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    • 24. 发明申请
    • INTELLIGENT CONTROL OF PROGRAM PULSE FOR NON-VOLATILE STORAGE
    • 智能控制非挥发性存储的程序脉冲
    • US20100046301A1
    • 2010-02-25
    • US12607329
    • 2009-10-28
    • Yupin FongJun Wan
    • Yupin FongJun Wan
    • G11C16/04
    • G11C16/0483G11C11/5628G11C16/10G11C16/3454G11C16/3459G11C2211/5621
    • To program a set of non-volatile storage elements, a set of programming pulses are applied to the control gates (or other terminals) of the non-volatile storage elements. The programming pulses have a constant pulse width and increasing magnitudes until a maximum voltage is reached. At that point, the magnitude of the programming pulses stops increasing and the programming pulses are applied in a manner to provide varying time duration of the programming signal between verification operations. In one embodiment, for example, after the pulses reach the maximum magnitude the pulse widths are increased. In another embodiment, after the pulses reach the maximum magnitude multiple program pulses are applied between verification operations.
    • 为了对一组非易失性存储元件进行编程,将一组编程脉冲施加到非易失性存储元件的控制门(或其它终端)。 编程脉冲具有恒定的脉冲宽度和增加的幅度,直到达到最大电压。 在这一点上,编程脉冲的幅度停止增加,编程脉冲以一种方式施加,以便在验证操作之间提供编程信号的变化的持续时间。 在一个实施例中,例如,在脉冲达到最大幅度之后,脉冲宽度增加。 在另一个实施例中,在脉冲达到最大幅度之后,在验证操作之间施加多个编程脉冲。
    • 26. 发明授权
    • RFID temperature logger incorporating a frequency ratio digitizing temperature sensor
    • RFID温度记录仪采用频率比数字化温度传感器
    • US07474230B2
    • 2009-01-06
    • US11425381
    • 2006-06-20
    • Eric D. BlomJun WanStuart H. Urie
    • Eric D. BlomJun WanStuart H. Urie
    • G08C17/00
    • G01K7/01
    • A semi-passive radio frequency identification (RFID) tag being coupled to a battery providing a battery voltage for powering a part of the circuitry of the RFID tag includes an RF communication block receiving and transmitting RF signals, a sensor block including a frequency ratio digitizing temperature sensor for alternately measuring the ambient temperature and the battery voltage, and a control logic block in communication with the RF communication block and the sensor block. The control logic controls the operation of the RF communication block and the sensor block and stores temperature and voltage measurement data generated by the sensor block. In one embodiment, the control logic block of the RFID tag operates based on a system clock and the sensor block provides a reference clock to the control logic block for use in calibrating the system clock of the control logic block.
    • 耦合到提供用于为RFID标签的电路的一部分供电的电池电压的电池的半无源射频识别(RFID)标签包括接收和发送RF信号的RF通信块,包括频率比数字化的传感器块 用于交替测量环境温度和电池电压的温度传感器,以及与RF通信块和传感器块通信的控制逻辑块。 控制逻辑控制RF通信块和传感器块的操作,并存储由传感器块产生的温度和电压测量数据。 在一个实施例中,RFID标签的控制逻辑块基于系统时钟进行操作,并且传感器块向控制逻辑块提供参考时钟以用于校准控制逻辑块的系统时钟。
    • 28. 发明授权
    • Portable electronic device
    • 便携式电子设备
    • US07452231B2
    • 2008-11-18
    • US11749019
    • 2007-05-15
    • Jun Wan
    • Jun Wan
    • H01R13/267
    • H01R13/6271H01R13/6658
    • A portable electronic device is disclosed. The portable electronic device includes a body, a circuit board, and a USB plug. The body includes a top cover and a bottom cover. The top cover is engaged with the bottom cover. The circuit board is disposed in the body. The USB plug includes a metallic plug and an insulating portion connecting with the metallic plug. The USB plug is detachably disposed between the top cover and the bottom cover and transits between a first position and a second position. When the USB plug is in the first position, the metallic plug and the insulating portion abut against the top cover and the bottom cover. When the USB plug is in the second position, the metallic plug is disposed outside the body.
    • 公开了一种便携式电子设备。 便携式电子设备包括主体,电路板和USB插头。 主体包括顶盖和底盖。 顶盖与底盖接合。 电路板设置在体内。 USB插头包括金属插头和与金属插头连接的绝缘部分。 USB插头可拆卸地设置在顶盖和底盖之间,并且在第一位置和第二位置之间转换。 当USB插头处于第一位置时,金属插头和绝缘部分抵靠顶盖和底盖。 当USB插头位于第二位置时,金属插头设置在身体外部。