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    • 1. 发明授权
    • Method for manufacturing optical module
    • 光学模块制造方法
    • US07442562B2
    • 2008-10-28
    • US11476202
    • 2006-06-28
    • Masahiro OnishiHeng Wang
    • Masahiro OnishiHeng Wang
    • H01L21/00
    • G02B6/4201G02B6/4251H01L2224/48091H01L2224/48227H01L2924/00014
    • The invention relates to an optical module manufacturing method for bonding a can portion having an optical semiconductor element and a barrel portion of the optical module together, comprising the steps of: a bonding step for bonding a joint surface of the can portion and a joint surface of the barrel portion by thermoset adhesive, so as to form an interior room defined by the bonded can portion and barrel portion (S1); a receiving step for receiving the bonded can portion and the barrel portion into a hermetical container (S2); a curing step for heating interior of the hermetical container so as to solidify the thermoset adhesive dispensed on the joint surfaces (S3); a cooling step for reducing a temperature inside the hermetical container after the thermoset adhesive is cured (S4); and a step of taking the can portion and the barrel portion out from the hermetical container. The resin on the joint portion of the can portion and the barrel portion can be cured at a high temperature under condition that the can portion and the barrel portion are sealed together.
    • 本发明涉及一种用于将具有光学半导体元件和光学模块的镜筒部分的罐部分接合在一起的光学模块制造方法,包括以下步骤:将罐部分的接合表面和接合表面 通过热固性粘合剂形成筒部,以形成由结合的罐部分和筒部分(S1)限定的内部空间; 接收步骤,用于将接合的罐部分和筒部分接收到密封容器(S 2)中; 用于加热所述密封容器内部以固化分配在所述接合表面上的热固性粘合剂(S 3)的固化步骤; 在热固性粘合剂固化之后降低密封容器内的温度的冷却步骤(S 4); 以及将罐部和桶部从气密容器中取出的步骤。 可以在罐部和筒部密封在一起的条件下,在罐部和桶部的接合部分上的树脂在高温下固化。
    • 2. 发明申请
    • Method for manufacturing optical module
    • 光学模块制造方法
    • US20070007182A1
    • 2007-01-11
    • US11476202
    • 2006-06-28
    • Masahiro OnishiHeng Wang
    • Masahiro OnishiHeng Wang
    • B07C5/02
    • G02B6/4201G02B6/4251H01L2224/48091H01L2224/48227H01L2924/00014
    • The invention relates to an optical module manufacturing method for bonding a can portion having an optical semiconductor element and a barrel portion of the optical module together, comprising the steps of: a bonding step for bonding a joint surface of the can portion and a joint surface of the barrel portion by thermoset adhesive, so as to form an interior room defined by the bonded can portion and barrel portion (S1); a receiving step for receiving the bonded can portion and the barrel portion into a hermetical container (S2); a curing step for heating interior of the hermetical container so as to solidify the thermoset adhesive dispensed on the joint surfaces (S3); a cooling step for reducing a temperature inside the hermetical container after the thermoset adhesive is cured (S4); and a step of taking the can portion and the barrel portion out from the hermetical container. The resin on the joint portion of the can portion and the barrel portion can be cured at a high temperature under condition that the can portion and the barrel portion are sealed together.
    • 本发明涉及一种用于将具有光学半导体元件和光学模块的镜筒部分的罐部分接合在一起的光学模块制造方法,包括以下步骤:将罐部分的接合表面和接合表面 通过热固性粘合剂形成筒部,以形成由接合的罐部分和筒部分(S1)限定的内部空间; 接收步骤,用于将接合的罐部分和筒体部分接收到密封容器中(S2); 用于加热所述密封容器的内部以固化分配在所述接合表面上的热固性粘合剂的固化步骤(S3); 冷却步骤,用于在热固性粘合剂固化之后降低密封容器内的温度(S4); 以及将罐部和桶部从气密容器中取出的步骤。 可以在罐部和筒部密封在一起的条件下,在罐部和桶部的接合部分上的树脂在高温下固化。
    • 4. 发明申请
    • CAPACITY PLANNING MANAGEMENT
    • 能力规划管理
    • US20140019186A1
    • 2014-01-16
    • US13545704
    • 2012-07-10
    • Wen-Syan LiGufei SunHeng Wang
    • Wen-Syan LiGufei SunHeng Wang
    • G06Q10/06
    • G06Q10/0631
    • In accordance with aspects of the disclosure, systems and methods are provided for capacity planning management by generating a capacity expansion plan for a plurality of production resources used to produce one or more products relative to one or more time intervals. The systems and methods may include evaluating production patterns for each production resource to determine a production capacity within each time interval, evaluating budget patterns for each production resource to determine a production cash flow within each time interval, generating one or more potential capacity expansion forecasting schemes for each production resource and production budget based on the production patterns for each production resource and the budget patterns for each production budget, and generating the capacity expansion plan within each time interval based on the one or more potential capacity expansion forecasting schemes for each production resource and production budget.
    • 根据本公开的方面,通过为用于生产一个或多个产品相对于一个或多个时间间隔的多个生产资源生成容量扩展计划,为容量规划管理提供了系统和方法。 系统和方法可以包括评估每个生产资源的生产模式以在每个时间间隔内确定生产能力,评估每个生产资源的预算模式以确定每个时间间隔内的生产现金流,生成一个或多个潜在的容量扩展预测方案 根据每个生产资源的生产模式和每个生产预算的预算模式对每个生产资源和生产预算进行生产,并根据每个生产资源的一个或多个潜在产能扩张预测方案,在每个时间间隔内生成能力扩张计划 和生产预算。
    • 6. 发明申请
    • DEMAND-DRIVEN COLLABORATIVE SCHEDULING FOR JUST-IN-TIME MANUFACTURING
    • 需求驱动的时间制造协调调度
    • US20130066455A1
    • 2013-03-14
    • US13229199
    • 2011-09-09
    • Wen-Syan LiHeng WangGufei Sun
    • Wen-Syan LiHeng WangGufei Sun
    • G06F19/00G06N3/12
    • G06Q10/087
    • A schedule manager may include a chromosome comparator configured to compare a plurality of schedule chromosomes, each schedule chromosome including a potential schedule of use of manufacturing resources within one or more time intervals in producing one or more items, and configured to compare each of the plurality of schedule chromosomes relative to constraints, to thereby output a selected subset of the plurality of schedule chromosomes. The schedule manager may include a chromosome combiner configured to combine schedule chromosomes of the selected subset to obtain a next generation of schedule chromosomes for output to the chromosome comparator and for subsequent comparison therewith of the next generation of schedule chromosomes with respect to the constraints, as part of an evolutionary loop of the plurality of schedule chromosomes between the chromosome comparator and the chromosome combiner, and a scheduler configured to select a selected schedule chromosome therefrom.
    • 调度管理器可以包括被配置为比较多个调度染色体的染色体比较器,每个调度染色体包括在生成一个或多个项目的一个或多个时间间隔内使用制造资源的潜在时间表,并且被配置为比较多个 相对于约束调度染色体,从而输出多个调度染色体的选定子集。 调度管理器可以包括染色体组合器,其被配置为组合所选子集的调度染色体以获得用于输出到染色体比较器的下一代调度染色体,并且用于随后与下一代相关的约束进行比较,作为 在染色体比较器和染色体组合器之间的多个调度染色体的进化环的一部分,以及被配置为从其选择所选择的调度染色体的调度器。
    • 10. 发明授权
    • Capacity expansion planning with production resource management
    • 生产资源管理能力扩张规划
    • US09230226B2
    • 2016-01-05
    • US13545704
    • 2012-07-10
    • Wen-Syan LiGufei SunHeng Wang
    • Wen-Syan LiGufei SunHeng Wang
    • G06Q10/06
    • G06Q10/0631
    • In accordance with aspects of the disclosure, systems and methods are provided for capacity planning management by generating a capacity expansion plan for a plurality of production resources used to produce one or more products relative to one or more time intervals. The systems and methods may include evaluating production patterns for each production resource to determine a production capacity within each time interval, evaluating budget patterns for each production resource to determine a production cash flow within each time interval, generating one or more potential capacity expansion forecasting schemes for each production resource and production budget based on the production patterns for each production resource and the budget patterns for each production budget, and generating the capacity expansion plan within each time interval based on the one or more potential capacity expansion forecasting schemes for each production resource and production budget.
    • 根据本公开的方面,通过为用于生产一个或多个产品相对于一个或多个时间间隔的多个生产资源生成容量扩展计划,为容量规划管理提供了系统和方法。 系统和方法可以包括评估每个生产资源的生产模式以在每个时间间隔内确定生产能力,评估每个生产资源的预算模式以确定每个时间间隔内的生产现金流,生成一个或多个潜在的容量扩展预测方案 根据每个生产资源的生产模式和每个生产预算的预算模式对每个生产资源和生产预算进行生产,并根据每个生产资源的一个或多个潜在产能扩张预测方案,在每个时间间隔内生成能力扩张计划 和生产预算。