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    • 1. 发明申请
    • PROBING DEVICE AND MANUFACTURING METHOD THEREOF
    • 探测装置及其制造方法
    • US20130069686A1
    • 2013-03-21
    • US13612849
    • 2012-09-13
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • G01R1/073G01R3/00
    • G01R3/00G01R1/07378H01F38/20H01F41/00H05K3/241H05K3/32Y10T29/4902Y10T29/49124
    • A probing device and manufacturing method thereof are provided. The manufacturing method includes first disposing a plurality of space transformers on a reinforcing plate and the space transformer includes several first pads. Then, the space transformer is fixed on the reinforcing plate. Thereafter, photoresist films having a plurality of openings is formed on the space transformer. The first pads are disposed in the openings. After that, a metal layer is formed and covered on the first pad. Later, the photoresist film is removed and the metal layer is planarized to form a second pad. Afterwards, the reinforcing plate is electrically connected with a PCB. Thereafter, a probe head having a plurality of probing area is provided and each probing area is corresponding to one of the space transformer. The probes in the probing area are electrically connected with the internal circuitry of the space transformer.
    • 提供探测装置及其制造方法。 该制造方法包括:在加强板上首先设置多个空间变压器,空间变压器包括多个第一焊盘。 然后,空间变压器固定在加强板上。 此后,在空间变压器上形成具有多个开口的光致抗蚀剂膜。 第一垫设置在开口中。 之后,形成金属层并将其覆盖在第一焊盘上。 之后,除去光致抗蚀剂膜,并且将金属层平坦化以形成第二焊盘。 之后,加强板与PCB电连接。 此后,设置具有多个探测区域的探头,并且每个探测区域对应于空间变换器之一。 探测区域中的探头与空间变压器的内部电路电连接。
    • 3. 发明授权
    • Apparatus and methods for Z-axis control and collision detection and recovery for waterjet cutting systems
    • 用于水刀切割系统的Z轴控制和碰撞检测和回收的装置和方法
    • US06852002B2
    • 2005-02-08
    • US09861144
    • 2001-05-17
    • Jonathan M. StewartThomas PesekVolker KernChien Chou WuDaniel ChinFelice M. Sciulli
    • Jonathan M. StewartThomas PesekVolker KernChien Chou WuDaniel ChinFelice M. Sciulli
    • B23Q5/58B23Q11/04B23Q11/06B23Q17/00B24C1/04B26D7/22B26D7/24B26F3/00B24C1/00B26D7/00
    • B26F3/004B23Q5/58B23Q11/04B23Q17/005B24C1/045B26D7/22B26D7/24Y10T83/0443Y10T83/0591Y10T83/096Y10T83/145Y10T83/364
    • This invention relates to apparatus and methods for z-axis control and collision detection and recovery for waterjet and abrasive-jet cutting systems. In one embodiment, an apparatus includes a linear rail, a slide member coupleable to a cutting head and slideably coupled to the linear rail, at least one actuator having a first end coupled to the slide member and a second end fixed with respect to the linear rail, a position sensor, and a controller. The actuator provides an adjustable support force that supports the weight of the cutting head, allowing the cutting head to be controllably positioned at a desired height above the workpiece. The actuator may include a pneumatic cylinder, or alternately, a linear motor. In another aspect, an apparatus includes a first mount member coupleable to a controllably positionable mounting surface of the waterjet cutting system, a second mount member coupleable to the cutting head and disengageably coupled to the first mount member, and a sensing circuit having a plurality of first conductive elements disposed on the first mount member and a plurality of second conductive elements disposed on the second mount member. In the event of a collision between the cutting head and an obstruction, the second mount member disengages from the first mount member to prevent breakage of the cutting head. Following the collision, the second mount member is quickly and easily re-engaged with the first mount member without time-consuming re-calibration. In one embodiment, re-engagement of the second end first mount members is automatically performed by a biasing member.
    • 本发明涉及用于水射流和磨料喷射切割系统的z轴控制和碰撞检测和回收的装置和方法。 在一个实施例中,一种装置包括线性轨道,可耦合到切割头并且可滑动地联接到线性轨道的滑动构件,至少一个致动器,其具有联接到滑动构件的第一端和相对于线性轨道固定的第二端 导轨,位置传感器和控制器。 致动器提供可调节的支撑力,其支撑切割头的重量,允许切割头被可控地定位在工件上方的期望高度处。 致动器可以包括气缸,或者可以包括线性马达。 在另一方面,一种装置包括可连接到水刀切割系统的可控地定位的安装表面的第一安装构件,可耦合到切割头并且可分离地联接到第一安装构件的第二安装构件,以及具有多个 设置在第一安装构件上的第一导电元件和设置在第二安装构件上的多个第二导电元件。 在切割头和障碍物之间发生碰撞的情况下,第二安装构件与第一安装构件脱离,以防止切割头的断裂。 在碰撞之后,第二安装构件快速且容易地与第一安装构件重新接合,而不需要耗时的重新校准。 在一个实施例中,第二端部第一安装构件的再接合由偏置构件自动执行。
    • 4. 发明授权
    • Probing device
    • 探测装置
    • US09347971B2
    • 2016-05-24
    • US13562276
    • 2012-07-30
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • G01R31/00G01R1/073
    • G01R1/07342G01R1/07378
    • A probing device includes a circuit board, a reinforcing plate, at least one space transformer and at least one probe assembly. The reinforcing plate is disposed on the circuit board, and the reinforcing plate has a plurality of inner conductive wires electrically connecting to those of the circuit board. The reinforcing plate defines a plurality of receiving space therein. The space transformer is disposed on the reinforcing plate, and the space transformer has a plurality of inner conductive wires electrically connecting to those of the reinforcing plate via a plurality of first solder balls. The probe assembly is disposed on the space transformer, and the probe assembly includes a plurality of probes. The first solder balls are disposed in the receiving spaces, and the reinforcing plate abuts against the space transformer.
    • 探测装置包括电路板,加强板,至少一个空间变压器和至少一个探针组件。 加强板设置在电路板上,加强板具有与电路板电连接的多个内导电线。 加强板在其中限定多个容纳空间。 空间变压器设置在加强板上,空间变压器具有通过多个第一焊球与多个加强板电连接的多个内导电线。 探针组件设置在空间变换器上,探针组件包括多个探针。 第一焊球设置在接收空间中,并且加强板抵靠空间变换器。
    • 5. 发明授权
    • Apparatus and methods for z-axis control and collision detection and recovery for waterjet cutting systems
    • 用于水刀切割系统的z轴控制和碰撞检测和回收的装置和方法
    • US06379214B1
    • 2002-04-30
    • US09382554
    • 1999-08-25
    • Jonathan M. StewartThomas PesekVolker KernChien Chou WuDaniel ChinFelice M. Sciulli
    • Jonathan M. StewartThomas PesekVolker KernChien Chou WuDaniel ChinFelice M. Sciulli
    • B24C100
    • B26F3/004B23Q5/58B23Q11/04B23Q17/005B24C1/045B26D7/22B26D7/24Y10T83/0443Y10T83/0591Y10T83/096Y10T83/145Y10T83/364
    • This invention relates to apparatus and methods for z-axis control and collision detection and recovery for waterjet and abrasive-jet cutting systems. In one embodiment, an apparatus includes a linear rail, a slide member coupleable to a cutting head and slideably coupled to the linear rail, at least one actuator having a first end coupled to the slide member and a second end fixed with respect to the linear rail, a position sensor, and a controller. The actuator provides an adjustable support force that supports the weight of the cutting head, allowing the cutting head to be controllably positioned at a desired height above the workpiece. The actuator may include a pneumatic cylinder, or alternately, a linear motor. In another aspect, an apparatus includes a first mount member coupleable to a controllably positionable mounting surface of the waterjet cutting system, a second mount member coupleable to the cutting head and disengageably coupled to the first mount member, and a sensing circuit having a plurality of first conductive elements disposed on the first mount member and a plurality of second conductive elements disposed on the second mount member. In the event of a collision between the cutting head and an obstruction, the second mount member disengages from the first mount member to prevent breakage of the cutting head. Following the collision, the second mount member is quickly and easily re-engaged with the first mount member without time-consuming re-calibration. In one embodiment, re-engagement of the second end first mount members is automatically performed by a biasing member.
    • 本发明涉及用于水射流和磨料喷射切割系统的z轴控制和碰撞检测和回收的装置和方法。 在一个实施例中,一种装置包括线性轨道,可耦合到切割头并且可滑动地联接到线性轨道的滑动构件,至少一个致动器,其具有联接到滑动构件的第一端和相对于线性轨道固定的第二端 导轨,位置传感器和控制器。 致动器提供可调节的支撑力,其支撑切割头的重量,允许切割头被可控地定位在工件上方的期望高度处。 致动器可以包括气缸,或者可以包括线性马达。 在另一方面,一种装置包括可连接到水刀切割系统的可控地定位的安装表面的第一安装构件,可耦合到切割头并且可分离地联接到第一安装构件的第二安装构件,以及具有多个 设置在第一安装构件上的第一导电元件和设置在第二安装构件上的多个第二导电元件。 在切割头和障碍物之间发生碰撞的情况下,第二安装构件与第一安装构件脱离,以防止切割头的断裂。 在碰撞之后,第二安装构件快速且容易地与第一安装构件重新接合,而不需要耗时的重新校准。 在一个实施例中,第二端部第一安装构件的再接合由偏置构件自动执行。
    • 6. 发明授权
    • Probing device and manufacturing method thereof
    • 探测装置及其制造方法
    • US09234917B2
    • 2016-01-12
    • US13612849
    • 2012-09-13
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • G01R31/00G01R3/00H01F38/20H01F41/00H05K3/24H05K3/32G01R1/073
    • G01R3/00G01R1/07378H01F38/20H01F41/00H05K3/241H05K3/32Y10T29/4902Y10T29/49124
    • A probing device and manufacturing method thereof are provided. The manufacturing method includes first disposing a plurality of space transformers on a reinforcing plate and the space transformer includes several first pads. Then, the space transformer is fixed on the reinforcing plate. Thereafter, photoresist films having a plurality of openings is formed on the space transformer. The first pads are disposed in the openings. After that, a metal layer is formed and covered on the first pad. Later, the photoresist film is removed and the metal layer is planarized to form a second pad. Afterwards, the reinforcing plate is electrically connected with a PCB. Thereafter, a probe head having a plurality of probing area is provided and each probing area is corresponding to one of the space transformer. The probes in the probing area are electrically connected with the internal circuitry of the space transformer.
    • 提供探测装置及其制造方法。 该制造方法包括:在加强板上首先设置多个空间变压器,空间变压器包括多个第一焊盘。 然后,空间变压器固定在加强板上。 此后,在空间变压器上形成具有多个开口的光致抗蚀剂膜。 第一垫设置在开口中。 之后,形成金属层并将其覆盖在第一焊盘上。 之后,除去光致抗蚀剂膜,并且将金属层平坦化以形成第二焊盘。 之后,加强板与PCB电连接。 此后,设置具有多个探测区域的探头,并且每个探测区域对应于空间变换器之一。 探测区域中的探头与空间变压器的内部电路电连接。
    • 7. 发明申请
    • PROBING DEVICE
    • 探测器件
    • US20130033283A1
    • 2013-02-07
    • US13562276
    • 2012-07-30
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • Chien-Chou WuMing-Chi ChenChung-Che Li
    • G01R31/00
    • G01R1/07342G01R1/07378
    • A probing device includes a circuit board, a reinforcing plate, at least one space transformer and at least one probe assembly. The reinforcing plate is disposed on the circuit board, and the reinforcing plate has a plurality of inner conductive wires electrically connecting to those of the circuit board. The reinforcing plate defines a plurality of receiving space therein. The space transformer is disposed on the reinforcing plate, and the space transformer has a plurality of inner conductive wires electrically connecting to those of the reinforcing plate via a plurality of first solder balls. The probe assembly is disposed on the space transformer, and the probe assembly includes a plurality of probes. The first solder balls are disposed in the receiving spaces, and the reinforcing plate abuts against the space transformer.
    • 探测装置包括电路板,加强板,至少一个空间变压器和至少一个探针组件。 加强板设置在电路板上,加强板具有与电路板电连接的多个内导电线。 加强板在其中限定多个容纳空间。 空间变压器设置在加强板上,空间变压器具有通过多个第一焊球与多个加强板电连接的多个内导电线。 探针组件设置在空间变换器上,探针组件包括多个探针。 第一焊球设置在接收空间中,并且加强板抵靠空间变换器。
    • 8. 发明申请
    • DIRECT-DOCKING PROBING DEVICE
    • 直接锁定探测器
    • US20120038383A1
    • 2012-02-16
    • US13091148
    • 2011-04-21
    • Chien-Chou WUMing-Chi CHENTsung-Yi CHENChung-Che LI
    • Chien-Chou WUMing-Chi CHENTsung-Yi CHENChung-Che LI
    • G01R31/00
    • G01R31/2887G01R31/2889
    • A direct-docking probing device is provided. The probing device includes a probe interface board, a space transformer, a conductive elastic member, a fixing frame, and at least one vertical probe assembly. The space transformer includes a space transforming plate and a reinforcing plate, and the mechanical strength of the reinforcing plate is larger than that of the space transforming plate. The reinforcing plate is electrically connected with the space transforming plate. Furthermore, the conductive elastic member is electrically connected with the probe interface board and the reinforcing plate. The fixing frame includes a stiffener, a frame body, and a pressing portion. The stiffener is disposed on the probe interface board. The frame body contains the conductive elastic member. The pressing portion is pressed on the space transformer. The vertical probe assembly includes a plurality of vertical probes which are electrically connected with the space transforming plate.
    • 提供直接对接探测装置。 探测装置包括探针接口板,空间变压器,导电弹性构件,固定框架和至少一个垂直探针组件。 空间变压器包括空间转换板和加强板,并且加强板的机械强度大于空间转换板的机械强度。 加强板与空间转换板电连接。 此外,导电弹性构件与探针接口板和加强板电连接。 固定框架包括加强件,框架体和按压部分。 加强筋设置在探针接口板上。 框体包含导电弹性构件。 按压部分被压在空间变压器上。 垂直探针组件包括与空间变换板电连接的多个垂直探头。