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    • 2. 发明授权
    • System and method for providing multicharge ignition
    • 提供多重点火的系统和方法
    • US06213108B1
    • 2001-04-10
    • US09316619
    • 1999-05-21
    • James Alva BoyerNorman H. BrackenRaymond O. Butler, Jr.
    • James Alva BoyerNorman H. BrackenRaymond O. Butler, Jr.
    • F02P1510
    • F02P3/02F02D2041/2075F02P3/0453F02P9/007
    • A system and method of providing multicharge ignition are provided. The method and system preferably are adapted to trigger at least some of the multicharge events of the system and method in a current-dependent manner. Preferably, existing power train control units (PTCUs) can be used with the system and method, without the need for signals other than the timing signal (e.g., EST pulse) from the PTCU. The method comprises the steps of charging an inductive energy storage device by flowing electrical current through a primary side of the inductive energy storage device until a predetermined amount of energy is stored therein, discharging a portion of the predetermined amount of energy through a secondary side of the inductive energy storage device by opening a path of the electrical current through the primary side upon achieving the predetermined amount of energy in the inductive energy storage device, and repetitively closing and reopening the path to recharge and partially discharge, respectively, the inductive energy storage device, wherein reopening of the path is triggered based on the amount of energy stored in the inductive energy storage device. The multicharge ignition system comprises an inductive energy storage device and electronic ignition circuitry. The inductive energy storage device has primary and secondary sides inductively coupled to one another. The electronic ignition circuitry is connected to the primary side and is adapted to implement the aforementioned method.
    • 提供了一种提供多重点火的系统和方法。 该方法和系统优选地适于以电流依赖的方式触发系统和方法的至少一些多重事件。 优选地,现有的动力传动系控制单元(PTCU)可以与系统和方法一起使用,而不需要来自PTCU的定时信号(例如,EST脉冲)以外的信号。 该方法包括以下步骤:通过使电流流过感应能量存储装置的初级侧来对感应式储能装置进行充电,直到存储预定量的能量,将预定量的能量的一部分排出第 感应能量存储装置,通过在感应能量存储装置中达到预定量的能量时打开通过初级侧的电流的路径,并且分别重复关闭并重新打开路径以再充电和部分放电,感​​应能量存储 装置,其中基于存储在感应能量存储装置中的能量的量来触发路径的重新打开。 多重放电点火系统包括感应能量存储装置和电子点火电路。 感应能量存储装置具有彼此感应耦合的一次侧和次侧。 电子点火电路连接到初级侧,适于实现上述方法。
    • 5. 发明授权
    • Shield and spring interface to a spark plug from a pencil coil
    • 屏蔽弹簧与铅笔线圈的火花塞接口
    • US06360706B1
    • 2002-03-26
    • US09518574
    • 2000-03-03
    • Albert Anthony SkinnerRaymond O. Butler, Jr.Viorel N. Moga
    • Albert Anthony SkinnerRaymond O. Butler, Jr.Viorel N. Moga
    • F02P100
    • H01T13/04
    • An interface device for interfacing a pencil coil to a spark plug is provided. The interface device comprises a substantially C-shaped spring adapted to mechanically and electrically engage a pencil coil shield and also adapted to make electrical contact with a spark plug ground while the spring remains mechanically and electrically engaged to the pencil coil shield. Also provided is a pencil coil shield assembly for interfacing a pencil coil to a spark plug. The pencil coil shield assembly comprises a substantially cylindrical pencil coil and a spring. The substantially cylindrical pencil coil shield is adapted to surround the pencil coil. The spring is mechanically and electrically engaged with the pencil coil shield and is adapted to make electrical contact with a spark plug ground while the spring remains mechanically and electrically engaged to the pencil coil shield. The interface device and/or pencil coil shield assembly can be configured to reduce RFI from the secondary current winding currents of a pencil coil. In addition, each can be manufactured using inexpensive and uncomplicated manufacturing and installation techniques, and using starting materials and parts that are relatively inexpensive. Also provided is a method of reducing RFI from secondary winding currents of a pencil coil by, among other things, electrically connecting the substantially cylindrical shield to a low voltage terminal of a secondary winding of the pencil coil, and electrically connecting the substantially cylindrical shield to a spark plug ground of a spark plug associated with the pencil coil.
    • 提供了用于将铅笔线圈与火花塞接口的接口装置。 接口装置包括基本上为C形的弹簧,其适于机械地和电接合铅笔线圈护罩,并且还适于在弹簧保持与铅笔线圈护罩机械地和电接合的情况下与火花塞接地电接触。 还提供了用于将铅笔线圈与火花塞接口的铅笔线圈屏蔽组件。 铅笔线圈屏蔽组件包括大致圆柱形的铅笔线圈和弹簧。 基本上圆柱形的铅笔线圈护罩适于围绕铅笔线圈。 弹簧与铅笔线圈屏蔽机械和电气接合,并且适于在弹簧保持与铅笔线圈护罩机械和电接合的同时与火花塞接地电接触。 接口装置和/或铅笔线圈屏蔽组件可被配置为从铅笔线圈的次级电流绕组电流中减小RFI。 另外,可以使用廉价且不复杂的制造和安装技术,并且使用相对便宜的起始材料和零件来制造。 还提供了一种通过将基本上圆柱形的屏蔽电连接到铅笔线圈的次级绕组的低电压端子并将基本上圆柱形的屏蔽电连接到 与铅笔线圈相关联的火花塞的火花塞接地。
    • 6. 发明授权
    • Ignition drive circuit
    • 点火驱动电路
    • US06679237B1
    • 2004-01-20
    • US10213802
    • 2002-08-06
    • Albert Anthony SkinnerRonald J. KiessRaymond O. Butler, Jr.
    • Albert Anthony SkinnerRonald J. KiessRaymond O. Butler, Jr.
    • F02P0000
    • F02P3/0442F02D2041/2075F02D2041/2082F02P7/035
    • A drive circuit for an ignition system includes an ignition coil and spark plug associated with each cylinder of an internal combustion engine. Each ignition coil has a primary winding with the first end connectable to a power source and a second end opposite the first end connected to a silicon-control rectifier (SCR). Each coil also has a secondary winding connectable to a respective spark plug. The SCR may be integrated with the coil. A main driver device is connected between the other end of the SCR and ground. The driver device is configured to conduct a primary current in response to a drive signal. The SCRs are controlled into conduction by a respective gating signal. A control circuit is configured to generate the gating signals and the drive signal in response to one or more ignition control signals. An SCR for each coil is used to select which coil is allowed to carry current when the main driver is turned on. This allows the use of a single driver device, and multiple SCRs as selectors, thereby reducing the cost of the drive circuit since SCRs are less expensive.
    • 用于点火系统的驱动电路包括与内燃机的每个气缸相关联的点火线圈和火花塞。 每个点火线圈具有初级绕组,其第一端可连接到电源,与第一端相对的第二端连接到硅控整流器(SCR)。 每个线圈还具有可连接到相应火花塞的次级绕组。 SCR可以与线圈集成。 主驱动器件连接在SCR的另一端和地之间。 驱动器装置被配置为响应于驱动信号传导初级电流。 通过相应的门控信号将SCR控制为导通。 控制电路被配置为响应于一个或多个点火控制信号而产生门控信号和驱动信号。 每个线圈的SCR用于选择当主驱动器接通时允许哪个线圈承载电流。 这允许使用单个驱动器装置和多个SCR作为选择器,从而降低了驱动电路的成本,因为SCR较便宜。
    • 7. 发明授权
    • Ignition coil cassette assembly
    • 点火线圈盒总成
    • US06622711B1
    • 2003-09-23
    • US10241866
    • 2002-09-12
    • Albert Anthony SkinnerRaymond O. Butler, Jr.Douglas Lynn Sprunger
    • Albert Anthony SkinnerRaymond O. Butler, Jr.Douglas Lynn Sprunger
    • F02P1508
    • H01T13/44F02D2400/18F02D2400/21F02P3/02H05K1/0254H05K3/284H05K3/301H05K3/306H05K2203/0173
    • A method of assembling an ignition coil cassette assembly for use with an internal combustion engine having a plurality of cylinder assemblies each including a spark plug, and an ignition coil cassette assembly provided in accordance with the invention methodology. The cassette assembly includes a plurality of ignition coils for respective electrical coupling to the respective spark plugs, whereby to deliver high voltage charges to the spark plugs in accordance with a predetermined firing order, a cassette body structure interconnecting and mounting the ignition coils in spaced downstanding relation with respect to the body, a printed circuit board for delivering power to the coils, and electronic components mounted on the board. A plurality of upwardly opening pockets are provided in the cassette body; the electronic components are positioned in the pockets; the ignition coils are positioned in the cassette body; the printed circuit board is positioned in overlying relation to the electronic components and upper ends of the ignition coils; and upstanding pins on the electronic components are soldered to the printed circuit board while simultaneously soldering upstanding pins on the upper ends of ignition coils to the printed circuit board.
    • 一种组装与内燃机一起使用的点火线圈盒组件的方法,所述内燃机具有多个气缸组件,每个气缸组件包括火花塞和根据本发明方法提供的点火线圈盒组件。 盒组件包括多个点火线圈,用于各自电气耦合到相应的火花塞,由此根据预定的点火顺序将高压电荷输送到火花塞;盒体结构,将点火线圈互相连接并以相互间隔的方式安装 与身体的关系,用于向线圈输送电力的印刷电路板以及安装在电路板上的电子部件。 多个向上开口的袋设置在盒体中; 电子部件定位在口袋中; 点火线圈定位在盒体中; 印刷电路板位于与电子部件和点火线圈的上端重叠的位置; 并且电子部件上的直立引脚被焊接到印刷电路板,同时将点火线圈的上端的引脚直接焊接到印刷电路板。