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    • 1. 发明授权
    • Microdevice programmer/feeder reject handling system
    • 微型编程器/进料器废品处理系统
    • US06297464B1
    • 2001-10-02
    • US09484186
    • 2000-01-18
    • Bryan D. PowellRichard Alan BernardLev M. BolotinBradley Morris Johnson
    • Bryan D. PowellRichard Alan BernardLev M. BolotinBradley Morris Johnson
    • B07C5344
    • H05K13/02H05K13/08Y10S209/933
    • A microdevice reject handling system is provided for in a microdevice processing/feeder system. The feeder mechanism is immediately adjacent to the processing mechanism for receiving and moving microdevices away from the processing mechanism. It uses a conveyor which has a dead space in which microdevices cannot be placed by a robotic transport system, which moves microdevices from the processing mechanism to the feeder mechanism. The microdevice reject handling system is partially positioned in the feeder mechanism dead space for receiving rejected microdevices. It includes a reject bin with a storage portion for storing rejected microdevices beside the feeder mechanism and rests on a bracket containing an optical sensor system for determining when the storage portion is full.
    • 在微型设备处理/馈送系统中提供微型设备拒收处理系统。 进给机构紧邻处理机构,用于接收和移动微型装置远离处理机构。 它使用具有静态空间的输送机,其中微型设备不能通过机器人运输系统放置,其将微型设备从处理机构移动到馈送机构。 微型设备拒收处理系统部分地位于馈送机器死区中,用于接收被拒绝的微型设备。 它包括具有存储部分的垃圾箱,用于存储供给机构旁边的拒绝的微型装置,并且搁置在包含光学传感器系统的支架上,用于确定储存部分何时已满。
    • 4. 发明授权
    • Pick and place system and unit therefor
    • 选择和放置系统和单位
    • US06364387B1
    • 2002-04-02
    • US09471635
    • 1999-12-24
    • Lev M. BolotinBryan D. PowellJanine Whan-Tong
    • Lev M. BolotinBryan D. PowellJanine Whan-Tong
    • B25J1506
    • H05K13/0413Y10T29/53191
    • A pick and place system is provided which is connectable to an air and an electrical power source. The system has a pick and place unit including an actuator responsive to the connection to the air power source to move to a pick-up position. The actuator moves a coupler which in turn moves a probe to compliantly move to a pick-up position. The probe is responsive to a connection to the air power source to pick up the micro device. A pneumatic valve connected to the actuator is capable of electrical actuation to connect the air power source to the actuator and a supply valve connected to the probe is capable of electrical actuation to remove the power source from the probe. Deactivation of the pneumatic valve moves the actuator and probe to a raised position. A system control, connectable to the electrical power source, is connected to the pneumatic and supply valves for selectively, electrically actuating the pneumatic and supply valves.
    • 提供可连接到空气和电源的拾取和放置系统。 该系统具有拾取和放置单元,其包括响应于与空气动力源的连接以移动到拾取位置的致动器。 致动器移动联接器,该联接器依次移动探头以顺从地移动到拾取位置。 探头响应于与空气动力源的连接以拾取微型装置。 连接到致动器的气动阀能够电致动以将空气动力源连接到致动器,并且连接到探针的供给阀能够进行电致动以从探针去除电源。 气动阀的停用将致动器和探头移动到升高位置。 可连接到电源的系统控制器连接到气动和供给阀,以选择性地,电动地驱动气动和供给阀。
    • 5. 发明授权
    • Programmer
    • 具有微型器件插座的编程系统
    • US06657426B1
    • 2003-12-02
    • US09471634
    • 1999-12-24
    • Bryan D. PowellGeorge Leland AndersonLev M. BolotinRobin Edward Cameron
    • Bryan D. PowellGeorge Leland AndersonLev M. BolotinRobin Edward Cameron
    • G01R3102
    • G06F11/006G06F1/183
    • A micro device programming system is provided which permits fast placement of a plurality of unprogrammed micro devices and fast removal of a plurality of programmed micro devices. The system includes a circuit board having electronic components connected to a backplane having a plurality of backplane contacts thereon electrically connected to the circuit board contacts. The flat surface of the backplane is held in a fixed relationship with the flat surface of the circuit board leaving a space for passage of a tape transporting the micro devices under the backplane. A socket adapter has a predetermined plurality of in line sockets capable of holding the plurality of micro devices over the backplane with the plurality of backplane contacts exposed through the sockets.
    • 提供了一种微器件编程系统,其允许快速放置多个未编程的微器件并快速移除多个编程的微器件。 该系统包括具有连接到背板的电子部件的电路板,该背板具有多个电连接到电路板触点的背板触点。 背板的平坦表面与电路板的平坦表面保持固定关系,留下传送微型设备在背板下方的带的通过的空间。 插座适配器具有预定的多个在线插座,其能够将多个微器件保持在背板上,多个底板触头通过插座暴露。