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    • 1. 发明申请
    • FUSING APPARATUS FOR CORRECTING PROCESS VARIATION
    • 用于校正过程变化的熔化装置
    • US20110156747A1
    • 2011-06-30
    • US12648908
    • 2009-12-29
    • Yeon-Kug MoonJae-Ho KimIl-Yeup AhnSang-Shin LeeMin-Hwan SongKwang-Ho Won
    • Yeon-Kug MoonJae-Ho KimIl-Yeup AhnSang-Shin LeeMin-Hwan SongKwang-Ho Won
    • H03K19/00G01R31/02H03K19/094
    • H03K19/00384
    • An fusing apparatus for correcting process variation is provided. The fusing apparatus for correcting the process variation of the semiconductor device includes a fusing part including a fusing resistor fused by a current penetrating; a current driving transistor for fusing the fusing resistor by driving a fusing current according to a fusing enable signal applied; a current path part for building a current path by connecting to the fusing part, and controlling a first node voltage according to a fusing state of the fusing resistor; and a latch part for latching a second node signal inversely amplified from the first node voltage, and outputting the latch value when a power-on reset part operates in a normal mode. Using the fusing cell, the test time can be reduced and the current consumption can be greatly decreased in the fusing process.
    • 提供了一种用于校正工艺变化的定影装置。 用于校正半导体器件的工艺变化的定影装置包括:熔化部,其包括通过电流穿透而熔合的熔化电阻; 电流驱动晶体管,用于根据施加的熔断使能信号来驱动熔断电流来熔化定影电阻器; 用于通过连接到定影部分构建电流路径的电流路径部分,以及根据定影电阻器的定影状态来控制第一节点电压; 以及用于锁存从第一节点电压反向放大的第二节点信号的锁存部分,并且当上电复位部分在正常模式下操作时输出锁存值。 使用定影单元,可以降低测试时间,并可以在熔化过程中大大降低电流消耗。
    • 2. 发明授权
    • Fusing apparatus for correcting process variation
    • 用于校正工艺变化的定影装置
    • US08026737B2
    • 2011-09-27
    • US12648908
    • 2009-12-29
    • Yeon-Kug MoonJae-Ho KimIl-Yeup AhnSang-Shin LeeMin-Hwan SongKwang-Ho Won
    • Yeon-Kug MoonJae-Ho KimIl-Yeup AhnSang-Shin LeeMin-Hwan SongKwang-Ho Won
    • H03K19/00
    • H03K19/00384
    • An fusing apparatus for correcting process variation is provided. The fusing apparatus for correcting the process variation of the semiconductor device includes a fusing part including a fusing resistor fused by a current penetrating; a current driving transistor for fusing the fusing resistor by driving a fusing current according to a fusing enable signal applied; a current path part for building a current path by connecting to the fusing part, and controlling a first node voltage according to a fusing state of the fusing resistor; and a latch part for latching a second node signal inversely amplified from the first node voltage, and outputting the latch value when a power-on reset part operates in a normal mode. Using the fusing cell, the test time can be reduced and the current consumption can be greatly decreased in the fusing process.
    • 提供了一种用于校正工艺变化的定影装置。 用于校正半导体器件的工艺变化的定影装置包括:熔化部,其包括通过电流穿透而熔合的熔化电阻; 电流驱动晶体管,用于根据施加的熔断使能信号来驱动熔断电流来熔化定影电阻; 用于通过连接到定影部分构建电流路径的电流路径部分,以及根据定影电阻器的定影状态来控制第一节点电压; 以及用于锁存从第一节点电压反向放大的第二节点信号的锁存部分,并且当上电复位部分在正常模式下操作时输出锁存值。 使用定影单元,可以降低测试时间,并可以在熔化过程中大大降低电流消耗。
    • 6. 发明授权
    • Collision-free beacon scheduling method based on distributed address assignment scheme
    • 基于分布式地址分配方案的无冲突信标调度方法
    • US08213400B2
    • 2012-07-03
    • US12394946
    • 2009-02-27
    • Jae-Ho KimMin-Hwan SongIl-Yeup AhnSang-Shin LeeTae-Hyun KimKwang-Ho Won
    • Jae-Ho KimMin-Hwan SongIl-Yeup AhnSang-Shin LeeTae-Hyun KimKwang-Ho Won
    • H04J3/00
    • H04W74/006
    • Provided is a beacon scheduling method based on a distributed address assignment scheme that schedules a beacon and minimizes data delay using non-collision of addresses in a network, such as a ZigBee network, that provides a distributed address system. In the method, a time offset Tn between beacon reception from a parent device and beacon transmission of a device in a wireless network system having a tree structure may be obtained from Tn=SD×(1+On×Bd) according to an address of the device determined by a distributed address assignment mechanism to create a beacon transmission schedule, where SD denotes a super-frame duration, On denotes a value for determining which child among sibling devices in the network the device corresponds to, and Bd denotes a maximum number of router devices that a sub-network having a depth d in a tree can have.
    • 提供了一种基于分布式地址分配方案的信标调度方法,其使用提供分布式地址系统的网络(例如ZigBee网络)中的地址的不冲突来调度信标并使数据延迟最小化。 在该方法中,可以根据Tn = SD×(1 + On×Bd)从Tn = SD×(1 + On×Bd)获得来自父设备的信标接收与具有树结构的无线网络系统中的设备的信标传输之间的时间偏移量Tn 由分布式地址分配机构确定的设备来创建信标发送调度,其中SD表示超帧持续时间,On表示用于确定设备对应的网络中的兄弟设备中的哪个小孩的值,Bd表示最大数目 具有树中深度d的子网络可以具有的路由器设备。
    • 7. 发明申请
    • Collision-Free Beacon Scheduling Method based on Distributed Address Assignment Scheme
    • 基于分布式地址分配方案的无冲突信标调度方法
    • US20100157914A1
    • 2010-06-24
    • US12394946
    • 2009-02-27
    • Jae-Ho KIMMin-Hwan SongII-Yeup AhnSang-Shin LeeTae-Hyun KimKwang-Ho Won
    • Jae-Ho KIMMin-Hwan SongII-Yeup AhnSang-Shin LeeTae-Hyun KimKwang-Ho Won
    • H04W72/12
    • H04W74/006
    • Provided is a beacon scheduling method based on a distributed address assignment scheme that schedules a beacon and minimizes data delay using non-collision of addresses in a network, such as a ZigBee network, that provides a distributed address system. In the method, a time offset Tn between beacon reception from a parent device and beacon transmission of a device in a wireless network system having a tree structure may be obtained from Tn=SD×(1+On×Bd) according to an address of the device determined by a distributed address assignment mechanism to create a beacon transmission schedule, where SD denotes a super-frame duration, On denotes a value for determining which child among sibling devices in the network the device corresponds to, and Bd denotes a maximum number of router devices that a sub-network having a depth d in a tree can have.
    • 提供了一种基于分布式地址分配方案的信标调度方法,其使用提供分布式地址系统的网络(例如ZigBee网络)中的地址的不冲突来调度信标并使数据延迟最小化。 在该方法中,可以根据Tn = SD×(1 + On×Bd)从Tn = SD×(1 + On×Bd)获得来自父设备的信标接收与具有树结构的无线网络系统中的设备的信标传输之间的时间偏移量Tn 由分布式地址分配机构确定的设备来创建信标发送调度,其中SD表示超帧持续时间,On表示用于确定设备对应的网络中的兄弟设备中的哪个小孩的值,Bd表示最大数目 具有树中深度d的子网络可以具有的路由器设备。