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    • 2. 发明申请
    • Semiconductor device
    • 半导体器件
    • US20070146017A1
    • 2007-06-28
    • US10584620
    • 2004-11-10
    • Eiichi SadayukiJun Horikawa
    • Eiichi SadayukiJun Horikawa
    • H03K5/22
    • G05F1/575
    • A semiconductor device of the present invention includes a comparator (1) which includes two input terminals (N1), (N2), and compares the voltage values between the power supply voltage which is inputted to one side input terminal and the reference voltage which is inputted to the other side input terminal, a resister element (2) which connects the signal line (L1) which is connected the input terminal (N1) of the comparator (1) and the signal line (L2) which is the input terminal (N2) of the comparator (1), and a capacitance element (3) one end of which is connected to a power supply terminal for applying a power supply and the other end of which is connected to one input terminal of the comparator (2). Thereby, a step variation of a power supply voltage can be detected without depending on the power supply voltage before the voltage variation.
    • 本发明的半导体器件包括比较器(1),其包括两个输入端子(N 1),(N 2),并且将输入到一侧输入端子的电源电压与参考电压 输入到另一侧输入端子的电阻元件(2),其连接与比较器(1)的输入端子(N1)连接的信号线(L 1)和信号线(L 2),信号线 是比较器(1)的输入端子(N 2)和电容元件(3),其一端连接到用于施加电源的电源端子,另一端连接到一个输入端子 的比较器(2)。 因此,可以在不依赖于电压变化之前的电源电压的情况下检测电源电压的阶跃变化。
    • 3. 发明申请
    • AIR BAG DEVICE
    • 空气袋装置
    • US20110049850A1
    • 2011-03-03
    • US12672761
    • 2008-07-23
    • Jun HorikawaTakashi Haga
    • Jun HorikawaTakashi Haga
    • B60R21/26
    • B60R21/201B60R21/217B60R2021/161
    • To prevent positional deviation in a folded back portion of a deployment restriction sheet reliably, an air bag device includes an air bag 1, an inflator 7 for deploying the air bag 1 by supplying the air bag with a generated gas, an air bag case 3 used to attach the inflator 7 and store the air bag 1, a retainer 6 for fixing an opening portion peripheral edge of the air bag 1 to the air bag case 3, and a deployment restriction sheet 11 that covers the air bag 1 from a vehicle body rear side to a vehicle body front side when the air bag 1 is stored. In the deployment restriction sheet 11, a folded back portion 11c is subjected to tacking 11d so as to separate upon application of a predetermined load A, and a rupturable portion 11e that ruptures upon application of a predetermined load B, which is larger than the load A, is provided on a first end 11a side positioned on the vehicle body front side. The first end 11a is attached to an air bag main body. A second end 11b is installed on the air bag main body. As a result, positional deviation of the folded back portion does not occur, and a cushioning effect can be applied to an occupant effectively.
    • 为了可靠地防止展开限制片的折回部分的位置偏离,气囊装置包括气囊1,用于通过向气囊供给产生气体来展开气囊1的充气机7,气囊壳3 用于安装充气器7并存放气囊1,用于将安全气囊1的开口部分周缘固定​​到安全气囊壳体3的保持器6和从车辆覆盖气囊1的展开限制片11 当安全气囊1被储存时,车体后侧到车身前侧。 在展开限制片材11中,折叠部分11c被承受11d,以便在施加预定的载荷A时分开,并且在施加大于载荷的预定载荷B时破裂的可破裂部分11e A设置在位于车身前侧的第一端11a侧。 第一端部11a附接到气囊主体。 第二端11b安装在气囊主体上。 结果,不会发生折回部的位置偏差,能够有效地对乘员施加缓冲效果。
    • 4. 发明授权
    • Air bag device
    • 气囊装置
    • US08596679B2
    • 2013-12-03
    • US12672761
    • 2008-07-23
    • Jun HorikawaTakashi Haga
    • Jun HorikawaTakashi Haga
    • B60R21/201B60R21/205B60R21/2334
    • B60R21/201B60R21/217B60R2021/161
    • To prevent positional deviation in a folded back portion of a deployment restriction sheet reliably, an air bag device includes an air bag 1, an inflator 7 for deploying the air bag 1 by supplying the air bag with a generated gas, an air bag case 3 used to attach the inflator 7 and store the air bag 1, a retainer 6 for fixing an opening portion peripheral edge of the air bag 1 to the air bag case 3, and a deployment restriction sheet 11 that covers the air bag 1 from a vehicle body rear side to a vehicle body front side when the air bag 1 is stored. In the deployment restriction sheet 11, a folded back portion 11c is subjected to tacking 11d so as to separate upon application of a predetermined load A, and a rupturable portion 11e that ruptures upon application of a predetermined load B, which is larger than the load A, is provided on a first end 11a side positioned on the vehicle body front side. The first end 11a is attached to an air bag main body. A second end 11b is installed on the air bag main body. As a result, positional deviation of the folded back portion does not occur, and a cushioning effect can be applied to an occupant effectively.
    • 为了可靠地防止展开限制片的折回部分的位置偏离,气囊装置包括气囊1,用于通过向气囊供给产生气体来展开气囊1的充气机7,气囊壳3 用于安装充气器7并存放气囊1,用于将安全气囊1的开口部分周缘固定​​到安全气囊壳体3的保持器6和从车辆覆盖气囊1的展开限制片11 当安全气囊1被储存时,车体后侧到车身前侧。 在展开限制片材11中,折叠部分11c被承受11d,以便在施加预定的载荷A时分开,并且在施加大于载荷的预定载荷B时破裂的可破裂部分11e A设置在位于车身前侧的第一端11a侧。 第一端部11a附接到气囊主体。 第二端11b安装在气囊主体上。 结果,不会发生折回部的位置偏差,能够有效地对乘员施加缓冲效果。
    • 5. 发明授权
    • Semiconductor memory device with independently controlled reading and writing time periods
    • 半导体存储器件具有独立控制的读写时间段
    • US06172919B2
    • 2001-01-09
    • US09273845
    • 1999-03-22
    • Jun Horikawa
    • Jun Horikawa
    • G11C700
    • G11C7/1072G11C7/22
    • The operating speed and stability of a semiconductor memory device of the type performing reading and writing at regular intervals are improved. A read/write pulse width controller varies the pulse width of a read/write pulse width control signal in such a manner that the width during reading is shorter than that during writing. A column decoder outputs a column-select signal having a pulse width equal to that of the read/write pulse width control signal. And a column-select gate connects an associated pair of bit lines to a pair of data lines while the column-select signal is high. During reading, a sufficiently long time can be allotted for equalizing potentials on the data lines. On the other hand, during writing, plenty of time can be allowed for connecting a pair of data lines to the pair of bit line. As a result, reading and writing can be performed stably enough at a sufficiently high speed.
    • 改进了以规则间隔进行读写的类型的半导体存储器件的操作速度和稳定性。 读/写脉冲宽度控制器以这样的方式改变读/写脉冲宽度控制信号的脉冲宽度,使得读取期间的宽度比写入期间的宽度短。 列解码器输出具有等于读/写脉冲宽度控制信号的脉冲宽度的列选择信号。 并且列选择栅极将相关联的一对位线连接到一对数据线,同时列选择信号为高。 在读取期间,可以分配足够长的时间来均衡数据线上的电位。 另一方面,在写入期间,可以有足够的时间将一对数据线连接到一对位线。 结果,可以以足够高的速度稳定地进行读取和写入。