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    • 41. 发明申请
    • BATTERY STATE MONITORING CIRCUIT AND BATTERY DEVICE
    • 电池状态监测电路和电池装置
    • US20110298463A1
    • 2011-12-08
    • US13092602
    • 2011-04-22
    • Hiroshi SaitoKazuaki Sano
    • Hiroshi SaitoKazuaki Sano
    • G01N27/416H02J7/00
    • H02J7/0016G01R31/3658H01M10/482H02J7/0026
    • Provided are a battery state monitoring circuit and a battery device, in which, even when one secondary battery becomes an overcharged state or an overdischarged state and then a voltage detection circuit operates, power is not consumed in only the one secondary battery. The battery state monitoring circuit includes: a plurality of voltage detection circuits which are provided for a plurality of secondary batteries, respectively, for detecting voltages of the plurality of secondary batteries; and a current bypass circuit provided in each of the plurality of voltage detection circuits, for allowing an operation current of the each of the plurality of voltage detection circuits to flow into a ground terminal. Therefore, when only one secondary battery becomes an overcharged state or an overdischarged state, the battery device operates so that the power of all the secondary batteries is consumed to prevent voltages between the secondary batteries from being unbalanced.
    • 提供一种电池状态监视电路和电池装置,其中即使一个二次电池变得过充电状态或过放电状态,然后电压检测电路工作,仅在一个二次电池中不消耗电力。 电池状态监视电路包括:多个电压检测电路,分别为多个二次电池提供,用于检测多个二次电池的电压; 以及设置在所述多个电压检测电路中的每一个中的电流旁路电路,用于允许所述多个电压检测电路中的每一个的操作电流流入接地端子。 因此,当只有一个二次电池变为过充电状态或过放电状态时,电池装置工作,以便消耗所有二次电池的电力,以防止二次电池之间的电压不平衡。
    • 49. 发明申请
    • Terminal Identification Method, Authentication Method, Authentication System, Server, Terminal, Wireless Base Station, Program, and Recording Medium
    • 终端识别方法,认证方式,认证系统,服务器,终端,无线基站,程序和记录介质
    • US20110072121A1
    • 2011-03-24
    • US12952321
    • 2010-11-23
    • Koichi TakasugiKoki MitaniHiroshi Saito
    • Koichi TakasugiKoki MitaniHiroshi Saito
    • G06F15/177
    • H04L63/0869H04L9/3236H04L9/3273H04L2209/805H04W12/02H04W12/06
    • A terminal identification method is provided which enables two-way communications between terminals and a network while identifying terminal IDs and protecting privacy. Also, authentication method and system are provided which require no complicated calculating process, less steps and smaller amount for wireless communications, and less power consumption. A server and terminal share a hash function and an initial value determined for each terminal, calculate the same temporary ID by hashing the initial value the same number of times with the hash function, and identify the terminal using the calculated temporary ID. The server and the terminal also hold a common hash function and authentication information, acquire an authenticating communication parameter from communication parameters temporarily common during communication, and generate an authentication key using the authentication information, the authenticating communication parameter, and the hash function. Then at least one of the server and terminal performs authentication using the generated authentication key.
    • 提供一种终端识别方法,其能够在识别终端ID并保护隐私的同时实现终端与网络之间的双向通信。 此外,提供了不需要复杂的计算处理,较少的步骤和更少的无线通信量以及更少的功耗的认证方法和系统。 服务器和终端共享哈希函数和为每个终端确定的初始值,通过使用散列函数对初始值进行相同次数的散列来计算相同的临时ID,并使用计算的临时ID识别终端。 服务器和终端还具有通用散列函数和认证信息,从通信中临时通用的通信参数获取认证通信参数,并使用认证信息,认证通信参数和散列函数生成认证密钥。 然后至少一个服务器和终端使用生成的认证密钥进行认证。