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
    • 4. 发明申请
    • AC-COUPLED INTERFACE CIRCUIT
    • 交流耦合接口电路
    • US20100321069A1
    • 2010-12-23
    • US12526227
    • 2007-07-23
    • Yoshihide KomatsuTsuyoshi EbuchiSatoshi HoriTakashi HirataJunji Nakatsuka
    • Yoshihide KomatsuTsuyoshi EbuchiSatoshi HoriTakashi HirataJunji Nakatsuka
    • H03K3/00
    • H04L25/0266H04L25/0272
    • A differential driver (101) includes a pair of output terminals connected to a pair of signal lines (102A and 102B), wherein in a data transmission operation, the differential driver (101) converts transmit data (TXD) to a differential signal to output the differential signal. A differential receiver includes a pair of input terminals connected to the pair of signal lines (102A and 102B), wherein in a data reception operation, the differential receiver receives a differential signal transferred to the pair of signal lines and converts the differential signal to receive data (RXD). A potential setting section (106) sets a potential of the pair of signal lines to a predetermined stable potential before the differential signal is transferred to the pair of signal lines (102A and 102B).
    • 差分驱动器(101)包括连接到一对信号线(102A和102B)的一对输出端子,其中在数据传输操作中,差分驱动器(101)将发送数据(TXD)转换为差分信号以输出 差分信号。 差分接收器包括连接到该对信号线(102A和102B)的一对输入端,其中在数据接收操作中,差分接收器接收传送到该对信号线的差分信号,并将差分信号转换成接收 数据(RXD)。 电位设定部(106)将差分信号传送到信号线对(102A,102B)之前,将一对信号线的电位设定为规定的稳定电位。
    • 5. 发明申请
    • Discharge tube and surge absorbing device
    • 放电管和浪涌吸收装置
    • US20060209485A1
    • 2006-09-21
    • US10549586
    • 2004-04-01
    • Koichi ImaiSatoshi HoriYoichi MatsuyamaYoshikazu Hanamura
    • Koichi ImaiSatoshi HoriYoichi MatsuyamaYoshikazu Hanamura
    • H02H9/06
    • H01J17/40H01J17/20H01T4/12
    • A discharge tube 10 formed by forming an airtight envelope 16 by hermetically sealing openings at both ends of a case member 12 made of an insulating material opened at both ends with a pair of cap members 14, 14 that double a discharge electrode, forming a predetermined discharge gap 22 between discharge electrode portions 18, 18 of the cap members 14, 14, forming on an inner wall surface 24 of the case members 12 a plurality of linear triggering discharge films 28 of which both ends are disposed separated by a small discharge gap 26 opposite to the cap members 14, 14 that double a discharge electrode, forming on a surface of the discharge electrode portion 18 a film 30 containing an alkali iodide, and encapsulating a discharge gas containing Kr (krypton) in the airtight envelope 16.
    • 一种放电管10,其通过在由两个开口的绝缘材料制成的壳体构件12的两端处气密地密封开口形成气密密封层16,该盖构件14,14使放电电极倍增,形成预定的 盖体14,14的放电电极部分18,18之间的放电间隙22在壳体部件12的内壁面24上形成多个线性触发放电膜28,两个线性触发放电膜28的两端分别设置有小的放电间隙 26相对于盖构件14,14相对的两个放电电极,在放电电极部分18的表面上形成含有碱金属碘化物的膜30,并将包含Kr(氪)的放电气体封装在气密封壳16中。
    • 6. 发明授权
    • AC-coupled interface circuit
    • 交流耦合接口电路
    • US08035424B2
    • 2011-10-11
    • US12526227
    • 2007-07-23
    • Yoshihide KomatsuTsuyoshi EbuchiSatoshi HoriTakashi HirataJunji Nakatsuka
    • Yoshihide KomatsuTsuyoshi EbuchiSatoshi HoriTakashi HirataJunji Nakatsuka
    • H03B1/00
    • H04L25/0266H04L25/0272
    • An AC-coupled interface circuit on a semiconductor integrated circuit apparatus performing a bidirectional data transfer via a differential transmission line includes a differential driver, a differential receiver and a potential setting section. The differential driver includes a pair of output terminals connected to a pair of signal lines. The differential receiver includes a pair of input terminals connected to the pair of signal lines. In a data transmission operation, the differential driver converts transmit data to a differential signal to output the differential signal. In a data reception operation, the differential receiver receives a differential signal transferred to the pair of signal lines and converts the differential signal to receive data. The potential setting section sets a potential of the pair of signal lines to a predetermined stable potential before the differential signal is transferred to the pair of signal lines.
    • 通过差分传输线执行双向数据传输的半导体集成电路装置上的AC耦合接口电路包括差分驱动器,差分接收器和电位设定部分。 差分驱动器包括连接到一对信号线的一对输出端子。 差分接收器包括连接到该对信号线的一对输入端子。 在数据传输操作中,差分驱动器将发送数据转换为差分信号以输出差分信号。 在数据接收操作中,差分接收器接收传送到该对信号线的差分信号,并将差分信号转换为接收数据。 电位设定部分将差分信号传送到一对信号线之前,将该对信号线的电位设定为预定的稳定电位。
    • 9. 发明授权
    • Fault diagnosis device
    • 故障诊断装置
    • US5587930A
    • 1996-12-24
    • US739591
    • 1991-07-24
    • Satoshi HoriTeruyo OmoriMakoto Sakagami
    • Satoshi HoriTeruyo OmoriMakoto Sakagami
    • G01D21/00G01M99/00G06F9/44G06N5/04G07C3/00G01B7/00
    • G01M99/00G07C3/00Y10S706/911Y10S706/912Y10S706/914Y10S706/915
    • A fault diagnosis device searches for causes of fault of a device under test via a fault tree having a tree structure corresponding to the hardware organization of the device under test, where the nodes of the fault tree correspond to the units of the device under test. Some of the nodes including the root node have three or more child nodes. A test table associated with each node other than a leaf includes: a description of parameters to be detected by detector units; test conditions with respect to the parameters detected by the detector units; and fault probability table representing the fault probability values and the child node names corresponding to the respective patterns of results of the tests. The whole fault tree may be divided into a main fault tree stored in the main memory and fault branch trees stored in auxiliary memory. Then, the fault branch trees are loaded into the main memory when needed.
    • 故障诊断装置通过具有对应于被测设备的硬件组织的树形结构的故障树,检查被测设备的故障原因,其中故障树的节点对应于被测设备的单元。 包括根节点的一些节点具有三个或更多个子节点。 与除叶之外的每个节点相关联的测试表包括:由检测器单元检测的参数的描述; 相对于由检测器单元检测到的参数的测试条件; 和故障概率表,其表示故障概率值和对应于测试结果的相应模式的子节点名称。 整个故障树可以分为存储在主存储器中的主故障树和存储在辅助存储器中的故障分支树。 然后,故障分支树在需要时被加载到主存储器中。