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    • 49. 发明公开
    • FASTENING TOOL
    • 紧固工具
    • EP3184245A1
    • 2017-06-28
    • EP15787887.7
    • 2015-01-21
    • TOHNICHI MFG. CO., LTD.
    • YOKOYAMA, TetsuyaYAMAMOTO, YasuhiroOGATA, TomohiroTAKAKU, Satoshi
    • B25B23/144
    • B25B23/1425H02J7/345H02J7/355Y02P90/50
    • A tightening tool such as a torque wrench is provided in which electric power can be fed to an electronic circuit with eliminating the need for a battery and achieving daily maintenance-free. In the tightening tool, when a tightening torque has reached a set torque value and a torque limiter is actuated, an electronic circuit unit that has obtained a detection signal outputted from a torque limiter actuation detection unit outputs a tightening completion signal. The tightening tool has a power generation unit for feeding electric power to the electronic circuit unit at least during the actuation of the torque limiter. The power generation unit performs photovoltaic power generation, electromagnetic induction power generation, power generation by conversion from mechanical energy into electrical energy, or temperature difference power generation.
    • 提供了一种紧固工具,例如扭矩扳手,其中可以将电力供应给电子电路,而不需要电池并且实现了每日免维护。 在拧紧工具中,当拧紧扭矩达到设定扭矩值并且扭矩限制器被致动时,获得从扭矩限制器动作检测单元输出的检测信号的电子电路单元输出拧紧完成信号。 紧固工具具有用于至少在致动转矩限制器期间向电子电路单元供给电力的发电单元。 发电单元执行光伏发电,电磁感应发电,通过从机械能转换成电能的发电或温差发电。
    • 50. 发明公开
    • ELECTRICAL STORAGE SYSTEM, AND ELECTRICAL STORAGE METHOD
    • 电存储系统和电存储方法
    • EP3176905A1
    • 2017-06-07
    • EP15870054.2
    • 2015-12-17
    • Fujikura Ltd.
    • YAMAMOTO KazuhiroOKADA KenichiYANAGIMOTO Ryoji
    • H02J7/34H02J7/35
    • H01M10/482H01L31/042H01M10/44H02J1/12H02J3/32H02J7/0006H02J7/0031H02J7/0063H02J7/0078H02J7/0086H02J7/34H02J7/345H02J7/35H02J9/02H02J13/00H02J2007/004H02J2007/0067H02S40/38Y02E10/50Y02P90/50
    • A power storage system of the invention, includes: a power generator that performs environmental power generation; a first storage battery that is supplied with power generated by the power generator; a second storage battery having smaller capacitance than that of the first storage battery; a first switcher that connects or disconnects the first storage battery to or from a power supply line for the power generated by the power generator and a load device; a second switcher that connects or disconnects the second storage battery to or from the power supply line for the power generated by the power generator and the load device; a first switching unit that compares a voltage supplied to the load device with first and second predetermined threshold voltages and controls the first switcher according to a result of the comparison; and a second switching unit that compares the voltage supplied to the load device with third and fourth predetermined threshold voltages and controls the second switcher according to a result of the comparison, wherein the third threshold voltage is set to be higher than the first threshold voltage, the second threshold voltage is set to be higher than the third threshold voltage, and the fourth threshold voltage is set to be higher than the third threshold voltage, wherein the first switching unit performs control such that the first switcher enters an open state when the voltage supplied to the load device becomes equal to or lower than the first threshold voltage and performs control such that the first switcher enters a connected state when the voltage supplied to the load device becomes equal to or higher than the second threshold voltage, and wherein the second switching unit performs control to cause the second switcher to enter the connected state so that the first storage battery is connected in parallel with the second storage battery when the voltage supplied to the load device becomes equal to or lower than the third threshold voltage and performs control to cause the second switcher to enter an open state so that the second storage battery connected in parallel with the first storage battery is disconnected from the first storage battery when the voltage supplied to the load device becomes equal to or higher than the fourth threshold voltage.
    • 本发明的蓄电系统包括:进行环境发电的发电机; 第一蓄电池,被供应由所述发电机产生的电力; 具有比第一蓄电池小的电容的第二蓄电池; 第一开关,其将所述第一蓄电池与用于由所述发电机和负载装置所生成的电力的供电线路连接或断开; 第二开关,用于将第二蓄电池与发电机和负载装置产生的电力相连接或断开连接到电源线或从电源线断开第二蓄电池; 第一开关单元,其将提供给所述负载装置的电压与第一预定阈值电压和第二预定阈值电压进行比较,并且根据所述比较的结果来控制所述第一开关; 以及第二开关单元,其将提供给所述负载装置的电压与第三和第四预定阈值电压进行比较,并且根据所述比较结果来控制所述第二开关器,其中所述第三阈值电压被设置为高于所述第一阈值电压, 所述第二阈值电压被设定为高于所述第三阈值电压,并且所述第四阈值电压被设定为高于所述第三阈值电压,其中,所述第一开关单元执行控制,使得当所述第一开关单元 提供给所述负载装置的电压等于或低于所述第一阈值电压,并且执行控制,使得当提供给所述负载装置的电压等于或高于所述第二阈值电压时,所述第一开关器进入连接状态,并且其中,所述第二开关 切换单元执行控制以使第二切换器进入连接状态,使得第一储存空间 当提供给负载装置的电压等于或低于第三阈值电压时,ery与第二蓄电池并联连接,并且执行控制以使第二开关进入打开状态,使得并联连接的第二蓄电池 当提供给负载装置的电压等于或高于第四阈值电压时,第一蓄电池与第一蓄电池断开。