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    • 1. 发明申请
    • Airbag electronic control unit with central squib current limiting
    • 安全气囊电子控制单元具有中心爆管电流限制
    • US20060208569A1
    • 2006-09-21
    • US11368081
    • 2006-03-03
    • Scott Morell
    • Scott Morell
    • B60L1/00B60R21/01
    • B60R21/017Y10T307/799
    • An airbag deployment circuit includes at single current regulator controlling multiple squib deployment circuits. Squib deployment circuits that do not have to deploy simultaneously are attached to the same current regulator. A current regulation switch located prior to each current regulator is closed if any of the squib deployment circuits attached to the associated current regulator need to be deployed in a crash event. A high side transistor switch and a low side transistor switch are located adjacent each squib to control activation of that squib deployment circuit. The high side transistor switch and the low side transistor switch are also closed for each of the squib deployment circuits that are to be deployed.
    • 安全气囊展开电路包括控制多个爆管部署电路的单电流调节器。 不需要同时部署的点火部署电路连接到同一个电流调节器。 位于每个电流调节器之前的电流调节开关关闭,如果连接到相关联的电流调节器的任何爆管部署电路需要部署在碰撞事件中。 高侧晶体管开关和低侧晶体管开关位于每个点火线附近,以控制该点火部署电路的激活。 对于要部署的每个点火部署电路,高侧晶体管开关和低侧晶体管开关也是闭合的。
    • 6. 发明授权
    • Method and system for controlling a vehicle occupant safety system based on crash severity
    • 基于碰撞严重程度控制车辆乘员安全系统的方法和系统
    • US06729646B1
    • 2004-05-04
    • US09257123
    • 1999-02-25
    • Scott Morell
    • Scott Morell
    • B60R2132
    • B60R21/0133B60R21/0132B60R21/0156B60R2021/01315
    • A method and system for controlling a vehicle occupant safety system based on crash severity. The system uses an acceleration signal indicating the acceleration of the vehicle upon occurrence of a crash to determine whether to trigger a restraint device. A controller implements a crash sensing algorithm to determine whether the severity of the crash warrants deployment of the safety restraint. The algorithm uses a predicted velocity and an acceleration peak time derived from the acceleration signal. The predicted velocity is indicative of the relative velocity between the passenger and the vehicle at a predetermined time following detection of a crash event. The acceleration peak time is the time period between peak acceleration values that correspond to contacting of significant structural elements of the vehicle, such as the bumper and the radiator. The two values are compared to their respective thresholds and if both of them exceed their thresholds then a deployment signal is generated to trigger the safety restraint.
    • 一种基于碰撞严重程度控制车辆乘员安全系统的方法和系统。 系统使用一个加速度信号,指示发生碰撞时车辆的加速度,以确定是否触发约束装置。 控制器实现碰撞感测算法,以确定碰撞的严重程度是否保证安全限制的部署。 该算法使用从加速度信号导出的预测速度和加速度峰值时间。 预测速度表示在检测到碰撞事件之后的预定时间内乘客与车辆之间的相对速度。 加速度峰值时间是对应于车辆的重要结构元件(例如保险杠和散热器)的接触的峰值加速度值之间的时间段。 将两个值与其各自的阈值进行比较,并且如果它们都超过其阈值,则生成部署信号以触发安全限制。