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    • 1. 发明授权
    • Inductive ignition system, in particular for infantry weapons
    • 感应点火系统,特别是步兵武器
    • US06269728B1
    • 2001-08-07
    • US09367718
    • 1999-11-08
    • Heinz KernGerhard KordelGerhard Schmidtner
    • Heinz KernGerhard KordelGerhard Schmidtner
    • F41A1961
    • F41A19/61
    • The invention relates to an inductive ignition system, in particular for infantry weapons, having a primary coil (2) which cooperates inductively with a secondary coil (3) in the ignition system of cartridge (4) and which transmits the firing energy that is required for the ignition. For the necessary firing energy to be produced and made available internally, that is with additional supply, the invention proposes fitting a weapon breechblock component (5), displaceable from a cocked position to a firing position, in the weapon housing (1) in which is located the primary coil (2), and that, for production of the ignition energy, an inductive power generator (6) is provided whose coil system (7) is fitted in the weapon breechblock component (5) and whose magnet system (8) is fitted in the weapon housing (1). On displacing the weapon breechblock component (5) from the cocked position to the firing position, the coil system slides pass the magnet system (8) and induces the necessary ignition energy in the coil system (7).
    • 本发明涉及一种感应点火系统,特别是用于步兵武器的感应点火系统,其具有与线圈(4)的点火系统中的次级线圈(3)电感配合的初级线圈(2),并传递所需的点火能量 用于点火。 为了在内部生产和制造的必要的发射能量,即额外的供应,本发明提出了在武器壳体(1)中安装可从位置到位置的武器膛部件(5) 位于初级线圈(2),并且为了产生点火能量,设置感应发电机(6),其线圈系统(7)装配在武器枪支组件(5)中,并且其磁体系统(8) )安装在武器壳体(1)中。 在将武器枪膛部件(5)从起始位置移动到击发位置时,线圈系统滑动通过磁体系统(8)并且在线圈系统(7)中引发必要的点火能量。
    • 2. 发明授权
    • Inductive igniters with secondary coil
    • 二次线圈感应点火器
    • US4651254A
    • 1987-03-17
    • US720297
    • 1985-04-05
    • Uwe BredeHeinz KernGerhard Kordel
    • Uwe BredeHeinz KernGerhard Kordel
    • F41A19/63F42C19/12H01F27/28F23Q7/00H01F5/00
    • F42C19/12F41A19/63H01F27/2804H01F2027/2861Y10S336/02
    • A secondary coil is provided for use in inductive igniters for the igniting of propellant charge powder. In these igniters, two coil systems cooperate with each other in accordance with the transformer system, wherein the secondary coil is to be as small as possible and is to form a compact unit with the igniter. This is accomplished by arranging the windings of the secondary coil in the form of flat sandwich coils on a support material in an insulated fashion so that upon folding of the support material, the individual flat coils are placed in mutual opposition so that they form a cylinder coil. Furthermore, these flat coils are connected with each other by way of their outermost and innermost windings, the transition from the outermost windings being located at the crease and the innermost windings being joined together so that the flat coils are disposed almost in congruence on the front side as well as on the rear side, and the transition of the innermost coils being effected by a metallized path extending through the carrier material.
    • 提供二次线圈用于感应式点火器,用于点燃推进剂充电粉末。 在这些点火器中,两个线圈系统根据变压器系统相互配合,其中次级线圈尽可能小,并且与点火器形成紧凑的单元。 这是通过将二次线圈的绕组以平坦的夹心线圈的形式以绝缘方式布置在支撑材料上来实现的,使得在折叠支撑材料时,各个扁平线圈彼此相对放置,使得它们形成圆柱体 线圈 此外,这些扁平线圈通过其最外侧和最内侧的绕组彼此连接,从最外侧绕组的过渡位于折痕处,并且最内侧的绕组被连接在一起,使得扁平线圈几乎一致地设置在前面 侧面以及后侧,并且最内侧线圈的过渡由穿过载体材料的金属化路径实现。
    • 4. 发明授权
    • Ignition element with a laser light source
    • 带激光光源的点火元件
    • US06499404B1
    • 2002-12-31
    • US09763193
    • 2001-04-13
    • Heinz KernGerhard Kordel
    • Heinz KernGerhard Kordel
    • F42B3113
    • F42B3/113
    • In ignition elements where the energy required to ignite the charge is produced using a laser source, the laser light is injected by means of an optical fiber or a laser optics system enabling the laser light to be focused onto the charge at the required intensity for ignition. Transmission losses and injection losses occur while the laser light is transmitted by means of optical devices or optical fibers. Known ignition devices are also complicated in terms of construction. According to the invention, the laser light source is a laser diode (3) and the explosive (4) that is to be ignited is arranged directly on the part (12) of the housing (8) of the laser diode (3) that allows the laser light (13) to pass through it.
    • 在使用激光源产生点燃电荷所需的能量的点火元件中,激光通过光纤或激光光学系统注入,使得激光能够以所需的点火强度聚焦到电荷上 。 当激光通过光学器件或光纤传输时,发生传输损耗和注入损耗。 已知的点火装置在结构上也是复杂的。 根据本发明,激光光源是激光二极管(3),要被点燃的炸药(4)直接布置在激光二极管(3)的壳体(8)的部分(12)上, 允许激光(13)通过。
    • 7. 发明授权
    • Arrangement for the contactless transmission of electric energy to
missiles during firing thereof
    • 发射过程中电能对导弹的非接触传输的布置
    • US4445434A
    • 1984-05-01
    • US277863
    • 1981-06-26
    • Uwe BredeGerhard Kordel
    • Uwe BredeGerhard Kordel
    • F41A19/63F42C15/40F42C19/12
    • F42C15/40F41A19/63
    • An arrangement for the contactless transmission of electrical energy to a missile during the firing thereof from a firing device including a transformer-like coil system having a primary coil system connected to the firing device and a secondary coil system connected to the missile. The primary coil system is supplied with electric energy and the secondary coil system is responsive to the electric energy developed in the primary coil system for developing electrical energy therein. A partition is arranged between the primary coil system and the secondary coil system and is formed of a nonmagnetic material capable of withstanding thermal and mechanical stresses of repeated firings by the firing device. The partition is fixedly connected with the firing device and disposed for sealing the primary coil system with respect to the missile at least during the firing of the missile from the firing device.
    • 一种用于在从包括具有连接到点火装置的初级线圈系统的变压器状线圈系统和连接到该导弹的次级线圈系统的点火装置的点火装置中将电能非接触地传输到导弹的装置。 初级线圈系统被提供有电能,次级线圈系统响应于在初级线圈系统中产生的电能,用于在其中显现电能。 分隔件布置在初级线圈系统和次级线圈系统之间,并且由能够承受由点火装置重复发出的热和机械应力的非磁性材料形成。 分隔件固定地连接着点火装置,并设置成至少在从点火装置射出导弹时相对于导弹密封初级线圈系统。
    • 10. 发明授权
    • Passive safety device using optical signals for controlling an airbag
system of a vehicle, method for optically triggering the passive safety
device, and optomechanical acceleration sensor
    • 用于控制车辆的气囊系统的光信号的被动安全装置,用于光学触发被动安全装置的方法以及光机械加速度传感器
    • US5291014A
    • 1994-03-01
    • US922861
    • 1992-07-31
    • Uwe BredeGerhard KordelWolfram SeebeckHorst Wellner
    • Uwe BredeGerhard KordelWolfram SeebeckHorst Wellner
    • G01P3/36B60R21/01B60R21/16G01P15/03G01P15/093G02B6/00H01J5/16B60R21/32G01D5/34
    • B60R21/01G01P15/093B60R2021/01095
    • A passive safety device comprises a sensor unit for determining vehicle accelerations and decelerations, an evaluating unit for evaluating the output signal of the sensor unit, and a triggering unit for the activation of an occupant protection system upon the reception of a trigger signal, to protect the occupants from injuries. The individual units of the safety device are connected by way of optical lightguides, i.e. the communication among the individual units takes place through optical light signals. The sensor unit has an optical-mechanical acceleration sensor with at least one input lightguide, light being transmitted to the acceleration sensor by way of this lightguide. This light is transmitted within the acceleration sensor to at least one output lightguide. The optical system of the acceleration sensor arranged between the two lightguides is exposed to the accelerations to be detected and changes its optical properties in dependence on the magnitude of the acceleration forces. The output signal of the acceleration sensor, i.e. the light from the at least one output lightguide, is a measure for the effective acceleration and permits either quantitative information or qualitative information (larger than, larger than or equal to, smaller than, smaller than or equal to a predetermined threshold value) regarding the actual acceleration.
    • 被动安全装置包括用于确定车辆加速度和减速度的传感器单元,用于评估传感器单元的输出信号的评估单元和用于在接收到触发信号时激活乘员保护系统的触发单元,以保护 乘客受伤。 安全装置的各个单元通过光学光导连接,即各个单元之间的通信是通过光信号发生的。 传感器单元具有至少一个输入光导的光学机械加速度传感器,光通过该光导传递到加速度传感器。 该光在加速度传感器内传输到至少一个输出光导。 布置在两个光导之间的加速度传感器的光学系统暴露于待检测的加速度,并且根据加速度的大小改变其光学特性。 加速度传感器的输出信号,即来自至少一个输出光导的光,是有效加速度的量度,允许定量信息或定性信息(大于,大于或等于,小于,小于或小于 等于预定阈值)。