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    • 1. 发明申请
    • SYSTEM AND METHOD FOR TESTING SERIAL PORTS
    • 用于测试串口的系统和方法
    • US20120095717A1
    • 2012-04-19
    • US13209449
    • 2011-08-15
    • ZHI-JIAN LONGMING-XIANG HUJUN-MIN CHENLE LINXIAO-FEI CHEN
    • ZHI-JIAN LONGMING-XIANG HUJUN-MIN CHENLE LINXIAO-FEI CHEN
    • G06F19/00G01R31/00
    • G06F11/221G06F11/2221G06F11/2284G06F11/25
    • In a system and method for testing a serial port of a computing device, the serial port electronically connects to a test fixture. Test data is sent to a receive data (RXD) pin by a transmit data (TXD) pin. A test result is received from the serial port by the RXD pin. The TXD pin and the RXD pin work normally if the test data is identical to the test result. When voltages of a request to send (RTS) pin and a data terminal ready (DTR) pin are set at high level, the RTS pin, a data carrier detect (DCD) pin, the DTR pin, a ring indicator (RI) pin, a data send ready (DSR) pin and a clear to send (CTS) pin work normally, upon the condition that status values of the serial port indicate the voltages of the above six pins are at high level.
    • 在用于测试计算设备的串行端口的系统和方法中,串行端口电连接到测试夹具。 测试数据由发送数据(TXD)引脚发送到接收数据(RXD)引脚。 RXD引脚从串行端口接收到测试结果。 如果测试数据与测试结果相同,则TXD引脚和RXD引脚正常工作。 当发送请求(RTS)引脚和数据终端就绪(DTR)引脚的电压设置为高电平时,RTS引脚,数据载波检测(DCD)引脚,DTR引脚,环形指示器(RI)引脚 数据发送就绪(DSR)引脚和清零发送(CTS)引脚正常工作,条件是串口的状态值表示上述六个引脚的电压处于高电平。
    • 2. 发明申请
    • COMPUTING DEVICE AND DATA SYNCHRONIZATION METHOD
    • 计算设备和数据同步方法
    • US20120271983A1
    • 2012-10-25
    • US13407690
    • 2012-02-28
    • JUN-MIN CHENMING-XIANG HULE LINZHI-JIAN LONG
    • JUN-MIN CHENMING-XIANG HULE LINZHI-JIAN LONG
    • G06F12/00G06F12/02
    • G06F11/2247
    • A server includes a Southbridge chip, a first storage device, and a baseboard management controller (BMC) electrically connected to the Southbridge chip. A field replacement unit (FRU) is electrically connected to the BMC and the first storage device. The BMC reads data from a second storage device electrically connected to the BMC, writes the data into the FRU, sends a first control signal to a switch positioned between the BMC, the first storage device and the FRU, to switch on an electrical connection between the BMC and the first storage device for reading data stored within the first storage device. If the data stored within the first storage is different from the data stored within the FRU, the BMC reads the data from the FRU, and writes the data into the first storage device, to synchronize the data within the first storage device and the FRU.
    • 服务器包括南桥芯片,第一存储设备和电连接到南桥芯片的基板管理控制器(BMC)。 现场更换单元(FRU)电连接到BMC和第一存储设备。 BMC从与BMC电连接的第二存储设备读取数据,将数据写入FRU,向位于BMC,第一存储设备和FRU之间的交换机发送第一控制信号,以接通第一控制信号, BMC和用于读取存储在第一存储设备内的数据的第一存储设备。 如果存储在第一存储器中的数据与存储在FRU中的数据不同,则BMC从FRU读取数据,并将数据写入第一存储设备,以使第一存储设备和FRU内的数据同步。
    • 5. 发明申请
    • DISPLAY APPARATUS AND AUTOMATIC ADJUSTMENT METHOD THEREOF
    • 显示装置及其自动调整方法
    • US20120162166A1
    • 2012-06-28
    • US13048961
    • 2011-03-16
    • LE LINMING-XIANG HU
    • LE LINMING-XIANG HU
    • G09G5/00G09G3/36
    • G09G3/20G09G2320/0693G09G2360/145H04N5/70H04N17/045
    • A display apparatus includes a photoelectric sensor disposed on an inner side of a frame and located corresponding to a corner of a pixel area of a display panel in a predetermined position. When the display apparatus is turned on, the display panel provides a light spot at a corner of a current pixel area of the display apparatus corresponding to the photoelectric sensor, and a micro-control circuit compares an electronic signal received from the photoelectric sensor with a sample value. If different, an interrupt is triggered to execute a position offsetting interrupt program to adjust the display parameter of the display apparatus, thereby moving the pixel area to adjust the relative position of the light spot and the photoelectric sensor, so that the relative position becomes identical to that when the pixel area of the display panel is in the predetermined position.
    • 显示装置包括设置在框架的内侧并且相对于显示面板的像素区域的角部位于预定位置的光电传感器。 当显示装置打开时,显示面板在与光电传感器对应的显示装置的当前像素区域的角落处提供光点,并且微控制电路将从光电传感器接收的电子信号与 样本值。 如果不同,则触发中断以执行位置偏移中断程序来调整显示装置的显示参数,从而移动像素区域以调整光点和光电传感器的相对位置,使得相对位置变得相同 当显示面板的像素区域处于预定位置时。
    • 10. 发明申请
    • PORTABLE ELECTRONIC DEVICE AND METHOD FOR CONTROLLING SCREEN PROTECTION FUNCTION OF THE PORTABLE ELECTRONIC DEVICE
    • 便携式电子设备及其控制便携式电子设备屏幕保护功能的方法
    • US20120254646A1
    • 2012-10-04
    • US13327777
    • 2011-12-16
    • LE LIN
    • LE LIN
    • G06F1/32
    • G06F3/0488G06F1/1694G06F1/3206G06F1/3265G06F2200/1637Y02D10/153
    • In a method for controlling a screen protection function of a portable electronic device, the portable electronic device includes a gravity sensor, a display screen, and a storage system. The gravity sensor detects a horizontal vector and a vertical vector of a gravitational acceleration of the portable electronic device, and a tilt angle of the portable electronic device is calculated according to the horizontal vector and the vertical vector. The method activates a screen protection program of the portable electronic device to control the display screen to enter into a power saving mode if the tilt angle exceeds a preset tilt angle range stored in the storage system, and terminates the screen protection program to control the display screen to enter into a normal display mode if the tilt angle does not exceed the preset tilt angle range.
    • 在便携式电子设备的屏幕保护功能的控制方法中,便携式电子设备包括重力传感器,显示屏和存储系统。 重力传感器检测便携式电子设备的重力加速度的水平矢量和垂直矢量,并且根据水平矢量和垂直矢量计算便携​​式电子设备的倾斜角度。 该方法激活便携式电子设备的屏幕保护程序,以控制显示屏幕进入省电模式,如果倾斜角超过存储系统中存储的预设倾斜角度范围,则终止屏幕保护程序以控制显示 如果倾斜角度不超过预设的倾斜角度范围,屏幕进入正常显示模式。