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    • 42. 发明授权
    • Electronic-parts mounting apparatus
    • 电子零件安装装置
    • US6000123A
    • 1999-12-14
    • US961921
    • 1997-10-31
    • Takashi MunezaneTakatoshi MitsushimaNoboru FurutaKimio IizukaKunio TanakaTomitatsu Soga
    • Takashi MunezaneTakatoshi MitsushimaNoboru FurutaKimio IizukaKunio TanakaTomitatsu Soga
    • B23P21/00H05K13/04H05K3/30
    • H05K13/0452Y10T29/53091Y10T29/53174Y10T29/53178
    • Cassettes contain electronic parts. First and second feeders are operative for feeding the electronic parts from the cassettes. A first mounting head has sucking nozzles for picking up the electronic parts fed by the first feeder. A second mounting head has sucking nozzles for picking up the electronic parts fed by the second feeder. A table arrangement is operative for holding a printed circuit board. The first and second mounting heads are alternately moved along a first direction to a region above the printed circuit board on the table arrangement. The table arrangement includes a mechanism for moving the printed circuit board on the table arrangement in a second direction perpendicular to the first direction. Also, the table arrangement includes a mechanisms for rotating the printed circuit board on the table arrangement about an axis perpendicular to both the first and second directions. The sucking nozzles of the first mounting head place the electronic parts on the printed circuit board on the table arrangement when the first mounting head is in the region above the printed circuit board. The sucking nozzles of the second mounting head place the electronic parts on the printed circuit board on the table arrangement when the second mounting head is in the region above the printed circuit board.
    • 磁带盒包含电子部件。 第一和第二馈送器用于从盒中馈送电子部件。 第一安装头具有用于拾取由第一馈送器馈送的电子部件的吸嘴。 第二安装头具有用于拾取由第二馈送器馈送的电子部件的吸嘴。 工作台布置用于保持印刷电路板。 第一和第二安装头沿着第一方向交替地移动到台面布置上的印刷电路板上方的区域。 工作台装置包括用于沿垂直于第一方向的第二方向将印刷电路板移动到工作台装置上的机构。 此外,台面布置包括用于使桌布上的印刷电路板围绕垂直于第一和第二方向的轴线旋转的机构。 当第一安装头位于印刷电路板上方的区域中时,第一安装头的吸嘴将电子部件放置在印刷电路板上的工作台装置上。 当第二安装头位于印刷电路板上方的区域中时,第二安装头的吸嘴将电子部件放置在台面布置上的印刷电路板上。
    • 43. 发明授权
    • Chip-type electronic part storage casing and supply cassette using same
    • 芯片型电子部件储存壳体和使用其的供给盒
    • US5752628A
    • 1998-05-19
    • US532661
    • 1995-10-13
    • Takeshi NishiguchiKenji KatoTakayuki FujitaShigetoshi NegishiKunio TanakaTakashi NakanishiTakatoshi MitsushimaManabu Morita
    • Takeshi NishiguchiKenji KatoTakayuki FujitaShigetoshi NegishiKunio TanakaTakashi NakanishiTakatoshi MitsushimaManabu Morita
    • H05K13/00H05K13/02B67D5/06
    • H05K13/028H05K13/0084
    • A chip-type electronic part storage casing includes a storage portion for storing chip-type electronic parts in a loose condition; an opening formed in a lower surface of the storage portion for discharging the electronic parts; a shutter for opening and closing the opening; and a scatter prevention member within the storage portion for preventing the electronic parts from being scattered in the storage portion. Additionally, a supply cassette includes a hopper provided at a lower portion thereof and having a storage portion for storing chip-type electronic parts charged therein through an opening in an upper surface thereof, a central portion of the storage portion being recessed to provide an inclined surface for gathering the electronic parts; an interrupting plate mounted within the storage portion in an inclined manner, a gap for allowing the passage of the electronic parts therethrough formed between one end of said interrupting plate and the inclined surface of the storage portion; a discharge pipe for discharging the electronic parts, the discharge pipe extending from the exterior of the hopper through a lower surface of the hopper to the storage portion, and being connected to the storage portion; a slide pipe slidably fitted on an outer periphery of the discharge pipe; and engagement ribs formed on the upper surface of the storage portion. A chip-type electronic part storage casing is further connected to an upper portion of the hopper through the engagement ribs.
    • PCT No.PCT / JP95 / 00201 Sec。 371 1995年10月13日第 102(e)日期1995年10月13日PCT 1995年2月14日提交PCT公布。 出版物WO95 / 22242 日期:1995年8月17日芯片型电子部件存储壳体包括用于在松散状态下存储芯片型电子部件的存储部分; 在所述收纳部的下表面形成的开口,用于排出所述电子部件; 用于打开和关闭开口的快门; 以及在所述存储部分内的用于防止所述电子部件在所述存储部分中散射的散射防止部件。 此外,供给盒包括设置在其下部的料斗,并且具有用于储存通过其上表面中的开口装入其中的芯片型电子部件的存储部分,存储部分的中心部分被凹入以提供倾斜 用于收集电子部件的表面; 以倾斜的方式安装在存储部分内的中断板,用于允许电子部件通过的间隙,形成在所述中断板的一端和存储部分的倾斜表面之间; 用于排出电子部件的排出管,排出管从料斗的外部通过料斗的下表面延伸到储存部分,并连接到储存部分; 可滑动地安装在排出管的外周上的滑动管; 以及形成在存储部分的上表面上的接合肋。 芯片型电子部件存放壳体还通过接合肋连接到料斗的上部。
    • 45. 发明授权
    • Method of monitoring machining load using variable alarm threshold
    • 使用可变报警阈值监测加工负载的方法
    • US5631851A
    • 1997-05-20
    • US332402
    • 1994-10-31
    • Kunio TanakaYasushi OnishiKoji Sato
    • Kunio TanakaYasushi OnishiKoji Sato
    • B23Q17/09G05B19/18G05B19/4062G05B23/02G06F19/00
    • G05B19/4062G05B2219/34451G05B2219/34457G05B2219/37525G05B2219/50073G05B2219/50197
    • A method of monitoring machining load on a numerically controlled machine tool in such a way that incorrect judgment due to variations in machining load which are caused according to the machining conditions is made less frequent. The method is started by performing plural trial cutting operations. A signal indicating the machining load during these trial cutting operations is sampled and thus, sampling data is obtained. Reference data about the machining load and its variance are calculated from the sampling data and loaded in a reference data table. A threshold value according to variations in the sampling data is established, using the value of the variance. A load monitor means compares the reference data with data about the machining load obtained from actual measurements whenever each interval of time elapses. A decision is made as to whether the difference exceeds the threshold value. In this way, the machining load is monitored.
    • 在数控机床上监视加工负荷的方法,使得由于根据加工条件引起的加工负载变化的不正确判断的频率较低。 通过进行多次试验切割操作来开始该方法。 在这些试验切割操作期间指示加工负载的信号被采样,因此获得采样数据。 根据采样数据计算关于加工负载及其变化的参考数据,并加载到参考数据表中。 使用方差的值建立​​根据采样数据的变化的阈值。 负载监控装置将每个时间间隔的参考数据与实际测量值获得的加工负载数据进行比较。 决定差值是否超过阈值。 以这种方式,监视加工负载。
    • 50. 发明授权
    • Surface cutting method
    • 表面切割方法
    • US4764878A
    • 1988-08-16
    • US43350
    • 1987-03-17
    • Kunio TanakaYasushi Onishi
    • Kunio TanakaYasushi Onishi
    • B23Q15/00G05B19/4093G05B19/41G05B19/00
    • G05B19/41G05B2219/49381
    • The invention relates to a surface cutting method for back-and-forth surface cutting of the interior of an area (AR) bounded by a closed curve.The surface cutting method includes repeating the following steps:a step of obtaining points of intersection P.sub.i, Q.sub.i between an i-th cutting path (PT.sub.i) and an offset curve offset (OFC') by (T+C+R) to the outer side of the closed curve, as well as points of intersection P.sub.i+1, Q.sub.i+1 between the offset curve and an (i+1)th cutting path (PT.sub.i+1), where T, C and R represent excess thickness, amount of clearance and tool radius, respectively;a step of obtaining a coordinate value, in the cutting path direction, of an outermost point R.sub.i on the offset curve (OFC') between the points of intersection Q.sub.i, Q.sub.i+1, where Q.sub.i is a point of intersection on a cutting end point side of the i-th cutting path (PT.sub.i) and Q.sub.i+1 is a point of intersection on a cutting starting point side of the (i+1)th cutting path (PT.sub.i+1);a step of performing surface cutting by moving a tool along the i-th cutting path until a coordinate value of the position of the tool in the cutting path direction coincides with the coordinate value of the point R.sub.i in the cutting path direction; anda step of moving the tool at a cutting velocity to the next (i+1)th cutting path (PT.sub.i+1) in a shift direction.
    • PCT No.PCT / JP86 / 00380 Sec。 371日期1987年3月17日 102(e)1987年3月17日PCT PCT 1986年7月21日PCT公布。 出版物WO87 / 日本1987年1月29日。本发明涉及一种用闭合曲线界定的区域(AR)的内部进行前后面切割的表面切割方法。 表面切割方法包括重复以下步骤:将第i个切割路径(PTi)和偏移曲线偏移(OFC')之间的交点Pi,Qi与(T + C + R)之间的点相对于外部 闭合曲线侧,以及偏移曲线与第(i + 1)切割路径(PTi + 1)之间的交点Pi + 1,Qi + 1,其中T,C和R表示多余的厚度, 的间隙和刀具半径; 获得交点Qi,Qi + 1之间的偏移曲线(OFC')上的最外点Ri的坐标值在切割路径方向上​​的坐标值的步骤,其中Qi是切割终点上的交点 第i切割路径(PTi)的侧面和第一+ 1是第(i + 1)切割路径(PTi + 1)的切割起点侧的交点; 通过沿着第i切割路径移动刀具直到刀具在切割路径方向上​​的位置的坐标值与切割路径方向上​​的点Ri的坐标值一致来进行表面切割的步骤; 以及将刀具以切割速度移动到在移动方向上的下一(i + 1)切割路径(PTi + 1)的步骤。