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    • 43. 发明申请
    • ELECTRIC MOTOR AND ROTOR THEREFOR
    • 电动马达及其转子
    • US20100013361A1
    • 2010-01-21
    • US12506527
    • 2009-07-21
    • Jian ZHAOYong LiChang Lin Jin
    • Jian ZHAOYong LiChang Lin Jin
    • H02K23/38H02K23/04H02K23/26
    • H02K23/30H02K23/38
    • An electric motor comprises: a rotor; a stator; and brush gear. The rotor has a shaft, a rotor core and a commutator fitted to the shaft. The rotor core has 5n teeth, n being a positive integer. Two coils are wound in each tooth with each coil being wound about a single tooth and having two ends. The commutator has 10n bars forming a brush contact surface. The stator comprises a yoke and a plurality of permanent magnets installed at an inner surface of the yoke and facing the rotor core. The brush gear has a plurality of carbon brushes arranged to make sliding contact with the brush contact surface of the commutator. The ends of the two coils wound in each tooth are respectively connected to two pairs of adjacent bars and the center line between one pair of the two pairs of adjacent bars and the center line between the other pair of the two pairs of adjacent bars are diametrically opposed.
    • 电动机包括:转子; 定子 和刷齿轮。 转子具有轴,转子芯和安装在轴上的换向器。 转子芯具有5n个齿,n为正整数。 在每个齿中缠绕两个线圈,每个线圈围绕单个齿缠绕并且具有两个端部。 整流子具有形成电刷接触面的10n条。 定子包括一个磁轭和多个永磁体,它们安装在磁轭的内表面并面对转子磁芯。 刷齿轮具有多个碳刷,布置成与换向器的电刷接触表面滑动接触。 缠绕在每个齿中的两个线圈的端部分别连接到两对相邻的条,并且一对两对相邻的条之间的中心线和两对相邻条的另一对之间的中心线是径向的 反对
    • 46. 发明申请
    • SCAN CONVERSION FOR ULTRASONIC IMAGING AND APPARATUS USING THE SAME
    • 用于超声成像的扫描转换和使用它的装置
    • US20090062649A1
    • 2009-03-05
    • US11967874
    • 2007-12-31
    • Yong LiBin Yao
    • Yong LiBin Yao
    • A61B8/14G06K9/00
    • G01S7/52044G06T3/00G06T3/4007
    • A scan conversion method for ultrasonic imaging is disclosed. The method comprises a storage step for storing sample data derived from ultrasonic echo signals into a memory; a conversion step for performing conversion between target coordinate points in a display coordinate system and interpolation coordinate points in a sampling coordinate system; and an interpolation step for interpolating several sample data adjacent to the interpolation coordinate points to obtain the interpolation data at the interpolation coordinate points, wherein the interpolation step includes a nonlinear interpolation substep selected for low-pass filter of the ultrasonic echo signals. When interpolation is conducted along Axis θ of the polar coordinates, 4-point interpolation may be used. The interpolation coefficient may be based on cubic B-spline function, which has relatively uniform low-pass filter effects, thereby reducing noise result from interpolation in ultrasonic image.
    • 公开了一种用于超声波成像的扫描转换方法。 该方法包括存储步骤,用于将从超声波回波信号导出的样本数据存储到存储器中; 用于执行显示坐标系中的目标坐标点与采样坐标系中的插值坐标点之间的转换的转换步骤; 以及内插步骤,用于内插与所述插值坐标点相邻的多个样本数据,以获得插值坐标点处的插值数据,其中所述插值步骤包括为所述超声回波信号的低通滤波器选择的非线性插值子步骤。 当沿极坐标轴θ轴进行插值时,可以使用4点插值。 内插系数可以基于三次B样条函数,其具有相对均匀的低通滤波效应,从而减少超声图像中插值的噪声结果。
    • 47. 发明授权
    • Arch bridge
    • 拱桥
    • US07469438B2
    • 2008-12-30
    • US11483503
    • 2006-07-10
    • Yong LiYuzhong LeiYiyan Chen
    • Yong LiYuzhong LeiYiyan Chen
    • E01D4/00
    • E01D1/005E01D4/00
    • An exemplary bridge includes an arch unit. The arch unit includes a first abutment and a second abutment, a deck extending between the first and second abutments, a pair of asymmetrical arches, and a plurality of suspender members 3 attached between the arches and the deck. The first and second abutments are spaced apart from each other at a predetermined distance. The asymmetrical arches are juxtaposedly arranged between and supported by the first and second abutments. Each of the asymmetrical arches includes a first arch foot portion mounted on the first abutment, a parabolic portion proximate to the first arch foot portion, a catenary portion proximate to the parabolic portion, and a second arch foot portion proximate to the catenary portion mounted on the second abutment.
    • 示例性桥梁包括拱形单元。 拱形单元包括第一邻接和第二邻接,在第一和第二邻接部之间延伸的甲板,一对不对称的拱门以及附接在拱门和甲板之间的多个悬挂构件3。 第一和第二接合部以预定距离彼此间隔开。 不对称拱形并排布置在第一和第二基台之间并由第一和第二基台支撑。 每个不对称拱包括安装在第一邻接部上的第一拱脚部分,靠近第一拱脚部分的抛物线部分,靠近抛物线部分的悬链线部分,以及靠近悬链线部分的第二拱形脚部分, 第二个基台。
    • 48. 发明授权
    • Method and system for session accounting in wireless networks
    • 无线网络中会话计费的方法和系统
    • US07441269B2
    • 2008-10-21
    • US10489612
    • 2002-09-30
    • Mark JonesYong Li
    • Mark JonesYong Li
    • G06F21/00H04M1/68H04K1/00H04L9/00
    • H04L67/14H04L41/00H04L63/0892H04M15/00H04M15/8228H04M2215/2026H04M2215/22H04M2215/32H04M2215/7833H04W4/12H04W4/24H04W8/18H04W24/00H04W36/14
    • Wireless data services such as wireless email are becoming common, and in particular, “always-on” systems, where new email is automatically forwarded by the service provider to the wireless device. The problem is that there is no effective mechanism for implementing “always-on” systems when the user is moving around a network, or from one network to another. The invention addresses this problem by generating a session key at the service provider's system for a given data session, and returning this session key to the mobile device. Each time the mobile device communicates with the service provider, it enters this session key into a field that will simply pass through the communication network to the service provider. This allows the service provider to manage the data session, preparing proper accounting records and directing the deletion of stale data sessions on network resources.
    • 诸如无线电子邮件之类的无线数据服务变得普遍,尤其是“永远在线”系统,其中新的电子邮件由服务提供商自动转发到无线设备。 问题在于,当用户在网络上移动或从一个网络移动到另一个网络时,没有实现“永远在线”系统的有效机制。 本发明通过在给定数据会话的服务提供商的系统处生成会话密钥并将该会话密钥返回到移动设备来解决该问题。 每当移动设备与服务提供商通信时,它将该会话密钥输入到简单地通过通信网络到服务提供商的领域。 这允许服务提供商管理数据会话,准备适当的会计记录,并指导删除网络资源上的陈旧数据会话。
    • 49. 发明申请
    • Separate Type Mass Data Encryption/Decryption Apparatus and Implementing Method Therefor
    • 分离式质量数据加密/解密装置及其实现方法
    • US20080141022A1
    • 2008-06-12
    • US11885513
    • 2006-06-07
    • Peng HuYong Li
    • Peng HuYong Li
    • H04L9/06
    • G06F21/602G06F21/72H04L9/06H04L2209/125
    • Embodiments of the present invention relate to a separate type mass data encryption/decryption apparatus and an implementing method therefor. The separate type mass data encryption/decryption apparatus includes a microprocessor and a storage unit for storing an encryption/decryption key. The apparatus further includes an external communication interface module connecting to a peripheral data bus for transmitting data between the encryption/decryption apparatus and an external terminal, and said microprocessor is used for encrypting/decrypting data inputted from the external terminal. Embodiments of the present invention can process mass data with higher security and expedience.
    • 本发明的实施例涉及一种单独的大容量数据加密/解密装置及其实现方法。 分离式大量数据加密/解密装置包括微处理器和用于存储加密/解密密钥的存储单元。 该装置还包括连接到外围数据总线的外部通信接口模块,用于在加密/解密装置和外部终端之间传输数据,并且所述微处理器用于加密/解密从外部终端输入的数据。 本发明的实施例可以以更高的安全性和便利性处理大量数据。
    • 50. 发明申请
    • BATTERY COVER LATCHING ASSEMBLY FOR PORTABLE ELECTRONIC DEVICE
    • 便携式电子设备电池盖板组装
    • US20070111086A1
    • 2007-05-17
    • US11309434
    • 2006-08-04
    • Yong LiChia-Hua Chen
    • Yong LiChia-Hua Chen
    • H01M2/10
    • H01M2/1022
    • A portable electronic device (80) has a battery cover (100) and a housing (300) releasably mounted with a battery cover latching assembly (200). The battery cover has a receiving hole (114). The housing has a positioning member (316). The battery cover latching assembly includes a latching member (201) and a resilient member (202). The latching member has a locking portion (2019). The resilient member has a first end (2021) and a second end (2022). The first end is mounted in the latching member. The second end is mounted with the battery cover. The latching member is installed in the receiving hole. The locking portion is engaged with the positioning member thereby mounting the battery cover to the housing. When the latching member is forced to move relative to the battery cover, the resilient member is twisted thereby making the latching member to move in an opposing direction.
    • 便携式电子设备(80)具有电池盖(100)和可释放地安装有电池盖闩锁组件(200)的壳体(300)。 电池盖具有接收孔(114)。 壳体具有定位构件(316)。 电池盖闩锁组件包括闩锁构件(201)和弹性构件(202)。 锁定构件具有锁定部分(2019)。 弹性构件具有第一端(2021)和第二端(2022)。 第一端安装在闩锁构件中。 第二端安装有电池盖。 闩锁构件安装在容纳孔中。 锁定部分与定位构件接合,从而将电池盖安装到壳体上。 当闩锁构件被迫相对于电池盖移动时,弹性构件被扭转,从而使闩锁构件沿相反的方向移动。