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    • 1. 发明授权
    • System and method for producing an audible alert for a vehicle
    • 用于产生车辆的可听警报的系统和方法
    • US08299904B2
    • 2012-10-30
    • US12872610
    • 2010-08-31
    • Heather KonetTsuyoshi KanumaManabu SatoToshiyuki Tabata
    • Heather KonetTsuyoshi KanumaManabu SatoToshiyuki Tabata
    • G08B3/00B60Q1/00
    • B60Q5/008G10K15/02
    • A method for controlling a vehicle to emanate an audible alert including determining when the vehicle is operating, and controlling a speaker system in the vehicle to emanate the audible alert outside of the vehicle when the vehicle is operating based on stored information representative of an internal combustion engine (ICE) noise profile. The audible alert has a sound profile including a simultaneous emanation of first, second and third audible frequency components having first, second and third frequencies, respectively, with the first and second frequencies emanating at first and second sound pressure levels greater than first and second representative sound pressure levels of the ICE noise profile at the first and second frequencies, respectively, and the third frequency emanating at a third sound pressure level less than a third representative sound pressure level of the ICE noise profile at the third frequency.
    • 一种用于控制车辆发出可听警报的方法,包括确定车辆何时运行,并且当车辆正在操作时,控制车辆中的扬声器系统,以便基于存储的表示内燃的信息来发出车辆外的可听警报 发动机(ICE)噪音曲线。 声音警报具有声音简档,包括分别具有第一,第二和第三声音频率分量的同时发音,所述第一,第二和第三声音频率分量具有分别具有大于第一和第二代表的第一和第二声压级的第一和第二频率 分别在第一和第二频率处的ICE噪声分布的声压级以及在第三频率处的ICE噪声分布的小于第三代表声压级的第三声压级发出的第三频率。
    • 2. 发明授权
    • System and method for producing an audible alert for a vehicle
    • 用于产生车辆的可听警报的系统和方法
    • US08730020B2
    • 2014-05-20
    • US13305216
    • 2011-11-28
    • Heather KonetTsuyoshi KanumaManabu SatoToshiyuki Tabata
    • Heather KonetTsuyoshi KanumaManabu SatoToshiyuki Tabata
    • B60Q1/00
    • B60Q5/008G10K15/02
    • A method for controlling a vehicle to emanate an audible alert. The method includes determining when the vehicle is operating, and controlling a speaker system in the vehicle to emanate the audible alert outside of the vehicle for a period of time when the vehicle is operating. The audible alert has a sound profile that includes a simultaneous emanation of a first audible frequency component at a first sound pressure level and a second audible frequency component at a second sound pressure level, with the first and second sound pressure levels being greater than a sound pressure level of the sound profile at all other frequencies. The method further includes modulating the first sound pressure level of the first audible frequency component.
    • 一种用于控制车辆发出可听警报的方法。 该方法包括确定车辆何时运行,并且控制车辆中的扬声器系统在车辆运行的时间段内发出车辆外的可听到的警报。 声音警报具有声音简档,其包括在第一声压级别同时发出第一可听频率分量和在第二声压级别的第二可听频率分量,其中第一和第二声压级别大于声音 在所有其他频率的声音轮廓的压力水平。 该方法还包括调制第一可听频率分量的第一声压级。
    • 8. 发明授权
    • Plasma processing method
    • 等离子体处理方法
    • US08404595B2
    • 2013-03-26
    • US11860788
    • 2007-09-25
    • Masanobu HondaManabu SatoYoshiki Igarashi
    • Masanobu HondaManabu SatoYoshiki Igarashi
    • H01L23/302H01L21/461B23P15/00C03C25/00C03C15/00C03C25/68C23F1/00C23F3/00B44C1/22
    • H01L21/467H01J37/32091H01J37/32165H01L21/31116
    • A plasma processing method for processing a target substrate uses a plasma processing apparatus which includes a vacuum evacuable processing vessel for accommodating the target substrate therein, a first electrode disposed in the processing vessel and connected to a first RF power supply for plasma generation and a second electrode disposed to face the first electrode. The method includes exciting a processing gas containing fluorocarbon in the processing vessel to generate a plasma while applying a negative DC voltage having an absolute value ranging from about 100 V to 1500 V or an RF power of a frequency lower than about 4 MHz to the second electrode. The target layer is etched by the plasma, thus forming recesses on the etching target layer based on the pattern of the resist layer.
    • 用于处理目标基板的等离子体处理方法使用等离子体处理装置,该等离子体处理装置包括用于容纳目标基板的真空可排除处理容器,设置在处理容器中的第一电极,并连接到用于等离子体产生的第一RF电源, 设置成面对第一电极的电极。 该方法包括在处理容器中激发含有碳氟化合物的处理气体,以产生等离子体,同时施加绝对值范围从约100V至1500V或低于约4MHz的RF功率的负DC电压至第二 电极。 通过等离子体蚀刻目标层,由此基于抗蚀剂层的图案在蚀刻目标层上形成凹部。