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    • 22. 发明授权
    • Input and output port circuit
    • 输入输出端口电路
    • US06774697B2
    • 2004-08-10
    • US10325929
    • 2002-12-23
    • Yil Suk YangJong Dae KimTae Moon RohJin Gun KooDae Woo LeeSang Gi KimIl Yong Park
    • Yil Suk YangJong Dae KimTae Moon RohJin Gun KooDae Woo LeeSang Gi KimIl Yong Park
    • H03L500
    • H03K19/0016
    • The present invention relates to an input and output port circuit. The input and output port circuit comprises a signal register for storing output signals, an input/output register at which an input/output control signal for determining an input/output direction is stored, a plurality of control registers, a power supply switch circuit for selectively supplying a low voltage or a high voltage depending on a power mode control signal, a signal direction control circuit for determining the direction of the signal depending on a value of the signal register and a value of the input/output register, an output control circuit driven depending on the value of the control register and an output of the signal direction control circuit, and an output driving circuit for outputting the low voltage, the high voltage or the ground value depending on an output of the signal direction control circuit and an output of the output control circuit. The high voltage and the low voltage can be simultaneously driven using only a single output driving circuit and the single output driving circuit is constructed in multiple stages and is selectively driven by the output control register. Therefore, the power consumption can be saved.
    • 本发明涉及输入和输出端口电路。 输入输出端口电路包括用于存储输出信号的信号寄存器,存储用于确定输入/输出方向的输入/输出控制信号的输入/输出寄存器,多个控制寄存器,用于 选择性地根据功率模式控制信号提供低电压或高电压;信号方向控制电路,用于根据信号寄存器的值确定信号的方向,以及输入/输出寄存器的值,输出控制 电路根据控制寄存器的值和信号方向控制电路的输出驱动,以及输出驱动电路,用于根据信号方向控制电路的输出输出低电压,高电压或接地值,以及 输出控制电路的输出。 高电压和低电压可以使用单个输出驱动电路同时驱动,单输出驱动电路构成多级,由输出控制寄存器有选择地驱动。 因此,可以节省功耗。
    • 25. 发明授权
    • Method for fabricating a high-voltage high-power integrated circuit device
    • 高压大功率集成电路器件的制造方法
    • US06855581B2
    • 2005-02-15
    • US10153975
    • 2002-05-23
    • Tae Moon RohDae Woo LeeYil Suk YangIl Yong ParkSang Gi KimJin Gun KooJong Dae Kim
    • Tae Moon RohDae Woo LeeYil Suk YangIl Yong ParkSang Gi KimJin Gun KooJong Dae Kim
    • H01L21/76H01L21/84H01L27/12
    • H01L27/1203H01L21/84
    • The present invention relates to a method of fabricating a high-voltage high-power integrated circuit device using a substrate of a SOI structure in which an insulating film and a silicon layer are sequentially stacked on a silicon substrate. The method comprising the steps of sequentially forming an oxide film and a photoresist film on the silicon layer and then performing a photolithography process using a trench mask to pattern the photoresist film; patterning the oxide film using the patterned photoresist film as a mask and then removing the photoresist film remained after the patterning; etching the silicon layer using the patterned oxide film as a mask until the insulating film is exposed to form a trench; forming a nitride film on the entire surface including the trench, performing an annealing process and depositing polysilicon on the entire surface so that the trench is buried; and sequentially removing the polysilicon and the nitride film until the silicon layer is exposed to flatten the surface, thus forming a device isolating film for electrical isolation between devices within the trench. Therefore, the present invention can effectively reduce the isolation area of the trench between the high-voltage high-power device and the logic CMOS device and can easily control the concentration of a deep well.
    • 本发明涉及使用其中绝缘膜和硅层依次层叠在硅衬底上的SOI结构的衬底的高压大功率集成电路器件的制造方法。 该方法包括以下步骤:在硅层上依次形成氧化物膜和光致抗蚀剂膜,然后使用沟槽掩模进行光刻工艺以对光刻胶膜进行图案化; 使用图案化的光致抗蚀剂膜作为掩模来图案化氧化膜,然后在图案化之后除去光致抗蚀剂膜; 使用所述图案化氧化膜作为掩模蚀刻所述硅层,直到所述绝缘膜暴露以形成沟槽; 在包括沟槽的整个表面上形成氮化物膜,执行退火处理并在整个表面上沉积多晶硅,使得沟槽被埋置; 并且顺序地去除多晶硅和氮化物膜,直到硅层暴露以使表面变平,从而形成用于在沟槽内的器件之间进行电隔离的器件隔离膜。 因此,本发明能够有效地降低高压大功率器件与逻辑CMOS器件之间的沟槽的隔离面积,能够容易地控制深井的浓度。
    • 27. 发明授权
    • Latch circuit and flip-flop
    • 锁存电路和触发器
    • US07420403B2
    • 2008-09-02
    • US11520165
    • 2006-09-13
    • Yil Suk YangJong Dae KimTae Moon RohDae Woo Lee
    • Yil Suk YangJong Dae KimTae Moon RohDae Woo Lee
    • H03K3/00
    • H03K19/0013H03K3/356156H03K3/356182
    • A high-reliability, multi-threshold complementary metal oxide semiconductor (CMOS) latch circuit is presented that uses both low and high threshold inverters. The multi-threshold latch circuit includes: a low threshold forward clock inverter inverting an input-terminal logic state and applying the inverted logic state to an output-terminal logic state when a clock is in a first logic state; and a high threshold backward clock inverter forming a circular latch structure together with the forward clock inverter, and inverting an input-terminal logic state and applying the inverted logic state to an output logic state when the clock is in a second logic state.
    • 提出了一种高可靠性,多阈值互补金属氧化物半导体(CMOS)锁存电路,其使用低和高阈值逆变器。 多阈值锁存电路包括:当门限处于第一逻辑状态时,低阈值正向时钟反相器反相输入端逻辑状态并将反相逻辑状态施加到输出端逻辑状态; 以及高阈值反向时钟反相器,与正向时钟反相器一起形成圆形锁存结构,并且在时钟处于第二逻辑状态时反相输入端逻辑状态并将反相逻辑状态应用于输出逻辑状态。
    • 30. 发明授权
    • Energy storage system with wired and wireless energy transfer function
    • 储能系统具有有线和无线能量传递功能
    • US09391462B2
    • 2016-07-12
    • US13596618
    • 2012-08-28
    • Yil Suk YangJong Dae KimSe Wan HeoJi Min OhMin Ki KimJong Kee Kwon
    • Yil Suk YangJong Dae KimSe Wan HeoJi Min OhMin Ki KimJong Kee Kwon
    • H01F27/42H02J5/00H02J7/00
    • H02J50/00H02J5/005H02J7/0063H02J7/025
    • Disclosed is an energy storage system provided with a wired and wireless energy transfer function. The energy storage system includes: an energy input unit to which energy generated from a plurality of energy sources is input; an energy input control unit for selecting one energy source from among the plurality of energy sources, and transferring energy of the selected energy source through operation in a wired operation mode or a wireless operation mode; a wireless energy transmitting/receiving unit for wirelessly transmitting/receiving the energy of the selected energy source during the operation in the wireless operation mode of the energy input control unit; an energy storage/control unit for storing the energy of the selected energy source; an energy output unit for consuming the energy stored in the energy storage/control unit; and an energy output control unit for distributing the energy stored in the energy storage/control unit to the energy output unit.
    • 公开了一种具有有线和无线能量传递功能的能量存储系统。 能量存储系统包括:输入从多个能量源产生的能量的能量输入单元; 能量输入控制单元,用于从所述多个能量源中选择一个能量源,并且通过在有线操作模式或无线操作模式中的操作来传送所选择的能量源的能量; 无线能量发送/接收单元,用于在能量输入控制单元的无线操作模式下的操作期间,无线地发送/接收所选择的能量源的能量; 用于存储所选能量源的能量的能量存储/控制单元; 用于消耗存储在能量存储/控制单元中的能量的能量输出单元; 以及能量输出控制单元,用于将存储在能量存储/控制单元中的能量分配给能量输出单元。