会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 62. 发明授权
    • Code conversion method and apparatus
    • 代码转换方法和装置
    • US07114151B2
    • 2006-09-26
    • US10455972
    • 2003-06-05
    • Tetsuya Okada
    • Tetsuya Okada
    • G06F9/45
    • G06F8/4451
    • Interlocked floating-point instructions are detected, and a register address referring to and assigning an operand in the interlocked instructions is changed to an odd-number address not assigned as any operation at the time of compiling. Next, an instruction not in any register-dependency relation with the interlocked instructions is detected, and the detected instruction is inserted between instructions interlocked with each other. Thus a program can be executed with an improved efficiency.
    • 检测到互锁浮点指令,并且在互锁指令中引用和分配操作数的寄存器地址被改变为编译时未分配为任何操作的奇数地址。 接下来,检测到与互锁指令不具有任何寄存器依赖关系的指令,并且检测到的指令被插入彼此互锁的指令之间。 因此,可以以提高的效率执行程序。
    • 63. 发明申请
    • Device for recording video data and audio data
    • 用于记录视频数据和音频数据的设备
    • US20060140280A1
    • 2006-06-29
    • US10559419
    • 2004-06-03
    • Tetsuya OkadaDaisuke Hiranaka
    • Tetsuya OkadaDaisuke Hiranaka
    • H04B1/66H04N9/475
    • H04N5/9265H04N5/783
    • When a pause request occurs, an audio delay time constituted by a delay time of frames of audio data based on the video data frames is found. During the pause, a frame offset time constituted by the offset of the frame start time of the video data and the audio data is monitored. When a pause release request is issued, based on the audio delay time and the frame offset time, the audio correction time to be corrected in the pause request is calculated. Then, when it is judged that the audio data is advanced with respect to the video data based on the audio correction time cumulatively added for each pause request, the video data is delayed by one frame with respect to the audio data, while when it is judged that the audio data is delayed with respect to the video data, the audio data is delayed by one frame with respect to the video data.
    • 当发生暂停请求时,发现由基于视频数据帧的音频数据的帧的延迟时间构成的音频延迟时间。 在暂停期间,监视由视频数据的帧开始时间的偏移和音频数据构成的帧偏移时间。 当发出暂停释放请求时,基于音频延迟时间和帧偏移时间,计算在暂停请求中要校正的音频校正时间。 然后,当基于针对每个暂停请求累积的音频校正时间判断音频数据相对于视频数据前进时,视频数据相对于音频数据被延迟一帧,而当它是 判断音频数据相对于视频数据被延迟,音频数据相对于视频数据被延迟一帧。
    • 64. 发明申请
    • Smart battery pack and method for recognizing battery type using the same
    • 智能电池组及其使用方法
    • US20060076924A1
    • 2006-04-13
    • US11216458
    • 2005-08-30
    • Jong KimTetsuya Okada
    • Jong KimTetsuya Okada
    • H02J7/00
    • H02J7/0003H02J2007/0098
    • A smart battery pack and a method for recognizing the battery type using the same. The smart battery pack includes at least one battery cell coupled to an external set via positive and negative electrode terminals. A timer circuit is coupled to the external set via a data terminal and is adapted to apply a predetermined timer circuit signal for a period of time when a predetermined signal is applied from the external set. A first switch is controlled by the timer circuit and applies electric power from the battery cell, and a register outputs a predetermined register signal causing a smart battery controller to output battery type information to the external set. The smart battery pack has only one data line between the smart battery pack and the external set (and one data terminal on each) facilitating communication between the devices while maintaining a reduced manufacturing cost.
    • 一种智能电池组以及使用其来识别电池类型的方法。 智能电池组包括经由正极和负极端子耦合到外部组的至少一个电池单元。 定时器电路通过数据端子耦合到外部组件,并且适用于在从外部组件施加预定信号的时间段内施加预定定时器电路信号。 第一开关由定时器电路控制并且从电池单元施加电力,并且寄存器输出预定的寄存器信号,使得智能电池控制器向外部组输出电池类型信息。 智能电池组在智能电池组和外部组件之间仅有一条数据线(和每个数据终端之间),有助于器件之间的通信,同时保持降低的制造成本。
    • 68. 发明授权
    • Battery over-current protection circuit
    • 电池过流保护电路
    • US5585994A
    • 1996-12-17
    • US181410
    • 1994-01-13
    • Mikitaka TamaiTakaharu OhiraTetsuya Okada
    • Mikitaka TamaiTakaharu OhiraTetsuya Okada
    • H02J7/00H02H3/00
    • H02J7/0029
    • A first series circuit of a current detector and a first switch is connected in series with a battery, and a second series circuit of a resistor and a second switch is connected in parallel with the first series circuit. A control device controls an on and off state of the first and second switches to provide over-current protection of the battery. In particular, the control device turns off the first switch to cut-off battery over-current and turns on the second switch when the battery current exceeds a specified level as detected by the current detector. Then, after the battery current, which flows through the second series current, drops below the specified level, the first switch is returned to an on state to again allow battery discharge.
    • 电流检测器和第一开关的第一串联电路与电池串联连接,电阻器和第二开关的第二串联电路与第一串联电路并联连接。 控制装置控制第一和第二开关的接通和断开状态,以提供电池的过电流保护。 具体地说,当电池电流超过由电流检测器检测到的指定电平时,控制装置关闭第一开关以切断电池的过电流并接通第二开关。 然后,在流过第二串联电流的电池电流下降到低于指定电平之后,第一开关返回到导通状态,以再次允许电池放电。
    • 69. 发明授权
    • Rechargeable battery overdischarge prevention circuit
    • 可充电电池过放电防止电路
    • US5397974A
    • 1995-03-14
    • US182568
    • 1994-01-18
    • Mikitaka TamaiTakaharu OhiraTetsuya Okada
    • Mikitaka TamaiTakaharu OhiraTetsuya Okada
    • H02H7/18H02J7/00H02J7/34
    • H02J7/0031
    • A first switch element is connected in series with a rechargeable battery, a second switch element is connected in parallel to the series circuit of the rechargeable battery and the first switch element, and a control circuit controls ON and OFF states of the first switch element and the second switch element. The control circuit is so constructed as to turn OFF the first switch element to stop discharging and at the same time turn ON the second switch element when the battery voltage becomes lower than a predetermined value. The second switch element maintains the first switch element in OFF state even when the battery voltage of the rechargeable battery rises by self resetting of the rechargeable battery. When a charging voltage is applied to the rechargeable battery, the control circuit then turns ON the first switch element and turns OFF the second switch element.
    • 第一开关元件与可充电电池串联连接,第二开关元件并联连接到可再充电电池和第一开关元件的串联电路,并且控制电路控制第一开关元件的接通和断开状态,以及 第二开关元件。 控制电路被构造为当电池电压变得低于预定值时关闭第一开关元件以停止放电,同时接通第二开关元件。 即使当可再充电电池的电池电压由可再充电电池的自复位而升高时,第二开关元件将第一开关元件保持在OFF状态。 当对可再充电电池施加充电电压时,控制电路接通第一开关元件并关闭第二开关元件。