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    • 3. 发明授权
    • System for enhanced implementation of add-compare-select (ACS) functions
    • 增强比较选择(ACS)功能实现的系统
    • US5377133A
    • 1994-12-27
    • US866996
    • 1992-04-07
    • Charles M. RiggleNersi Nazari
    • Charles M. RiggleNersi Nazari
    • G06F7/02G06F7/48H03M13/41G06F7/38
    • H03M13/6502G06F7/026G06F7/48H03M13/4107
    • An improved system and method is provided for enhanced add-compare-select (ACS) implementation which is particularly adapted to time-nesting or over-lapping of the time offsets for add and compare operations. The compare operation is implemented as a sequential bottom-up procedure whereby two numerical quantities are compared by first declaring one of the quantities as a "contingent" smaller or larger quantity. Subsequently, the least significant bits LSBs of the quantities are compared and the earlier contingent designation is retained unless the smaller of the compared bits is found to correspond to the quantity not previously designated as the "contingent" smaller quantity, whereupon the "contingent" designation is transferred to the previously un-designated quantity corresponding to the smaller of the compared bits. The process is iterated until all bit pairs in the compared quantities have been examined and the "contingent" smaller quantity remaining at that point is defined to be the "final" smaller quantity and constitutes the result of the overall compare operation. The enhanced ACS implementation compresses the computation time by almost a factor of two compared to traditional ACS implementations using top-down compare operations, without significantly affecting logic complexity of the system and eliminates the need for tie breaking.
    • 提供了一种改进的系统和方法,用于增强加法比较选择(ACS)实现,其特别适用于对于添加和比较操作的时间偏移的时间嵌套或重叠。 比较操作被实现为顺序自下而上的过程,其中通过首先将数量之一声明为“偶然”较小或更大的数量来比较两个数值。 随后,比较数量的最低有效位LSB,并且保留较早的或有名称,除非发现较小的比较位对应于先前未被指定为“或有”较小量的量,因此“或有”指定 被转移到对应于较小比较的比特的先前未指定的数量。 迭代该过程直到已经检查了所比较的数量中的所有位对,并且在该点处剩余的“偶然”较小数量被定义为“最终”较小数量,并且构成整体比较操作的结果。 与使用自顶向下比较操作的传统ACS实现相比,增强的ACS实现将计算时间压缩几乎两倍,而不会显着影响系统的逻辑复杂度,并且不需要断开连接。
    • 4. 发明授权
    • Integral balanced-moment head positioner
    • 积分平衡力矩定位器
    • US5016131A
    • 1991-05-14
    • US343907
    • 1989-04-26
    • Charles M. RigglePeter R. SvendsenJohn D. Read
    • Charles M. RigglePeter R. SvendsenJohn D. Read
    • G11B5/55
    • G11B5/5521
    • A balance-moment head positioner includes a rotor assembly which rotates about a central shaft. The rotor assembly supports at the same axial location a current-carrying coil, arms for the heads, and a counterweight such that the positioner is dynamically balanced with its center of gravity at the center of rotation. The coils are arranged with legs parallel to the central shaft on diametrically opposite sides of the assembly. In addition, the positioner includes magnets and an elongated U-shaped magnetic pole member with ends facing the coils at the same axial location at the arms. Thus the torque developed when current flows through the coil, and a reactive counter-torque developed by the rotating mass coincide, substantially eliminating all torsion in the shaft, and there is no net force on the shaft.
    • 平衡头定位器包括围绕中心轴旋转的转子组件。 转子组件在相同的轴向位置处支撑载流线圈,用于头部的臂和配重,使得定位器在其旋转中心处以其重心动态平衡。 线圈布置成与组件的径向相对的两侧平行于中心轴的腿部布置。 此外,定位器包括磁体和细长的U形磁极构件,其端部在臂的相同轴向位置处面对线圈。 因此,当电流流过线圈时产生的转矩和由旋转质量产生的无功反转扭矩基本上消除了轴中的所有扭矩,并且在轴上没有净力。
    • 7. 发明授权
    • Multiple error detecting and correcting system employing Reed-Solomon
codes
    • 使用Reed-Solomon码的多重错误检测和校正系统
    • US4413339A
    • 1983-11-01
    • US277060
    • 1981-06-24
    • Charles M. RiggleLih-Jyh WengNorman A. Field
    • Charles M. RiggleLih-Jyh WengNorman A. Field
    • H03M13/15G06F11/12
    • H03M13/151
    • An error detecting and correcting system implementing the Reed-Solomon (1023, 1006) code having code words whose symbols are elements in the Galois field GF(2.sup.10) generated by either the primitive polynomial x.sup.10 +x.sup.3 +1 or x.sup.10 +x.sup.7 +1. An original data word is encoded to produce a code word w(x) including a first set of checksum symbols appended thereto. Upon retrieval, the data symbols of the receive code word y(x) are encoded by the same encoder that encodes the original data word to produce a second set of checksum symbols. Both sets of checksum symbols are modulo-two summed to produce a residue R(x) from which error syndromes S.sub.i can be computed and thus enable rapid correction of errors in the received code word y(x). The system also monitors the number of non-zero symbols in the residue R(x) in order to avoid unnecessary computation of error syndromes S.sub.i and other decoding routines, such as when the received code word y(x) is otherwise uncorrectable or when the error exists only in the received checksum symbols, rather than in the data symbols. The distance between code words being (2T+ 2), the error correction routine is bypassed when the number of non-zero symbols in R(x) is less than or equal to T, which indicates that errors only reside in the checksum symbols. When the number of non-zero symbols equals (T+1), the error is uncorrectable. For determining whether a single error exists so that correction can quickly be made, the system also tests whether S.sub.i+1 /S.sub.i is constant for all error syndromes S.sub.i.
    • 实现具有代码字的Reed-Solomon(1023,1006)代码的错误检测和校正系统,其码元是由原始多项式x10 + x3 + 1或x10 + x7 + 1产生的伽罗瓦域GF(210)中的元素。 原始数据字被编码以产生包括附加到其上的第一组校验和符号的码字w(x)。 在检索时,接收码字y(x)的数据符号由编码原始数据字的相同编码器编码,以产生第二组校验和符号。 两组校验和符号被模二相加以产生残差R(x),从中可以计算出错误综合征Si,从而能够快速校正接收到的代码字y(x)中的错误。 该系统还监视残差R(x)中的非零符号的数目,以避免误差综合征Si和其他解码程序的不必要的计算,例如当接收到的代码字y(x)不可校正时或当 错误仅存在于接收到的校验和符号中,而不是数据符号中。 当R(x)中的非零符号数小于或等于T时,代码字之间的距离为(2T + 2),纠错程序被旁路,这表示错误仅驻留在校验和符号中。 当非零符号的数量等于(T + 1)时,该错误是不可校正的。 为了确定是否存在单一误差以便能够快速进行校正,系统还测试Si + 1 / Si对于所有误差综合征Si是否恒定。
    • 9. 发明授权
    • Rotary actuator assembly for disk drive head positioner
    • 用于磁盘驱动器头定位器的旋转执行器组件
    • US4346416A
    • 1982-08-24
    • US126129
    • 1980-02-29
    • Charles M. RiggleJohn D. ReadWilliam B. NoeRichard WinfreyChristopher A. PollardFrank W. Bernett
    • Charles M. RiggleJohn D. ReadWilliam B. NoeRichard WinfreyChristopher A. PollardFrank W. Bernett
    • H02K35/00G11B5/55G11B21/02H01F7/14
    • H01F7/14G11B5/5521
    • A rotary actuator assembly for positioning read/write heads in disk drive mass storage systems. The actuator assembly includes an actuator motor and one or more actuator arms secured thereto. The motor provides rotary motion of the arms, to move the heads. The stator magnet of the motor is an electromagnet wound on an arcuate core; a pair of elongate permanent magnets are attached to the rotor member, for coaction with the stator magnet. The rotor member has a U-shaped cross sectional area in a plane perpendicular to its axis of rotation; the permanent magnets are fixed to the outside, bottom corners of the U and the actuator arms are mounted across the open end of the U. The rotor is of a very small radius, to minimize inertia. The permanent magnets have a flat face facing the stator, with a channel running longitudinally down the middle, to minimize flux density variations in the permanent magnet-coil gap. The rotor balances the arm relative to the rotor's axis. The arms are of a substantially symmetrical tapered truss design, presenting low inertia; each is cantilevered to the rotor by one bolt which is passed through and pulls the arm against the rotors. Additionally, a spirol-type cylindrical spiral spring, received in a slot in the arm, prevents lateral slippage of the arm relative to the rotor. A pair of cantilevered leaf spring crash stops fixed to the stator decelerate the rotor at the ends of its range of travel.
    • 用于将读/写头定位在磁盘驱动器大容量存储系统中的旋转致动器组件。 致动器组件包括致动器马达和固定到其上的一个或多个致动器臂。 电机提供臂的旋转运动,以移动头部。 电动机的定子磁体是缠绕在弧形芯上的电磁体; 一对细长永久磁铁连接到转子构件上,用于与定子磁体共同作用。 转子构件在与其旋转轴线垂直的平面中具有U形横截面积; 永磁体被固定到外部,U的底角和致动器臂跨越U的开口端安装。转子具有非常小的半径,以最小化惯性。 永磁体具有面向定子的平坦面,通道沿中间纵向延伸,以最小化永磁体线圈间隙中的通量密度变化。 转子相对于转子的轴平衡臂。 臂具有基本对称的锥形桁架设计,呈现低惯性; 每个通过一个螺栓悬挂在转子上,螺栓穿过并将臂拉向转子。 此外,容纳在臂中的槽中的螺旋形圆柱形螺旋弹簧防止臂相对于转子的侧向滑动。 固定在定子上的一对悬臂弹簧碰撞止动器在其行程范围的末端减速转子。