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    • 21. 发明申请
    • Efficiently re-starting and recovering synchronization operations between a client and server
    • 有效地重新启动和恢复客户端和服务器之间的同步操作
    • US20080270832A1
    • 2008-10-30
    • US11790251
    • 2007-04-24
    • Ramandeep SethiZhen YangTom WhittakerShoji Kuruvilla
    • Ramandeep SethiZhen YangTom WhittakerShoji Kuruvilla
    • G06F11/07
    • G06F11/1443G06F11/2082H04L67/1095H04L69/40
    • Systems, methods and computer program products for efficiently re-starting and/or recovering interrupted synchronizations between a client and a server are described herein. A server transmits sync data to a client during a synchronization operation. The sync is interrupted for some reason prior to the client receiving all of the sync data. The client sends to the server a request to re-start the synchronization operation. The request includes information that identifies a point in the sync data that was received by the client prior to interruption of the sync. Such information may include (a) information identifying the last data received by the client prior to interruption of the sync; and/or (b) information identifying the next data needed by the client upon re-start of the sync. Thereafter, the server re-starts the sync by transmitting to the client the sync data starting from said point in said sync data identified by said request.
    • 这里描述了用于有效地重新启动和/或恢复客户机和服务器之间的中断的同步的系统,方法和计算机程序产品。 服务器在同步操作期间向客户端发送同步数据。 在客户端接收到所有同步数据之前,由于某种原因,同步被中断。 客户端向服务器发送重新启动同步操作的请求。 该请求包括标识在同步中断之前由客户端接收的同步数据中的点的信息。 这样的信息可以包括(a)在同步中断之前识别客户端接收的最后数据的信息; 和/或(b)识别重新开始同步时客户端所需的下一个数据的信息。 此后,服务器通过向所述客户端发送从所述请求所标识的所述同步数据中的所述点开始的同步数据来重新开始同步。
    • 23. 发明授权
    • Digital portable pulse oximeter and battery-powered control method thereof
    • 数字便携式脉搏血氧计及其电池供电控制方法
    • US09402572B2
    • 2016-08-02
    • US13991617
    • 2012-03-09
    • Kun HuYunlong XuRuibin GaoZhen YangJinling ZhangDi WuRuijie Jiang
    • Kun HuYunlong XuRuibin GaoZhen YangJinling ZhangDi WuRuijie Jiang
    • A61B5/1455A61B5/00
    • A61B5/14552A61B5/6826A61B2560/0204
    • The present invention relates to a digital portable pulse oximeter and battery-powered control method thereof. The automatic switching of the power supply is achieved by adding a Hall circuit, and the data displayed is allowed to always face the users by adding an acceleration sensor to the circuit. The advantageous effects of the present invention compared with the prior art are: Users can always read the data from the front side no matter which way they move. The digital portable pulse oximeter of the present invention can be automatically turned on just by inserting a finger, without having to press the switch button, and cut off the power supply by pulling out the finger, as well as judge intelligently whether to continue the measurement after the finger has been pulled out. If yes, the power supply will stay on, which reduces the energy waste and low efficiency caused by the restarting program initialization, improves the use efficiency of the battery and prolongs the battery life.
    • 本发明涉及一种数字便携式脉搏血氧计及其电池供电控制方法。 通过添加霍尔电路来实现电源的自动切换,并且通过向电路添加加速度传感器,允许所显示的数据总是面对用户。 与现有技术相比,本发明的有益效果是:无论使用哪种方式,用户都可以从前端读取数据。 本发明的数字式便携式脉搏血氧饱和度仪可以通过插入手指而自动开启,而无需按下开关按钮,并通过拔出手指来切断电源,并且智能地判断是否继续测量 手指拔出后。 如果是,电源将保持开启,从而减少重启程序初始化造成的能源浪费和低效率,提高电池的使用效率,延长电池寿命。
    • 24. 发明授权
    • Voltage regulator circuit
    • 稳压电路
    • US09128505B2
    • 2015-09-08
    • US13808439
    • 2010-07-05
    • Amanda SunZhen YangKaihua Zheng
    • Amanda SunZhen YangKaihua Zheng
    • G05F1/10H02J3/12G05F1/625G05F1/575
    • G05F1/625G05F1/575
    • A voltage regulator circuit comprises an amplifier (10) having a first input coupled to a first reference voltage node; a power pass element (20) having a control terminal coupled to an output of the amplifier, an input coupled to a power supply input of the voltage regulator circuit, and an output coupled to an output of the voltage regulator circuit; a feedback circuit (30, 31) having an input coupled to the output of the power pass element and an output coupled to a second input of the amplifier; and a compensation module (60) comprising a transistor (61), wherein a gate or base terminal of the transistor is coupled to a second reference voltage node, a drain or collector terminal of the transistor is coupled to the output of the amplifier, and a source or emitter terminal of the transistor is coupled to the power supply input of the voltage regulator circuit. The voltage regulator circuit is capable to increase the power supply rejection ratio of low drop-out voltage regulators.
    • 电压调节器电路包括具有耦合到第一参考电压节点的第一输入的放大器(10) 功率通过元件(20),其具有耦合到所述放大器的输出端的控制端子,耦合到所述电压调节器电路的电源输入端的输入端和耦合到所述电压调节器电路的输出的输出; 反馈电路(30,31),其具有耦合到所述功率通过元件的输出的输入和耦合到所述放大器的第二输入的输出; 以及包括晶体管(61)的补偿模块(60),其中所述晶体管的栅极或基极端子耦合到第二参考电压节点,所述晶体管的漏极或集电极端子耦合到所述放大器的输出,以及 晶体管的源极或发射极端子耦合到电压调节器电路的电源输入端。 电压调节器电路能够提高低压差稳压器的电源抑制比。
    • 27. 发明申请
    • SYSTEM AND METHOD FOR EEPROM ARCHITECTURE
    • 用于EEPROM架构的系统和方法
    • US20110133264A1
    • 2011-06-09
    • US12959229
    • 2010-12-02
    • YIPENG JANZhen YangShenghe Huang
    • YIPENG JANZhen YangShenghe Huang
    • H01L29/788H01L21/336
    • H01L21/28273H01L21/26586H01L27/11521H01L27/11524H01L29/42324H01L29/66825H01L29/7881
    • A method for manufacturing an Electrically Erasable Programmable Read-Only Memory (EEPROM) device includes providing a substrate and forming a gate oxide over the substrate. Also, the method includes providing a mask overlying the gate oxide layer, the mask defining a tunnel opening. The method additionally includes performing selective etching over the mask to form a tunnel oxide layer. The method includes forming a floating gate over the tunnel oxide layer and a selective gate over the gate oxide layer. The method includes angle doping a region of the substrate using the floating gate as a mask to obtain a first doped region. The method further includes forming a dielectric layer over the floating gate and a control gate over the dielectric layer. The method additionally includes angle doping a second region of the substrate using the selective gate as a mask to obtain a second doped region, wherein the first and second doped regions partially overlap.
    • 一种用于制造电可擦除可编程只读存储器(EEPROM)器件的方法包括提供衬底并在衬底上形成栅极氧化物。 此外,该方法包括提供覆盖栅极氧化物层的掩模,掩模限定隧道开口。 该方法另外包括在掩模上执行选择性蚀刻以形成隧道氧化物层。 该方法包括在隧道氧化物层上形成浮置栅极,在栅极氧化物层上形成选择栅极。 该方法包括使用浮置栅极作为掩模对衬底的区域进行角度掺杂以获得第一掺杂区域。 所述方法还包括在所述浮动栅极上形成介电层和在所述电介质层上形成控制栅极。 该方法另外包括使用选择栅极作为掩模的角度掺杂衬底的第二区域以获得第二掺杂区域,其中第一和第二掺杂区域部分重叠。
    • 28. 发明授权
    • Efficiently re-starting and recovering synchronization operations between a client and server
    • 有效地重新启动和恢复客户端和服务器之间的同步操作
    • US07779299B2
    • 2010-08-17
    • US11790251
    • 2007-04-24
    • Ramandeep SethiZhen YangTom WhittakerShoji Kuruvilla
    • Ramandeep SethiZhen YangTom WhittakerShoji Kuruvilla
    • G06F11/00
    • G06F11/1443G06F11/2082H04L67/1095H04L69/40
    • Systems, methods and computer program products for efficiently re-starting and/or recovering interrupted synchronizations between a client and a server are described herein. A server transmits sync data to a client during a synchronization operation. The sync is interrupted for some reason prior to the client receiving all of the sync data. The client sends to the server a request to re-start the synchronization operation. The request includes information that identifies a point in the sync data that was received by the client prior to interruption of the sync. Such information may include (a) information identifying the last data received by the client prior to interruption of the sync; and/or (b) information identifying the next data needed by the client upon re-start of the sync. Thereafter, the server re-starts the sync by transmitting to the client the sync data starting from said point in said sync data identified by said request.
    • 这里描述了用于有效地重新启动和/或恢复客户机和服务器之间的中断的同步的系统,方法和计算机程序产品。 服务器在同步操作期间向客户端发送同步数据。 在客户端接收到所有同步数据之前,由于某种原因,同步被中断。 客户端向服务器发送重新启动同步操作的请求。 该请求包括标识在同步中断之前由客户端接收的同步数据中的点的信息。 这样的信息可以包括(a)在同步中断之前识别客户端接收的最后数据的信息; 和/或(b)识别重新开始同步时客户端所需的下一个数据的信息。 此后,服务器通过向所述客户端发送从所述请求所标识的所述同步数据中的所述点开始的同步数据来重新开始同步。