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    • 31. 发明授权
    • Apparatus having self-repairing function and method of self repairing
the same
    • 具有自修复功能的装置及其自身修复方法
    • US5613047A
    • 1997-03-18
    • US344812
    • 1994-10-11
    • Yoshiki ShimomuraSadao TanigawaYukihiro MoriYasushi UmedaTetsuo TomiyamaHiroyuki Yoshikawa
    • Yoshiki ShimomuraSadao TanigawaYukihiro MoriYasushi UmedaTetsuo TomiyamaHiroyuki Yoshikawa
    • G03G21/00G03G15/00G05B9/02G06F11/00G06F11/25G06K15/00
    • G06F11/2257G03G15/55
    • According to the present invention, a concept of functional quantities indicative of quantified functional degrees of such lower-level functions as "clearer characters", "cleaner background", and "thicker characters", which are subordinating to a qualification-oriented function of "more beautiful characters". Characteristic patterns of functional quantities F1, F2 and F3 of the lower-level functions for physical parameters (for example, the surface potential of a photoreceptor body) are prepared. When a fault repair is implemented by changing a value of a physical parameter, a tradeoff occurs between lower-level functions which are influenced by the physical parameter. That is, taking into account the functional quantities F1, F2 and F3 of the lower-level functions, the value of the physical parameter is set so that the functional quantity of the function of "more beautiful characters" is maximized. By introducing the concept of the functional quantities indicative of the quantified functional degrees of the functions, a flexible self-repairing function can be realized, thereby optimizing a repair operation.
    • 根据本发明,指示了诸如“更清晰的人物”,“更清洁的背景”和“较粗的人物”等低级功能的量化功能度的功能量的概念,这些功能度属于“ 更美丽的人物“。 准备用于物理参数(例如,感光体的表面电位)的较低级功能的功能量F1,F2和F3的特征图案。 当通过改变物理参数的值来实现故障修复时,会在受物理参数影响的较低级别的功能之间进行权衡。 也就是说,考虑到下层功能的功能量F1,F2和F3,物理参数的值被设置为使得“更美丽的人物”的功能的功能量最大化。 通过引入表示功能的量化功能度的功能量的概念,可以实现灵活的自修复功能,从而优化修复操作。
    • 34. 发明授权
    • Terminal box for solar cell module
    • 太阳能电池模块接线盒
    • US08547685B2
    • 2013-10-01
    • US12993996
    • 2009-10-21
    • Hiroyuki YoshikawaMakoto Higashikozono
    • Hiroyuki YoshikawaMakoto Higashikozono
    • H05K7/20H01R12/00
    • H01R13/6641H01R9/2425H02S40/34H02S40/345
    • A terminal box is provided with a plurality of terminal plates (10) electrically connected to a solar cell module, bypass diodes (20) each electrically connected to two corresponding ones of the respective terminal plates (10), and a housing (31) having the respective terminal plates (10) and bypass diodes (20) arranged inside. The respective terminal plates (10) and bypass diodes (20) are mold-covered by a resin portion (30), whereby the housing (31) is integrally formed. The resin portion (30) of the housing (31) includes a thinner portion (15) deposited and having an outer shape in conformity with that of the bypass diodes (20).
    • 一个接线盒设置有电连接到太阳能电池模块的多个端子板(10),每个电连接到各个端子板(10)中的两个对应的端子板(10)的旁路二极管(20)和具有 相应的端子板(10)和旁路二极管(20)布置在内部。 各个端子板(10)和旁路二极管(20)由树脂部分(30)模制覆盖,由此壳体(31)整体形成。 壳体(31)的树脂部分(30)包括沉积并具有与旁路二极管(20)的外形相一致的外形的较薄部分(15)。
    • 37. 发明授权
    • Phase modulation apparatus and wireless communication apparatus
    • 相位调制装置和无线通信装置
    • US07826811B2
    • 2010-11-02
    • US11594979
    • 2006-11-09
    • Hiroyuki YoshikawaShunsuke Hirano
    • Hiroyuki YoshikawaShunsuke Hirano
    • H04B1/16
    • H04L27/2092H03C3/0925H03C3/0941H03C3/095H03C5/00
    • A two-point modulation type phase apparatus and a wireless communication apparatus capable of achieving a reduction in circuit scale and low power consumption while maintaining modulation precision. It is possible to provide a D/A converter (150) that converts the inputted digital baseband signal to an analog signal, an adder (110) that adds an output signal of a D/A converter (150) and an output of a loop filter (135) to output to a control voltage terminal of the voltage controlled oscillator (105), and a peak control section (140) provided at a front stage of the D/A converter (150) that carries out smoothing of peak portions appearing at the inputted digital baseband signal, at a two-point modulation type phase modulation apparatus (100) that modulates a-carrier frequency signal using an inputted digital baseband signal by setting a frequency dividing ratio of a frequency divider (115) of a PLL circuit based on an inputted digital baseband modulation signal, and adding a voltage corresponding to a signal that is an inputted digital baseband signal analog-converted for supply to a control voltage terminal of a voltage controlled oscillator (105).
    • 一种两点调制型相位装置和无线通信装置,其能够在保持调制精度的同时实现电路规模的降低和低功耗。 可以提供将输入的数字基带信号转换为模拟信号的D / A转换器(150),将D / A转换器(150)的输出信号和循环的输出相加的加法器(110) 滤波器(135)输出到压控振荡器(105)的控制电压端,以及峰值控制部(140),设置在D / A转换器(150)的前级,其执行出现峰值部分的平滑化 在输入的数字基带信号的两点调制型相位调制装置(100)中,通过设定PLL电路的分频器(115)的分频比,使用输入的数字基带信号来调制a载波频率信号 基于输入的数字基带调制信号,并将与作为模拟转换的输入数字基带信号的信号相对应的电压相加,供给压控振荡器(105)的控制电压端。
    • 40. 发明申请
    • Frequency modulation apparatus
    • 调频装置
    • US20050271159A1
    • 2005-12-08
    • US11080680
    • 2005-03-16
    • Hiroyuki YoshikawaHisashi AdachiShunsuke Hirano
    • Hiroyuki YoshikawaHisashi AdachiShunsuke Hirano
    • H03C3/00H03C3/09H04L27/04H04L27/12H04L27/20
    • H03C3/0933H03C3/0925H04L27/12H04L27/2003
    • A frequency modulation apparatus 100 has a synthesizer 101, a differentiator 102 that differentiates phase modulation data and generates differential phase modulation data, an adder 103 that adds together that differential phase modulation data and carrier frequency data fractional part K and generates addition fractional part K1, an input data operation section 104 that receives addition fractional part K1 and carrier frequency data integer part M, generates integer part input data M1 and fractional part input data K2, and provides fractional part input data K2 to synthesizer 101, and an integer part data delay section 105 that delays integer part input data M1 before providing it to synthesizer 101. Input data operation section 104 makes M1=M−1 and K2=K1+1 when K1
    • 频率调制装置100具有合成器101,微分器102,其对相位调制数据进行微分并产生差分相位调制数据;加法器103,将差分相位调制数据和载波频率数据小数部分K相加,生成加法分数部分K 1 ,接收加法分数部分K 1和载波频率数据整数部分M的输入数据操作部分104产生整数部分输入数据M 1和小数部分输入数据K 2,并向合成器101提供分数部分输入数据K 2,以及 整数部分数据延迟部分105,其在将整数部分输入数据M 1提供给合成器101之前将其延迟。 当K 1 <0时,输入数据运算部104使M 1 = M-1,K 2 = K 1 +1,当0 <= K 1 <1时,M 1 = M,K 2 = K 1,使M 1 = 1 + = 1,K 2 = K 1 -1。