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    • 1. 发明申请
    • COMPRESSION RING FOR AN ISOLATOR IN A MOTION TRANSMITTING REMOTE CONTROL ASSEMBLY
    • 用于运动发送远程控制组件中的隔离器的压缩环
    • US20090314123A1
    • 2009-12-24
    • US12486448
    • 2009-06-17
    • Young Dae Kwon
    • Young Dae Kwon
    • F16C1/10B23P11/00
    • F16C1/262F16C1/105F16C1/108
    • An annular isolator (68, 70) is disposed in an open ended bore (66) of a support body (58) and surrounds an end fitting (26, 28) for attenuating vibrations therebetween. A cap (74) is disposed on the support body (58) to close the open ended bore (66). An inflexible compression ring (76) is sandwiched axially between the isolator (68, 70) and the cap (74) and in abutting engagement with a stop (78) to limit compression of the isolator (68, 70) from the cap (74). The compression ring (76) is inserted into the bore (66) prior to molding the cap (74) to limit compression of the isolator (68, 70) during fabrication.
    • 环形隔离器(68,70)设置在支撑体(58)的开口孔(66)中,并且围绕端部配件(26,28)以衰减它们之间的振动。 盖(74)设置在支撑体(58)上以封闭开口孔(66)。 不灵活的压缩环(76)被轴向地夹在隔离器(68,70)和盖(74)之间并且与止动件(78)邻接接合,以限制隔离件(68,70)与盖帽(74)的压缩 )。 在模制盖(74)之前,将压缩环(76)插入到孔(66)中,以在制造期间限制隔离件(68,70)的压缩。
    • 2. 发明申请
    • ISOLATOR FOR LOCK ASSEMBLY
    • 用于锁定装置的隔离器
    • US20090019964A1
    • 2009-01-22
    • US12175682
    • 2008-07-18
    • Young Dae Kwon
    • Young Dae Kwon
    • F16C1/10
    • F16C1/265F16C1/105F16C1/108Y10T74/20402Y10T74/20426Y10T74/2045Y10T74/20456Y10T74/20462Y10T403/40Y10T403/45
    • A motion transmitting remote control assembly (20) of the type for transmitting motion in a curved path by a flexible core element (22) in a conduit (24) is secured to a support structure (76) having a U-shaped slot. A coupling body (36) surrounds the core element (22) and is surrounded by a support body (66) for attachment to the support structure (76). A flange (42) extends radially about the coupling body (36) and is disposed axially between a first and second ends (38, 40) of the coupling body (36). First and second isolators (52, 54) surround the coupling body (36) on opposite sides of the flange (42) and include first and second ribs (63, 64) projecting radially from first and second head portions (61, 62) of the isolators (52, 54). The first and second ribs (63, 64) contact an inner radial surface (122) of the support body (66) thereby spacing the first and second head portions (61, 62) from the support body (66).
    • 用于通过管道(24)中的柔性芯元件(22)在弯曲路径中传递运动的类型的运动发射遥控组件(20)固定到具有U形槽的支撑结构(76)。 联接体(36)围绕着芯体元件(22)并且由用于附接到支撑结构(76)的支撑体(66)包围。 凸缘(42)围绕联接体(36)径向延伸并且轴向设置在联接体(36)的第一和第二端(38,40)之间。 第一和第二隔离器(52,54)在凸缘(42)的相对侧围绕联接体(36),并包括从第一和第二头部(61,62)径向突出的第一和第二肋(63,64) 隔离器(52,54)。 第一和第二肋(63,64)接触支撑体(66)的内部径向表面(122),从而将第一和第二头部(61,62)与支撑体(66)隔​​开。
    • 6. 发明授权
    • Compression ring for an isolator in a motion transmitting remote control assembly
    • 用于运动传输遥控装置中隔离器的压缩环
    • US08671798B2
    • 2014-03-18
    • US12486448
    • 2009-06-17
    • Young Dae Kwon
    • Young Dae Kwon
    • F16C1/26
    • F16C1/262F16C1/105F16C1/108
    • An annular isolator (68, 70) is disposed in an open ended bore (66) of a support body (58) and surrounds an end fitting (26, 28) for attenuating vibrations therebetween. A cap (74) is disposed on the support body (58) to close the open ended bore (66). An inflexible compression ring (76) is sandwiched axially between the isolator (68, 70) and the cap (74) and in abutting engagement with a stop (78) to limit compression of the isolator (68, 70) from the cap (74). The compression ring (76) is inserted into the bore (66) prior to molding the cap (74) to limit compression of the isolator (68, 70) during fabrication.
    • 环形隔离器(68,70)设置在支撑体(58)的开口孔(66)中,并且围绕端部配件(26,28)以衰减它们之间的振动。 盖(74)设置在支撑体(58)上以封闭开口孔(66)。 不灵活的压缩环(76)被轴向地夹在隔离器(68,70)和盖(74)之间并且与止动件(78)邻接接合,以限制隔离器(68,70)与盖帽(74)的压缩 )。 在模制盖(74)之前,将压缩环(76)插入到孔(66)中,以在制造期间限制隔离件(68,70)的压缩。
    • 7. 发明授权
    • Slide-and-snap lock assembly
    • 滑动和卡扣锁组件
    • US08312788B2
    • 2012-11-20
    • US12175558
    • 2008-07-18
    • Young Dae Kwon
    • Young Dae Kwon
    • F16C1/26
    • F16C1/265F16C1/105Y10T74/20402Y10T74/2045Y10T74/20462
    • A motion transmitting remote control assembly (20) of the type for transmitting motion in a curved path by a flexible core element (22) in a conduit (24) is secured to a support structure (76) having a U-shaped slot. A support body (66) defines a groove (84) having first and second legs (86, 88) for abutting parallel edges (78) of the U-shaped slot, and a bottom leg (90) connecting the first and second legs (86, 88) for abutting a bottom edge (80). Slider arms (94) movably supported within female guides (92) are urged against snap-in retainers (102) by biasing spring members (104) establishing a locking position. A pair of locking tabs (106) projecting from the slider arms (94) into the groove (84) engage notches (82) in the parallel edges (78). An inclined face (112) is defined along the lower surface (112) of the locking tabs (106) for wedging engagement with the parallel edges (78) of the U-shaped slot to move the slider arms (94) axially to an insertion position.
    • 用于通过管道(24)中的柔性芯元件(22)在弯曲路径中传递运动的类型的运动发射遥控组件(20)固定到具有U形槽的支撑结构(76)。 支撑体(66)限定具有用于邻接U形槽的平行边缘(78)的第一和第二腿部(86,88)的凹槽(84)和连接第一和第二腿部的底部腿部(90) 86,88),用于抵靠底部边缘(80)。 可移动地支撑在阴引导件(92)内的滑动臂(94)通过偏置构成锁定位置的弹簧构件(104)而被推靠在卡扣保持器(102)内。 从滑动臂(94)突出到槽(84)中的一对锁定突片(106)接合平行边缘(78)中的凹口(82)。 沿着锁定突片(106)的下表面(112)限定倾斜面(112),用于与U形槽的平行边缘(78)楔入接合,以使滑动臂(94)轴向移动到插入 位置。
    • 8. 发明授权
    • Isolator for a motion transmitting remote control assembly
    • 用于运动遥控器组件的隔离器
    • US07597027B2
    • 2009-10-06
    • US12175682
    • 2008-07-18
    • Young Dae Kwon
    • Young Dae Kwon
    • F16C1/10F16C1/20
    • F16C1/265F16C1/105F16C1/108Y10T74/20402Y10T74/20426Y10T74/2045Y10T74/20456Y10T74/20462Y10T403/40Y10T403/45
    • A motion transmitting remote control assembly (20) of the type for transmitting motion in a curved path by a flexible core element (22) in a conduit (24) is secured to a support structure (76) having a U-shaped slot. A coupling body (36) surrounds the core element (22) and is surrounded by a support body (66) for attachment to the support structure (76). A flange (42) extends radially about the coupling body (36) and is disposed axially between a first and second ends (38, 40) of the coupling body (36). First and second isolators (52, 54) surround the coupling body (36) on opposite sides of the flange (42) and include first and second ribs (63, 64) projecting radially from first and second head portions (61, 62) of the isolators (52, 54). The first and second ribs (63, 64) contact an inner radial surface (122) of the support body (66) thereby spacing the first and second head portions (61, 62) from the support body (66).
    • 用于通过管道(24)中的柔性芯元件(22)在弯曲路径中传递运动的类型的运动发射遥控组件(20)固定到具有U形槽的支撑结构(76)。 联接体(36)围绕着芯体元件(22)并且由用于附接到支撑结构(76)的支撑体(66)包围。 凸缘(42)围绕联接体(36)径向延伸并且轴向设置在联接体(36)的第一和第二端(38,40)之间。 第一和第二隔离器(52,54)在凸缘(42)的相对侧围绕联接体(36),并包括从第一和第二头部(61,62)径向突出的第一和第二肋(63,64) 隔离器(52,54)。 第一和第二肋(63,64)接触支撑体(66)的内部径向表面(122),从而将第一和第二头部(61,62)与支撑体(66)隔​​开。
    • 9. 发明申请
    • SLIDE-AND-SNAP LOCK ASSEMBLY
    • 幻灯片和SNAP锁定组件
    • US20090019965A1
    • 2009-01-22
    • US12175558
    • 2008-07-18
    • Young Dae Kwon
    • Young Dae Kwon
    • F16C1/10
    • F16C1/265F16C1/105Y10T74/20402Y10T74/2045Y10T74/20462
    • A motion transmitting remote control assembly (20) of the type for transmitting motion in a curved path by a flexible core element (22) in a conduit (24) is secured to a support structure (76) having a U-shaped slot. A support body (66) defines a groove (84) having first and second legs (86, 88) for abutting parallel edges (78) of the U-shaped slot, and a bottom leg (90) connecting the first and second legs (86, 88) for abutting a bottom edge (80). Slider arms (94) movably supported within female guides (92) are urged against snap-in retainers (102) by biasing spring members (104) establishing a locking position. A pair of locking tabs (106) projecting from the slider arms (94) into the groove (84) engage notches (82) in the parallel edges (78). An inclined face (112) is defined along the lower surface (112) of the locking tabs (106) for wedging engagement with the parallel edges (78) of the U-shaped slot to move the slider arms (94) axially to an insertion position.
    • 用于通过管道(24)中的柔性芯元件(22)在弯曲路径中传递运动的类型的运动发射遥控组件(20)固定到具有U形槽的支撑结构(76)。 支撑体(66)限定具有用于邻接U形槽的平行边缘(78)的第一和第二腿部(86,88)的凹槽(84)和连接第一和第二腿部的底部腿部(90) 86,88),用于抵靠底部边缘(80)。 可移动地支撑在阴引导件(92)内的滑动臂(94)通过偏置构成锁定位置的弹簧构件(104)而被推靠在卡扣保持器(102)内。 从滑动臂(94)突出到槽(84)中的一对锁定突片(106)接合平行边缘(78)中的凹口(82)。 沿着锁定突片(106)的下表面(112)限定倾斜面(112),用于与U形槽的平行边缘(78)楔入接合,以使滑动臂(94)轴向移动到插入 位置。
    • 10. 发明授权
    • Insulated gate bipolar transistor having high breakdown voltage in reverse blocking mode
    • 绝缘栅双极晶体管在反向阻断模式下具有高击穿电压
    • US06448588B2
    • 2002-09-10
    • US09790816
    • 2001-02-23
    • Chong Man YunSoo-seong KimYoung-dae Kwon
    • Chong Man YunSoo-seong KimYoung-dae Kwon
    • H01L2974
    • H01L29/66333H01L29/1095H01L29/7395
    • An insulated gate bipolar transistor having a high breakdown voltage in a reverse blocking mode and a method for fabricating the same are provided. The insulated gate bipolar transistor includes a relatively low-concentration lower buffer layer and a relatively high-concentration upper buffer layer. The low-concentration lower buffer layer contacts a semiconductor substrate having a high concentration of first conductivity type impurities used as a collector region, and the high-concentration upper buffer layer contacts a drift region of a second conductivity type. The conductivity type of the upper buffer layer is second conductivity type impurities, and the conductivity type of the lower buffer layer is substantially intrinsic, or first conductivity type impurities, or second conductivity type impurities. According to the present invention, due to the high-concentration upper buffer layer, the thickness of the drift region can be reduced, and during a forward continuity, a switching speed can be improved. Simultaneously, due the low-concentration lower buffer layer, the breakdown voltage of a device can be increased in a reverse blocking mode.
    • 提供了具有反向阻断模式的高击穿电压的绝缘栅双极晶体管及其制造方法。 绝缘栅双极晶体管包括相对低浓度的下缓冲层和相对高浓度的上缓冲层。 低浓度下缓冲层接触具有用作集电极区的高浓度第一导电型杂质的半导体衬底,并且高浓度上缓冲层接触第二导电类型的漂移区。 上缓冲层的导电类型是第二导电型杂质,下缓冲层的导电类型基本上是本征的,或者是第一导电型杂质或第二导电型杂质。 根据本发明,由于高浓度上缓冲层,可以减小漂移区的厚度,并且在正向连续性期间,可以提高切换速度。 同时,由于低浓度下缓冲层,器件的击穿电压可以以反向阻断模式增加。