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    • 1. 发明授权
    • System and procedure for protection against the analytical espionage of secret information
    • 防范秘密信息分析间谍的制度和程序
    • US06711685B1
    • 2004-03-23
    • US09327883
    • 1999-06-08
    • Albert SchaalHelmut ScherzerMichael Schilling
    • Albert SchaalHelmut ScherzerMichael Schilling
    • G06F1760
    • G07F7/082G06F21/602G06F21/6209G06F2221/2101G06F2221/2105G06F2221/2153G06Q20/341G06Q20/367G06Q20/3672G07F7/1008G07F7/1083
    • The invention presented describes a system and procedure for protecting against the espionage of secret information. A counter is allocated to each secret piece of information, in particular codes. The counter counts the number of uses of the secret information. In this, the counter is set to a starting value. Each use of the secret data element increases the counter state by a defined value. If the counter state reaches a maximum value, the use of the secret data element will be blocked. The blocking of the secret information can, however, be avoided if a defined event occurs before the maximum value of the counter is reached which automatically resets the counter state to its starting value. Any technical, economic or organisational condition can be defined as an event. Particular advantages of the invention presented are that each code can have its own counter allocated to it. In this way, different numbers of uses can be established for each code with regard to its function. As a chip card can contain any number of codes for the most widely differing applications, the block is limited solely to the application affected. The use of the chip card is not therefore blocked as a whole. The events can be easily adapted to the widest range of security and user requirements of the respective application area.
    • 本发明描述了一种防止秘密信息的间谍活动的系统和程序。 每个秘密信息分配计数器,特别是代码。 计数器对秘密信息的使用次数进行计数。 在这里,计数器设置为起始值。 秘密数据元素的每次使用都将计数器状态增加一个定义的值。 如果计数器状态达到最大值,则秘密数据元素的使用将被阻止。 但是,如果定义的事件发生在达到计数器的最大值之前会自动将计数器状态重置为其起始值,则可以避免秘密信息的阻塞。 任何技术,经济或组织条件都可以定义为事件。 所呈现的本发明的特别优点是每个代码可以具有分配给它的自己的计数器。 以这种方式,可以针对其功能针对每个代码建立不同的使用数量。 由于芯片卡可以包含用于最广泛不同应用的任何数量的代码,所以该块仅限于受影响的应用。 因此,芯片卡的使用不因此被整体阻止。 这些事件可以轻松地适应相应应用领域的最广泛的安全性和用户要求。
    • 2. 发明授权
    • Memory defragmentation in chipcards
    • 芯片内存碎片整理
    • US07167964B1
    • 2007-01-23
    • US09533731
    • 2000-03-23
    • Helmut Scherzer
    • Helmut Scherzer
    • G06F12/00
    • G06F12/023
    • The basic idea comprised of the present invention is to provide two sets of descriptors having each at least three descriptors and each set is used in an alternating manner for defining the location of source and target of the copy operations which are to be performed during the defragmentation procedure. The defragmentation procedure is performed as a sequence of copy operations on copy chunks, i.e., a certain number of sequentially arranged bytes to be copied being part of a valid data block to be copied. In each of said copy operations in said sequence the values which are assigned to said descriptors Change. According to a characterizing feature of the present invention during the whole sequence of copy operations comprised of the defragmentation process one of the two sets of descriptors holds information which is usable for restoring the contents of a copy chunk in case of a power break during a copy operation on said copy chunk. Thus, defragmenting is a safe procedure, and data integrity is assured.
    • 由本发明构成的基本思想是提供两组具有每个至少三个描述符的描述符,并且以交替方式使用每组描述符,用于定义将在碎片整理期间执行的复制操作的源和目标的位置 程序。 碎片整理过程作为复制块的复制操作的顺序执行,即要复制的一定数量的顺序排列的字节是要复制的有效数据块的一部分。 在所述序列中的每个所述复制操作中,分配给所述描述符的值更改。 根据本发明的整个特征,在由碎片整理处理组成的整个复制操作序列期间,两组描述符之一保存了在拷贝期间断电的情况下恢复复制块的内容的信息 对所述复制块进行操作。 因此,碎片整理是一个安全的过程,数据完整性得到保证。
    • 3. 发明申请
    • RELEASING A SERVICE ON AN ELECTRONIC APPLIANCE
    • 发布电子设备的服务
    • US20110091039A1
    • 2011-04-21
    • US12997693
    • 2009-06-22
    • Stephan SpitzHelmut ScherzerThorsten UrhahnHans Borgs
    • Stephan SpitzHelmut ScherzerThorsten UrhahnHans Borgs
    • H04L9/30G06F15/16G06F15/177
    • G06F21/575G06F21/33H04L9/321H04L9/3263H04L2209/80
    • There is proposed a method for enabling a service made available by an electronic device (100), wherein a registration request (114) is generated (S3) by the device (100) and sent (S7) to the registration server (300). The registration server (300) thereupon generates (S8) a registration confirmation (305) and sends (S9) it to the device (100), where the service is finally enabled by receiving and saving (S10) of the registration confirmation (305) on the device (100). In this connection, a trustworthy authority (200) sets up (S6, S12) a timeframe on the registration server (300) such that the registration server (300) sends (S9) a registration confirmation (305) only for a registration request (114) received within the timeframe, and the device (100) sends (S7) the registration request (114) to the registration server (300) within the timeframe.
    • 提出了一种用于启用由电子设备(100)可用的​​服务的方法,其中由设备(100)生成(S3)注册请求(S11)并将其发送(S7)到注册服务器(300)。 注册服务器(300)随后生成(S8)注册确认(305),并且通过接收并保存(S10)注册确认(305)来向服务终端(100)发送(S9)(S9) 在设备(100)上。 在这方面,可信赖的机构(200)在注册服务器(300)上设置(S6,S12)时间帧,使得注册服务器(300)仅向注册请求(S9)发送(S9)注册确认(305) 114),并且设备(100)在该时间段内向注册服务器(300)发送(S7)注册请求(114)。
    • 6. 发明授权
    • Method and apparatus for decoding F2F signals read from a magnetic data
carrier
    • 用于解码从磁数据载体读取的F2F信号的方法和装置
    • US5434400A
    • 1995-07-18
    • US48098
    • 1993-04-15
    • Helmut Scherzer
    • Helmut Scherzer
    • G11B20/14G06K7/016H03M5/12G06K7/08G11B5/09G11B20/16
    • H03M5/12G06K7/0166
    • A method for decoding F2F signals as well as a device for decoding F2F signals read from a magnetic data carrier is provided. The signal read from the card by a magnetic reading head is amplified by an amplifier with a very high gain, discriminated in a discrimination and integration station to receive a binary looking signal. Out of this digitized signal in a reference time acquisition station a start-up time value is set and a phase is estimated to determine the correct end of a bit cell in a phase estimating station. In a symbol correlation station the received binary signal is correlated with all possible symbol combinations based on the estimated phase to create a correct bit stream. This bit stream might be processed further by a bit recovery station providing a corrected bit stream ready for interpretation.
    • 提供一种解码F2F信号的方法以及用于解码从磁数据载体读取的F2F信号的装置。 通过磁性读取头从卡读取的信号由具有非常高增益的放大器放大,在鉴别和积分台中被辨别以接收二进制查看信号。 在参考时间获取站中的该数字化信号之外,设置启动时间值,并且估计相位以确定相位估计站中位单元的正确结束。 在符号相关站中,所接收的二进制信号基于所估计的相位与所有可能的符号组合相关以产生正确的比特流。 该比特流可以由位恢复站进一步处理,提供准备好解释的校正比特流。
    • 7. 发明授权
    • Releasing a service on an electronic appliance
    • 在电子设备上发布服务
    • US08625797B2
    • 2014-01-07
    • US12997693
    • 2009-06-22
    • Stephan SpitzHelmut ScherzerThorsten UrhahnHans Borgs
    • Stephan SpitzHelmut ScherzerThorsten UrhahnHans Borgs
    • H04L9/30G06F15/16G06F15/177
    • G06F21/575G06F21/33H04L9/321H04L9/3263H04L2209/80
    • There is proposed a method for enabling a service made available by an electronic device (100), wherein a registration request (114) is generated (S3) by the device (100) and sent (S7) to the registration server (300). The registration server (300) thereupon generates (S8) a registration confirmation (305) and sends (S9) it to the device (100), where the service is finally enabled by receiving and saving (S10) of the registration confirmation (305) on the device (100). In this connection, a trustworthy authority (200) sets up (S6, S12) a timeframe on the registration server (300) such that the registration server (300) sends (S9) a registration confirmation (305) only for a registration request (114) received within the timeframe, and the device (100) sends (S7) the registration request (114) to the registration server (300) within the timeframe.
    • 提出了一种用于启用由电子设备(100)可用的​​服务的方法,其中由设备(100)生成(S3)注册请求(S11)并将其发送(S7)到注册服务器(300)。 注册服务器(300)随后生成(S8)注册确认(305),并且通过接收并保存(S10)注册确认(305)来向服务终端(100)发送(S9)(S9) 在设备(100)上。 在这方面,可信赖的机构(200)在注册服务器(300)上设置(S6,S12)时间帧,使得注册服务器(300)仅向注册请求(S9)发送(S9)注册确认(305) 114),并且设备(100)在该时间段内向注册服务器(300)发送(S7)注册请求(114)。
    • 9. 发明授权
    • Method and system of conserving battery power in a mobile computer system
    • 在移动计算机系统中节省电池电量的方法和系统
    • US08423702B2
    • 2013-04-16
    • US11298158
    • 2005-12-09
    • Helmut Scherzer
    • Helmut Scherzer
    • G06F12/00
    • G06F1/3203G06F1/3268G06F12/0866Y02D10/154
    • A method, system, and computer-usable medium for operating a mobile computer system. In response to receiving a write request, a control system attempts to write data associated with said write request to a non-volatile memory cache coupled to said hard disk drive. In response to determining the non-volatile memory cache cannot accommodate the data, the control system starts the hard disk drive. The control system writes contents of the non-volatile memory cache to the hard disk drive, after starting the hard disk drive. In response to determining the non-volatile memory cache can accommodate said data, the control system writes the data to the non-volatile memory cache.
    • 一种用于操作移动计算机系统的方法,系统和计算机可用介质。 响应于接收到写请求,控制系统尝试将与所述写请求相关联的数据写入耦合到所述硬盘驱动器的非易失性存储器高速缓存。 响应确定非易失性存储器缓存不能容纳数据,控制系统启动硬盘驱动器。 启动硬盘驱动器后,控制系统将非易失性存储器高速缓存的内容写入硬盘驱动器。 响应于确定非易失性存储器高速缓存可以容纳所述数据,控制系统将数据写入非易失性存储器高速缓存。