会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 54. 发明授权
    • Method for manufacturing suspended fin and gate-all-around field effect transistor
    • 散热片和栅极全方位场效应晶体管的制造方法
    • US08361869B2
    • 2013-01-29
    • US13133737
    • 2011-02-17
    • Huajie ZhouYi SongQiuxia Xu
    • Huajie ZhouYi SongQiuxia Xu
    • H01L21/336
    • H01L29/66795H01L29/42376
    • The present application discloses a method for manufacturing a gate-all-around field effect transistor, comprising the steps of: forming a suspended fin in a semiconductor substrate; forming a gate stack around the fin; and forming source/drain regions in the fin on both sides of the gate stack, wherein an isolation dielectric layer is formed in a portion of the semiconductor substrate which is adjacent to bottom of both the fin and the gate stack. The present invention relates to a method for manufacturing a gate-all-around device on a bulk silicon substrate, which suppress a self-heating effect and a floating-body effect of the SOI substrate, and lower a manufacture cost. The inventive method is a conventional top-down process with respect to a reference plane, which can be implemented as a simple manufacture process, and is easy to be integrated into and compatible with a planar CMOS process. The inventive method suppresses a short channel effect and promotes miniaturization of MOSFETs.
    • 本申请公开了一种制造栅极全方位场效应晶体管的方法,包括以下步骤:在半导体衬底中形成悬浮鳍; 在翅片周围形成栅极堆叠; 以及在所述栅叠层的两侧的鳍中形成源极/漏极区,其中在所述半导体衬底的与所述鳍和所述栅极叠层的底部相邻的部分中形成隔离电介质层。 本发明涉及一种在体硅衬底上制造栅极全绕器件的方法,其抑制SOI衬底的自发热效应和浮体效应,降低制造成本。 本发明的方法是相对于参考平面的常规自顶向下处理,其可以被实现为简单的制造工艺,并且易于被集成到平面CMOS工艺中并与其兼容。 本发明方法抑制短沟道效应并促进MOSFET的小型化。
    • 55. 发明授权
    • Switch for a hearing aid
    • 切换助听器
    • US08358797B2
    • 2013-01-22
    • US12539702
    • 2009-08-12
    • Robert J. Fretz
    • Robert J. Fretz
    • H04R25/00H04B15/00
    • H04R25/453H04R25/70
    • A method of changing at least two parameter settings of a device includes detecting an abnormal change in an external feedback path and an input signal generated by an abnormal pressure wave, and activating a pressure wave detection switch and an abnormal feedback path detection switch for changing the at least one parameter setting in the device. A device includes a digital signal processor configured to implement a detection algorithm to detect an abnormal change in an external feedback path, an adaptive internal feedback cancellation system for continually monitoring and responsively adapting to changes occurring in an external feedback path, a pattern recognition algorithm for detecting input signals generated when an abnormal pressure wave is generated, at least two parameter settings for adjusting the characteristics of the device, and an abnormal feedback path detection switch for switching the device to a next available parameter setting.
    • 改变设备的至少两个参数设置的方法包括检测外部反馈路径的异常变化和由异常压力波产生的输入信号,以及激活压力波检测开关和异常反馈路径检测开关,用于改变 设备中至少有一个参数设置。 一种设备包括:数字信号处理器,被配置为实现检测算法以检测外部反馈路径中的异常变化;自适应内部反馈消除系统,用于连续监视和响应性地适应外部反馈路径中发生的变化;模式识别算法, 检测产生异常压力波时产生的输入信号,用于调整装置特性的至少两个参数设置和用于将装置切换到下一个可用参数设置的异常反馈路径检测开关。
    • 56. 发明授权
    • Image encoding device
    • 图像编码装置
    • US08351721B2
    • 2013-01-08
    • US12961974
    • 2010-12-07
    • Haruhisa KatouSei Naitou
    • Haruhisa KatouSei Naitou
    • G06K9/36G06K9/46
    • H04N19/186H04N19/105H04N19/11H04N19/136H04N19/147H04N19/176H04N19/61
    • The image encoding device includes: signal-to-signal predicting unit 8 for separating an intra-signal prediction residual signal obtained by performing difference processing between an input image signal and an intra-signal prediction signal into a reference signal and a signal to be predicted and calculating signal-to-signal prediction information used for performing signal-to-signal prediction on each pixel of the signal to be predicted corresponding to each pixel of the reference signal; and signal-to-signal compensating unit 9 for obtaining a signal-to-signal prediction signal of the region to be encoded from a decoded intra-signal prediction residual signal and the signal-to-signal prediction information from the signal-to-signal predicting unit, wherein each pixel of the signal to be predicted is encoded by performing orthogonal conversion, quantization, and encoding on the signal-to-signal prediction residual signal obtained by performing the difference processing between the intra-signal prediction residual signal and the signal-to-signal prediction signal.
    • 图像编码装置包括:信号到信号预测单元8,用于将通过在输入图像信号和帧内信号预测信号之间进行差分处理而获得的信号内预测残差信号分离成参考信号和要预测的信号 以及计算用于对与所述参考信号的每个像素相对应的将被预测的信号的每个像素执行信号到信号预测的信号到信号预测信息; 信号到信号补偿单元9,用于从解码的帧内信号预测残差信号和从信号到信号的信号到信号预测信息中获得要编码的区域的信号到信号预测信号 预测单元,其中通过对通过执行帧内信号预测残差信号和信号之间的差分处理获得的信号到信号预测残差信号执行正交转换,量化和编码来对要预测的信号的每个像素进行编码 信号预测信号。
    • 60. 发明授权
    • Cap assembly having storage chamber for secondary material with movable working member
    • 盖组件具有用于具有可移动工作构件的辅助材料的储存室
    • US08336706B2
    • 2012-12-25
    • US12595551
    • 2006-12-13
    • Jeong-Min LeeSeong-Jae Lee
    • Jeong-Min LeeSeong-Jae Lee
    • B65D25/08
    • B65D25/08B65D51/2864
    • A cap assembly having a storage chamber for a secondary ingredient, which is adapted to a mouth of a container, comprising: a body having a mouth; a chamber part having a storage space for secondary ingredient in the body and a hole formed at the lower end thereof; said chamber part is sealed by a movable working member and is opened when the movable working member is removed from the hole upon removing the cap so that the secondary ingredient may be mixed with the first ingredient in the container, said the movable working member being adapted to maintain the opened hole, after moving to open the hole, thereby effectively mixing of the different ingredients.
    • 一种帽组件,其具有用于次要成分的储存室,其适于容器的口部,包括:具有口部的主体; 具有用于体内次要成分的储存空间和在其下端形成的孔的室部分; 所述腔室部分由可移动的工作构件密封,并且当移除所述帽时从所述孔中移除所述可移动工作构件以使得所述次要成分可与所述容器中的所述第一成分混合时所述腔室部分被打开,所述可移动工作构件适于 保持打开的孔,移动后打开孔,从而有效地混合不同的成分。