会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Lighting-drive device, light source device, and display device
    • 照明驱动装置,光源装置和显示装置
    • US20070132402A1
    • 2007-06-14
    • US11589266
    • 2006-10-26
    • Yoshimasa KittaKenichi KobayashiHitoshi Akiho
    • Yoshimasa KittaKenichi KobayashiHitoshi Akiho
    • H05B41/36
    • H05B41/04
    • A lighting-drive device includes: a lighting-drive circuit configured to drive a lamp for lighting of the lamp; an activation circuit configured to produce an activation voltage to be applied to the lamp in order to start lighting of the lamp; and an activation operation detector configured to be provided with a sensing member for sensing an induced voltage and output an operation state notification signal depending on a state of the induced voltage. The sensing member is provided on a circuit substrate on which the activation circuit is formed in such a manner as to be allowed to sense the induced voltage. The activation current flows in response to the activation voltage produced by the activation circuit. The operation state notification signal indicates whether or not the activation circuit has operated normally. The lighting-drive circuit, the activation circuit and the activation operation detector are integrated into one single component.
    • 一种照明驱动装置,包括:照明驱动电路,被配置为驱动灯的点亮灯; 激活电路,其被配置为产生要施加到所述灯的激活电压,以便开始所述灯的点亮; 以及启动操作检测器,其被配置为设置有用于感测感应电压的感测构件,并且根据感应电压的状态输出操作状态通知信号。 感测构件设置在电路基板上,激活电路以其被允许感测感应电压的方式形成。 激活电流响应于由激活电路产生的激活电压而流动。 操作状态通知信号指示启动电路是否正常工作。 照明驱动电路,激活电路和激活操作检测器被集成到一个单一部件中。
    • 3. 发明授权
    • Method for charging secondary battery and charger used therefor
    • 二次电池充电方法及使用的充电器
    • US5576608A
    • 1996-11-19
    • US237299
    • 1994-05-03
    • Tamimi NagaiHitoshi Akiho
    • Tamimi NagaiHitoshi Akiho
    • H01M10/44H02J7/00H02J7/10
    • H02J7/0019H02J7/0024H02J7/0073H02J7/008
    • A secondary battery charging method and a charger used therefor, in which the method uses a constant current and a constant voltage such that the secondary battery is first charged with the constant current until the terminal voltage of the battery becomes a reference voltage higher than the full charging voltage for the battery and then further charged with the constant voltage which is equal to the full charging voltage. These two charging operations are switched by using various kinds of detection and control circuits so that the secondary battery is properly charged in a short time. Further, the charger of the present invention is provided with a circuit for charging a plurality of battery cells simultaneously or separately.
    • 一种二次电池充电方法及其使用的充电器,其中该方法使用恒定电流和恒定电压,使得二次电池首先以恒定电流充电,直到电池的端子电压变为高于满量程的参考电压 充电电压,然后进一步充电等于完全充电电压的恒定电压。 通过使用各种检测和控制电路来切换这两个充电操作,使得二次电池在短时间内适当地充电。 此外,本发明的充电器设置有用于同时或分开地对多个电池单元充电的电路。
    • 7. 发明授权
    • Battery charging method
    • 电池充电方式
    • US5691620A
    • 1997-11-25
    • US762300
    • 1996-12-10
    • Tamiji NagaiHitoshi Akiho
    • Tamiji NagaiHitoshi Akiho
    • H01M10/44H02J7/10H01M7/00
    • H01M10/44
    • A voltage at the time of full charging of a battery being charged is set to be larger for a lithium ion battery than for a nickel cadmium battery. Charging of the battery is then carried out using a constant current circuit and a fixed voltage circuit. If the item being charged is a lithium ion battery, a current detection circuit detects when the charging current is less than a prescribed value, a control circuit switches off a switch and the charging is halted. If the item being charged is a nickel cadmium battery, a -.DELTA.V detection circuit detects when the terminal voltage for the battery becomes low (-.DELTA.V) and the charging is halted. Different types of batteries of the same shape can therefore be charged in the same charging equipment while damage to the batteries during the charging operation is prevented.
    • 对于锂离子电池而言,充电电池充满电时的电压设定为比镍镉电池大。 然后使用恒流电路和固定电压电路对电池进行充电。 如果正在充电的物品是锂离子电池,则电流检测电路检测充电电流何时小于规定值,控制电路切断开关并停止充电。 如果正在充电的项目是镍镉电池,则DELTA V检测电路检测电池的端子电压何时变为低电平( - DELTA V),并停止充电。 因此,可以在相同的充电设备中充电相同形状的不同类型的电池,同时防止在充电操作期间损坏电池。
    • 8. 发明授权
    • Battery pack and thermostat used therefor
    • 电池组和恒温器用于此
    • US07556884B2
    • 2009-07-07
    • US10490374
    • 2002-08-21
    • Hitoshi AkihoYoshisada Okayasu
    • Hitoshi AkihoYoshisada Okayasu
    • H01M6/12
    • H01M10/486H01H37/043H01H2001/5877H01H2001/5888H01M2/1022H01M10/4257H01M10/613H01M10/623H01M10/637H01M2200/10H05K1/0201H05K1/181
    • The present invention reduces components of a circuit board and miniaturizes a battery pack using a thermostat. The battery pack includes a thermostat (9) having a casing portion (10) formed of a nonconductive material, a first electrode portion (13) disposed at one surface (10a) of the casing portion, and a second electrode portion (18) and (18) disposed at another surface (10c) opposite to the one surface of the casing portion, wherein one electrode lead (5) projected from a battery cell (3) is connected to one electrode connecting portion (7) of a circuit board (4); another electrode lead (6) is connected to the first electrode portion of the thermostat; and the second electrode portion of the thermostat is connected to another electrode connecting portion (8) of the circuit board.
    • 本发明减少电路板的部件,并且使用恒温器使电池组小型化。 电池组包括具有由非导电材料形成的壳体部分(10)的恒温器(9),设置在壳体部分的一个表面(10a)处的第一电极部分(13)和第二电极部分(18)以及 (18),设置在与所述壳体部的一个表面相对的另一表面(10c)处,其中从电池单元(3)突出的一个电极引线(5)连接到电路板的一个电极连接部分(7) 4); 另一个电极引线(6)连接到恒温器的第一电极部分; 并且恒温器的第二电极部分连接到电路板的另一个电极连接部分(8)。