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    • 2. 发明申请
    • Microwave oven with a toaster and method for controlling a heater of the toaster
    • 带烤面包机的微波炉和控制烤面包机加热器的方法
    • US20080041846A1
    • 2008-02-21
    • US11889684
    • 2007-08-15
    • Jae LeeGil JungYun Cho
    • Jae LeeGil JungYun Cho
    • H05B6/06
    • A47J37/0814A47J37/08H05B6/68H05B6/80H05B2206/042
    • A microwave oven with a toaster includes a toaster casing, a heating chamber inserted in the toaster casing, a bread receiver slidably inserted in the toaster casing, and a toaster door attached to a front side of the bread receiver. The bread receiver is selectively placed in the heating chamber. The microwave oven further includes a crumb tray slidably inserted in the toaster casing for collecting crumbs of bread and a holding unit for holding bread put in the bread receiver. The crumb tray is placed under the bread receiver. Further, there is provided a process for controlling a heater of the toaster, which is capable of properly baking bread even when the toaster is continually operated.
    • 具有烤面包机的微波炉包括烤面包机壳体,插入烤面包机壳体中的加热室,可滑动地插入烤面包机壳体中的面包接收器和连接到面包接收器前侧的烤面包机门。 将面包接收器选择性地放置在加热室中。 微波炉还包括可滑动地插入烤面包机壳体中以收集面包屑的碎屑盘和用于保存放入面包接收器中的面包的保持单元。 碎屑盘放在面包接收器下面。 此外,提供了一种用于控制烤面包机加热器的过程,即使连续操作烤面包机,也能适当地烘烤面包。
    • 3. 发明申请
    • Microwave oven with a toaster and method for controlling a heater of the toaster
    • 带烤面包机的微波炉和控制烤面包机加热器的方法
    • US20060151482A1
    • 2006-07-13
    • US11372112
    • 2006-03-10
    • Jae LeeGil JungYun Cho
    • Jae LeeGil JungYun Cho
    • H05B6/64
    • A47J37/0814A47J37/08H05B6/68H05B6/80H05B2206/042
    • A microwave oven with a toaster includes a toaster casing, a heating chamber inserted in the toaster casing, a bread receiver slidably inserted in the toaster casing, and a toaster door attached to a front side of the bread receiver. The bread receiver is selectively placed in the heating chamber. The microwave oven further includes a crumb tray slidably inserted in the toaster casing for collecting crumbs of bread and a holding unit for holding bread put in the bread receiver. The crumb tray is placed under the bread receiver. Further, there is provided a process for controlling a heater of the toaster, which is capable of properly baking bread even when the toaster is continually operated.
    • 具有烤面包机的微波炉包括烤面包机壳体,插入烤面包机壳体中的加热室,可滑动地插入烤面包机壳体中的面包接收器和连接到面包接收器前侧的烤面包机门。 将面包接收器选择性地放置在加热室中。 微波炉还包括可滑动地插入烤面包机壳体中以收集面包屑的碎屑盘和用于保存放入面包接收器中的面包的保持单元。 碎屑盘放在面包接收器下面。 此外,提供了一种用于控制烤面包机加热器的过程,即使连续操作烤面包机,也能适当地烘烤面包。
    • 4. 发明申请
    • Differential charge pump
    • 差动电荷泵
    • US20050185746A1
    • 2005-08-25
    • US10672798
    • 2003-09-26
    • Soon-Gil Jung
    • Soon-Gil Jung
    • H02M3/07H03D3/24H03L7/089
    • H02M3/07H03L7/0896
    • A differential charge pump includes a transient reducing circuit that provides multiple switching current paths to reduce transients caused by the charge transfer as the charge pump is switched. The differential charge pump includes separate current sources in the transient reducing circuit that are switchably coupled to the non-active current source in the charge pump. In one embodiment, each current sources include a static current source and a variable current source that is controlled by a common mode feedback circuit. The variable current source may produce a current with less magnitude than the current produced by the static current source.
    • 差分电荷泵包括瞬态降低电路,其提供多个开关电流路径以减少当电荷泵切换时由电荷转移引起的瞬变。 差分电荷泵在瞬态降低电路中包括单独的电流源,其可切换地耦合到电荷泵中的非有功电流源。 在一个实施例中,每个电流源包括静态电流源和由共模反馈电路控制的可变电流源。 可变电流源可以产生比由静态电流源产生的电流更小的电流。
    • 5. 发明授权
    • Architecture for a hard disk drive write amplifier circuit with damping control
    • 具有阻尼控制的硬盘驱动器写放大器电路架构
    • US06683740B1
    • 2004-01-27
    • US09504160
    • 2000-02-15
    • Soon-Gil JungShang-Ching DongHiroshi TakeuchiNorio ShojiKeiji NarusawaMichiya Sako
    • Soon-Gil JungShang-Ching DongHiroshi TakeuchiNorio ShojiKeiji NarusawaMichiya Sako
    • G11B502
    • G11B5/09G11B5/012
    • A write amplifier circuit in a magnetic storage system has a cross coupling circuit and an active damp circuit to supply an improved write current to the head writing the data onto the media within the magnetic storage system. The inclusion of the cross coupling circuit decreases a rise time and a fall time associated with the write current. The active damp circuit reduces the undershoot and ringing of the write current. Thus, the write amplifier circuit is suitable for high speed data storage writing applications requiring minimal distortion of the data written to a magnetic medium. The write amplifier circuit achieves these improvements in the waveform of the write current by incorporating circuit elements and using both a negative feedback path and a feedforward path. In particular, the cross coupling circuit provides a feedforward path within the write amplifier circuit to a first current which creates a second current that is proportional and greater than the first current such that the second current increases the write current available for the head. Similarly, the active damp circuit provides a negative feedback path from the output terminals of the write amplifier circuit to a third current which creates a fourth current that is proportional and greater than the third current such that the fourth current damps an undershoot and ringing associated with the write current.
    • 磁存储系统中的写放大器电路具有交叉耦合电路和有源阻尼电路,用于向磁头提供改善的写入电流,从而将数据写入到磁存储系统内的介质上。 交叉耦合电路的包含减少了与写入电流相关联的上升时间和下降时间。 有源潮湿电路可以减少写入电流的下冲和振荡。 因此,写放大器电路适用于要求写入磁介质的数据失真最小的高速数据存储写入应用。 写放大器电路通过并入电路元件并使用负反馈路径和前馈路径来实现写入电流波形的这些改进。 特别地,交叉耦合电路将写入放大器电路内的前馈路径提供到第一电流,该第一电流产生比第一电流成比例并且大于第一电流的第二电流,使得第二电流增加可用于磁头的写入电流。 类似地,有源阻尼电路提供从写入放大器电路的输出端子到第三电流的负反馈路径,该第三电流产生比第三电流成比例并且大于第三电流的第四电流,使得第四电流抑制下行和与 写入电流。
    • 6. 发明申请
    • Monitor stand
    • 显示器支架
    • US20050199773A1
    • 2005-09-15
    • US11078409
    • 2005-03-14
    • Gil Jung
    • Gil Jung
    • G06F1/16F16M11/12F16M11/28A47G29/00
    • F16M11/28F16M11/125F16M2200/048Y10S248/92
    • A monitor stand includes a base, a cylindrical housing located on the base, the housing having an opened top and bottom, and a packing assembly in the base for opening/closing the bottom of the housing. A piston is located in the housing, the piston being movable up/down. A first elastic member is located under the piston, for being compressed when the piston moves down. A bracket is located on a top of the piston, and a tilt/swivel adjusting device has one end fixedly secured to a front of the bracket, and the other end provided to a rear of the monitor. The tilt/swivel adjusting device permits the monitor to tilt forward/backward, or swivel left/right when an external force is applied. The monitor stand is easy to handle and fabricate.
    • 监视器支架包括基座,位于基座上的圆柱形壳体,壳体具有敞开的顶部和底部,以及在基座中的用于打开/关闭壳体的底部的包装组件。 活塞位于壳体中,活塞可上下移动。 第一弹性构件位于活塞下方,用于当活塞向下移动时被压缩。 支架位于活塞的顶部,并且倾斜/旋转调节装置的一端固定地固定在支架的前部,另一端设置在监视器的后部。 倾斜/旋转调节装置允许监视器向前/向后倾斜,或者当施加外力时左/右旋转。 显示器支架易于处理和制造。
    • 7. 发明申请
    • Apparatus for automatically measuring a relatively wide range of leakage currents
    • 用于自动测量相对宽范围的漏电流的装置
    • US20050088196A1
    • 2005-04-28
    • US10929807
    • 2004-08-30
    • In ChoiDong LeeJeong AhnGil JungJang Choi
    • In ChoiDong LeeJeong AhnGil JungJang Choi
    • G01R31/02G01R19/25G01R31/12
    • G01R19/2513G01R31/1245
    • A leakage current measurement apparatus for measuring leakage currents is disclosed. The leakage current measurement apparatus automatically selects one of non-inductive shunt resistors of 10Ω, 100Ω, and 1000Ω and measures leakage currents of an outdoor isolation material for an ultra-high voltage. Additionally, the leakage current measurement apparatus is capable of measuring a relatively wide range of leakage currents with a relatively high precision, even at a remote location, as a measurement range is automatically adjusted within measurement ranges preset by a user when leakage currents of an outdoor isolation material change, and being protected against a surge possibly generated by an ultra-high voltage. Also, it can remotely measure in real-time leakage currents of an outdoor isolation material installed at a remote location over Ethernet.
    • 公开了一种用于测量泄漏电流的泄漏电流测量装置。 泄漏电流测量装置自动选择10mega,100Omega和1000Omega的非感性并联电阻器,并测量超高压室外隔离材料的漏电流。 此外,即使在远程位置,泄漏电流测量装置能够以相对较高的精度测量相对宽的泄漏电流范围,因为在用户在室外的泄漏电流下由用户预设的测量范围内自动调节测量范围 隔离材料变化,并被防止可能由超高电压产生的浪涌。 此外,它可以通过以太网远程测量安装在远程位置的室外隔离材料的实时泄漏电流。