CN1956160A - Feeding device - Google Patents

Feeding device Download PDF

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Publication number
CN1956160A
CN1956160A CN 200510118533 CN200510118533A CN1956160A CN 1956160 A CN1956160 A CN 1956160A CN 200510118533 CN200510118533 CN 200510118533 CN 200510118533 A CN200510118533 A CN 200510118533A CN 1956160 A CN1956160 A CN 1956160A
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CN
China
Prior art keywords
feeding
rotation axis
feeding device
feeding machanism
several
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 200510118533
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Chinese (zh)
Other versions
CN100428437C (en
Inventor
林源记
谢志宏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
King Yuan Electronics Co Ltd
Original Assignee
King Yuan Electronics Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by King Yuan Electronics Co Ltd filed Critical King Yuan Electronics Co Ltd
Priority to CNB2005101185330A priority Critical patent/CN100428437C/en
Publication of CN1956160A publication Critical patent/CN1956160A/en
Application granted granted Critical
Publication of CN100428437C publication Critical patent/CN100428437C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

A material feeding device is prepared as utilizing powder source to push rotary shaft to rotate then using said shaft to drive each set of material feeding mechanisms to rotate for feeding material, controlling each material feeding mechanism by connection unit and positioning unit in order to carry out material feeding by rotating various material feeding mechanisms simultaneously or rotating each material feeding mechanism separately.

Description

Feeding device
Technical field
The present invention relates to a kind of feeding device, particularly a kind of feeding device that is used for the integrated circuit component tester table, it cooperates containing tube (tube) to carry out charging.
Background technology
In the manufacture process of integrated circuit component, usually after finishing encapsulation,, need test again to reject the bad product of quality, particularly at product impaired in encapsulation procedure to integrated circuit component for the quality of management and control product strictly.Generally be to use containing tube (tube) as protection and carrier, will be the packaged integrated circuits element pack into and wherein be transported to testing factory again or tester table is tested.When testing, the feeding device of containing tube (tube) being put into tester table carries out feed, and makes the integrated circuit component can be by entering tester table in the containing tube.
Fig. 1 shows the end view of traditional integrated circuit component testing apparatus.Side at arrangement for testing integrated circuit 100 is provided with a feeding machanism 104, can supply with semiconductor element (not shown) to be measured for inserting containing tube 102, and element under test is called in letter in following narration; And one the time-out district 106 with gradient be positioned at after the feeding machanism 104, in order to temporary element under test so that the follow-up sub-material of carrying out.Feeding distribution mechanism 108 is positioned at and suspends above the district 106, in order to the element under test that suspends in the district 106 is carried out sub-material.Test section 110 is used for testing element under test, and the element that tests is then collected by gathering-device 112.
With reference to Fig. 2 A, it has shown the enlarged drawing of feeding machanism 104.When containing tube 102 is inserted into feeding machanism 104, is positioned at the other rotating mechanism 104a of feeding machanism 104 and is rotated, and drive containing tube 102 and also and then rotate to the location and hold up via the promotion of its internal power source.By action of gravity, element under test 103 downward landings in the containing tube 102 and enter to suspend and distinguish 106 can be tested after carrying out sub-material.Yet along with dwindling of integrated circuit component volume, and for the requirement that increases production capacity, tester table now has been not only once to test an integrated circuit component, but once can test several integrated circuit components simultaneously.Because tester table may once be tested 4,8,16 32 or 64 or more a plurality of integrated circuit components even simultaneously, therefore only carry out feed and seem not enough and consuming time with a feeding device.
In view of this; tester table can be combined with several feeding machanisms usually; shown in Fig. 2 B; two feeding machanisms 104 of connecting; it has two charging aperture 104b can supply the insertion containing tube, and respectively has a rotating mechanism 104a on both sides, in order to control the containing tube that inserts charging aperture 104b respectively; make its rotate to the location and hold up, test thereby make element under test 103 enter tester table.
Above-mentioned several feeding machanisms are together in series carried out feed, yet each feeding machanism all needs a rotating mechanism, it not only takes up space but also makes and can't closely be cascaded between a plurality of feeding machanisms, and therefore the more occupied space of the number of series connection is just healed big.Moreover the rotating mechanism how the group power sources promote each feeding machanism respectively causes the increase of cost to carry out feed.Yet, because the ornaments of the board in the testing factory normally one by one side by side, thereby can't provide this huge space requirement, two feeding machanisms cause connecting, can't effectively and apace carry out feed, cause production capacity can't obtain further to promote testing apparatus.Given this, need badly and will propose a kind of can not taking up space, and can be fast and can supply with the feeding device of a plurality of testing elements simultaneously.
Summary of the invention
Because above-mentioned background, purpose of the present invention is for providing a kind of feeding device, and it has many group feeding machanisms, can test to testing apparatus so that several element under tests to be provided simultaneously for inserting several containing tubes, so can accelerate feeding speed and then increase production capacity.
Another object of the present invention is for providing the feeding device that a kind of volume is little and do not take up space.This feeding device replaces traditional feeding device of the rotating mechanism that has several large volumes and take up space, so can reduce volume and save the space.
A further object of the present invention is for providing a kind of feeding device of tool single power source.This feeding device only needs a power source can be rotated many groups feeding machanism, hold up to carry out feed, replaces the multi power source of traditional feeding device, so can reduce the required cost of feeding device.
For reaching above-mentioned purpose, the invention provides a kind of feeding device, it comprises: a power source; One base; One rotation axis is arranged on this base and with this power source and is connected, and by driving this power source this rotation axis is rotated; Several feeding machanisms, in order to carry out charging, an end of each this feeding machanism has a charging aperture, and the other end has an opening, and this rotation axis runs through each this opening and these several feeding machanisms of connecting; Several jockeys are arranged on these several feeding machanisms the end near this rotation axis respectively, drive this feeding machanism in order to connect these several feeding machanisms and this rotation axis along with this rotation axis rotation; And several positioners, be arranged on this base, do not follow this rotation axis rotation in original position in order to locate this feeding machanism.
According to above-mentioned purpose, owing to the invention provides the feeding device that a kind of tool is organized feeding machanism more, it comprises a power source, a base, a rotation axis, several feeding machanisms, several jockeys, and several positioners.This rotation axis is arranged on the base and with power source and is connected, and in addition, rotation axis has run through several feeding machanisms of having connected with an end of each feeding machanism.The other end of each feeding machanism has a charging aperture relative, and each feeding machanism all is provided with a jockey at the end near rotation axis.When carrying out feed, jockey on the feeding machanism of desiring to overturn connects feeding machanism and rotation axis, and positioner is decontroled feeding machanism and separated with feeding machanism.Drive the rotation axis rotation and then drive feeding machanism and rotate to the location and containing tube is holded up by driving power source, make element under test in the containing tube to slide in the tester table and test by gravity.
Description of drawings
Fig. 1 is the end view of traditional integrated circuit component testing apparatus;
Fig. 2 A to Fig. 2 B is respectively the end view and the front schematic view of traditional feeding device;
Fig. 3 A to Fig. 3 C show respectively schematic perspective view, the feeding device of feeding device of the present invention jockey, with the schematic perspective view of positioner.
Symbol description among the figure
10 feeding devices
12 bases
14 bracing frames
16 rotation axiss
16a connects pin hole
18 power sources
20a, 20b feeding machanism
22 charging apertures
24 openings
26 fixed structures
28 jockeys
28a links latch
30 positioners
The 30a fastening screw
100 arrangement for testing integrated circuit
102 containing tubes
103 element under tests
104 feeding machanisms
The 104a rotating mechanism
The 104b charging aperture
106 suspend the district
108 feeding distribution mechanisms
110 test sections
112 gathering-devices
Embodiment
Some embodiments of the present invention can be described in detail as follows.Yet except this was described in detail, the present invention can also be widely implements at other embodiment.That is scope of the present invention is not subjected to the restriction of the embodiment that proposed, and should be as the criterion with claims that the present invention proposes.Secondly, when each element in the embodiments of the invention icon or structure during with single element or structrual description explanation, should be with this as the cognition that qualification is arranged, promptly following explanation not during the restriction on the lay special stress on number spirit of the present invention and range of application can spread on most elements or structure and structure of depositing and the method.Moreover in this manual, the different piece of each element is not drawn according to size.Some yardstick is compared with other scale dependent and is exaggerated or simplify, so that clearer description and understanding of the present invention to be provided.And the prior art that the present invention continued to use is only done quoting of emphasis formula at this, to help elaboration of the present invention.
With reference to Fig. 3 A, it organizes the schematic perspective view of the feeding device 10 of feeding machanism more for the tool of a preferred embodiment of the present invention.This feeding device 10 comprises a base 12, has several bracing frames 14 on it in order to supporting a rotation axis 16 thereon, and can rotate thereon for rotation axis 16.Power source 18 is connected with rotation axis 16, in order to the rotation of control rotation axis 16.Present embodiment has two feeding machanism 20a, 20b, and the end of each feeding machanism 20a, 20b all has a charging aperture 22, and the other end then has an opening 24, and this opening 24 is rotated axle 16 to be run through and this two feeding machanism 20a, 20b are together in series.In addition, each feeding machanism 20a, 20b all are provided with a jockey 28 in the end near opening 24, whether are connected with rotation axis 16 in order to control feeding machanism 20a, 20b; And all has a fixed structure 26 on each feeding machanism 20a, 20b.In addition, at the other location device 30 that all is provided with of each feeding machanism 20a, 20b, fixedly feeding machanism 20a, 20b and do not rotate with rotation axis 16 in original position in order to combine with fixed structure 26.
Fig. 3 B shows the jockey 28 of the embodiment of the invention and the partial enlarged drawing of rotation axis 16.Each jockey 28 has one and connects latch 28a, then has corresponding connection pin hole 16a on rotation axis 16, can be for connecting latch 28a insertion and feeding machanism 20a, 20b and rotation axis 16 being interosculated.Fig. 3 C shows the fixed structure 26 of the embodiment of the invention and the partial enlarged drawing of positioner 30.Fixed structure 26 is a dead bolt bore, and 30 of positioners have a corresponding fastening screw 30a, can be dead bolt bore and make feeding machanism 20a, 20b be fixed in original position in order to insert fixed structure 26, can not rotate with rotation axis 16.In the present embodiment, power source 18 is a pneumatic cylinder, and jockey 28 and positioner 30 are respectively one and are connected a pneumatic cylinder and a location pneumatic cylinder.
The feeding device 10 of the embodiment of the invention has two groups of feeding machanism 20a, 20b, but not as limit, can increase the quantity of feeding machanism according to testing requirement.Compare with traditional feeding device, the rotating mechanism that the present invention no longer needs large volume and takes up space, since each feeding machanism 20a, 20b all have a jockey 28 with one with it corresponding positioner 30, therefore, can independently control each feeding machanism respectively overturns and carries out feed.
In the example as shown in Figure 3A, feeding machanism 20a and feeding machanism 20b desire to do the feeding machanism of upset respectively as a feeding machanism and of not doing upset.At first, in the charging aperture 22 of feeding machanism 20b, insert containing tube, drive its jockey 28 (that is, connect pneumatic cylinder), feeding machanism 20b is connected with rotation axis 16 to promote the connecting connection pin hole 16a that latch 28a inserts rotation axis 16.Then, drive positioner 30 corresponding to feeding machanism 20b (that is, location pneumatic cylinder), it is regained insert feeding machanism 20b and go up fastening screw 30a in the fixed structure 26 (that is, dead bolt bore), make positioner 30 separate with feeding machanism 20b.And then, the source 18 that turns on the power drives rotation axis 16 rotations, drives and then rotation of feeding machanism 20b by jockey 28.When feeding machanism 20b rotates to the location and when containing tube holded up, the element under test in the containing tube can be tested by sliding in the tester table under the action of gravity.After waiting to finish feed, allow rotation axis 16 drive feeding machanism 20b with power source 18 and get back to original position, then, the fastening screw 30a of positioner 30 inserts the fixed structure 26 on the feeding machanism 20b again, and jockey 28 then is to regain to insert the connection latch 28a that connects pin hole 16a.
As for the feeding machanism 20a that does not do upset then is that the fastening screw 30a of the positioner 30 by correspondence inserts feeding machanism 20a and goes up fixed structure 26 (that is, dead bolt bore), makes feeding machanism 20a be fixed in original position and does not overturn.At this moment, the jockey 28 on the feeding machanism 20a is not done any action, makes feeding machanism 20a and rotation axis 16 be in released state.
According to the foregoing description, feeding device of the present invention has many group feeding machanisms, can simultaneously or carry out feed respectively according to testing requirement.In addition because it does not need the rotating mechanism that several volumes are big and take up space, so can increase more group of feeding machanism, increase test production capacity, dwindle its volume, take up space with saving.Moreover feeding device of the present invention only needs a power source can make many group feeding machanisms whiles or carries out feed respectively, so can save cost.
The above is preferred embodiment of the present invention only, is not in order to limit protection scope of the present invention.Still can be changed in the category that does not break away from flesh and blood of the present invention and implemented, these variations should still belong to scope of the present invention.Therefore, category of the present invention is defined by the scope of claims.

Claims (10)

1. a feeding device is characterized in that, comprises:
One power source;
One base;
One rotation axis is arranged on this base and with this power source and is connected, and by driving this power source this rotation axis is rotated;
Several feeding machanisms, in order to carry out charging, an end of each this feeding machanism has a charging aperture, and the other end has an opening, and this rotation axis runs through each this opening and these several feeding machanisms of connecting;
Several jockeys are arranged on these several feeding machanisms the end near this rotation axis respectively, drive this feeding machanism in order to connect these several feeding machanisms and this rotation axis along with this rotation axis rotation; And
Several positioners are arranged on this base, do not follow this rotation axis rotation in original position in order to locate this feeding machanism.
2. feeding device as claimed in claim 1 wherein, more comprises the surface that several bracing frames are arranged at this base, in order to ccontaining this rotation axis.
3. feeding device as claimed in claim 1, wherein, this power source is a pneumatic cylinder.
4. feeding device as claimed in claim 1, wherein, this jockey is a connection pneumatic cylinder.
5. feeding device as claimed in claim 4, wherein, this connection pneumatic cylinder has one and connects latch.
6. feeding device as claimed in claim 5, wherein, each this connection latch all has the connection pin hole of a correspondence to be arranged on this rotation axis, uses for this connection latch insertion to connect this feeding machanism and this rotation axis.
7. feeding device as claimed in claim 1, wherein, each this feeding machanism more comprises a fixed structure, in order to be connected with this positioner and to fix this feeding machanism in making the position.
8. feeding device as claimed in claim 7, wherein, this fixed structure is a location pin hole.
9. feeding device as claimed in claim 7, wherein, this positioner is a location pneumatic cylinder.
10. feeding device as claimed in claim 9, wherein, this location pneumatic cylinder has a location latch, fixes this feeding machanism in order to insert this fixed structure.
CNB2005101185330A 2005-10-27 2005-10-27 Feeding device Expired - Fee Related CN100428437C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2005101185330A CN100428437C (en) 2005-10-27 2005-10-27 Feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2005101185330A CN100428437C (en) 2005-10-27 2005-10-27 Feeding device

Publications (2)

Publication Number Publication Date
CN1956160A true CN1956160A (en) 2007-05-02
CN100428437C CN100428437C (en) 2008-10-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2005101185330A Expired - Fee Related CN100428437C (en) 2005-10-27 2005-10-27 Feeding device

Country Status (1)

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CN (1) CN100428437C (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102039278A (en) * 2009-10-15 2011-05-04 旺矽科技股份有限公司 Dispenser
CN106238339A (en) * 2016-08-30 2016-12-21 福州派利德电子科技有限公司 IC chip cliff cut style testing, sorting machine feeding conveying device

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3946814B2 (en) * 1997-05-09 2007-07-18 ヤマハ発動機株式会社 Electronic component feeder
DE19956981B4 (en) * 1998-11-28 2005-07-21 Mirae Corp., Chunan Handling device for testing IC components
JP2000302218A (en) * 1999-04-21 2000-10-31 Kanto Auto Works Ltd Work inverting device
CN2457739Y (en) * 2001-01-12 2001-10-31 东捷半导体科技股份有限公司 Material feeder for wafer test machine
JP2003218588A (en) * 2002-01-18 2003-07-31 Matsushita Electric Ind Co Ltd Method and apparatus for supplying component
CN1464312A (en) * 2002-06-07 2003-12-31 达司克科技股份有限公司 Machine allocation of IC test processor and process for making the same

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102039278A (en) * 2009-10-15 2011-05-04 旺矽科技股份有限公司 Dispenser
CN102039278B (en) * 2009-10-15 2013-03-13 旺矽科技股份有限公司 Dispenser
CN106238339A (en) * 2016-08-30 2016-12-21 福州派利德电子科技有限公司 IC chip cliff cut style testing, sorting machine feeding conveying device
CN106238339B (en) * 2016-08-30 2018-09-25 福州派利德电子科技有限公司 IC chip cliff cut style testing, sorting machine feeding conveying device

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Publication number Publication date
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Granted publication date: 20081022

Termination date: 20121027