US20020028595A1 - Method for assembling integral type electronic component and integral type electronic component - Google Patents
Method for assembling integral type electronic component and integral type electronic component Download PDFInfo
- Publication number
- US20020028595A1 US20020028595A1 US09/940,876 US94087601A US2002028595A1 US 20020028595 A1 US20020028595 A1 US 20020028595A1 US 94087601 A US94087601 A US 94087601A US 2002028595 A1 US2002028595 A1 US 2002028595A1
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- board
- electronic component
- integral type
- type electronic
- electronic components
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- 238000000034 method Methods 0.000 title claims description 20
- 238000003860 storage Methods 0.000 claims abstract description 35
- 239000011347 resin Substances 0.000 claims description 9
- 229920005989 resin Polymers 0.000 claims description 9
- 238000000016 photochemical curing Methods 0.000 claims description 5
- 239000000919 ceramic Substances 0.000 claims description 4
- 239000011521 glass Substances 0.000 claims description 4
- 239000000853 adhesive Substances 0.000 description 24
- 230000001070 adhesive effect Effects 0.000 description 24
- 238000010586 diagram Methods 0.000 description 8
- 239000000758 substrate Substances 0.000 description 7
- PCHJSUWPFVWCPO-UHFFFAOYSA-N gold Chemical compound [Au] PCHJSUWPFVWCPO-UHFFFAOYSA-N 0.000 description 5
- 239000010931 gold Substances 0.000 description 5
- 229910052737 gold Inorganic materials 0.000 description 5
- 238000004519 manufacturing process Methods 0.000 description 3
- 229910001218 Gallium arsenide Inorganic materials 0.000 description 2
- 238000007796 conventional method Methods 0.000 description 2
- 238000005304 joining Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000003287 optical effect Effects 0.000 description 2
- 239000003990 capacitor Substances 0.000 description 1
- 239000013078 crystal Substances 0.000 description 1
- 238000001312 dry etching Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 230000000149 penetrating effect Effects 0.000 description 1
- 239000004065 semiconductor Substances 0.000 description 1
- 229920001187 thermosetting polymer Polymers 0.000 description 1
- 238000001039 wet etching Methods 0.000 description 1
Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
- H01L25/00—Assemblies consisting of a plurality of semiconductor or other solid state devices
- H01L25/50—Multistep manufacturing processes of assemblies consisting of devices, the devices being individual devices of subclass H10D or integrated devices of class H10
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K1/00—Printed circuits
- H05K1/02—Details
- H05K1/14—Structural association of two or more printed circuits
- H05K1/145—Arrangements wherein electric components are disposed between and simultaneously connected to two planar printed circuit boards, e.g. Cordwood modules
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K13/00—Apparatus or processes specially adapted for manufacturing or adjusting assemblages of electric components
- H05K13/04—Mounting of components, e.g. of leadless components
- H05K13/0478—Simultaneously mounting of different components
- H05K13/0482—Simultaneously mounting of different components using templates; using magazines, the configuration of which corresponds to the sites on the boards where the components have to be attached
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K7/00—Constructional details common to different types of electric apparatus
- H05K7/02—Arrangements of circuit components or wiring on supporting structure
- H05K7/10—Plug-in assemblages of components, e.g. IC sockets
- H05K7/1053—Plug-in assemblages of components, e.g. IC sockets having interior leads
- H05K7/1061—Plug-in assemblages of components, e.g. IC sockets having interior leads co-operating by abutting
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
- H01L2224/00—Indexing scheme for arrangements for connecting or disconnecting semiconductor or solid-state bodies and methods related thereto as covered by H01L24/00
- H01L2224/01—Means for bonding being attached to, or being formed on, the surface to be connected, e.g. chip-to-package, die-attach, "first-level" interconnects; Manufacturing methods related thereto
- H01L2224/10—Bump connectors; Manufacturing methods related thereto
- H01L2224/15—Structure, shape, material or disposition of the bump connectors after the connecting process
- H01L2224/16—Structure, shape, material or disposition of the bump connectors after the connecting process of an individual bump connector
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
- H01L2924/00—Indexing scheme for arrangements or methods for connecting or disconnecting semiconductor or solid-state bodies as covered by H01L24/00
- H01L2924/0001—Technical content checked by a classifier
- H01L2924/00014—Technical content checked by a classifier the subject-matter covered by the group, the symbol of which is combined with the symbol of this group, being disclosed without further technical details
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
- H01L2924/00—Indexing scheme for arrangements or methods for connecting or disconnecting semiconductor or solid-state bodies as covered by H01L24/00
- H01L2924/095—Indexing scheme for arrangements or methods for connecting or disconnecting semiconductor or solid-state bodies as covered by H01L24/00 with a principal constituent of the material being a combination of two or more materials provided in the groups H01L2924/013 - H01L2924/0715
- H01L2924/097—Glass-ceramics, e.g. devitrified glass
- H01L2924/09701—Low temperature co-fired ceramic [LTCC]
Definitions
- the present invention relates to a method for assembling an integral type electronic component which is manufactured by combining a plurality of electronic components in one body, and an integral type electronic component assembled by the method.
- conductive adhesive 2 are supplied onto a board 1 as shown in FIG. 8. Then electronic components 3 are placed to parts of the conductive adhesive 2 as shown in FIG. 9 and fixed to the conductive adhesive 2 with hardening the conductive adhesive 2 . After conductive adhesive 4 are supplied onto the electronic components 3 as shown in FIG. 10, a board 5 is placed on the conductive adhesive 4 as shown in FIG. 11. The conductive adhesive 4 are hardened last, whereby an integral type electronic component 6 is formed.
- the method requires mounting each of the components onto the board 1 and therefore is not fit for devices requiring a mounting accuracy, for example, in mounting optical components necessitating an optical path alignment, etc.
- the electronic components 3 undesirably vary in height from the board 1 because the electronic components 3 are placed on the conductive adhesive 2 .
- the so-called open fault that the electronic components 3 and the board 5 are not electrically connected with each other possibly arises.
- the present invention is devised to solve the above problems and has for its object to provide an easy, high-quality and low-cost method for assembling integral type electronic component and an integral type electronic component assembled by the method.
- Bumps of the second board may be flattened before the second board is electrically connected to the electronic component after the electronic component is held to the first board.
- An integral type electronic component is provided according to a second aspect of the present invention, which comprises:
- a first board with a component storage part for storing and holding an electronic component
- a second board which is electrically connected to the electronic component held to the first board, thereby being united with the first board.
- the component storage part may be formed to have a side wall for shielding light of the light-emitting element.
- the first board can be formed of any one of glass, ceramic and an organic resin.
- the electronic component may be held to the component storage part with a photo-curing type insulating resin.
- the second board is electrically connected to the electronic components after the electronic components are stored and held to the component storage parts of the first board. Therefore, the arrangement accuracy of the electronic components is determined on the basis of the arrangement accuracy of the component storage parts formed to the first board. Also, the electronic components stored in the component storage parts are restricted in motion. Furthermore, since it is enough simple to insert the electronic components to the component storage parts, a long time is not required to finish the mounting as compared with the conventional art even if a lot of electronic components are to be mounted. The manufacturing time is shortened and costs can be reduced in comparison with the conventional art.
- the electronic components can be arranged highly accurately and simply at low costs in comparison with the conventional art.
- FIG. 1 is a sectional view of a first board among diagrams showing each of states of board and the like which is obtained by carrying out a method for assembling integral type electronic component according to an embodiment of the present invention
- FIG. 2 is a sectional view of the first board indicating a state with electronic components filled in component storage parts of the first board shown in FIG. 1;
- FIG. 3 is a sectional view of the first board indicating a state in which electronic components filled in the first board of FIG. 1 are fixed with an adhesive;
- FIG. 4 is a side view of a second board to be fitted to the first board of FIG. 1;
- FIG. 5 is a diagram showing a state in which the first board of FIG. 3 and the second board of FIG. 4 are joined;
- FIG. 6 is a diagram of a state in which a third board is joined to the board obtained by joining the first board and the second board;
- FIG. 7 is a flow chart explanatory of the method for assembling integral type electronic component in the embodiment of the present invention.
- FIG. 8 is a diagram showing a state with a conductive adhesive supplied to a board among diagrams showing each of states of board and the like which is obtained by carrying out a conventional method for assembling integral type electronic component;
- FIG. 9 is a diagram of a state with components mounted to the conductive adhesive of FIG. 8;
- FIG. 10 is a diagram of a state with a conductive adhesive supplied to upper parts of components of FIG. 9;
- FIG. 11 is a diagram of a state with a board mounted to an upper part of the conductive adhesive of FIG. 10.
- component storage parts 102 are formed by dry etching or wet etching to a first board 101 as shown in FIG. 1.
- Each of the component storage parts 102 is a recessed part in which an electronic component 103 to be described below can be stored.
- Each component storage part may be a bottomed shape or can be, e.g., a through hole penetrating in a thickness direction of the first board 101 as indicated in FIG. 1.
- a plurality of the component storage parts 102 are formed to the first board 101 in FIG. 1, there may be formed one storage part from a relationship with the electronic component 103 to be stored.
- the component storage part 102 is necessary to be larger by, for instance, 5-30 ⁇ m than the electronic component 103 to be stored.
- an Si substrate, a glass substrate, a ceramic substrate, an organic resin material substrate or the like is used as the first board 101 .
- a crystal orientation of Si may be any of (1,1,1), (1,0,0) and (1,1,0) when the Si substrate is used.
- the electronic components 103 are disposed to the component storage parts 102 .
- the electronic component 103 corresponds to, for example, a light-emitting element such as an LED (light-emitting diode) or the like, an IC of Si substrate, an IC of GaAs substrate, a resistor, a capacitor or the like.
- a light-emitting element such as an LED (light-emitting diode) or the like
- an IC of Si substrate e.g., the LED
- an IC of GaAs substrate e.g., the LED
- a resistor e.g., a capacitor
- a capacitor or the like e.g., the like.
- an orientation of the LED is controlled by a mounting machine having a recognition function, so that the LED is stored in the component storage part 102 with a light-emitting part of the LED directed down in the drawing.
- the electronic components 103 are placed to all of the component storage parts 102 in FIG. 2, the present embodiment
- the component storage part 102 may be formed to have a side wall 1012 for shielding light of the light-emitting element.
- the side wall 1012 can prevent, for example, interference due to light emitted from an adjoining LED from arising.
- an insulating adhesive 104 is filled and then cured in the component storage part 102 with the electronic component 103 stored therein.
- An adhesive of a type cured with ultraviolet rays, a thermosetting type adhesive or the like can be used as an example of the insulating adhesive 104 .
- the adhesive to be cured with ultraviolet rays is used, for instance, the adhesive is cured by applying ultraviolet rays after the adhesive is filled.
- a next step 4 gold bumps 106 are formed correspondingly to the electronic components 103 to a second board 105 which is to be electrically connected to the electronic components 103 .
- a next step 5 it is decided whether or not leading end parts of the gold bumps 106 of the second board 105 are to be flattened.
- the step goes to a next step 6 and the flattening is carried out.
- the step moves to a next step 7 .
- the flattening is determined to be unnecessary, the step skips to the step 7 . Whether the flattening is necessary or not may be judged by a worker.
- a conductive adhesive 107 is applied to the leading end parts of the gold bumps 106 of the second board 105 .
- the second board 105 may be a semiconductor chip of, e.g., Si, GaAs, InP or the like.
- the first board 101 with the electronic components 103 and the second board 105 with the gold bumps 106 are aligned to make the electronic components 103 and the gold bumps 106 meet each other, as indicated in FIG. 5. Then the first board 101 and the second board 105 are fitted. After the fitting, the conductive adhesive 107 is cured thereby joining the first board 101 and the second board 105 .
- a first integral type electronic component 110 is formed in this manner.
- a third board 108 is joined with a conductive adhesive 109 to the above-joined first board 101 and second board 105 .
- a second integral type electronic component 111 may be formed accordingly as shown in FIG. 6.
- the assembling method for the integral type electronic component, and the integral type electronic component assembled by the method can exert the following effects. It has conventionally been the problem in the circumstances without the first board 101 how to assemble small components while fixedly transferring the components. That is, a process related to the arranging and fixing the components has been complicated in the conventional art, thereby raising problems of a yield decrease, etc.
- an arrangement accuracy of electronic components 103 is determined on the basis of an arrangement accuracy of component storage parts 102 formed to the first board 101 .
- the electronic components 103 stored in the component storage parts 102 are limited in motion. In order to arrange the electronic components 103 , it is enough only to insert the electronic components 103 to the component storage parts 102 .
- the arrangement is thus made simple. It won't take a long time before an end of the mounting as compared with the conventional art even if there is a large number of electronic components 103 to be mounted. The manufacturing time is shortened and costs can be reduced in comparison with the conventional art.
- the open fault is prevented because the bumps 106 of the second board 105 are flattened.
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- Engineering & Computer Science (AREA)
- Microelectronics & Electronic Packaging (AREA)
- Manufacturing & Machinery (AREA)
- Physics & Mathematics (AREA)
- Condensed Matter Physics & Semiconductors (AREA)
- General Physics & Mathematics (AREA)
- Computer Hardware Design (AREA)
- Power Engineering (AREA)
- Structures For Mounting Electric Components On Printed Circuit Boards (AREA)
- Led Device Packages (AREA)
- Led Devices (AREA)
- Electric Connection Of Electric Components To Printed Circuits (AREA)
Abstract
Description
- The present invention relates to a method for assembling an integral type electronic component which is manufactured by combining a plurality of electronic components in one body, and an integral type electronic component assembled by the method.
- In response to the recent advancement of making electronic components small and light-weight, there has been proposed a large number of ways to further miniaturize the electronic components. Many of the electronic components manufactured by the proposed ways are formed by combining an electronic component having two or more functions with a device having one function.
- Various mounting processes and facilities have been developed hitherto to arrange the electronic components highly accurately with high reliability. A conventional method of assembling the electronic components will be described below with reference to FIGS.8-11.
- In the first place,
conductive adhesive 2 are supplied onto aboard 1 as shown in FIG. 8. Thenelectronic components 3 are placed to parts of theconductive adhesive 2 as shown in FIG. 9 and fixed to theconductive adhesive 2 with hardening theconductive adhesive 2. Afterconductive adhesive 4 are supplied onto theelectronic components 3 as shown in FIG. 10, aboard 5 is placed on theconductive adhesive 4 as shown in FIG. 11. Theconductive adhesive 4 are hardened last, whereby an integral typeelectronic component 6 is formed. - In the conventional arrangement of the above-described manner, the method requires mounting each of the components onto the
board 1 and therefore is not fit for devices requiring a mounting accuracy, for example, in mounting optical components necessitating an optical path alignment, etc. Theelectronic components 3 undesirably vary in height from theboard 1 because theelectronic components 3 are placed on theconductive adhesive 2. As a result, when theboard 5 is mounted onto theelectronic components 3 in the next process, the so-called open fault that theelectronic components 3 and theboard 5 are not electrically connected with each other possibly arises. Further in the case where there are manyelectronic components 3 to be mounted, it takes a long time before all thecomponents 3 are mounted completely, and also there are problems that a quality of mounting the components on theconductive adhesive 2 deteriorates and a cost increases because of a long manufacturing time. - The present invention is devised to solve the above problems and has for its object to provide an easy, high-quality and low-cost method for assembling integral type electronic component and an integral type electronic component assembled by the method.
- In order to accomplish the above and other aspects, there is provided a method for assembling an integral type electronic component according to a first aspect of the present invention, which comprises:
- storing and holding an electronic component to a component storage part of a first board; and
- electrically connecting a second board to the electronic component held to the first board, thereby forming the integral type electronic component of the first board and the second board.
- Bumps of the second board may be flattened before the second board is electrically connected to the electronic component after the electronic component is held to the first board.
- An integral type electronic component is provided according to a second aspect of the present invention, which comprises:
- a first board with a component storage part for storing and holding an electronic component; and
- a second board which is electrically connected to the electronic component held to the first board, thereby being united with the first board.
- In the second aspect, when the electronic component is a light-emitting element, the component storage part may be formed to have a side wall for shielding light of the light-emitting element.
- In the second aspect, the first board can be formed of any one of glass, ceramic and an organic resin.
- In the second aspect, the electronic component may be held to the component storage part with a photo-curing type insulating resin.
- According to the assembling method for the integral type electronic component of the first aspect of the present invention and the integral type electronic component of the second aspect, the second board is electrically connected to the electronic components after the electronic components are stored and held to the component storage parts of the first board. Therefore, the arrangement accuracy of the electronic components is determined on the basis of the arrangement accuracy of the component storage parts formed to the first board. Also, the electronic components stored in the component storage parts are restricted in motion. Furthermore, since it is enough simple to insert the electronic components to the component storage parts, a long time is not required to finish the mounting as compared with the conventional art even if a lot of electronic components are to be mounted. The manufacturing time is shortened and costs can be reduced in comparison with the conventional art.
- The electronic components can be arranged highly accurately and simply at low costs in comparison with the conventional art.
- The so-called open fault can be avoided by flattening the bumps of the second board.
- These and other aspects and features of the present invention will become clear from the following description taken in conjunction with the preferred embodiments thereof with reference to the accompanying drawings, in which:
- FIG. 1 is a sectional view of a first board among diagrams showing each of states of board and the like which is obtained by carrying out a method for assembling integral type electronic component according to an embodiment of the present invention;
- FIG. 2 is a sectional view of the first board indicating a state with electronic components filled in component storage parts of the first board shown in FIG. 1;
- FIG. 3 is a sectional view of the first board indicating a state in which electronic components filled in the first board of FIG. 1 are fixed with an adhesive;
- FIG. 4 is a side view of a second board to be fitted to the first board of FIG. 1;
- FIG. 5 is a diagram showing a state in which the first board of FIG. 3 and the second board of FIG. 4 are joined;
- FIG. 6 is a diagram of a state in which a third board is joined to the board obtained by joining the first board and the second board;
- FIG. 7 is a flow chart explanatory of the method for assembling integral type electronic component in the embodiment of the present invention;
- FIG. 8 is a diagram showing a state with a conductive adhesive supplied to a board among diagrams showing each of states of board and the like which is obtained by carrying out a conventional method for assembling integral type electronic component;
- FIG. 9 is a diagram of a state with components mounted to the conductive adhesive of FIG. 8;
- FIG. 10 is a diagram of a state with a conductive adhesive supplied to upper parts of components of FIG. 9; and
- FIG. 11 is a diagram of a state with a board mounted to an upper part of the conductive adhesive of FIG. 10.
- A method for assembling integral type electronic component, and an integral type electronic component assembled by the integral type electronic component assembling method which are embodiments of the present invention will be described below with reference to the drawings. Before the description of the present invention proceeds, it is to be noted that like parts are designated by like reference numerals.
- The integral type electronic component assembling method is carried out in a manner as will be discussed below.
- In a step (designated by “S” in FIG. 7)1 of FIG. 7,
component storage parts 102 are formed by dry etching or wet etching to afirst board 101 as shown in FIG. 1. Each of thecomponent storage parts 102 is a recessed part in which anelectronic component 103 to be described below can be stored. Each component storage part may be a bottomed shape or can be, e.g., a through hole penetrating in a thickness direction of thefirst board 101 as indicated in FIG. 1. Although a plurality of thecomponent storage parts 102 are formed to thefirst board 101 in FIG. 1, there may be formed one storage part from a relationship with theelectronic component 103 to be stored. Thecomponent storage part 102 is necessary to be larger by, for instance, 5-30 μm than theelectronic component 103 to be stored. For example, an Si substrate, a glass substrate, a ceramic substrate, an organic resin material substrate or the like is used as thefirst board 101. - A crystal orientation of Si may be any of (1,1,1), (1,0,0) and (1,1,0) when the Si substrate is used.
- In a
next step 2, as shown in FIG. 2, theelectronic components 103 are disposed to thecomponent storage parts 102. Theelectronic component 103 corresponds to, for example, a light-emitting element such as an LED (light-emitting diode) or the like, an IC of Si substrate, an IC of GaAs substrate, a resistor, a capacitor or the like. For theelectronic component 103 being, e.g., the LED, an orientation of the LED is controlled by a mounting machine having a recognition function, so that the LED is stored in thecomponent storage part 102 with a light-emitting part of the LED directed down in the drawing. Although theelectronic components 103 are placed to all of thecomponent storage parts 102 in FIG. 2, the present embodiment is not limited to this arrangement and the electronic component(s) 103 is sometimes placed to only part of thecomponent storage parts 102 in relation to a circuit design. - When the
electronic component 103 is a light-emitting element such as an LED or the like, thecomponent storage part 102 may be formed to have aside wall 1012 for shielding light of the light-emitting element. Theside wall 1012 can prevent, for example, interference due to light emitted from an adjoining LED from arising. - In a
succeeding step 3, as in FIG. 3, aninsulating adhesive 104 is filled and then cured in thecomponent storage part 102 with theelectronic component 103 stored therein. An adhesive of a type cured with ultraviolet rays, a thermosetting type adhesive or the like can be used as an example of theinsulating adhesive 104. When the adhesive to be cured with ultraviolet rays is used, for instance, the adhesive is cured by applying ultraviolet rays after the adhesive is filled. - In a
next step 4, gold bumps 106 are formed correspondingly to theelectronic components 103 to asecond board 105 which is to be electrically connected to theelectronic components 103. In anext step 5, it is decided whether or not leading end parts of the gold bumps 106 of thesecond board 105 are to be flattened. When the flattening is determined to be necessary, the step goes to anext step 6 and the flattening is carried out. Then the step moves to a next step 7. On the other hand, when the flattening is determined to be unnecessary, the step skips to the step 7. Whether the flattening is necessary or not may be judged by a worker. - In the step7 as shown in FIG. 4, a
conductive adhesive 107 is applied to the leading end parts of the gold bumps 106 of thesecond board 105. Thesecond board 105 may be a semiconductor chip of, e.g., Si, GaAs, InP or the like. In the step 7, thefirst board 101 with theelectronic components 103 and thesecond board 105 with the gold bumps 106 are aligned to make theelectronic components 103 and the gold bumps 106 meet each other, as indicated in FIG. 5. Then thefirst board 101 and thesecond board 105 are fitted. After the fitting, theconductive adhesive 107 is cured thereby joining thefirst board 101 and thesecond board 105. A first integral typeelectronic component 110 is formed in this manner. - According to the present embodiment, further in a step8, a
third board 108 is joined with aconductive adhesive 109 to the above-joinedfirst board 101 andsecond board 105. A second integral typeelectronic component 111 may be formed accordingly as shown in FIG. 6. - The assembling method for the integral type electronic component, and the integral type electronic component assembled by the method can exert the following effects. It has conventionally been the problem in the circumstances without the
first board 101 how to assemble small components while fixedly transferring the components. That is, a process related to the arranging and fixing the components has been complicated in the conventional art, thereby raising problems of a yield decrease, etc. In contrast to this, according to the present embodiment, an arrangement accuracy ofelectronic components 103 is determined on the basis of an arrangement accuracy ofcomponent storage parts 102 formed to thefirst board 101. Moreover, theelectronic components 103 stored in thecomponent storage parts 102 are limited in motion. In order to arrange theelectronic components 103, it is enough only to insert theelectronic components 103 to thecomponent storage parts 102. The arrangement is thus made simple. It won't take a long time before an end of the mounting as compared with the conventional art even if there is a large number ofelectronic components 103 to be mounted. The manufacturing time is shortened and costs can be reduced in comparison with the conventional art. - The arrangement of the
electronic components 103 is realized highly accurately and simply at low costs in comparison with the conventional art. - Additionally, the open fault is prevented because the
bumps 106 of thesecond board 105 are flattened. - Although the present invention has been fully described in connection with the preferred embodiment thereof with reference to the accompanying drawings, it is to be noted that various changes and modifications are apparent to those skilled in the art. Such changes and modifications are to be understood as included within the scope of the present invention as defined by the appended claims unless they depart therefrom.
Claims (10)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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US10/902,135 US20050001315A1 (en) | 2000-08-29 | 2004-07-30 | Method for assembling integral type electronic device, and integral type electronic device |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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JP2000-259131 | 2000-08-29 | ||
JP2000259131A JP3829050B2 (en) | 2000-08-29 | 2000-08-29 | Integrated electronic components |
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US10/902,135 Division US20050001315A1 (en) | 2000-08-29 | 2004-07-30 | Method for assembling integral type electronic device, and integral type electronic device |
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US20020028595A1 true US20020028595A1 (en) | 2002-03-07 |
US6825055B2 US6825055B2 (en) | 2004-11-30 |
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US09/940,876 Expired - Fee Related US6825055B2 (en) | 2000-08-29 | 2001-08-29 | Method for assembling integral type electronic component and integral type electronic component |
US10/902,135 Abandoned US20050001315A1 (en) | 2000-08-29 | 2004-07-30 | Method for assembling integral type electronic device, and integral type electronic device |
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US10/902,135 Abandoned US20050001315A1 (en) | 2000-08-29 | 2004-07-30 | Method for assembling integral type electronic device, and integral type electronic device |
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US (2) | US6825055B2 (en) |
JP (1) | JP3829050B2 (en) |
CN (1) | CN1171295C (en) |
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US20050076241A1 (en) * | 2003-04-02 | 2005-04-07 | Barry Appelman | Degrees of separation for handling communications |
US20050108329A1 (en) * | 2002-11-21 | 2005-05-19 | Andrew Weaver | Multiple personalities |
US20050198131A1 (en) * | 2004-03-05 | 2005-09-08 | Barry Appelman | Passively populating a participant list with known contacts |
US20060031772A1 (en) * | 2001-09-28 | 2006-02-09 | Judson Valeski | Automatic categorization of entries in a contact list |
US20060258368A1 (en) * | 2005-05-11 | 2006-11-16 | Jennifer Granito | Personalized location information for mobile devices |
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Also Published As
Publication number | Publication date |
---|---|
JP2002076268A (en) | 2002-03-15 |
US20050001315A1 (en) | 2005-01-06 |
CN1171295C (en) | 2004-10-13 |
JP3829050B2 (en) | 2006-10-04 |
US6825055B2 (en) | 2004-11-30 |
CN1340850A (en) | 2002-03-20 |
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