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    • 31. 发明申请
    • MEMORY CONTROLLER AND MEMORY CONTROLLING METHOD
    • 存储控制器和存储器控制方法
    • US20120163113A1
    • 2012-06-28
    • US13242990
    • 2011-09-23
    • Hiroshi HatanoTakashi NishikawaMasahiko Toichi
    • Hiroshi HatanoTakashi NishikawaMasahiko Toichi
    • G11C8/00
    • G06F9/3455G06F9/30043G06F9/30109G06F9/345
    • A memory controller includes: a first generating unit that generates a read-address to read a data element sequence having a plurality of data elements from a bank of a memory; a second generating unit that generates a position signal indicating a position of a data element to be selected from the data element sequence, and an order signal indicating a storing order for storing the data element to be selected into a register; and a selector unit that selects, according to the position signal, the data element to be selected from the data element sequence read out from each of the plurality of the banks, and stores the selected data element in the storing order indicated by the order signal into the register, wherein the data element stored in the register is processed in the storing order by a vector processor.
    • 存储器控制器包括:第一生成单元,其生成读取地址以从存储器的存储体读取具有多个数据元素的数据元素序列; 第二生成单元,生成指示要从数据元素序列中选择的数据元素的位置的位置信号,以及指示用于将要选择的数据元素存储到寄存器中的存储顺序的顺序信号; 以及选择器单元,其根据所述位置信号从从所述多个存储体中的每一个读出的数据元素序列中选择要选择的数据元素,并将所选择的数据元素存储在由所述订单信号指示的存储顺序中 进入寄存器,其中通过矢量处理器以存储顺序处理存储在寄存器中的数据元素。
    • 33. 发明申请
    • Fuel cell generation system
    • 燃料电池生成系统
    • US20060188764A1
    • 2006-08-24
    • US10565476
    • 2004-07-23
    • Akinari NakamuraMasataka OzekiYoshikazu TanakaTakashi Nishikawa
    • Akinari NakamuraMasataka OzekiYoshikazu TanakaTakashi Nishikawa
    • H01M8/04H01M8/06F02K9/00
    • H01M8/04955H01M8/04223H01M8/04298H01M8/04537H01M8/0612H01M16/006H02J3/28H02J2001/004Y02P90/40
    • A power generation system (200) of the present invention comprises a power generation portion (202) configured to generate power, a load power detecting means (205) configured to detect a load power supplied from a power source including the power generation portion to a load, an operation stop determination means (209) configured to stop a power generation operation of the power generation portion based on the load power detected by the load power detecting means and a stop condition; and a stop condition setting means (220) configured to set the stop condition, wherein the stop condition setting means sets different stop conditions in a plurality of time periods, and wherein the operation stop determination means stops the power generation operation of the power generation portion based on each of the different stop conditions set by the stop condition setting means and the load power detected by the load power detecting means.
    • 本发明的发电系统(200)包括被配置为产生电力的发电部分(202),负载功率检测装置(205),被配置为检测从包括发电部分的电源提供的负载功率到 运行停止判定单元,其基于由负载功率检测单元检测出的负载功率和停止状态来停止发电部的发电动作; 以及停止条件设定装置,其被配置为设置停止条件,其中所述停止条件设定装置在多个时间段中设定不同的停止条件,并且其中所述操作停止确定装置停止所述发电部分的发电操作 基于由停止条件设定单元设定的各个停止条件和由负载功率检测单元检测出的负载功率。
    • 35. 发明申请
    • Nonvolatile flip-flop circuit and method of driving the same
    • 非易失性触发电路及其驱动方法
    • US20050206421A1
    • 2005-09-22
    • US11080454
    • 2005-03-16
    • Takashi NishikawaKenji ToyodaTakashi Ohtsuka
    • Takashi NishikawaKenji ToyodaTakashi Ohtsuka
    • G11C11/22H03K3/356H03K3/289
    • H03K3/356008G11C11/22
    • The present invention provides a method of driving a nonvolatile flip-flop circuit comprising the following steps of: a data hold step of holding an input data signal D utilizing polarization of a ferroelectric material of a ferroelectric gate transistor (601) when the data signal D is input while a first clocked inverter (604), a second clocked inverter (603), and a third switching element (602) are turned on and a first switching element (605), a second switching element (607), and a third clocked inverter (608) are turned off; and a data output step of outputting an output signal Q (−Q) based on the held data signal D placing the first clocked inverter (604), the second clocked inverter (603), and the third switching element (602) in the OFF state and placing the first switching element (605), the second switching element (607), and the third clocked inverter (608) in the ON state so as to interrupt an input of a data signal and maintain a polarization state of the ferroelectric material of the ferroelectric gate transistor (601).
    • 本发明提供了一种驱动非易失性触发电路的方法,包括以下步骤:数据保持步骤,当数据信号D(D)被利用时,利用铁电栅极晶体管(601)的铁电材料的极化来保持输入数据信号D 在第一时钟反相器(604),第二时钟反相器(603)和第三开关元件(602)导通时,第一开关元件(605),第二开关元件(607)和第三开关元件 时钟反相器(608)关闭; 以及数据输出步骤,基于将第一时钟反相器(604),第二时钟反相器(603)和第三开关元件(602)放置在OFF中的保持数据信号D输出输出信号Q(-Q) 状态,并且将第一开关元件(605),第二开关元件(607)和第三时钟反相器(608)置于导通状态,以便中断数据信号的输入并保持铁电材料的极化状态 的铁电栅极晶体管(601)。