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    • 2. 发明授权
    • Displays with low reflectance border regions
    • 显示低反射率边界区域
    • US09341878B2
    • 2016-05-17
    • US13607368
    • 2012-09-07
    • Cheng ChenYoung Cheol YangYoung Bae Park
    • Cheng ChenYoung Cheol YangYoung Bae Park
    • G02F1/1335G02F1/1333
    • G02F1/133502G02F1/133512G02F1/133514G02F1/133516G02F2001/133388G02F2001/133565
    • An electronic device may have a display such as a liquid crystal display. A color filter layer may be formed on a display layer such as a transparent substrate layer of the display. The color filter layer may include an array of color filter elements on an inner surface of the transparent substrate layer. The color filter layer may include opaque masking material. In an inactive portion of the display, the opaque masking material may be formed over the color filter elements and interposed between the color filter elements. In the inactive portion of the display, the opaque masking material and the color filter elements may form a ring that serves as a border region surrounding an active portion of the display. In the active portion of the display, the opaque masking layer may be patterned to from an opaque matrix that separates the color filter elements.
    • 电子设备可以具有诸如液晶显示器的显示器。 滤色器层可以形成在显示器的透明基板层等显示层上。 滤色器层可以包括在透明基底层的内表面上的滤色器元件的阵列。 滤色器层可以包括不透明掩模材料。 在显示器的非活动部分中,不透明掩模材料可以形成在滤色器元件上并且插入在滤色器元件之间。 在显示器的无效部分中,不透明掩模材料和滤色器元件可以形成用作围绕显示器的有效部分的边界区域的环。 在显示器的有源部分中,不透明掩模层可以从分离滤色器元件的不透明矩阵图案化。
    • 3. 发明授权
    • Switch control device and converter including the same
    • 开关控制装置和转换器包括相同的
    • US09148051B2
    • 2015-09-29
    • US12497261
    • 2009-07-02
    • Sang-Cheol MoonHang-Seok ChoiYoung-Bae Park
    • Sang-Cheol MoonHang-Seok ChoiYoung-Bae Park
    • H02M5/42H02M1/42
    • H02M1/4225Y02B70/126Y02P80/112
    • The present invention relates to a switch controller and a converter having the same. The converter according to the present invention includes a power transfer device that transmits input power to an output terminal as output power, a power switch connected to a first end of the power transfer device and that controls power transmission of the power transfer device, and a switch controller that controls switching operation of the power switch. The switch controller receives an output voltage detection signal corresponding to an output voltage according to the power transmitted from the power transfer device, generates a duty control signal corresponding to a difference between the output voltage detection signal and a reference signal for controlling the output voltage, and determines turn-on/off of the power switch by using the duty control signal, and a DC gain of a feedback transfer function between the reference signal and the output voltage has a constant value.
    • 本发明涉及开关控制器和具有该开关控制器的转换器。 根据本发明的转换器包括将输入功率作为输出功率传输到输出端的电力传送装置,连接到电力传送装置的第一端并控制电力传送装置的电力传输的电力开关,以及 开关控制器,用于控制电源开关的开关操作。 开关控制器根据从功率传递装置发送的功率接收对应于输出电压的输出电压检测信号,产生与输出电压检测信号和用于控制输出电压的参考信号之间的差相对应的占空比控制信号, 并且通过使用占空比控制信号来确定电源开关的接通/断开,并且参考信号和输出电压之间的反馈传递函数的DC增益具有恒定值。
    • 6. 发明申请
    • Displays with Shielding Layers
    • 显示屏与屏蔽层
    • US20140049721A1
    • 2014-02-20
    • US13585471
    • 2012-08-14
    • Chun-Yao HuangYoung-Bae ParkShih-Chang ChangSzu-Hsien Lee
    • Chun-Yao HuangYoung-Bae ParkShih-Chang ChangSzu-Hsien Lee
    • G02F1/1362
    • G02F1/136204G02F1/133512G02F2001/133388G02F2001/136218
    • An electronic device may have a display such as a liquid crystal display. The display may have a color filter layer and a thin-film transistor layer. An opaque masking layer may be formed on the color filter layer. An active portion of the display may contain an array of display pixels that are controlled by control signals that are provided over intersecting gate lines and data lines. In an inactive portion of the display, gate driver circuits may be used to generate gate line signals for the gate lines. Portions of the gate lines in the gate driver circuitry, power supply lines, and common electrode lines may be formed on the thin-film-transistor layer. These lines may be electromagnetically shielded using indium tin oxide shielding layers to prevent electric fields from inducing charge in the opaque masking layer and thereby causing color artifacts.
    • 电子设备可以具有诸如液晶显示器的显示器。 显示器可以具有滤色器层和薄膜晶体管层。 不透明掩模层可以形成在滤色器层上。 显示器的有效部分可以包含由在相交的栅极线和数据线上提供的控制信号控制的显示像素阵列。 在显示器的非活动部分中,栅极驱动器电路可用于产生栅极线的栅极线信号。 栅极驱动器电路,电源线和公共电极线中的栅极线的一些部分可以形成在薄膜晶体管层上。 这些线可以使用氧化铟锡屏蔽层进行电磁屏蔽,以防止电场在不透明掩模层中引起电荷,从而导致颜色伪影。
    • 8. 发明授权
    • Power factor correction circuit and driving method thereof
    • 功率因数校正电路及其驱动方法
    • US08379423B2
    • 2013-02-19
    • US12912481
    • 2010-10-26
    • Young-Bae ParkSang Cheol MoonByoung-Heon Kim
    • Young-Bae ParkSang Cheol MoonByoung-Heon Kim
    • H02M5/42H02M7/04G05F1/00
    • H02M1/4225Y02B70/126Y02P80/112
    • The present invention relates to a power factor correction circuit and a driving method thereof.The power factor correction circuit includes: an inductor for receiving an input voltage and supplying output power; a power switch connected to the inductor to control an inductor current flowing through the inductor; an auxiliary conductor coupled to the inductor with a predetermined turn ratio; and a power factor correction controller that controls the output power by controlling the switching operation of the power switch and determines whether or not the output voltage of the output power is an over-voltage. The power factor correction controller generates an input peak voltage corresponding to the peak of the input voltage by using a clamping current for maintaining an auxiliary voltage, which is the both-end voltage of the auxiliary inductor, at a predetermined clamping voltage during the turn-on period of the power switch so as to prevent the auxiliary voltage from becoming a negative voltage, generates a duty voltage corresponding to the duty of the power switch, and determines whether or not the output voltage is an over-voltage according to a result of comparison between the input peak voltage and the duty voltage.
    • 本发明涉及功率因数校正电路及其驱动方法。 功率因数校正电路包括:用于接收输入电压并提供输出功率的电感器; 连接到电感器的电源开关,用于控制流过电感器的电感电流; 以预定的匝数比耦合到电感器的辅助导体; 以及功率因数校正控制器,其通过控制电源开关的开关操作来控制输出功率,并且确定输出功率的输出电压是否是过电压。 功率因数校正控制器通过使用钳位电流来产生对应于输入电压峰值的输入峰值电压,该钳位电流在辅助电感器的转向期间以预定的钳位电压保持作为辅助电感器的两端电压的辅助电压, 在电源开关的接通期间,以防止辅助电压变为负电压,产生与电源开关的占空比相对应的占空比电压,并且根据结果,确定输出电压是否为过电压 输入峰值电压与占空比之间的比较。
    • 10. 发明授权
    • Frequency modulation device and switching mode power supply using the same
    • 调频装置和开关电源使用相同
    • US08194425B2
    • 2012-06-05
    • US12220768
    • 2008-07-25
    • Young-Bae ParkGwan-Bon Koo
    • Young-Bae ParkGwan-Bon Koo
    • H02M3/335
    • H03K7/06
    • The present invention relates to a frequency modulation device and a switching mode power supply using the frequency modulation device. To prevent electro-magnetic interference (EMI), it is required to slightly vary a switching operation frequency in an SMPS operation. In some embodiments, at least one first signal having a predetermined cycle is generated, a second signal corresponding to a level of a first signal is generated at a turn-off time of a switch, a first reference voltage having at least two different levels is generated according to the second signal, and an oscillator signal for increasing along a first slope during a first period and decreasing along a second slope during a second period between the first reference voltage and a second reference voltage having a level that is different from the first reference voltage is generated.
    • 本发明涉及使用该调频装置的频率调制装置和开关模式电源。 为了防止电磁干扰(EMI),需要在SMPS操作中稍微改变开关操作频率。 在一些实施例中,产生具有预定周期的至少一个第一信号,在开关的关断时间产生对应于第一信号的电平的第二信号,具有至少两个不同电平的第一参考电压是 根据第二信号生成的振荡器信号,以及振荡器信号,用于在第一周期期间沿着第一斜率增加,并且在第一参考电压和第二参考电压之间的第二周期期间沿着第二斜率减小,该第二参考电压具有与第一 产生参考电压。