power-generating apparatus of the present invention can induce electromotive force in the coil set to generate power by using the linear back-and-forth relative motion between the column element and the coil set. In the constant speed relative motion, the linear power-generating apparatus of the present invention can generate a near-constant direct current (DC) voltage. | 09-17-2009 |
| 20110051587 | Structure For Optical Pickup Head - An optical pickup head is provided, including a laser diode set, an optical element set and an optical signal detector. The laser diode set is a laser light source capable of emitting single wavelength, two wavelengths or three wavelengths laser lights. Optical element set includes a low reflectivity beam-splitter and an objective lens. The low reflectivity beam-splitter has an average reflectivity ranging from 10% to 30%. After reflected twice by low reflectivity beam-splitter, the light fed back from recording medium to the laser diode set is reduced to avoid laser noise problem. Moreover, with the optical signal detector having a tilt θ ranging from 3° to 15° to optical axis, the optical signal detector can directly reflect the incident laser light into a different direction so that the reflected light will reduce the feedback light to the laser diode set. | 03-03-2011 |