The present application claims priority from Japanese application JP2004-202568 filed on Jul. 9, 2004, the content of which is hereby incorporated by reference into this application.
1. Field of the Invention
The present invention relates to a method of supplying a paste solder material when the paste solder material is used to solder a component to a circuit pattern during printed board assembly, and also relates to a metal mask therefor.
2. Description of the Related Art
In assembly of a printed board, it is a commonly used technique at present to connect a paste solder material using a printing process. While high density packaging and hybridization of substrates are currently advancing, due to a mounting structure of a component and to heat resisting properties thereof and further to high percent defective thereof, in consideration of replacement of a component after finding defective in an inspection or the like, different solder materials corresponding to particular kinds of components need to be used to connect the components onto the same flat surface in an assembly process of the substrate. In connection with this, JP-A-5-212852 and JP-A-2002-144526 are referred to.
In order to print different solder materials onto the same flat surface using metal masks, a plurality of processes are required, and an optimum amount of solder material must be supplied for each process.
It is an object of the present invention to provide a method of highly accurately supplying a plurality of different paste solder materials, and to provide the metal mask therefor.
To attain the above object, in a method of supplying the paste solder material according to the present invention, optimum amounts of different solder materials corresponding to kinds of components are supplied onto the same surface by use of the metal mask to perform printing. Further, the metal mask is provided with a depression on its substrate-side surface so that the mask does not contact the solder material which has already been printed on a circuit pattern, and the metal mask is further provided with a depression on its surface opposite to the substrate-side surface to control the amount of paste solder material.
Other objects, features and advantages of the invention will become apparent from the following description of the embodiments of the invention taken in conjunction with the accompanying drawings.
A preferred embodiment according to the present invention will hereinafter be described in detail with reference to the drawings. It is to be noted that the present invention is not limited thereto.
In a best mode to implement the present invention, printing is started, in respect of an order of printing and supplying solder materials, from the solder material which is supplied in a smallest range among the solder materials supplied, irrespective of melting points of the solder materials used, and then, the printing is carried on in order of size of the supplied solder material range from a smaller one to a larger one, and the last printing is conducted by the solder material supplied in the largest printing range among the solder materials supplied.
Furthermore, with regard to connection between components and a substrate, the component which is most frequently replaced is desirably connected by the solder material whose melting point is the lowest among the solder materials used, in view of percent defective and difficulty in replacement of components, as long as strength and reliability are sufficiently secured in soldering among the components, the solder materials and the substrate.
In setting a temperature during soldering, if preheating is required for the substrate, the components and the solder materials, a preheating temperature is desirably set to a temperature lower than a melting point of the solder material which is the lowest among those of a plurality of solder materials used, that is, a temperature at which these solder materials do not melt.
One embodiment will be described referring to
First, as shown in
Next, as shown in
Subsequently, as shown in
Thus, the first solder material 4a and the second solder material 4b are supplied onto the flat surface of the same substrate by use of the printing process, so that the particular solder materials can be stably supplied to particular connecting portions, while a portion 4b-1 can also be produced where an amount of solder is partially reduced.
Then, as shown in
Two kinds of solder materials are used for the components in the present embodiment, but the present invention is compatible with two or more kinds of solder materials. The solder material whose melting point is low, that is, the second solder material 4b is used for the component 5 which is frequently replaced, while the solder material whose melting point is high, that is, the first solder material 4a is used to connect the component 6 which is less frequently replaced. The solder materials are suitably used as described above, so that during replacement of the component 5 which is frequently replaced, it is possible to reduce a thermal effect to peripheral connecting portions of the components 6, 7 and the like which are less frequently replaced.
It should be further understood by those skilled in the art that although the foregoing description has been made on embodiments of the invention, the invention is not limited thereto and various changes and modifications may be made without departing from the spirit of the invention and the scope of the appended claims.
Number | Date | Country | Kind |
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2004-202568 | Jul 2004 | JP | national |