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    • 32. 发明授权
    • Mobile communication terminal and method for processing event that user missed
    • 移动通信终端和用户处理事件的方法
    • US07962180B2
    • 2011-06-14
    • US11945788
    • 2007-11-27
    • Chan Woo ParkDo Hwan ChoiJong Hyun AnYun Geun JangMyeong Lo LeeHa Ran JungJong Pil Shin
    • Chan Woo ParkDo Hwan ChoiJong Hyun AnYun Geun JangMyeong Lo LeeHa Ran JungJong Pil Shin
    • H04M1/00G09G5/00
    • H04M1/7258H04M1/57H04M1/72583H04M2250/22H04M2250/60
    • A mobile communication terminal and method for processing missed events are disclosed. A user can check missed events on a wait screen at a glance and rapidly respond to the missed events. A controller stores the missed events received in a wait state. When the wait state is changed to an enabled state, an event displaying unit displays event icons associated with the missed events on key cells of a touch keypad. When an event icon is touched, a function executing unit executes a function associated with the touched event icon. A display changes from the wait screen to the function executing screen. Since the missed events are displayed as event icons on the touch keypad, a user can read a state of the missed events at a glance. As well, the user can read contents of the missed events that are associated with the event icon touched on the function executing screen, and rapidly respond to the missed events.
    • 公开了一种移动通信终端和用于处理未命中事件的方法。 用户可以一目了然地检查等待屏幕上的错过的事件,并快速响应错过的事件。 控制器将接收到的未命中事件存储在等待状态。 当等待状态改变为启用状态时,事件显示单元在触摸键盘的键单元上显示与错过事件相关联的事件图标。 当事件图标被触摸时,功能执行单元执行与触摸的事件图标相关联的功能。 显示从等待屏幕更改为功能执行画面。 由于错过的事件在触摸键盘上显示为事件图标,所以用户可以一目了然地读取丢失事件的状态。 同样,用户可以读取与在功能执行屏幕上触摸的事件图标相关联的遗漏事件的内容,并且快速响应错过的事件。
    • 34. 发明申请
    • SEMICONDUCTOR NANOWIRE SENSOR DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 半导体纳米传感器器件及其制造方法
    • US20100270530A1
    • 2010-10-28
    • US12682571
    • 2008-07-24
    • Chan Woo ParkChang Geun AhnJong Heon YangIn Book BaekChil Seong AhHan Young YuAn Soon KimTae Youb KimMoon Gyu JangMyung Sim Jun
    • Chan Woo ParkChang Geun AhnJong Heon YangIn Book BaekChil Seong AhHan Young YuAn Soon KimTae Youb KimMoon Gyu JangMyung Sim Jun
    • H01L29/775H01L21/336
    • H01L29/0665B82Y10/00B82Y15/00H01L29/0673H01L29/78696
    • A method for manufacturing a biosensor device is provided. The method involves forming a silicon nanowire channel with a line width of several nanometers to several tens of nanometers using a typical photolithography process, and using the channel to manufacture a semiconductor nanowire sensor device. The method includes etching a first conductivity-type single crystalline silicon layer which is a top layer of a Silicon-On-Insulator (SOI) substrate to form a first conductivity-type single crystalline silicon line pattern, doping both sidewalls of the first conductivity-type single crystalline silicon line pattern with impurities of a second conductivity-type opposite to the first conductivity-type to form a second conductivity-type channel, forming second conductivity-type pads for forming electrodes at both ends of the first conductivity-type single crystalline silicon line pattern, forming, in an undoped region of the first conductivity-type single crystalline silicon line pattern, a first electrode for applying a reverse-bias voltage to insulate the first conductivity-type single crystalline silicon line pattern and the second conductivity-type channel from each other, and forming second electrodes for applying a bias voltage across the second conductivity-type channel on the second conductivity-type pad.
    • 提供一种制造生物传感器装置的方法。 该方法包括使用典型的光刻工艺形成线宽为几纳米至几十纳米的硅纳米线通道,并使用该通道制造半导体纳米线传感器装置。 该方法包括蚀刻作为绝缘体上硅(SOI)衬底的顶层的第一导电型单晶硅层,以形成第一导电型单晶硅线图案,掺杂第一导电型单晶硅线阵列的两个侧壁, 形成具有与第一导电类型相反的第二导电类型的杂质的单晶硅线图案,以形成第二导电型沟道,形成用于在第一导电型单晶的两端形成电极的第二导电型焊盘 硅线图案,在第一导电型单晶硅线图案的未掺杂区域中形成第一电极,用于施加反向偏置电压以使第一导电型单晶硅线图案和第二导电型 并且形成用于在第二导通型通道上施加偏置电压的第二电极 导电型垫。
    • 37. 发明申请
    • LENS POSITION CONTROL DEVICE AND METHOD
    • 镜头位置控制装置及方法
    • US20090073584A1
    • 2009-03-19
    • US12015968
    • 2008-01-17
    • Chan Woo Park
    • Chan Woo Park
    • G02B7/02
    • G02B7/08G03B3/10
    • Provided is a lens position control device including a driving frequency generating unit that generates a driving frequency for moving the position of a lens and a driving frequency for reducing the moving speed of the lens to re-move the lens in the reverse direction to the moving direction of the lens after the lens is stopped; a lens control unit that is connected to the driving frequency generating unit and is driven by the generated driving frequency so as to move the lens; and a lens position detecting unit that is connected to the driving frequency generating unit and detects the position of the lens to deliver to the driving frequency generating unit.
    • 提供了一种透镜位置控制装置,其包括驱动频率产生单元,其产生用于移动透镜的位置的驱动频率和用于减小透镜的移动速度的驱动频率,以将透镜沿相反方向移动到移动 透镜停止后透镜的方向; 透镜控制单元,其连接到所述驱动频率产生单元,并由所产生的驱动频率驱动以移动所述透镜; 以及透镜位置检测单元,其连接到所述驱动频率产生单元,并且检测所述透镜的位置以传送到所述驱动频率产生单元。
    • 38. 发明授权
    • Digital/analog converter
    • 数字/模拟转换器
    • US07330143B2
    • 2008-02-12
    • US11428363
    • 2006-06-30
    • Byung Hoon KimWon Tae ChoiYoun Joong LeeChan Woo Park
    • Byung Hoon KimWon Tae ChoiYoun Joong LeeChan Woo Park
    • H03M1/78
    • H03M1/682
    • The present invention relates to a digital/analog converter. The digital/analog converter includes a divided-voltage generating section that divides a reference supply voltage through the voltage distribution; a decoder section that receives a digital signal so as to output a decoded selection signal; a first divided-voltage selecting section that selects and outputs a plurality of divided voltages among the divided-voltages generated from the divided-voltage generating section on the basis of the selection signal output from the decoder section; a second divided-voltage selecting section that selects and outputs a plurality of divided-voltages among the divided-voltages output from the first divided-voltage selecting section on the basis of the selection signal output from the decoder section; a divided-voltage storing section that charges and discharges the plurality of divided-voltages output from the second divided-voltage selecting section; a third divided-voltage selecting section that selects a predetermined voltage among the divided-voltages discharged from the divided-voltages storing section on the basis of the selection signal output from the decoder; and a voltage output section that outputs the predetermined voltage selected from the third divided-voltage selecting section.
    • 本发明涉及数字/模拟转换器。 该数/模转换器包括分压电压产生部分,该分压产生部分通过电压分配来划分参考电源电压; 解码器部分,其接收数字信号以输出解码的选择信号; 第一分压电压选择部分,根据从解码器部分输出的选择信号,在从分压产生部分产生的分压中选择和输出多个分压; 第二分压选择部,根据从解码部输出的选择信号,选择并输出从第一分压电压选择部输出的分压电压中的多个分压; 分压电压存储部,对从第二分压选择部输出的多个分压进行充放电; 第三分压电压选择部,其根据从解码器输出的选择信号,选择从分压存储部放电的分压中的规定电压; 以及电压输出部,输出从第三分压选择部选择的预定电压。
    • 40. 发明授权
    • Translucent touch screen devices including low resistive mesh
    • 半透明触摸屏设备包括低电阻网
    • US08619039B2
    • 2013-12-31
    • US11962505
    • 2007-12-21
    • Jung Sik YangAmit KaisthaChan Woo ParkMatthew B. Wienke
    • Jung Sik YangAmit KaisthaChan Woo ParkMatthew B. Wienke
    • G06F3/041
    • G06F3/044G06F2203/04103G06F2203/04112
    • The disclosed translucent or semi-transparent touch screen device includes a mesh composed of a low resistive material and method for forming a touch screen and applying components to the touch screen according to a heat based process. The low resistivity of the mesh beneficially allows pattern traces a small width, and therefore allows more touch zones per specified area than previously available. The disclosed semi-transparent touch screen device may incorporated into a mobile communication device such as a clam shell form factor device with a flip is configured so that an adjacent main display screen is visible through the touch screen device. Input received by the touch screen device is responsive to indicia displayed on the display screen. Since the disclosed touch screen may include many touch zones, beneficially the functionality of the device in the closed position is improved over previous semi-transparent touch screens.
    • 所公开的半透明或半透明触摸屏设备包括由低电阻材料组成的网格和用于形成触摸屏并根据基于热的过程将组件施加到触摸屏的方法。 网格的低电阻有利地允许图案迹线具有小的宽度,因此允许每个指定面积的触摸区域比先前可用的更多。 所公开的半透明触摸屏设备可以结合到移动通信设备中,例如具有翻盖的蛤壳形状因子设备,使得相邻的主显示屏幕通过触摸屏设备可见。 由触摸屏设备接收的输入响应显示在显示屏幕上的标记。 由于所公开的触摸屏可以包括许多触摸区域,所以有利的是,处于关闭位置的设备的功能比先前的半透明触摸屏更好。