CN202434353U - Ceramic capacitor pin molding equipment - Google Patents

Ceramic capacitor pin molding equipment Download PDF

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Publication number
CN202434353U
CN202434353U CN2011205525258U CN201120552525U CN202434353U CN 202434353 U CN202434353 U CN 202434353U CN 2011205525258 U CN2011205525258 U CN 2011205525258U CN 201120552525 U CN201120552525 U CN 201120552525U CN 202434353 U CN202434353 U CN 202434353U
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CN
China
Prior art keywords
block
hinged
movable block
pin
ceramic capacitor
Prior art date
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Withdrawn - After Issue
Application number
CN2011205525258U
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Chinese (zh)
Inventor
贺卫东
郑志原
郑惠茹
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.)
FUJIAN TORCH ELECTRON TECHNOLOGY Co Ltd
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FUJIAN TORCH ELECTRON TECHNOLOGY Co Ltd
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Priority to CN2011205525258U priority Critical patent/CN202434353U/en
Application granted granted Critical
Publication of CN202434353U publication Critical patent/CN202434353U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model provides ceramic capacitor pin molding equipment. The equipment comprises a first molding device and a secondary molding device. A far end of a pin is subjected compression molding by the first molding device; and an angle between the pin far end after compression molding and a pin near end is less than 90 degrees. The near end of the pin is subjected to compression molding by the second molding device. Compared with the prior art, the ceramic capacitor pin molding equipment is a creative design based on the breaking of the thinking set and technology prejudice, performs molding on the pin by first compressing the pin far end and then compressing the pin near end, avoids employing complex and expensive equipment and complicated production processes, manufactures a satisfactory attached-type ceramic capacitor under the condition that production costs are reduced, and fully guarantees that the pin is closely attached to a surface of a chip body.

Description

A kind of ceramic capacitor pin former
Technical field
The utility model relates to ceramic capacitor and makes the field.
Background technology
Ceramic capacitor particularly multicore group ceramic capacitor is widely used at military project, civil area because capacity is big; Like Fig. 1, shown in Figure 2; Be a kind of ceramic capacitor of the prior art, have the chip body 20 of epoxy encapsulation ' and two pins 10 ', this kind ceramic capacitor is the mounted type ceramic capacitor; Need with two pins 10 ' press be fitted in chip body 20 ' the surface, as shown in Figure 2.In the prior art pin 10 ' press is fitted in chip body 20 ' surperficial the time; Normally earlier with pin 10 ' near-end be pressed together on chip body 20 ' the side; Again with pin 10 ' far-end be pressed together on chip body 20 ' go up or lower surface; This drawing method one is need be than complicated step and equipment; The 2nd, can't guarantee pin 10 ' be close to chip body 20 ', this be because metal pins 10 ' when moulding, have the stress of resilience, make the angle of the angle of moulding greater than mould or object.For this reason, those skilled in the art are thinking deeply always and how to address this problem, but because the existence of thinking set and technological prejudice, and those skilled in the art always think earlier the pressure near-end, press far-end again, so this problem slowly can not get good solution.
The utility model content
The main purpose of the utility model is to overcome prior art mounted type ceramic capacitor pin is suppressed the problem that can't be close to the chip body, and a kind of ceramic capacitor pin former is provided, and has overcome technological prejudice, and has solved this technical problem.
The utility model adopts following technical scheme:
A kind of ceramic capacitor pin former includes one shaped device and two road shaped devices;
This one shaped device includes base and is fixed in the guide pillar on this base; This guide pillar upper end is provided with fixed block; Slip cap is provided with movable block on this guide pillar, is provided with between this fixed block and this movable block to be used to control the hinged control assembly that this movable block moves up and down; This movable block is provided with briquetting roller assembly and the one upper holder block assembly that moves up and down synchronously with this movable block, and the below that is right against this one upper holder block assembly on this base is fixed with membrane module one time;
This two roads shaped device includes and this all identical base, guide pillar, fixed block, movable block, hinged control assembly and briquetting roller assembly of base, guide pillar, fixed block, movable block, hinged control assembly and briquetting roller modular construction of shaped device together; Its movable block is provided with the two road upper holder block assemblies that move up and down synchronously with this movable block, and the below that is right against this two roads upper holder block assembly on its base is fixed with membrane module under two roads.
The guide pillar of said one shaped device or two road shaped devices and the number of fixed block are two; Said hinged control assembly includes two first hinged blocks, second hinged block, two the 3rd hinged blocks and a depression bar; These two first hinged blocks are hinged on respectively between this second hinged block and two fixed blocks; These two the 3rd hinged blocks are hinged between this second hinged block and the said movable block, and this depression bar is fixedly connected on this second hinged block.
Said briquetting roller assembly is made up of two symmetrical forming units; This forming unit includes a briquetting roller, a back shaft, a sliding shoe, a sliding axle and a holddown spring; This briquetting roller is rotatable to be set on this back shaft; This back shaft is fixed on an end of this sliding shoe, and the other end of this sliding shoe is against having this holddown spring and this sliding shoe to be set in outside this sliding axle, and this holddown spring also is set in outside this sliding axle.
Said one upper holder block assembly includes the interlock piece that is fixedly connected with said movable block, and this piece that links together is connected with its one briquetting that moves up and down relatively by one spring, and the both sides, bottom of this one briquetting form two press strips; Said one time membrane module includes the capacitor storage tank one, and the both sides of this one capacitor storage tank are formed with two support bars with said two press strip consistencies from top to bottom, the lateral surface of this two support bar certain angle that slopes inwardly.
Said two road upper holder block assemblies include the two roads interlock piece that is fixedly connected with said movable block, and this two roads interlock piece is connected with its two road briquettings that move up and down relatively by two road springs; Membrane module includes two road capacitor storage tanks under said two roads, the direction opening that this two roads capacitor storage tank moves up and down at said briquetting roller assembly.
A kind of method of utilizing above-mentioned former to carry out the moulding of ceramic capacitor pin comprises the steps:
Step 1 is utilized the far-end compression moulding with pin of one building mortion, and the angle of pin far-end and near-end that makes compression moulding is less than 90 °;
Step 2 is utilized the near-end compression moulding of two road shaped devices with pin.
Can know by above-mentioned description the utility model; Compared with prior art, the utility model has overcome thinking set and technological prejudice, creatively designs a kind of ceramic capacitor pin former; The method that adopts elder generation's compacting pin far-end to suppress the pin near-end is again carried out moulding to pin; Avoided adopting complicated, expensive equipment and complicated production technology, produced satisfactory mounted type ceramic capacitor when reducing production costs, guaranteed that fully pin is close to the surface of chip body.
Description of drawings
Capacitor arrangement sketch map when Fig. 1 is not fitted on the chip body for pin;
Capacitor arrangement sketch map when Fig. 2 is fitted on the chip body for pin;
Capacitor arrangement sketch map when Fig. 3 bends for the pin far-end;
Fig. 4 is the perspective view of one shaped device of the utility model;
Fig. 5 is the perspective view of membrane module and briquetting roller under the two road upper holder block assemblies, two roads of the two road shaped devices of the utility model;
Fig. 6 is the structural representation of the briquetting roller assembly of the utility model;
Fig. 7 is the main TV structure sketch map of one upper holder block assembly of one shaped device of the utility model, one time membrane module and briquetting roller;
Fig. 8 is the main TV structure sketch map of membrane module and briquetting roller under the two road upper holder block assemblies, two roads of the two road shaped devices of the utility model.
Embodiment
Below through embodiment the utility model is described in detail.
A kind of ceramic capacitor pin former of the utility model includes one shaped device 30 and two road shaped devices.
With reference to Fig. 4; One shaped device 30 includes base 31 and is fixed in two guide pillars 32 on the base 31; Two guide pillars, 32 upper ends are equipped with fixed block 33; Slip cap is provided with movable block 34 on two guide pillars 32, is provided with between fixed block 33 and the movable block 34 to be used to control the hinged control assembly 35 that movable block 34 moves up and down; Movable block 34 is provided with briquetting roller assembly 36 and the one upper holder block assembly 37 that moves up and down synchronously with movable block 34, and the below that is right against one upper holder block assembly 37 on the base 31 is fixed with membrane module 38 one time;
With reference to Fig. 4, Fig. 5 and Fig. 8; Two road shaped devices include and base 31, guide pillar 32, fixed block 33, movable block 34, hinged control assembly 35 base, guide pillar, fixed block, movable block, hinged control assembly and the briquetting roller assembly all identical with briquetting roller assembly 36 structures of shaped device 30 together; Its movable block is provided with 47 of the two road upper holder block groups that move up and down synchronously with this movable block, and the below that is right against this two roads upper holder block assembly 47 on its base is fixed with membrane module 48 under two roads.
With reference to Fig. 4; Hinged control assembly 35 includes two first hinged blocks 351, one second hinged block 352, two the 3rd hinged blocks 353 and depression bars 354; These two first hinged blocks 351 are hinged on respectively between this second hinged block 352 and two fixed blocks 33; These two the 3rd hinged blocks 353 are hinged between this second hinged block 352 and the movable block 34, and depression bar 354 is fixedly connected on second hinged block 352.
With reference to Fig. 6; Briquetting roller assembly 36 is made up of two symmetrical forming units 361; Forming unit 361 includes a briquetting roller 3611, a back shaft 3612, a sliding shoe 3613, a sliding axle 3614 and a holddown spring 3615; Briquetting roller 3611 rotatable being set on the back shaft 3612; Back shaft 3612 is fixed on an end of sliding shoe 3613, and the other end of sliding shoe 3613 is against having this holddown spring 3615 and sliding shoe 3613 to be set in outside this sliding axle 3614, and this holddown spring 3615 also is set in outside this sliding axle 3614.
With reference to Fig. 7; One upper holder block assembly 37 includes the interlock piece 371 that is fixedly connected with movable block; The piece 371 that links together is connected with relatively by one spring 373, and the both sides, bottom of its one briquetting that moves up and down, 372, one briquettings 372 form two press strips 374; The both sides that one time membrane module 38 includes one capacitor storage tank 381, one capacitor storage tank 381 are formed with lateral surface 3821 with two support bars, 382, two support bars 382 of two press strips, the 374 consistencies from top to bottom certain angle that slopes inwardly.
With reference to Fig. 5 and Fig. 8, two road upper holder block assemblies 47 include the two roads interlock piece 471 that is fixedly connected with movable block, and this two roads interlock piece 471 is connected with its two road briquettings 472 that move up and down relatively by two road springs 473; Membrane module 48 includes direction 482 openings that one or two road capacitor storage tanks, 481, two road capacitor storage tanks 481 move up and down at the briquetting roller assembly under two roads.
Referring to figs. 1 through Fig. 8, when a kind of ceramic capacitor pin former that utilizes the utility model carries out moulding to pin, comprise the steps:
Step 1; At first upwards lift depression bar 354 with hand; Depression bar 354 drives second hinged block 352, first hinged block 351, the 3rd hinged block 353 and movable block 34 synchronous interactions; Thereby one upper holder block assembly 37 is lifted away from from one time membrane module 38; Then ceramic capacitor as shown in Figure 1 is put into one capacitor storage tank 381 of one time membrane module 38, made the two pins 10 of ceramic capacitor ' just be erected on two support bars 382, this moment is moulded rod 354 down; Depression bar 354 and hinged control assembly 35 drive movable blocks 34 and one upper holder block assembly 37 move down; When two press strips 374 motion abuts to the 10 ' last time of two pins on two support bars 382, one briquetting 372 stop motion under the stopping of two support bars 382, but movable block 34, link piece 371, briquetting roller assembly 36 still continues descending together; Two briquetting rollers 3611 from top to bottom pressure holding two pins 10 ' far-end and this far-end is closely abutted on two support bars, the 382 intilted lateral surfaces 3821, thereby make two pins 10 ' the far-end certain angle that also slopes inwardly.With reference to Fig. 3, be the structure of one shaped device compacting back ceramic capacitor.
Step 2; With two pins 10 ' far-end compacting accomplish after; When ceramic capacitor is put into two road capacitor storage tanks 481 of membrane module 48 under two roads, with step one by one appearance utilize two briquetting rollers 3611 from top to bottom pressure holding two pins 10 ' near-end, make two pins 10 ' near-end be close to the side of ceramic capacitor; Make simultaneously two pins 10 ' far-end be close to the lower surface of ceramic capacitor, shown in accompanying drawing 2.
What in addition, the utility model need specify also has:
When carrying out one moulding; When 374 motions of two press strips abut to the 10 ' last time of two pins on two support bars 382; This moment press strip 374 with support bar 382 with two pins 10 ' near-end clamping firmly; Guarantee compacting pin 10 ' far-end the time, can not damage pin 10 ' with the chip body between be connected, that guarantee to suppress carries out smoothly;
In addition; The sliding shoe 3613 of briquetting roller assembly 36 and back shaft 3612, briquetting roller 3611 are that an inside active force is arranged under the effect of holddown spring 3615, guarantee briquetting roller 3611 compacting two pins 10 ' near-end and far-end the time enough press powers are all arranged.
An above-mentioned embodiment that is merely the utility model, but the design concept of the utility model is not limited thereto allly utilizes this design that the utility model is carried out the change of unsubstantiality, all should belong to the behavior of invading the utility model protection range.

Claims (5)

1. ceramic capacitor pin former is characterized in that: include one shaped device and two road shaped devices;
This one shaped device includes base and is fixed in the guide pillar on this base; This guide pillar upper end is provided with fixed block; Slip cap is provided with movable block on this guide pillar, is provided with between this fixed block and this movable block to be used to control the hinged control assembly that this movable block moves up and down; This movable block is provided with briquetting roller assembly and the one upper holder block assembly that moves up and down synchronously with this movable block, and the below that is right against this one upper holder block assembly on this base is fixed with membrane module one time;
This two roads shaped device includes and this all identical base, guide pillar, fixed block, movable block, hinged control assembly and briquetting roller assembly of base, guide pillar, fixed block, movable block, hinged control assembly and briquetting roller modular construction of shaped device together; Its movable block is provided with the two road upper holder block assemblies that move up and down synchronously with this movable block, and the below that is right against this two roads upper holder block assembly on its base is fixed with membrane module under two roads.
2. a kind of ceramic capacitor pin former as claimed in claim 1; It is characterized in that: the guide pillar of said one shaped device or two road shaped devices and the number of fixed block are two; Said hinged control assembly includes two first hinged blocks, second hinged block, two the 3rd hinged blocks and a depression bar; These two first hinged blocks are hinged on respectively between this second hinged block and two fixed blocks; These two the 3rd hinged blocks are hinged between this second hinged block and the said movable block, and this depression bar is fixedly connected on this second hinged block.
3. a kind of ceramic capacitor pin former as claimed in claim 1; It is characterized in that: said briquetting roller assembly is made up of two symmetrical forming units; This forming unit includes a briquetting roller, a back shaft, a sliding shoe, a sliding axle and a holddown spring; This briquetting roller is rotatable to be set on this back shaft; This back shaft is fixed on an end of this sliding shoe, and the other end of this sliding shoe is against having this holddown spring and this sliding shoe to be set in outside this sliding axle, and this holddown spring also is set in outside this sliding axle.
4. a kind of ceramic capacitor pin former as claimed in claim 1; It is characterized in that: said one upper holder block assembly includes the interlock piece that is fixedly connected with said movable block; This piece that links together is connected with its one briquetting that moves up and down relatively by one spring, and the both sides, bottom of this one briquetting form two press strips; Said one time membrane module includes the capacitor storage tank one, and the both sides of this one capacitor storage tank are formed with two support bars with said two press strip consistencies from top to bottom, the lateral surface of this two support bar certain angle that slopes inwardly.
5. a kind of ceramic capacitor pin former as claimed in claim 1; It is characterized in that: said two road upper holder block assemblies include the two roads interlock piece that is fixedly connected with said movable block, and this two roads interlock piece is connected with its two road briquettings that move up and down relatively by two road springs; Membrane module includes two road capacitor storage tanks under said two roads, the direction opening that this two roads capacitor storage tank moves up and down at said briquetting roller assembly.
CN2011205525258U 2011-12-27 2011-12-27 Ceramic capacitor pin molding equipment Withdrawn - After Issue CN202434353U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011205525258U CN202434353U (en) 2011-12-27 2011-12-27 Ceramic capacitor pin molding equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011205525258U CN202434353U (en) 2011-12-27 2011-12-27 Ceramic capacitor pin molding equipment

Publications (1)

Publication Number Publication Date
CN202434353U true CN202434353U (en) 2012-09-12

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ID=46783780

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011205525258U Withdrawn - After Issue CN202434353U (en) 2011-12-27 2011-12-27 Ceramic capacitor pin molding equipment

Country Status (1)

Country Link
CN (1) CN202434353U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102522225A (en) * 2011-12-27 2012-06-27 福建火炬电子科技股份有限公司 Ceramic capacitor pin moulding equipment and moulding method
CN109500292A (en) * 2018-12-29 2019-03-22 杭州易正科技有限公司 A kind of molding machine of pin of ceramic capacitor

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102522225A (en) * 2011-12-27 2012-06-27 福建火炬电子科技股份有限公司 Ceramic capacitor pin moulding equipment and moulding method
CN102522225B (en) * 2011-12-27 2013-09-25 福建火炬电子科技股份有限公司 Ceramic capacitor pin moulding equipment and moulding method
CN109500292A (en) * 2018-12-29 2019-03-22 杭州易正科技有限公司 A kind of molding machine of pin of ceramic capacitor
CN109500292B (en) * 2018-12-29 2020-06-23 汉斯自动化科技(江苏)有限公司 Forming device of ceramic capacitor pin

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Legal Events

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20120912

Effective date of abandoning: 20130925

RGAV Abandon patent right to avoid regrant