Abstract:
PROBLEM TO BE SOLVED: To accurately insert plural bearings by supplying bearing of corresponding numbers to plural supply tubes, positioning a carriage having a bearing attaching part on a carriage supporting structure having a shaft gap groove, providing a supporting surface on the carriage supporting structure, and pressing and adapting an adjusted bearing. SOLUTION: A penta-prism 1002 is assembled in a carriage main body, and loaded in a penta-prism insertion guide 1001. A penta-prism 1002 is supported by a vacuum chuck 1006, quality is controlled by a penta-prism allowable limit rail 1016, and it is guaranteed that the prism is not so large physically. During a period of heat variation, the penta-prism lifts up a penta-prism in which a platform 1008 moving through phase deterioration is held by the vacuum chuck 1006 in the carriage main body held on a rail guide 952. The carriage main body is held by a carriage main body tightener 1010.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A METHOD AND APPARATUS FOR MANUFACTURING INFORMATION STORAGE DEVICES. THE APPARATUS INCLUDES A BEARING INSERTION DEVICE, A LENS INSERTION DEVICE, A COARSE COIL GLUING TOOL, A SPRING GLUING TOOL, A DEVICE FOR GLUING POLE PIECES, A PENTAPRISM INSERTION AND INSPECTION TOOL, A CONSTANTS AND TRANSFERS TEST, AN OPTICS MODULE ALIGNMENT DEVICE, WEDGE, MICROPRISM AND BEAMSPLITTER INSERTION DEVICES, A READ CHANNEL ALIGNMENT TEST, A MASS BALANCE ATTACHMENT DEVISE, A POSITION SENSOR ALIGNMENT TOOL, A DEVICE FOR THE ATTACHMENT OF FOCUS AND RADIAL COILS, A QUALITY CONTROL TEST FOR TESTING AN OPTICAL STORAGE DEVICE PRIOR TO INSERTION OF THE OBJECTIVE LENS, AND A SERVO SYSTEM TEST. THE METHOD INCLUDES STEPS FOR MANUFACTURING INFORMATION STORAGE DEVICES WITH INCREASED QUALITY AND EFFICIENCY.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.
Abstract:
A method and apparatus for manufacturing information storage devices. The apparatus includes a bearing insertion device, a lens insertion device, a coarse coil gluing tool, a spring gluing tool, a device for gluing pole pieces, a pentaprism insertion and inspection tool, a constants and transfers test, an optics module alignment device, wedge, microprism and beamsplitter insertion devices, a read channel alignment test, a mass balance attachment devise, a position sensor alignment tool, a device for the attachment of focus and radial coils, a quality control test for testing an optical storage device prior to insertion of the objective lens, and a servo system test. The method includes steps for manufacturing information storage devices with increased quality and efficiency.