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
    • 52. 发明授权
    • Power supply
    • 电源
    • US5914586A
    • 1999-06-22
    • US43998
    • 1998-04-02
    • Hiroyuki FujitaKoichi Inoue
    • Hiroyuki FujitaKoichi Inoue
    • G05F3/22G05F3/26H02H7/18H02J7/00
    • G05F3/222G05F3/265H02H7/18H02J7/0031
    • A power supply unit has an overdischarge detection circuit for detecting overdischarge of a power source, an overcurrent detection circuit for detecting overcurrent, and a stopping circuit for stopping overdischarge or overcurrent in accordance with an overdischarge detection signal or an overcurrent detection signal. The power supply unit is further provided with a delay circuit to prevent the overdischarge detection circuit and the overcurrent detection circuit from being activated erroneously by external noises. This delay circuit provides a variable delay time so that the delay time will be longer when overdischarge is detected than when overcurrent is detected. This makes it possible to stop overdischarge and overcurrent without fail.
    • PCT No.PCT / JP97 / 03048 Sec。 371日期:1998年4月2日 102(e)1998年4月2日PCT 1997年8月28日PCT公布。 公开号WO98 / 09361 日期1998年3月5日电源单元具有用于检测电源的过放电的过放电检测电路,用于检测过电流的过电流检测电路,以及根据过放电检测信号或过电流检测停止过放电或过电流的停止电路 信号。 电源单元还设置有延迟电路,以防止过放电检测电路和过电流检测电路被外部噪声错误地激活。 该延迟电路提供可变延迟时间,使得当检测到过度放电时,延迟时间将比检测到过电流时更长。 这使得可以停止过放电和过电流。
    • 57. 发明授权
    • Plural virtual address space processing system
    • 多个虚拟地址空间处理系统
    • US4145738A
    • 1979-03-20
    • US801571
    • 1977-05-31
    • Koichi InoueHajime NonogakiTatsuo UrakawaKazuyuki Shimizu
    • Koichi InoueHajime NonogakiTatsuo UrakawaKazuyuki Shimizu
    • G06F9/46G06F12/10G06F9/20
    • G06F12/1036
    • In a data processing system having a plurality of virtual address spaces, a virtual address is translated into a real address for accessing a main memory and the translation result is stored in a translation lookaside buffer, as in a processing system having a single virtual address space. Thereafter, in the case of the same virtual address as the above, the translation lookaside buffer is retrieved to translate the virtual address into a real address. Generally, even in the case of the same virtual addresses, if their virtual address spaces are different, the virtual addresses are translated into different real addresses. However, a control program, a control table or a common subroutine is provided in a common area in which the coordination of virtual and real addresses is always constant even in the case of different virtual address spaces. To enhance the efficiency of utilization of the translation lookaside buffer, common area indicating means is provided, by which the coordination of virtual and real addresses on the translation lookaside buffer is registered so that it can be used in common to a plurality of virtual address spaces.
    • 在具有多个虚拟地址空间的数据处理系统中,将虚拟地址转换为用于访问主存储器的实际地址,并且将转换结果存储在转换后备缓冲器中,如具有单个虚拟地址空间的处理系统 。 此后,在与上述相同的虚拟地址的情况下,检索翻译后备缓冲器以将虚拟地址转换为实际地址。 通常,即使在相同的虚拟地址的情况下,如果虚拟地址空间不同,则将虚拟地址转换成不同的实际地址。 然而,即使在不同的虚拟地址空间的情况下,在虚拟和实际地址的协调总是恒定的公共区域中提供控制程序,控制表或公共子例程。 为了提高翻译后备缓冲器的利用效率,提供了公共区域指示装置,通过该公共区域指示装置,登记了翻译后备缓冲器上的虚拟和实际地址的协调,使得它可以被共同地用于多个虚拟地址空间 。
    • 58. 发明授权
    • Battery charger for two types of rectangular battery packs
    • 两种矩形电池组的电池充电器
    • US08120318B2
    • 2012-02-21
    • US12609276
    • 2009-10-30
    • Toshiki NakashoKoichi InoueHideyo Morita
    • Toshiki NakashoKoichi InoueHideyo Morita
    • H02J7/00
    • H02J7/0045
    • The battery charger is provided with a holding cavity 2 that allows a first rectangular battery pack 30 and a second rectangular battery pack 40 to be loaded in a detachable fashion. The holding cavity has a rectangular opening and has first charging terminals 5A to contact first rectangular battery pack electrode terminals 32, and second charging terminals 5B to contact second rectangular battery pack 40 electrode terminals 42 established on a first perimeter wall 4A and second perimeter wall 4B, which are perpendicular. The battery charger charges the first rectangular battery pack through the first charging terminals when it is loaded in the holding cavity with electrode terminals 32 in contact with the first charging terminals. The battery charger charges the second rectangular battery pack through the second charging terminals when it is loaded in the holding cavity with electrode terminals in contact with the second charging terminals.
    • 电池充电器设置有保持腔2,其允许以可拆卸的方式装载第一矩形电池组30和第二矩形电池组40。 保持腔具有矩形开口,并且具有第一充电端子5A以接触第一矩形电池组电极端子32和第二充电端子5B以接触建立在第一周边壁4A和第二周壁4B上的第二矩形电池组40电极端子42 ,它们是垂直的。 当电池充电器被装载在保持腔中时,电池充电器通过第一充电端子对第一矩形电池组充电,其中电极端子32与第一充电端子接触。 电池充电器在第二充电端子被装载在保持腔中时,通过第二充电端子对第二矩形电池组充电,其中电极端子与第二充电端子接触。
    • 59. 发明申请
    • BATTERY CHARGER FOR TWO TYPES OF RECTANGULAR BATTERY PACKS
    • 两种类型的矩形电池组的电池充电器
    • US20100109605A1
    • 2010-05-06
    • US12609276
    • 2009-10-30
    • Toshiki NakashoKoichi InoueHideyo Morita
    • Toshiki NakashoKoichi InoueHideyo Morita
    • H02J7/00
    • H02J7/0045
    • The battery charger is provided with a holding cavity 2 that allows a first rectangular battery pack 30 and a second rectangular battery pack 40 to be loaded in a detachable fashion. The holding cavity has a rectangular opening and has first charging terminals 5A to contact first rectangular battery pack electrode terminals 32, and second charging terminals 5B to contact second rectangular battery pack 40 electrode terminals 42 established on a first perimeter wall 4A and second perimeter wall 4B, which are perpendicular. The battery charger charges the first rectangular battery pack through the first charging terminals when it is loaded in the holding cavity with electrode terminals 32 in contact with the first charging terminals. The battery charger charges the second rectangular battery pack through the second charging terminals when it is loaded in the holding cavity with electrode terminals in contact with the second charging terminals.
    • 电池充电器设置有保持腔2,其允许以可拆卸的方式装载第一矩形电池组30和第二矩形电池组40。 保持腔具有矩形开口,并且具有第一充电端子5A以接触第一矩形电池组电极端子32和第二充电端子5B以接触建立在第一周边壁4A和第二周壁4B上的第二矩形电池组40电极端子42 ,它们是垂直的。 当电池充电器被装载在保持腔中时,电池充电器通过第一充电端子对第一矩形电池组充电,其中电极端子32与第一充电端子接触。 电池充电器在第二充电端子被装载在保持腔中时,通过第二充电端子对第二矩形电池组充电,其中电极端子与第二充电端子接触。