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    • 11. 发明授权
    • Memory device with test mechanism
    • 带测试机构的内存设备
    • US08213247B2
    • 2012-07-03
    • US12618827
    • 2009-11-16
    • Tomomi NakaHajime Sakata
    • Tomomi NakaHajime Sakata
    • G11C29/00
    • G11C29/50G11C29/12005G11C2029/5006
    • A semiconductor memory device includes a plurality of memory cell transistors arranged in a matrix and each configured to store data, and a test circuit configured to output to outside the semiconductor memory device an output signal indicative of an amount of test current flowing through a selected one of the plurality of memory cell transistors, wherein the test circuit includes a plurality of reference cell transistors employed to successively produce varying amounts of currents, a comparison circuit configured to successively compare the amount of test current with each of the varying amounts of currents, and a code generating circuit configured to generate a code indicative of a result of the successive comparisons performed by the comparison circuit, wherein the code is output as the output signal.
    • 半导体存储器件包括以矩阵形式布置并分别被配置为存储数据的多个存储单元晶体管,以及测试电路,被配置为向半导体存储器件外部输出指示流过所选择的测试电流量的输出信号 所述多个存储单元晶体管中的所述测试电路包括用于连续产生不同数量电流的多个参考单元晶体管;比较电路,被配置为连续地将所述测试电流的量与所述不同量的电流中的每一个进行比较;以及 代码生成电路,被配置为生成表示由所述比较电路执行的连续比较的结果的代码,其中所述代码被输出作为所述输出信号。
    • 14. 发明申请
    • Light wavelength converting apparatus, control method of the same, and image projecting apparatus using the same
    • 光波长变换装置及其控制方法以及使用其的图像投影装置
    • US20050254531A1
    • 2005-11-17
    • US11120950
    • 2005-05-04
    • Yukio FurukawaHajime SakataKazunari Fujii
    • Yukio FurukawaHajime SakataKazunari Fujii
    • G02B26/10G02F1/377H01S3/10H01S5/00H01S5/02H01S5/06H01S5/0625H01S5/0687H01S5/125
    • H01S5/06256H01S5/005H01S5/0092H01S5/02248H01S5/0617H01S5/06804
    • A light wavelength converting apparatus includes a semiconductor laser having a gain region, a phase region, and a distributed Bragg reflection (DBR) region, a nonlinear optical device for receiving fundamental-wave light emitted from the semiconductor laser and outputting second harmonic wave light, a first optical detector for monitoring an output of the fundamental-wave light, a second optical detector for monitoring the second harmonic wave light, and a control portion for controlling at least a drive current for driving the semiconductor laser. The control portion includes a control parameter determiner, and a wavelength controller. The control parameter determiner changes a DBR current supplied to the DBR region and a phase current supplied to the phase region to obtain a changing point that corresponds to a discontinuous change in an electrical signal from the first optical detector, and determines a control parameter for controlling the DBR current and the phase current such that the relationship between the DBR current and the phase current is not located on the changing point. The wavelength controller controls the DBR current and the phase current pursuant to the control parameter such that an oscillation wavelength of the semiconductor laser can be continuously controlled.
    • 光波长转换装置包括具有增益区域,相位区域和分布布拉格反射区域的半导体激光器,用于接收从半导体激光器发射的基波光并输出二次谐波光的非线性光学装置, 用于监视基波输出的第一光检测器,用于监测第二谐波光的第二光检测器,以及用于至少控制用于驱动半导体激光器的驱动电流的控制部分。 控制部分包括控制参数确定器和波长控制器。 控制参数确定器改变提供给DBR区域的DBR电流和提供给相位区域的相电流,以获得对应于来自第一光学检测器的电信号的不连续变化的变化点,并且确定用于控制的控制参数 DBR电流和相电流使得DBR电流和相电流之间的关系不位于变化点上。 波长控制器根据控制参数控制DBR电流和相电流,使得能够连续地控制半导体激光器的振荡波长。
    • 18. 发明授权
    • Optical analog-digital converter provided with a nonlinear optical
element and an optical feedback system for the output lights of said
element
    • 具有非线性光学元件的光模拟数字转换器和用于所述元件的输出光的光学反馈系统
    • US4926177A
    • 1990-05-15
    • US195950
    • 1988-05-19
    • Hajime Sakata
    • Hajime Sakata
    • G02F7/00
    • G02F7/00
    • An optical analog-digital converter comprises a nonlinear optical element having a threshold value for the intensity of an input light and producing a first and a second output light from the input light with the threshold value as a reference. The optical element produces a first output light of intensity corresponding to a digital signal meaning the digital 0 and a second output light of intensity proportional to the input light intensity when the intensity of the input light is smaller than the threshold value, and produces a first output light of an intensity corresponding to a digital signal meaning the digit 1 and a second output light of intensity equal to the input light intensity minus the threshold value when the intensity of the input light is greater than the threshold value. A device inputs to the nonlinear optical element a light having an intensity distribution corresponding to an analog signal, an optical feedback system causes the second output light of the nonlinear optical element produced from the input light to be again input to the nonlinear optical element, and a device provided in the feedback system amplifiers the second output light.
    • 光学模拟数字转换器包括具有用于输入光的强度的阈值的非线性光学元件,并且以阈值作为基准产生来自输入光的第一和第二输出光。 所述光学元件产生与数字信号相对应的强度的第一输出光,所述数字信号意味着数字0,以及当输入光的强度小于阈值时与输入光强度成比例的强度的第二输出光,并且产生第一 当输入光的强度大于阈值时,输出对应于意指数字1的数字信号的强度的输出光和等于输入光强度减去阈值的强度的第二输出光。 一种设备向非线性光学元件输入具有对应于模拟信号的强度分布的光,光学反馈系统使得从输入光产生的非线性光学元件的第二输出光再次输入到非线性光学元件,并且 设置在反馈系统中的装置对第二输出光进行放大。
    • 20. 发明授权
    • Control method of distributed Bragg reflection semiconductor laser, and image projecting apparatus
    • 分布式布拉格反射半导体激光器的控制方法和图像投影装置
    • US07809032B2
    • 2010-10-05
    • US12363708
    • 2009-01-30
    • Kazunari FujiiHajime SakataYukio Furukawa
    • Kazunari FujiiHajime SakataYukio Furukawa
    • H01S3/13H01S5/00
    • H04N9/3129H01S5/005H01S5/0092H01S5/06256H01S5/06804
    • A DBR semiconductor laser is controlled in an image projecting apparatus, which includes the DBR laser having a phase and DBR region, a light wavelength converting device for converting fundamental-wave light emitted from the DBR laser into second harmonic wave light, an optical deflector for scanning the second harmonic wave in a one or two-dimensional manner, and a modulating portion for modulating the DBR laser. Coefficient calculating and wavelength adjusting steps are performed within a non-drawing time. The coefficient calculating step calculates at least one coefficient in a relationship between a DBR current to be injected into the DBR region and a phase current to be injected into the phase region for continuously shifting the wavelength of the fundamental-wave light. The wavelength adjusting step changes DBR current injected into the DBR region and phase current injected into the phase region based on the relationship.
    • DBR半导体激光器被控制在包括具有相位和DBR区域的DBR激光器的图像投影装置中,用于将从DBR激光器发射的基波光转换成二次谐波光的光波长转换装置,用于 以一维或二维方式扫描二次谐波,以及用于调制DBR激光的调制部分。 系数计算和波长调整步骤在非绘制时间内执行。 系数计算步骤计算要注入到DBR区域的DBR电流和要注入到相位区域中的相电流之间的关系中的至少一个系数,以连续移位基波光的波长。 基于该关系,波长调整步骤改变注入DBR区域的DBR电流和注入相位区域的相电流。