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    • 1. 发明申请
    • PROCESSOR FREQUENCY ADJUSTMENT CIRCUIT
    • 处理器频率调整电路
    • US20120326761A1
    • 2012-12-27
    • US13230860
    • 2011-09-13
    • CHUN-SHENG CHENFENG-LONG HEHUA ZOU
    • CHUN-SHENG CHENFENG-LONG HEHUA ZOU
    • H03K3/00
    • G06F1/08G06F1/3221G06F1/324G06F1/3268Y02D10/126Y02D10/154
    • A processor frequency adjustment circuit for adjusting a frequency of a processor includes a voltage converting module, a first reference voltage generating module, a clock chip, a voltage comparing module. The voltage converting module converts a pulse voltage into a constant voltage. The first reference voltage generating module generates a first reference voltage. The voltage comparing module is connected with the voltage converting module, the first reference voltage generating module, and the clock chip to compare the constant voltage with the first reference voltage, and generates a first voltage level signal to a first terminal of the clock chip; the clock chip adjusts the frequency of the processor in response to obtaining the first voltage level signal.
    • 用于调整处理器频率的处理器频率调整电路包括电压转换模块,第一参考电压产生模块,时钟芯片,电压比较模块。 电压转换模块将脉冲电压转换成恒定电压。 第一参考电压产生模块产生第一参考电压。 电压比较模块与电压转换模块,第一参考电压产生模块和时钟芯片连接,以将恒定电压与第一参考电压进行比较,并且产生第一电压电平信号到时钟芯片的第一端子; 响应于获得第一电压电平信号,时钟芯片调节处理器的频率。
    • 3. 发明申请
    • NETWORK OVERCLOCK CONTROL CIRCUIT
    • 网络过压控制电路
    • US20090164828A1
    • 2009-06-25
    • US12023010
    • 2008-01-30
    • HUA ZOUFENG-LONG HE
    • HUA ZOUFENG-LONG HE
    • G06F1/06
    • G06F1/08
    • A network overclock control circuit for a computer includes an RC circuit, first and second comparator circuits, and first and second switch circuits. A signal pin of a network indicating lamp is connected to input terminals of the first and second comparator circuits via the RC circuit. Output terminals of the first and second comparator circuits are respectively connected to first and second clock pins of a clock chip via the first and second switch circuits. When network has little traffic, the first and second comparator circuits control the first and second switch circuits to output low level signals. When network has medium to high traffic, the first and second comparator circuits control the first and second switch circuits to output high and low level signals. When network is overloaded, the first and second comparator circuits control the first and second switch circuits to output high level signals.
    • 一种用于计算机的网络超频控制电路包括RC电路,第一和第二比较器电路以及第一和第二开关电路。 网络指示灯的信号引脚通过RC电路连接到第一和第二比较器电路的输入端。 第一和第二比较器电路的输出端分别经由第一和第二开关电路连接到时钟芯片的第一和第二时钟引脚。 当网络流量很少时,第一和第二比较器电路控制第一和第二开关电路以输出低电平信号。 当网络具有中等到高流量时,第一和第二比较器电路控制第一和第二开关电路以输出高电平和低电平信号。 当网络过载时,第一和第二比较器电路控制第一和第二开关电路以输出高电平信号。
    • 4. 发明申请
    • CHARGING CIRCUIT
    • 充电电路
    • US20120306456A1
    • 2012-12-06
    • US13216264
    • 2011-08-24
    • CHUN-SHENG CHENHUA ZOUFENG-LONG HE
    • CHUN-SHENG CHENHUA ZOUFENG-LONG HE
    • H02J7/04
    • G06F1/266H02J7/0052H02J2007/0062
    • A charging circuit employed in an electronic apparatus is operable to charge a portable electronic device. The charging circuit includes a charging control microchip including two control terminals, a southbridge microchip, a logic control circuit, and a basic input/output system (BIOS). The southbridge microchip and the BIOS are both electronically connected to the logic control circuit to control the logic control circuit to set or reset voltage of the two control terminals, then the charging control microchip is switched to a charging mode or a data transmission mode according to the voltage of the two control terminals.
    • 电子设备中使用的充电电路可操作以对便携式电子设备充电。 充电电路包括具有两个控制端子,南桥芯片,逻辑控制电路和基本输入/输出系统(BIOS)的充电控制微芯片。 南桥微芯片和BIOS都电连接到逻辑控制电路,以控制逻辑控制电路来设置或复位两个控制端子的电压,然后将充电控制微芯片切换到充电模式或数据传输模式,根据 两个控制端子的电压。
    • 7. 发明申请
    • POWER SUPPLY CIRCUIT EMPLOYED IN COMPUTER FOR PERFORMING DIFFERENT STANDBY MODES
    • 用于执行不同待机模式的计算机中的电源电路
    • US20130103963A1
    • 2013-04-25
    • US13461737
    • 2012-05-01
    • CHUN-SHENG CHENHUA ZOUFENG-LONG HE
    • CHUN-SHENG CHENHUA ZOUFENG-LONG HE
    • G06F1/26
    • G06F1/26G06F1/3296Y02D10/172Y02D50/20
    • A power supply circuit includes a basic input output system (BIOS), a super input output (SIO), a bivibrator, a logical selector, and a voltage converter. The basic input output system (BIOS) is configured for storing different operation modes of a computer. The super input output (SIO) is configured for generating standby mode signals according to the different operation modes. The bivibrator is configured for generating a reference signal when upon receiving a clock signal from the computer when the computer is turned on. The logical selector is configured for generating a standby control signal in response to the reference signal and one of the standby mode signals. The voltage converter is configured for transforming the first standby voltage into a second standby voltage to drive the SIO. The SIO receives the second standby voltage before the clock signal is delayed and provided to the SIO to start the computer.
    • 电源电路包括基本输入输出系统(BIOS),超级输入输出(SIO),调音台,逻辑选择器和电压转换器。 基本输入输出系统(BIOS)被配置为存储计算机的不同操作模式。 超级输入输出(SIO)被配置为根据不同的操作模式产生待机模式信号。 该计算机被配置为当计算机打开时从计算机接收到时钟信号时产生参考信号。 逻辑选择器被配置为响应于参考信号和待机模式信号之一产生待机控制信号。 电压转换器被配置为将第一备用电压变换为第二备用电压以驱动SIO。 SIO在延迟时钟信号之前接收第二个待机电压,并提供给SIO以启动计算机。
    • 8. 发明申请
    • POWER SUPPLY CONTROL CIRCUIT
    • 电源控制电路
    • US20130047018A1
    • 2013-02-21
    • US13461732
    • 2012-05-01
    • CHUN-SHENG CHENFENG-LONG HEHUA ZOU
    • CHUN-SHENG CHENFENG-LONG HEHUA ZOU
    • G06F1/32
    • G06F1/3206G06F1/3287Y02D10/171
    • A power supply control circuit for an electronic device includes an input/output (I/O) microchip, a southbridge microchip and a power management unit. The control circuit is electrically connected to the I/O microchip and the southbridge microchip to output a driving voltage to the I/O microchip and the southbridge microchip. The power management unit includes a power management microchip electrically connected to the control circuit, the I/O microchip and the southbridge microchip. The power management microchip outputs a power on/off control signal to the southbridge microchip to power on/off the electronic device, and controls the control circuit to provide a driving voltage to the I/O microchip and the southbridge microchip when the electronic device is powered on and controls the control circuit to stop providing the driving voltage to the I/O microchip and the southbridge microchip when the electronic device is powered off.
    • 电子设备的电源控制电路包括输入/​​输出(I / O)微芯片,南桥芯片和电源管理单元。 控制电路电连接到I / O微芯片和南桥微芯片,以向I / O微芯片和南桥芯片输出驱动电压。 电源管理单元包括电连接到控制电路,I / O微芯片和南桥芯片的电源管理微芯片。 电源管理微芯片向南桥微芯片输出电源开/关控制信号,以对电子设备通电/断开,并且当电子设备为电子设备时,控制电路向I / O微芯片和南桥芯片提供驱动电压 在电子设备断电时,控制电路停止向I / O微芯片和南桥芯片提供驱动电压。
    • 9. 发明申请
    • VOLTAGE REGULATING CIRCUIT FOR MOTHERBOARD
    • 电机电压调节电路
    • US20090158059A1
    • 2009-06-18
    • US11965743
    • 2007-12-28
    • FENG-LONG HEHUA ZOUWEI WANG
    • FENG-LONG HEHUA ZOUWEI WANG
    • G06F1/26
    • G06F1/26H02M2001/0032Y02B70/16
    • An exemplary voltage regulating circuit for a motherboard includes a selecting switch and a first switch module, the selecting switch comprising a first input terminal arranged to receive a standby power provided by a power supply, a first control terminal arranged to receive a state signal from the motherboard via a first switch module controlled by a power good signal generated by the power supply, and an output terminal, wherein, when the motherboard is turned off, the state signal is at a high level and the first switch module is turned on by the power good signal for turning off the selecting switch to stop outputting the standby power.
    • 用于母板的示例性电压调节电路包括选择开关和第一开关模块,所述选择开关包括布置成接收由电源提供的备用电力的第一输入端子,布置成从所述第一开关模块接收来自所述电源的状态信号的第一控制端子 主板通过由电源产生的电力良好信号控制的第一开关模块和输出端子,其中当主板关闭时,状态信号处于高电平,并且第一开关模块通过 电源良好信号用于关闭选择开关以停止输出待机电源。
    • 10. 发明申请
    • AUTOMATIC ROTATING DISPLAY SYSTEM BASED ON WINDOWS OPERATING SYSTEM
    • 基于WINDOWS操作系统的自动旋转显示系统
    • US20130076794A1
    • 2013-03-28
    • US13433652
    • 2012-03-29
    • CHUN-SHENG CHENFENG-LONG HEHUA ZOU
    • CHUN-SHENG CHENFENG-LONG HEHUA ZOU
    • G09G5/00
    • G06F3/0346G06F1/1601G06F1/1613G06F3/04847G06F2200/1614G09G5/00G09G2340/0464G09G2354/00
    • An automatic rotating display system is adapted to an electronic device based on a windows operating system. The electronic device includes a display for displaying one or more images. The automatic rotating display system includes a gravity sensor, a processor, a keyboard controller and a display card. The gravity sensor is configured for sensing or detecting different positional variations of the electronic device, and generating corresponding different sensing signals, according to the direction and magnitude changes of the electronic device. The processor electrically connects with the gravity sensor for receiving and processing the sensing signals. The keyboard controller connects with the processor for receiving the directional control signals and translating the directional control signals into directional control instructions. The display card connects with the keyboard controller for receiving the directional control instructions and driving the image shown on the display to rotate.
    • 自动旋转显示系统适用于基于Windows操作系统的电子设备。 电子设备包括用于显示一个或多个图像的显示器。 自动旋转显示系统包括重力传感器,处理器,键盘控制器和显示卡。 重力传感器被配置为根据电子设备的方向和幅度变化来感测或检测电子设备的不同位置变化,并产生相应的不同感测信号。 处理器与重力传感器电连接,用于接收和处理感测信号。 键盘控制器与处理器连接,用于接收方向控制信号,并将方向控制信号转换成方向控制指令。 显示卡与键盘控制器连接,用于接收方向控制指令,并驱动显示屏上显示的图像旋转。