会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Mold binder material
    • 模具粘合剂材料
    • US4278581A
    • 1981-07-14
    • US946020
    • 1978-09-26
    • Tetsuo NakazawaJunji SakaiSyogo MorimotoTakatoshi TanigawaRyoji TakahashiSeiji Okazaki
    • Tetsuo NakazawaJunji SakaiSyogo MorimotoTakatoshi TanigawaRyoji TakahashiSeiji Okazaki
    • B22C1/16C08L23/08
    • B22C1/162
    • In a mold to be hardened by a CO.sub.2 gas, a mold binder material comprising a combination of polymers containing carboxyl groups, at least one of multi-valent metal oxides and multi-valent metal hydroxides, and resins of polyvinyl alcohol group, and at least one of sodium salt of gluconic acid and polyhydric alcohols or a mold binder material comprising a combination of polymers having carboxyl groups, at least one of multi-valent metal oxides and multi-valent metal hydroxides, and at least one of sodium salt of gluconic acid and polyhydric alcohols is provided. By use of the present binder material, the following various effects can be obtained: (1) easy preparation of mold sand, (2) easy removal of the binder material by water washing even if bodies or clothes are fouled by the binder material, (3) a longer working time of mold sands, (4) a higher mold strength, (5) an improved working atmosphere at shaping of the mold, (6) an improved production efficiency of molds, (7) the desired mold strength being obtained with a smaller amount of CO.sub.2 gas used, etc.
    • 在通过CO 2气体硬化的模具中,包含含有羧基的聚合物,多价金属氧化物和多价金属氢氧化物中的至少一种以及聚乙烯醇基团的树脂的组合的模具粘合剂材料,至少 葡萄糖酸和多元醇的钠盐之一或包含具有羧基的聚合物,多价金属氧化物和多价金属氢氧化物中的至少一种的组合的模具粘合剂材料,以及至少一种葡萄糖酸钠盐 并提供多元醇。 通过使用本发明的粘合剂材料,可以获得以下各种效果:(1)容易地制备模具砂,(2)即使身体或衣服被粘合剂材料弄脏,也可以通过水洗容易地除去粘合剂材料( 3)模具砂的工作时间更长,(4)模具强度更高,(5)模具成型时的工作氛围改善,(6)提高模具生产效率,(7)获得所需的模具强度 使用较少量的二氧化碳气体等
    • 6. 发明申请
    • SCHEDULE DECISION DEVICE, PARALLEL EXECUTION DEVICE, SCHEDULE DECISION METHOD, AND PROGRAM
    • 附表决议装置,并行执行装置,时间表决策方法和方案
    • US20110209153A1
    • 2011-08-25
    • US13063232
    • 2009-08-20
    • Noriaki SuzukiJunji Sakai
    • Noriaki SuzukiJunji Sakai
    • G06F9/46
    • G06F9/5038G06F2209/5017G06F2209/506
    • A schedule decision method acquires dependencies of execution sequences required for a plurality of sub tasks into which a first task has been divided; generates a plurality of sub task structure candidates that satisfy said dependencies and for which a plurality of processing devices execute said plurality of sub tasks; generates a plurality of schedule candidates by further assigning at least one second task to each of said sub task structure candidates; computes an effective degree that represents effectiveness of executions of said first task and said second task for each of said plurality of schedule candidates; and decides a schedule candidate used for the executions of said first task and said second task from said plurality of schedule candidates based on said effective degrees.
    • 时间表决定方法获取第一任务被划分到的多个子任务所需的执行序列的依赖关系; 生成满足所述依赖性的多个子任务结构候选,并且多个处理装置执行所述多个子任务; 通过对每个所述子任务结构候选进一步分配至少一个第二任务来生成多个调度候选; 计算表示对于所述多个日程表候选中的每一个的所述第一任务和所述第二任务的执行的有效性的有效程度; 并且基于所述有效度,从所述多个日程表候选中确定用于执行所述第一任务和所述第二任务的日程表候选。
    • 7. 发明申请
    • MULTIPROCESSOR SYSTEM, AND METHOD FOR SHARED USE OF DEVICES AMONG OPERATING SYSTEMS OF MULTIPROCESSOR SYSTEM
    • 多处理器系统的操作系统中的设备共享使用的多处理器系统和方法
    • US20100325329A1
    • 2010-12-23
    • US12919636
    • 2009-02-24
    • Junji Sakai
    • Junji Sakai
    • G06F13/24G06F9/44
    • G06F9/544G06F9/545
    • With a system in which a plurality of OSs run on a multi-core processor and which is based on a client-server approach where one OS performs device access on behalf of the other OSs, if a device is to be accessed from tasks on the plurality of OSs, there have been problems of a reduction in performance and an increase in design and manufacturing cost due to the necessity of providing proxy servers.In a multiprocessor system with a plurality of OSs 40, 50 running thereon, each of the plurality of OSs has a device driver 41, 51 which accesses devices for shared use among the OSs, wherein the device driver has at least either of a device interface part 45 or a task interface part 44, 54 which performs inter-OS communication at the OS kernel layer, and wherein the device interface part 45 accesses a device 14 to be operated by the device driver and the task interface part receives a device access request from a task running on each OS and returns a device access result to the task.
    • 利用其中多个OS在多核处理器上运行并且基于客户机 - 服务器方法的系统,其中一个OS代表其他OS执行设备访问,如果要从设备上的任务访问设备 多个OS,由于需要提供代理服务器,存在性能下降和设计和制造成本增加的问题。 在其上运行多个OS40,50的多处理器系统中,多个OS中的每一个具有一个设备驱动器41,51,该驱动器访问OS之间共享使用的设备,其中该设备驱动器具有至少一个设备接口 部分45或任务接口部分44,54,其在OS内核层执行OS间通信,并且其中设备接口部分45访问要由设备驱动器操作的设备14,并且任务接口部分接收设备访问请求 从每个操作系统上运行的任务,并将设备访问结果返回给任务。
    • 9. 发明授权
    • Compiler for optimization in generating instruction sequence and
compiling method
    • 编译器,用于优化生成指令序列和编译方法
    • US6113650A
    • 2000-09-05
    • US108387
    • 1998-07-01
    • Junji Sakai
    • Junji Sakai
    • G06F15/16G06F9/45G06F15/80
    • G06F8/4442G06F8/452
    • A compiler has optimization processing part which comprise a loop normalization processing part for normalizing a loop structure in an intermediate language program, a subscript expression analyzing part for analyzing the presence or not of non-aligned access in the normalized loop structure, an SIMD instruction converting part for modifying an intermediate code so to perform computing of the array elements by using an SIMD instruction sequence, and a non-aligned access processing part for recognizing parts which are not word-aligned access in the array elements on a main storage subjected to the SIMD computing and converting a part of the non-aligned access into a combination of wored-aligned access instructions and shift instructions with logical instructions.
    • 编译器具有优化处理部分,其包括用于对中间语言程序中的循环结构进行归一化的循环归一化处理部分,用于分析归一化循环结构中不对准访问的存在与否的下标表达分析部分,SIMD指令转换 用于修改中间代码的部分,以便通过使用SIMD指令序列来执行阵列元素的计算;以及非对齐访问处理部分,用于识别经受所述主体存储器的主存储器上的数组元素中不是字对齐访问的部分 SIMD计算并将一部分非对准访问转换为具有逻辑指令的错位对齐访问指令和移位指令的组合。
    • 10. 发明授权
    • Schedule decision device, parallel execution device, schedule decision method, and program
    • 计划决策装置,并行执行装置,进度决策方法和程序
    • US08881158B2
    • 2014-11-04
    • US13063232
    • 2009-08-20
    • Noriaki SuzukiJunji Sakai
    • Noriaki SuzukiJunji Sakai
    • G06F9/46G06F9/50
    • G06F9/5038G06F2209/5017G06F2209/506
    • A schedule decision method acquires dependencies of execution sequences required for a plurality of sub tasks into which a first task has been divided; generates a plurality of sub task structure candidates that satisfy said dependencies and for which a plurality of processing devices execute said plurality of sub tasks; generates a plurality of schedule candidates by further assigning at least one second task to each of said sub task structure candidates; computes an effective degree that represents effectiveness of executions of said first task and said second task for each of said plurality of schedule candidates; and decides a schedule candidate used for the executions of said first task and said second task from said plurality of schedule candidates based on said effective degrees.
    • 时间表决定方法获取第一任务被划分到的多个子任务所需的执行序列的依赖关系; 生成满足所述依赖性的多个子任务结构候选,并且多个处理装置执行所述多个子任务; 通过对每个所述子任务结构候选进一步分配至少一个第二任务来生成多个调度候选; 计算表示对于所述多个日程表候选中的每一个的所述第一任务和所述第二任务的执行的有效性的有效程度; 并且基于所述有效度,从所述多个日程表候选中确定用于执行所述第一任务和所述第二任务的日程表候选。