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    • 32. 发明申请
    • WELDING OR CUTTING POWER SUPPLY USING PHASE SHIFT DOUBLE FORWARD CONVERTER CIRCUIT (PSDF)
    • 焊接或切割电源使用相位切换双向前转换器电路(PSDF)
    • US20090230941A1
    • 2009-09-17
    • US12399698
    • 2009-03-06
    • Bernard J. Vogel
    • Bernard J. Vogel
    • G05F3/04
    • B23K9/1043B23K9/091B23K9/1012H02M3/33507H02M3/3353
    • A technique for dynamically adjusting an output voltage for a welding or cutting operation is provided. The technique allows for varying output voltage at the welding or cutting torch by manipulating the duty cycles of two forward converter circuits. The present disclosure provides methods and systems for increasing synchronized duty cycles in a pair of forward converter circuits in response to increasing output voltage demand then changing a phase shift between the duty cycles in response to further increases in output voltage demand. The present disclosure provides a controller designed to receive input signals and generate output pulse width modulation signals that control the duty cycle width and phase shift of the outputs of the forward converter circuits in response to these signals. Methods of accommodating for the time needed for the transformer core to reset via leading edge or lagging edge compensation are provided.
    • 提供了用于动态调整焊接或切割操作的输出电压的技术。 该技术允许通过操纵两个正激变换器电路的占空比来改变焊接或割炬处的输出电压。 本公开提供了用于响应于增加的输出电压需求来增加一对正激变换器电路中的同步占空比的方法和系统,然后响应于输出电压需求的进一步增加而改变占空比之间的相移。 本公开提供了一种控制器,其被设计为接收输入信号并产生输出脉冲宽度调制信号,其响应于这些信号来控制正激变换器电路的输出的占空比宽度和相移。 提供了通过前沿或滞后边缘补偿来满足变压器磁芯复位所需时间的方法。
    • 34. 发明申请
    • PORTABLE BATTERY POWERED WELDER
    • 便携式电池焊接机
    • US20090057285A1
    • 2009-03-05
    • US11848874
    • 2007-08-31
    • Brian S. BashoreDarrell L. SickelsBernard J. VogelCaleb R. Krisher
    • Brian S. BashoreDarrell L. SickelsBernard J. VogelCaleb R. Krisher
    • B23K9/10
    • B23K9/32B23K9/1006
    • A portable battery powered welder is disclosed that is configured to operate without an external power source. The portable battery powered welder may include a battery coupled to a welding circuit and a wire feeder. Further, the portable battery powered welder may include a suitcase to integrally support and completely enclose the welding circuit, the battery, and the wire feeder. The suitcase may include a lateral access door having a hinge and a latch. Additionally, the wire feeder and a wire spool may be disposed in a region accessible by the lateral access door. The suitcase may also include an access panel disposed over a region containing the battery. The access panel may be mounted to the case via a snap mount and/or secured via fasteners. Finally, the suitcase may include a top handle and may be made of a lightweight, impact resistant, and flame retardant material.
    • 公开了一种便携式电池供电焊机,其被配置为在没有外部电源的情况下操作。 便携式电池供电焊机可以包括耦合到焊接电路和导线器的电池。 此外,便携式电池供电的焊接机可以包括手提箱,以一体地支撑并完全包围焊接电路,电池和送丝机。 手提箱可以包括具有铰链和闩锁的侧门。 此外,送丝机和线卷筒可以设置在由侧面通道门可接近的区域中。 手提箱还可以包括设置在包含电池的区域上的检修面板。 检修面板可以通过卡扣安装件和/或通过紧固件固定到外壳上。 最后,手提箱可以包括顶部手柄,并且可以由轻质,耐冲击和阻燃的材料制成。
    • 37. 发明申请
    • WELDING POWER SUPPLY WITH CONTROLLED AUXILIARY POWER
    • 焊接电源与控制辅助电源
    • US20120241417A1
    • 2012-09-27
    • US13426238
    • 2012-03-21
    • Peter D. MehnBernard J. Vogel
    • Peter D. MehnBernard J. Vogel
    • B23K11/24
    • B23K9/0956B23K9/1006B23K9/173B23K9/327
    • A system includes a welding power supply unit and control circuitry. The welding power supply unit includes an auxiliary power supply configured to supply power to an auxiliary power load connected to the auxiliary power supply. The control circuitry is configured to detect a voltage received by the auxiliary power load from the auxiliary power supply, compare an output voltage generated by the auxiliary power supply with the voltage received by the auxiliary power load, and apply a correction factor to the output voltage from the auxiliary power supply based at least in part on the comparison of the output voltage generated by the auxiliary power supply and the voltage received by the auxiliary power load.
    • 一种系统包括焊接电源单元和控制电路。 焊接电源单元包括:辅助电源,被配置为向与辅助电源连接的辅助电力负载供电。 控制电路被配置为检测来自辅助电源的辅助电力负载接收的电压,将辅助电源产生的输出电压与由辅助电力负载接收的电压进行比较,并将校正因子应用于输出电压 至少部分地基于由辅助电源产生的输出电压与由辅助电力负载接收的电压进行比较的辅助电源。
    • 40. 发明授权
    • Battery charger with a planar bus
    • 带平面总线的电池充电器
    • US07795840B2
    • 2010-09-14
    • US11854346
    • 2007-09-12
    • Bernard J. VogelBrian A. SchwartzChristopher D. McInnis
    • Bernard J. VogelBrian A. SchwartzChristopher D. McInnis
    • H01M10/46
    • H02J7/00B60L11/1824Y02T10/7005Y02T10/7072Y02T90/12Y02T90/121Y02T90/14Y10T29/53243
    • A battery charging system which includes an input circuit configured to receive an input power and provide an output power on a first output terminal and a second output terminal. An output circuit has a first input terminal connected to the first output terminal and a second input terminal connected to the second output terminal to receive the output power and configured to condition the output power for a battery charging process. A first conductive plate with a first bus surface extends between the first input terminal and the first output terminal. An insulator plate has a first insulator surface disposed in an abutting relationship with the first bus surface and a second insulator surface. A second conductive plate has a second bus surface which extend between the second input terminal and the second output terminal and is disposed in an abutting relationship with the second insulator surface.
    • 一种电池充电系统,包括被配置为接收输入电力并在第一输出端子和第二输出端子上提供输出功率的输入电路。 输出电路具有连接到第一输出端子的第一输入端子和连接到第二输出端子的第二输入端子,用于接收输出功率并被配置为调节用于电池充电过程的输出功率。 具有第一总线表面的第一导电板在第一输入端和第一输出端之间延伸。 绝缘板具有与第一母线表面和第二绝缘体表面邻接的第一绝缘体表面。 第二导电板具有在第二输入端子和第二输出端子之间延伸并且与第二绝缘体表面邻接的第二总线表面。