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    • 4. 发明授权
    • Processor architecture for exact pointer identification
    • 用于精确指针识别的处理器架构
    • US08473722B2
    • 2013-06-25
    • US10563122
    • 2004-07-01
    • Matthias Meyer
    • Matthias Meyer
    • G06F9/34
    • G06F9/355G06F9/30003G06F9/30134G06F12/0253G06F2212/17
    • The present invention relates to an object-based processor architecture which allows exact pointer identification by strictly separating pointers and data from one another in the memory and in the processor registers. The access to the memory is performed exclusively via pointers which refer to objects. An object contains separate areas for pointers and data and an attribute field for describing the length of the two areas. Both the pointers in the pointer registers and also the pointers in the pointer areas of the objects directly contain the address of the objects to which they refer. The suggested processor architecture allows the integration of automatic garbage collection, which may be implemented completely or partially in hardware. A real-time capable garbage collection may be implemented especially efficiently through hardware support.
    • 本发明涉及一种基于对象的处理器架构,其通过在存储器和处理器寄存器中严格地分离指针和数据来允许精确的指针识别。 通过引用对象的指针来完成对存储器的访问。 对象包含用于指针和数据的单独区域,以及用于描述两个区域的长度的属性字段。 指针寄存器中的指针和对象的指针区域中的指针都直接包含它们引用的对象的地址。 建议的处理器架构允许集成自动垃圾收集,这可以完全或部分地在硬件中实现。 可以通过硬件支持特别有效地实现实时能力的垃圾收集。
    • 5. 发明授权
    • Microwave autoclave
    • 微波炉
    • US08008608B2
    • 2011-08-30
    • US11584046
    • 2006-10-20
    • Matthias MeyerBurkhard BinderMartin Graeber
    • Matthias MeyerBurkhard BinderMartin Graeber
    • H05B6/70H05B6/64
    • B01J3/03B01J19/126B01J2219/0879H05B6/72H05B6/80H05B2206/044
    • An autoclave for pressure and temperature treatment of objects includes a pressure container having a pressure resistant wall which encloses a pressure chamber for receiving the objects to be treated, the pressure chamber having a free inner diameter of at least 1.5 m; and a heat source for heating the objects received in the pressure chamber, the heat source including a plurality of microwave sources irradiating microwave radiation, which are arranged outside the pressure container. The microwave sources are distributed over the pressure resistant wall at an areal density of at least 4 microwave sources per square meter surface area of the pressure resistant wall; and the microwave radiation irradiated by the microwave sources is coupled through the pressure resistant wall into the pressure chamber.
    • 用于物体的压力和温度处理的高压釜包括具有耐压壁的压力容器,其包围用于接收被处理物体的压力室,压力室具有至少1.5m的自由内径; 以及用于加热在压力室中接收的物体的热源,所述热源包括布置在压力容器外部的多个微波辐射微波源。 微波源以耐压壁每平方米表面积至少4微波源的面密度分布在耐压壁上; 并且由微波源照射的微波辐射通过耐压壁耦合到压力室中。
    • 6. 发明授权
    • Frequency converter with fan cooling
    • 变频器带风扇冷却
    • US07345561B2
    • 2008-03-18
    • US10540712
    • 2003-11-20
    • Matthias MeyerChristian Glanz
    • Matthias MeyerChristian Glanz
    • H01F27/08
    • H05K7/20918H01F27/025H01F27/085
    • The invention relates to an air-cooled frequency converter, especially for construction site equipment, such as internal and external vibrators which are operated at a higher frequency than the existing electricity supply, said frequency converter comprising a housing and preferably being connected to a separation transformer for producing a protective extra-low voltage. Said housing is divided into two sections, that is into a converter receiving element surrounding a plate chamber, and a housing section connected to said receiving element and used as a cooling region, inside which cooling air channels and a fan for conveying the cooling air through the cooling air channels are arranged. The configuration of the housing in the cooling region and optionally the embodiment of a transformer chamber are created by annular profiled elements which are cross-cut as desired, surround each other in an interspaced manner, and are coaxially arranged in relation to each other.
    • 本发明涉及一种风冷变频器,特别是用于施工现场设备,例如以比现有电力更高的频率工作的内部和外部振动器,所述变频器包括壳体,并且优选地连接到分离变压器 用于产生保护性超低电压。 所述壳体被分为两部分,即分为围绕板室的转换器接收元件和连接到所述接收元件并用作冷却区域的壳体部分,冷却空气通道和用于输送冷却空气的风扇 设置冷却风道。 在冷却区域和可选的变压器室的实施例中的壳体的构造是通过根据需要横切的环形轮廓元件产生的,并且以相互间隔的方式彼此围绕并且彼此相同地布置。