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    • 22. 发明申请
    • Method and device for protection of an mram device against tampering
    • 用于保护混合器件免受篡改的方法和装置
    • US20060179490A1
    • 2006-08-10
    • US10539548
    • 2003-12-15
    • Kars-Michiel LenssenRobert Jochemsen
    • Kars-Michiel LenssenRobert Jochemsen
    • G06F11/00
    • G11C11/15G06K19/07372G11C11/16H01L23/57H01L2924/0002H01L2924/00
    • Data, stored in MRAM-cells (12) should be protected against misuse or read-out by unauthorised persons. The present invention provides an array (10) of MRAM-cells (12) provided with a security device (14) for destroying data stored in the MRAM-cells (12) when they are tampered with. This is achieved by placing a permanent magnet (16) adjacent the MRAM-array (10) in combination with a soft-magnetic flux-closing layer (18). As long as the soft-magnetic layer (18) is present, the magnetic field lines (20) from the permanent magnet (16) are deviated and flow through this soft-magnetic layer (18). When somebody is tampering with the MRAM-array (10), e.g. by means of reverse engineering, and the flux-closing layer (18) is removed, the flux is no longer deviated and affects the nearby MRAM-array (10), thus destroying the data stored in the MRAM-cells (12).
    • 存储在MRAM单元(12)中的数据应受到保护,防止未经授权的人员误用或读取。 本发明提供了一种具有安全装置(14)的MRAM单元(12)的阵列(10),用于当它们被篡改时,破坏存储在MRAM单元(12)中的数据。 这通过将与MRAM阵列(10)相邻的永磁体(16)与软磁通量闭合层(18)组合来实现。 只要存在软磁性层(18),来自永磁体(16)的磁场线(20)就会偏离并流过该软磁层(18)。 当某人篡改MRAM阵列(10)时,例如, 通过逆向工程,并且去除磁通密闭层(18),磁通不再偏离并影响附近的MRAM阵列(10),从而破坏存储在MRAM单元(12)中的数据。
    • 24. 发明授权
    • Method and system for reading data from and writing data to a memory
    • 从数据读取和写入数据到存储器的方法和系统
    • US06986012B2
    • 2006-01-10
    • US10233450
    • 2002-09-03
    • Hong LiNicolaas LambertRobert JochemsenRudi Jozef Marie WijnandsOzcan Mesut
    • Hong LiNicolaas LambertRobert JochemsenRudi Jozef Marie WijnandsOzcan Mesut
    • G06F12/00
    • G11B20/10527G06F3/061G06F3/0619G06F3/0659G06F3/0676G06F11/00
    • The invention relates to a method of writing data to and reading data from a memory (102) by a host. By limiting processing time, time restrictions regarding the data to be processed can be met. However, this is at the expense of data integrity. By setting time limits for a group (300) of multiple processing assignments and dynamic allocation of time, reserved for error recovery and retries, data integrity can be improved, while time limits can still be met. Furthermore, by attaching priorities to the assignments, multiple types of data can be handled in one group of assignments. For example, assignments with real-time requirements can be put in a group with assignments with best effort requirements. In this way, more flexible planning of processing assignments is possible. The invention also relates to a system for writing data to and reading data from a memory.
    • 本发明涉及一种向主机向存储器(102)写入数据并从其读取数据的方法。 通过限制处理时间,可以满足关于要处理的数据的时间限制。 但是,这是牺牲数据完整性。 通过为多个处理分配的组(300)设置时间限制和动态分配时间,保留用于错误恢复和重试,可以提高数据完整性,同时可以满足时间限制。 此外,通过将优先级附加到分配,可以在一组分配中处理多种类型的数据。 例如,具有实时要求的分配可以放在具有尽力而为要求的分配的组中。 以这种方式,可以进行更灵活的处理分配计划。 本发明还涉及一种用于将数据写入和从存储器读取数据的系统。
    • 26. 发明授权
    • Universal memory device having a profile storage unit
    • 具有简档存储单元的通用存储器件
    • US07831790B2
    • 2010-11-09
    • US10549367
    • 2004-03-17
    • Nicolaas LambertAdrianus Johannes Maria DenissenWilhelmus Franciscus Johannes FontijnRobert Jochemsen
    • Nicolaas LambertAdrianus Johannes Maria DenissenWilhelmus Franciscus Johannes FontijnRobert Jochemsen
    • G06F13/10
    • G06F21/78G06F21/79G06F2221/2141G11C7/1045G11C7/24G11C16/22
    • A universal memory device is presented that provides adaptability to existing hardware and software environments. The memory can “mimic” existing memory technology combining the advantages of integrating all memory capacity into one single technology and still providing the implicit protections and access characteristics known from the different existing memory technologies. The memory device comprises a memory having low-latency, rewritable, non-volatile memory cells, a profile storage unit connected with the memory and comprising access information allocated to a set of request information elements (request profile), such that the access information indicates whether an access request to said memory, the access request having the request profile, is to be allowed or rejected, and an access control unit communicating with the profile storage unit and the memory, and adapted to allow or reject an incoming access request in dependence on the access information allocated to the request profile of the access request.
    • 提出了一种提供对现有硬件和软件环境的适应性的通用存储器件。 存储器可以“模拟”现有存储器技术,结合将所有存储器容量集成到一个单一技术中并且仍然提供从不同现有存储器技术已知的隐式保护和访问特性的优点。 存储装置包括具有低等待时间,可重写,非易失性存储器单元的存储器,与存储器连接的简档存储单元,并且包括分配给一组请求信息元素(请求简档)的访问信息,使得访问信息指示 是否允许或拒绝对所述存储器的访问请求,具有请求简档的访问请求,以及与简档存储单元和存储器通信的访问控制单元,并且适于依赖于允许或拒绝传入的访问请求 关于分配给访问请求的请求简档的访问信息。
    • 27. 发明申请
    • Method and apparatus for handling a group of at least one data object
    • 用于处理一组至少一个数据对象的方法和装置
    • US20070150431A1
    • 2007-06-28
    • US10595765
    • 2004-12-01
    • Robert JochemsenJohannes KorstHong Li
    • Robert JochemsenJohannes KorstHong Li
    • G06F17/30
    • H04N21/2393
    • The invention relates to real-time handling of data in more in particular, estimation of time needed to retrieve frames for video rendering, taking fragmentation of frames into account. Especially for data retrieval for trick-play, this is non-trivial, as it is not known on beforehand whether the frames to be retrieved are fragmented. Retrieval of non contiguously fragmented frames takes at least twice as much time as retrieval of a non-fragmented frame. The invention provides various advantageous embodiments, taking into account that when allocation units are substantially larger than the size of frames to be retrieved. An embodiment of the invention provides a method for accurate retrieval time estimation when trick play speed, allocation unit size, frame size and logical data distance between frames to retrieve is known.
    • 本发明尤其涉及对数据的实时处理,尤其涉及检索用于视频呈现的帧所需的时间的估计,考虑到帧的碎片化。 特别是对于特技播放的数据检索,这是不平凡的,因为事先不知道要检索的帧是否被分段。 非连续分片帧的检索至少需要检索非碎片帧的两倍。 本发明提供了各种有利的实施例,考虑到当分配单元实质上大于要检索的帧的大小时。 本发明的一个实施例提供了一种当特技播放速度,分配单元大小,帧大小以及要检索的帧之间的逻辑数据距离是已知的时,精确检索时间估计的方法。
    • 29. 发明申请
    • Method and apparatus for grouping content items
    • 用于对内容项进行分组的方法和装置
    • US20060206495A1
    • 2006-09-14
    • US10551969
    • 2004-03-29
    • Johan Sebastiaan Van GageldonkRobert Jochemsen
    • Johan Sebastiaan Van GageldonkRobert Jochemsen
    • G06F17/00
    • G11B27/28G06F16/48G11B27/105
    • The invention relates to a system for grouping content items. A consumer equipment or computer (100) comprises a grouping principle processor (109) that determines a content item grouping principle used by a user to group content items such as music files, video files or email. The content item grouping principle is determined in response to a grouping category scheme, such as a folder structure used to store content items. The apparatus (100) further comprises a classification characteristic processor (113) for determining a classification characteristic of a new content item. For example the classification characteristic may relate to an artist of a music file and the content item grouping principle may comprise a list of folders which comprise music files associated with specific artists. The apparatus (100) additionally comprises a grouping processor (115) for grouping the first content item with other content items by comparing the determined classification characteristic with the information of the content item grouping principle.
    • 本发明涉及一种用于对内容项进行分组的系统。 消费者设备或计算机(100)包括分组原理处理器(109),其确定用户对内容项目(诸如音乐文件,视频文件或电子邮件)进行分组所使用的内容项分组原理。 响应于诸如用于存储内容项目的文件夹结构的分组类别方案来确定内容项分组原理。 所述设备(100)还包括用于确定新内容项目的分类特征的分类特征处理器(113)。 例如,分类特征可以涉及音乐文件的艺术家,并且内容项目分组原理可以包括包括与特定艺术家相关联的音乐文件的文件夹的列表。 装置(100)还包括分组处理器(115),用于通过将所确定的分类特征与内容项分组原理的信息进行比较来将第一内容项目与其他内容项目分组。
    • 30. 发明申请
    • Integrity control for data stored in a non-volatile memory
    • 对存储在非易失性存储器中的数据的完整性控制
    • US20060155882A1
    • 2006-07-13
    • US10559174
    • 2004-05-26
    • Robert JochemsenNicolaas LambertWilhelmus Franciscus FontijnAdrianus Denissen
    • Robert JochemsenNicolaas LambertWilhelmus Franciscus FontijnAdrianus Denissen
    • G06F3/00
    • G06F11/1068G11C11/1675G11C11/1695G11C29/08G11C2029/4402
    • The present invention relates to a write controller (10) for a memory with a plurality of non-volatile storage cells, a read controller for a memory with a plurality of nonvolatile storage cells, to a combined write/read controller, to a solid state device comprising a memory with a plurality of non-volatile storage cells, a programmer device for writing a binary code to a non-volatile memory, to a method for writing data comprising at least one input bit to a memory having non-volatile storage cells, and to a method for controlling the integrity of data comprising at least one input bit stored in non-volatile storage cells of a memory. The invention provides a reliable detection of changes that have occurred to the content of a non-volatile memory. The basic concept of the present invention is to extend information stored in a non-volatile memory by at least one checking bit. The checking bit is allocated to one code bit, or to each of a plurality of code bits. The allocation is preferably reflected in an allocation of memory cells storing the input and code bits.
    • 本发明涉及一种用于具有多个非易失性存储单元的存储器的写入控制器(10),具有多个非易失性存储单元的存储器的读取控制器,组合的写/读控制器,固态 包括具有多个非易失性存储单元的存储器,用于将二进制代码写入非易失性存储器的编程器装置,用于将包括至少一个输入位的数据写入到具有非易失性存储单元的存储器的方法 以及用于控制数据的完整性的方法,包括存储在存储器的非易失性存储单元中的至少一个输入位。 本发明提供了对非易失性存储器的内容所发生的变化的可靠检测。 本发明的基本概念是通过至少一个检查位来扩展存储在非易失性存储器中的信息。 检查位分配给一个码位,或分配给多个码位中的每一个。 该分配优选地反映在存储输入和码位的存储单元的分配中。