The invention relates to a method for placing a component on a substrate, which component is moved in a supply direction until it abuts against a stop, after which the component is moved at least in a vertically extending pick-up direction and subsequently positioned on the substrate.
The invention also relates to a device suitable for placing a component on a substrate, which device is provided with a guide comprising a stop for moving the component in a supply direction, as well as with a pickup element for moving the component in an at least vertically extending pickup direction.
With such a method and device, which are known from European patent application EP-A2-0 853 448, components contained in a so-called bulk cassette are transported via a guide until they abut against a stop. Near said stop, a component is moved in vertical direction away from the stop, and subsequently it is moved in horizontal and vertical direction to a desired placement position on a substrate and positioned on said substrate. Such a component usually has a length L, a width B and a height H, wherein L>B>H. The component is usually placed on the substrate in such a manner that the longitudinal direction and the transverse direction of the component extend parallel to those of the substrate.
Lately components are frequently being placed on a substrate or in an opening in a substrate with their longitudinal direction extending transversely to the substrate. Supplying and placing components on a substrate in this manner is not possible with the known method and device.
The object of the invention is to provide a method by means of which components can be placed on the substrate in a desired orientation.
This object is accomplished with the method according to the invention in that the component is pivoted near said stop, about a pivot axis that extends transversely to the supply direction and the pick-up direction.
By pivoting the component about the pivot axis, the component is placed in the orientation in which it is subsequently positioned on the substrate. It is noted that the phrase “on the substrate” as used herein is understood to include positioning a component in an opening formed in the substrate.
It is noted that from JP-2000004099 there is known a device for orienting components so that all components will be aligned with the same edge on the same side. To that end, components are guided into a recess, where the orientation of the component is established. Depending on said orientation, the component is rotated either clockwise and discharged via an opening 5c or anticlockwise and discharged through the opening 5d via an opening 5b and the channel 8. The components thus oriented are then returned to a horizontal position and subsequently guided into a component tube.
It is not known from said document to pivot components at the location of a stop and subsequently pick up the components in said pivoted position and place them on a substrate.
One embodiment of the method according to the invention is characterised in that the component is moved with its longitudinal direction in the supply direction, after which it is pivoted about the pivot axis and subsequently moved with its longitudinal direction in the pickup direction.
When the component is being moved in the supply direction, the component will usually align itself in the supply direction in such a manner that the longitudinal direction of the component extends parallel to the supply direction. When the component is subsequently pivoted about a pivot axis extending transversely to the supply direction and the pickup direction, the longitudinal direction of the component will extend parallel to the pickup direction. Following that the component can be positioned on the substrate in this orientation in a simple manner.
Another embodiment of the method according to the invention is characterised in that the supply direction extends transversely to the pickup direction.
The supply direction preferably extends horizontally in that case, whereas the pickup direction preferably extends vertically. In this way components can be supplied and picked up in a simple manner.
The invention also relates to a device which is characterised in that the device further comprises means located near said stop for pivoting the component about a pivot axis extending transversely to the supply direction and the pickup direction.
When such means are used, the orientation of the component is changed in a simple manner.
Another embodiment of the device according to the invention is characterised in that said means comprise a cylindrical element which is pivotable about said pivot axis, which element is provided with a chamber which extends transversely to the pivot axis and which is provided with said stop on a side remote from the guide.
A component can be pivoted about the pivot axis in a comparatively simple manner when such a cylindrical element is used.
The invention will now be explained in more detail with reference to the drawings, in which:
Like parts are indicated by the same numerals in the figures.
The device 1 is furthermore provided with a cylindrical element 7 which is pivotable about a pivot axis 6, which cylindrical element comprises a chamber 8 which extends transversely to the pivot axis 6. In a first supply position, the chamber 8 extends parallel to the supply direction P1, such that a frontmost component 5 can be moved into the chamber 8 in the supply direction P1 (see
Following that, the component 5 is picked up by means of a pickup element 9 (see
Using the device 1 according to the invention, components can be supplied from a bulk cassette in a usual manner and then be pivoted about the pivot axis 6 by means of a cylindrical element 7 according to the invention, so that the components 5 can subsequently be positioned in longitudinal direction on the substrate 10.
As
The gear 34 meshes with a rack 41 extending in the supply direction P1, which rack can be moved in the direction indicated by the arrow P6 and in the opposite direction by means of a pneumatic piston-cylinder combination 42.
The device 31 operates as follows.
The rack 41 is moved in the direction indicated by the arrow P6 by means of the piston-cylinder combination 42, as a result of which the cylindrical element 33 is pivoted in the opposite direction of the arrow P2 about the pivot axis 6 until the stop surface 36 abuts against a support. In this position, the chamber 38 is in line with the guide 2. A component 5 is moved in the supply direction indicated by the arrow P1 until the component 5 is positioned within the chamber 38. Then the rack 41 is moved in the opposite direction of the arrow P6 by means of the piston-cylinder combination 42, as a result of which the cylindrical element 32, and thus the component 5 present therein, is pivoted in the direction indicated by the arrow P2 until the stop surface 39 abuts against a support. In this situation the longitudinal direction L of the component extends vertically, in the direction indicated by the arrow P3. Following that, the component 5 is moved in the direction indicated by the arrow P3 by means of the pickup element 9 and placed on a substrate.
The chamber 38 is preferably so dimensioned that the component is accurately positioned therein. The passage 40 prevents the component 5 being positioned in the chamber in such a manner that a sub-atmospheric pressure would be generated in the chamber 38 upon removal of the component 5 from the chamber 38, as a result of which the component 5 could only be removed from the chamber 38 with relatively much force.
It is also possible to have the guide 2 extend at an angle, in which case the component is pivoted through an angle of less than 90° to a vertical position.
It is also possible to have the element 32 pivot in a different manner about the pivot axis 6.
Number | Date | Country | Kind |
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1032810 | Nov 2006 | NL | national |