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    • 1. 发明申请
    • Method and apparatus for tactile cueing of aircraft controls
    • 飞机控制的触觉提示的方法和装置
    • US20050151672A1
    • 2005-07-14
    • US10508303
    • 2003-03-21
    • Michael AugustinAllen BertapelleMark DreierBradley LintonWilliam McKeownRobert Yeary
    • Michael AugustinAllen BertapelleMark DreierBradley LintonWilliam McKeownRobert Yeary
    • B64C13/10B64C13/46G08B23/00
    • B64C27/56B64C13/46
    • A method and apparatus for tactile cueing of aircraft controls (21) is disclosed. The apparatus of the present invention warns pilots of approaching limits on certain aircraft performance parameters. The most common warnings are for rotor speed exceeding a moving limit. The present invention uses tactile cueing through the collective stick (21). Tactile cueing means that the pilot does not need to scan the intruments to ascertain proximity to the aforementioned limits. Instead, the pilot can operate the aircraft within proper limits by touch, while maintaining situational awareness outside of the cockpit (20). The method and apparatus of the present invention provides customary friction resistance up to a limit position that is continuously updated. According to the present invention, continued motion of the collective (21) in a direction beyond that limit position results in a breakout force and an increasing resistive force.
    • 公开了一种用于飞机控制器(21)的触觉提示的方法和装置。 本发明的装置警告飞行员接近某些飞机性能参数的限制。 最常见的警告是转子速度超过移动极限。 本发明通过集体棒(21)使用触觉提示。 触觉提示意味着飞行员不需要扫描附件,以确定接近上述限制。 相反,飞行员可以通过触摸在适当的限度内操作飞机,同时保持驾驶舱外部的情境感知(20)。 本发明的方法和装置提供了直到持续更新的极限位置的常规摩擦阻力。 根据本发明,集体(21)在超过该极限位置的方向上的持续运动导致突破力和增加的阻力。
    • 2. 发明授权
    • Electronic circuit arrangement for processing binary input values
    • 用于处理二进制输入值的电子电路布置
    • US08884643B2
    • 2014-11-11
    • US13557790
    • 2012-07-25
    • Michael AugustinMichael GoesselRolf Kraemer
    • Michael AugustinMichael GoesselRolf Kraemer
    • H03K19/003H03K19/23H03K19/20H03K19/007
    • H03K19/00392H03K19/00338H03K19/0075H03K19/20
    • Electronic circuit arrangement for processing binary input values xεX of a word width n (n>1), with a first, second and third combinatory circuit components configured to process the binary input values x to form first, second and third binary output values. The arrangement further includes a majority voter element configured to receive the binary output values and provide a majority signal based on the received binary output values. The second and third combinatory circuit components are designed, as regards faults during processing of the binary input values x in the first combinatory circuit component, to process binary input values of a true non-empty partial quantity X1 of the quantity of binary input values X in a fault-tolerant manner and process binary input values of a further non-empty partial quantity X2 of the quantity of binary input values X different from the true non-empty partial quantity X1 in a fault-intolerant manner.
    • 用于处理单词宽度n(n> 1)的二进制输入值x和e的电子电路装置,其中第一组合电路组件被配置为处理二进制输入值x以形成第一,第二和第三二进制输出值 。 该布置还包括被配置为接收二进制输出值并且基于接收到的二进制输出值提供多数信号的多数选民元素。 第二组合电路组件和第三组合电路组件被设计为关于处理第一组合电路组件中的二进制输入值x的故障,以处理二进制输入值X的真实非空部分量X1的二进制输入值 以容错方式处理二进制输入值X的另一非空部分量X2的二进制输入值,该二进制输入值X以不容错误的方式与真实非空部分数量X1不同。
    • 3. 发明申请
    • Electronic Circuit Arrangement for Processing Binary Input Values
    • 用于处理二进制输入值的电子电路布置
    • US20130002288A1
    • 2013-01-03
    • US13557790
    • 2012-07-25
    • Michael AugustinMichael GoesselRolf Kraemer
    • Michael AugustinMichael GoesselRolf Kraemer
    • H03K19/003
    • H03K19/00392H03K19/00338H03K19/0075H03K19/20
    • Electronic circuit arrangement for processing binary input values xεX of a word width n (n>1), with a first, second and third combinatory circuit components configured to process the binary input values x to form first, second and third binary output values. The arrangement further includes a majority voter element configured to receive the binary output values and provide a majority signal based on the received binary output values. The second and third combinatory circuit components are designed, as regards faults during processing of the binary input values x in the first combinatory circuit component, to process binary input values of a true non-empty partial quantity X1 of the quantity of binary input values X in a fault-tolerant manner and process binary input values of a further non-empty partial quantity X2 of the quantity of binary input values X different from the true non-empty partial quantity X1 in a fault-intolerant manner.
    • 用于处理单词宽度n(n> 1)的二进制输入值x和e的电子电路装置,其中第一组合电路组件被配置为处理二进制输入值x以形成第一,第二和第三二进制输出值 。 该布置还包括被配置为接收二进制输出值并且基于接收到的二进制输出值提供多数信号的多数选民元素。 第二组合电路组件和第三组合电路组件被设计为关于处理第一组合电路组件中的二进制输入值x的故障,以处理二进制输入值X的真实非空部分量X1的二进制输入值 以容错方式处理二进制输入值X的另一非空部分量X2的二进制输入值,该二进制输入值X以不容错误的方式与真实非空部分数量X1不同。
    • 4. 发明授权
    • Drilling device
    • 钻孔装置
    • US06568876B2
    • 2003-05-27
    • US09942381
    • 2001-08-29
    • Michael Augustin
    • Michael Augustin
    • F16B218
    • B23Q1/0063B23Q9/0064Y10T403/32581Y10T403/595Y10T403/7071Y10T408/94
    • A drilling device has a carriage (1) on which a drilling member (22) can be removably mounted. In a receiving region, the carriage (1) has a tightening lever (4) that can be swiveled, with its first end area having a tightening surface (5) that interacts with a clamping surface (21) of a connection region of the drilling member (22). The second end area of the tightening lever (4) interacts with a tightening element (9) that keeps the tightening lever (4) under tension of a spring so that the drilling member (22) is firmly pressed against the carriage (1). Using the two release levers (15), the tightening element (9) can be moved into a release position in which the tightening lever (4) can be swiveled into the release position and the tightening element (9) lies against a retention surface (13) on the tightening lever (4). When a drilling member (22) is secured on the carriage (1), the tightening lever (4) is automatically swiveled into a tightened position and locked the tightening element (9).
    • 钻孔装置具有滑架(1),钻孔构件(22)可拆卸地安装在该滑架上。 在接收区域中,托架(1)具有能够旋转的紧固杆(4),其第一端部区域具有紧固表面(5),该紧固表面与钻孔的连接区域的夹紧表面(21)相互作用 会员(22)。 紧固杆(4)的第二端部区域与将紧固杆(4)保持在弹簧的张力下的紧固元件(9)相互作用,使得钻孔构件(22)牢固地压靠在滑架(1)上。 使用两个释放杆(15),紧固元件(9)可以移动到释放位置,紧固杆(4)可以旋转到释放位置,并且紧固元件(9)抵靠保持表面( 紧固杆(4)上。 当钻具(22)固定在滑架(1)上时,紧固杆(4)自动地旋转到紧固位置并锁定紧固元件(9)。