CN205229197U - Electric capacitance energize quick -witted anchor clamps and electric capacitance's detection and device of energizing - Google Patents

Electric capacitance energize quick -witted anchor clamps and electric capacitance's detection and device of energizing Download PDF

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Publication number
CN205229197U
CN205229197U CN201520988779.2U CN201520988779U CN205229197U CN 205229197 U CN205229197 U CN 205229197U CN 201520988779 U CN201520988779 U CN 201520988779U CN 205229197 U CN205229197 U CN 205229197U
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China
Prior art keywords
hole
electric capacitor
machine clamp
bearing
several
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CN201520988779.2U
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Chinese (zh)
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蒋永官
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Automation equipment Co., Ltd. Guangzhou Bo Bo
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Guangzhou Panyu Guibo Automatic Machine Factory
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Abstract

The utility model discloses a electric capacitance quick -witted anchor clamps of energizing, including base, support, test contact, drive shaft and a plurality of centre gripping arm. The base runs through there is first through -hole. The support is installed on the base, and the support is equipped with the cavity. The cavity communicates with each other with first through -hole. The support lateral wall is equipped with a plurality of second through -hole. The drive shaft is installed in first through -hole, can be removed along first through -hole. The cover is equipped with the spacing dish of spring and conflict spring in the drive shaft. The spring sets up between spacing dish and base. A plurality of centre gripping arm and a plurality of second through -hole one -to -one. In the centre gripping arm passes the second through -hole and stretches into the cavity, centre gripping arm and support rotatable coupling, centre gripping arm one end is relative with the test contact, and the centre gripping arm other end links to each other with the drive shaft transmission. Electric capacitance energize quick -witted anchor clamps and can conveniently press from both sides the electric capacitance who gets various specification and dimension shapes, the centre gripping is effectual moreover, can improve electric capacitance's test and the work efficiency who energizes greatly. The utility model also discloses a device that detects and energize of electric capacitance.

Description

A kind of electric capacitor is energized the detection of machine clamp and electric capacitor and enabling apparatus
Technical field
The utility model relates to electric capacitor and to energize machine technology field, especially relates to a kind of electric capacitor and to energize the detection of machine clamp and electric capacitor and enabling apparatus.
Background technology
Along with electronic product gets more and more, each manufacturer gets more and more to the demand of the electric capacitor of different size and shape specification.Complete at electric capacitor and to produce and before dropping into application, all need to carry out detections and energizing by electric capacitor machine clamp of energizing.
But current electric capacitor machine clamp of energizing only is only applicable to the electric capacity of gripping fixed measure and shape, completes detection and energising operation after clamping electric capacitor to electric capacitor.Therefore, for detecting and energizing the electric capacitor of different specification size or shape, staff then needs to be equipped with many electric capacitors being applicable to the electric capacitor of different specification size and shape and to energize machine clamp, and needs frequently to change when detecting and energizing.
Summary of the invention
Based on this, the utility model is the defect overcoming prior art, and the detection providing a kind of electric capacitor to energize machine clamp and electric capacitor and enabling apparatus, it can be adapted to the electric capacitor of different specification size.
Its technical scheme is as follows:
A kind of electric capacitor is energized machine clamp, and comprising: base, described base runs through the first through hole; Bearing, described bearing is installed on described base, and described bearing is provided with chamber, and described chamber communicates with described first through hole, and described bearing sidewall is provided with several the second through holes, and described chamber is communicated with external environment by described second through hole; Test contact, described test contact is installed on described bearing; Driving shaft, described driving shaft to be installed in described first through hole and can to move along described first through hole, and described driving shaft is arranged with spring and the position-arresting disk of described spring of conflicting, described spring is arranged between described position-arresting disk and described base; And several clamping limbs, clamping limb described in several and the second through hole one_to_one corresponding described in several, described clamping limb passes described second through hole and extend in described chamber, described clamping limb and described bearing are rotatably connected, described clamping limb one end is relative with described test contact, and the described clamping limb other end is connected with described driving shaft transmission.
A kind of detection of electric capacitor and enabling apparatus, comprise multiple described electric capacitor to energize machine clamp, multiple installing plate and rolling disc, multiple described installing plate and multiple described electric capacitor are energized machine clamp one_to_one corresponding, described installing plate one end is connected with described rolling disc, the described installing plate other end is equiped with described electric capacitor and energizes machine clamp, described installing plate end opens has mounting hole, described base is installed on described installing plate, described first through hole communicates with described mounting hole, described driving shaft one end is positioned at described chamber, the described driving shaft other end reaches below described installing plate through described first through hole and described mounting hole, described driving shaft can move along described mounting hole.
Wherein in an embodiment, described clamping limb comprises the head rod, the second connecting link and the 3rd connecting link that are connected successively, described head rod, angle between the 3rd connecting link and described second connecting link are 120 ~ 150 °, described head rod is connected with described driving shaft transmission, and described 3rd connecting link is relative with described test contact.
Wherein in an embodiment, described driveshaft end is connected with joint pin, and the sidewall of described joint pin is provided with ring groove, and the end of described head rod is equiped with roller by bearing, and described roller is arranged in described ring groove and conflicts with described joint pin.
Wherein in an embodiment, the end of described 3rd connecting link is connected with two rubber tires, and two described rubber tires are positioned at the both sides of described 3rd connecting link.
Wherein in an embodiment, described bearing comprises the first cylindrical shell and the second cylindrical shell, described first barrel end is provided with several bearing seats, bearing seat described in several and clamping limb one_to_one corresponding described in several, described head rod is provided with axis hole, described head rod is arranged on described bearing seat by rotation axis through described axis hole, described second cylindrical shell is provided with the second through hole described in several, second through hole described in several and bearing seat one_to_one corresponding described in several, described bearing seat is in described second through hole, the end of described second cylindrical shell is connected with end cap, described test contact is installed on described end cap.
Wherein in an embodiment, described test contact comprises copper post, the middle part in described copper styletable face is provided with groove and high-tension electricity trough and low tension trough, described high-tension electricity trough and described low tension trough are set up in parallel, and one end of described high-tension electricity trough, described low tension trough is connected with described groove, the other end of described high-tension electricity trough, described low tension trough communicates with external environment.
Wherein in an embodiment, described copper styletable face is provided with two rinse baths, and described rinse bath one end is connected with described groove, and the described rinse bath other end communicates with external environment.
Wherein in an embodiment, described clamping limb, described second through hole are four, and four described second through holes are evenly distributed on described bearing sidewall.
Wherein in an embodiment, multiple described electric capacitor machine clamp of energizing is circumferentially same for the center of circle is evenly distributed on the center of described rolling disc.
Below in conjunction with technique scheme, principle of the present utility model, effect are further illustrated:
1, above-mentioned electric capacitor is energized machine clamp, and rotating clip gripping arm makes each clamping limb outwards open, and is placed in test contact by electric capacitor.By the direction pull-up of driving axial test contact in clamping limb rotation process, driving shaft just makes spring-compressed.So after unclamping clamping limb, the resilient force of spring makes driving shaft move towards away from test contact direction in driving shaft, and driving shaft then makes each clamping limb rotate and step up electric capacitor.So visible, electric capacitor described in the utility model machine clamp of energizing can facilitate the electric capacitor of gripping all size size shape and good clamping effect, the test that can greatly improve electric capacitor and the work efficiency of energizing.
2, by clamping limb being arranged to head rod, the second connecting link and the 3rd connecting link, and make head rod, angle between the 3rd connecting link and the second connecting link is 120 ~ 150 °.3rd connecting link of each clamping limb is around in outside test contact, and can be stable by the electric capacitor clamping in test contact, and is convenient for changing electric capacitor.
3, the both sides, end of the 3rd connecting link are connected with two rubber tires, and when each clamping limb clamps electric capacitor, the rubber tire of the 3rd connecting link sidepiece contacts with electric capacitor, make it possible to avoid scratching electric capacitor, and electric capacitor clamping is stable.
4, clamping limb is arranged on described bearing seat by rotation axis through described axis hole, and then the second cylindrical shell is installed on the first cylindrical shell, make the utility model be convenient to assembling, and clamping limb can be that axle center is rotated with rotation axis, realize the operation clamping or unclamp electric capacitor.
5, copper styletable face arranges high-tension electricity trough and low tension trough respectively, and electric capacitor can be connected high-tension electricity and low tension by high-tension electricity trough respectively with low tension trough.So high-voltage electric contact and low tension contact position to be separated, to make stability and the precision of the equipment that not only increases, electric capacitor can also be prevented damaged by high-tension electricity affects when low pressure precision measurement.
6, the dust accumulated in groove can convenient be washed by two rinse baths, makes the excellent conductive performance keeping copper styletable face.
Accompanying drawing explanation
Fig. 1 to energize machine clamp schematic diagram for electric capacitor described in the utility model embodiment;
Fig. 2 to energize the axial cut-open view of machine clamp for electric capacitor described in the utility model embodiment;
Fig. 3 to energize the schematic diagram of clamping limb of machine clamp for electric capacitor described in the utility model embodiment;
Fig. 4 to energize the schematic diagram of the first cylindrical shell of machine clamp for electric capacitor described in the utility model embodiment;
Fig. 5 to energize the schematic diagram of test contact of machine clamp for electric capacitor described in the utility model embodiment;
Fig. 6 is the detection of electric capacitor described in the utility model embodiment and the schematic diagram of enabling apparatus;
Fig. 7 clamps the schematic diagram of the first electric capacity for the machine clamp of energizing of electric capacitor described in the utility model embodiment;
Fig. 8 clamps the schematic diagram of the second electric capacity for the machine clamp of energizing of electric capacitor described in the utility model embodiment;
Fig. 9 for electric capacitor described in the utility model embodiment energize machine clamp clamping the 3rd electric capacity schematic diagram;
Figure 10 for electric capacitor described in the utility model embodiment energize machine clamp clamping the 4th electric capacity schematic diagram.
Description of reference numerals:
10, base, 11, first through hole, 20, bearing, 21, first cylindrical shell, 211, bearing seat, 22, second cylindrical shell, 221, second through hole, 23, chamber, 30, copper post, 31, groove, 32, high-tension electricity trough, 33, low tension trough, 34, rinse bath, 40, driving shaft, 41, spring, 42, position-arresting disk, 43, joint pin, 431, ring groove, 44, spring mounting seat, 50, clamping limb, 51, head rod, 511, roller, 512, axis hole, 52, second connecting link, 53, 3rd connecting link, 531, rubber tire, 60, installing plate, 70, rolling disc, 80, electric capacitor.
Embodiment
Below embodiment of the present utility model is described in detail:
As shown in Figure 1, electric capacitor described in the utility model is energized machine clamp, comprises base 10, bearing 20, test contact, driving shaft 40 and several clamping limbs 50.Electric capacitor 80 is placed in test contact, clamps electric capacitor 80 by several clamping limbs 50, and then carry out testing or energising operation.
Referring again to the axial cut-open view that Fig. 2, Fig. 2 are Fig. 1.Described base 10 runs through the first through hole 11.Described bearing 20 is installed on described base 10, and described bearing 20 is provided with chamber 23.Described chamber 23 communicates with described first through hole 11.Described bearing 20 sidewall is provided with several the second through holes 221, and described chamber 23 is communicated with external environment by described second through hole 221.In the utility model embodiment, described clamping limb 50, described second through hole 221 are four.Four described second through holes 221 are evenly distributed on described bearing 20 sidewall.Refer to Fig. 7-10, the electric capacitor 80 of all size shape can be lived by four clamping limbs 50 compared with stable holding.
Described test contact is installed on described bearing 20.Described driving shaft 40 to be installed in described first through hole 11 and can to move along described first through hole 11.Described driving shaft 40 is arranged with spring 41 and the position-arresting disk 42 of described spring 41 of conflicting.Described spring 41 is arranged between described position-arresting disk 42 and described base 10.Wherein, base 10 is provided with spring mounting seat 44, spring 41 one end is arranged in spring mounting seat 44, and the spring other end and position-arresting disk 42 are conflicted.
Clamping limb 50 described in several and the second through hole 221 one_to_one corresponding described in several.Described clamping limb 50 passes described second through hole 221 and extend in described chamber 23, described clamping limb 50 is rotatably connected with described bearing 20, described clamping limb 50 one end is relative with described test contact, and described clamping limb 50 other end is connected with the transmission of described driving shaft 40.
Above-mentioned electric capacitor is energized machine clamp, and rotating clip gripping arm 50 makes each clamping limb 50 outwards open, and is placed in test contact by electric capacitor 80.By the direction pull-up of driving shaft 40 to test contact in clamping limb 50 rotation process, driving shaft 40 just makes spring 41 compress.So after unclamping clamping limb 50, the resilient force of spring 41 makes driving shaft 40 move towards away from test contact direction in driving shaft 40, and driving shaft 40 makes each clamping limb 50 rotate and step up electric capacitor 80.So visible, electric capacitor described in the utility model machine clamp of energizing can facilitate the electric capacitor 80 of gripping all size size shape and good clamping effect, the test that can greatly improve electric capacitor 80 and the work efficiency of energizing.
Refer to Fig. 3, Fig. 3 illustrates the structural drawing of the utility model embodiment clamping limb 50.Described clamping limb 50 comprises head rod 51, second connecting link 52 and the 3rd connecting link 53 that are connected successively.Described head rod 51, angle between the 3rd connecting link 53 and described second connecting link 52 are 120 ~ 150 °, and described head rod 51 is connected with the transmission of described driving shaft 40, and described 3rd connecting link 53 is relative with described test contact.So, the 3rd connecting link 53 of each clamping limb 50 is around in outside test contact, and can clamp stable by the electric capacitor 80 in test contact, and is convenient for changing electric capacitor 80.
The end of described 3rd connecting link 53 is connected with two rubber tires 531.Two described rubber tires 531 are positioned at the both sides of described 3rd connecting link 53.So, when each clamping limb 50 clamps electric capacitor 80, the rubber tire 531 of the 3rd connecting link 53 sidepiece contacts with electric capacitor 80, makes it possible to avoid scratching electric capacitor 80, and electric capacitor 80 clamps stable.
Described driving shaft 40 end is connected with joint pin 43.The sidewall of described joint pin 43 is provided with ring groove 431.The end of described head rod 51 is equiped with roller 511 by bearing.Described roller 511 is arranged in described ring groove 431 and conflicts with described joint pin 43.So, driving shaft 40 moves up and down in process in chamber 23, and roller 511 rotates in ring groove 431, is convenient to realize clamping limb 50 and rotates, to reach the effect of fast and stable clamping electric capacitor 80.
Refer to Fig. 4, Fig. 4 illustrates the structural drawing of the first cylindrical shell 21.Described bearing 20 comprises the first cylindrical shell 21 and the second cylindrical shell 22.Described first cylindrical shell 21 end is provided with several bearing seats 211.Bearing seat 211 described in several and clamping limb 50 one_to_one corresponding described in several.Described head rod 51 is provided with axis hole 512, and described head rod 51 is arranged on described bearing seat 211 through described axis hole 512 by rotation axis.Described second cylindrical shell 22 is provided with the second through hole 221 described in several.Second through hole 221 described in several and bearing seat 211 one_to_one corresponding described in several, described bearing seat 211 is arranged in described second through hole 221.The end of described second cylindrical shell 22 is connected with end cap, and described test contact is installed on described end cap.Clamping limb 50 is arranged on described bearing seat 211 by rotation axis through described axis hole 512, and then the second cylindrical shell 22 is installed on the first cylindrical shell 21, make the utility model electric capacitor 80 energize fixture be convenient to assembling, and clamping limb 50 can be that axle center is rotated with rotation axis, the operation clamping or unclamp electric capacitor 80 can be realized.
Refer to Fig. 5, described test contact comprises copper post 30.The middle part of described copper post 30 end face is provided with groove 31 and high-tension electricity trough 32 and low tension trough 33.Described high-tension electricity trough 32 is set up in parallel with described low tension trough 33.And one end of described high-tension electricity trough 32, described low tension trough 33 is connected with described groove 31, the other end of described high-tension electricity trough 32, described low tension trough 33 communicates with external environment.Copper post 30 end face arranges high-tension electricity trough 32 and low tension trough 33 respectively, and electric capacitor 80 can be connected high-tension electricity and low tension by high-tension electricity trough 32 respectively with low tension trough 33.So high-voltage electric contact and low tension contact position to be separated, to make stability and the precision of the equipment that not only increases, electric capacitor 80 can also be prevented damaged by high-tension electricity affects when low pressure precision measurement.
Wherein, described copper post 30 end face is provided with two rinse baths 34.Described rinse bath 34 one end is connected with described groove 31, and described rinse bath 34 other end communicates with external environment.The dust of accumulation in groove 31 can convenient be washed by two rinse baths 34, makes the excellent conductive performance keeping copper post 30 end face.
Refer to Fig. 6, the detection of electric capacitor 80 described in the utility model and enabling apparatus, comprise multiple described electric capacitor and to energize machine clamp, multiple installing plate 60 and rolling disc 70.Multiple described installing plates 60 and multiple described electric capacitor are energized machine clamp one_to_one corresponding.Described installing plate 60 one end is connected with described rolling disc 70, and described installing plate 60 other end is equiped with described electric capacitor and energizes machine clamp.Described installing plate 60 end opens has mounting hole.Described base 10 is installed on described installing plate 60.Described first through hole 11 communicates with described mounting hole.Described driving shaft 40 one end is positioned at described chamber 23, and described driving shaft 40 other end reaches below described installing plate 60 through described first through hole 11 with described mounting hole, and described driving shaft 40 can move along described mounting hole.
Wherein, multiple described electric capacitor machine clamp of energizing is circumferentially same for the center of circle is evenly distributed on the center of described rolling disc 70.So, by detection and the enabling apparatus of electric capacitor 80 of the present utility model, rotate rolling disc 70, make each electric capacitor machine clamp of energizing move in corresponding test bit and carry out testing or energising operation, automaticity is high.
Each technical characteristic of the above embodiment can combine arbitrarily, for making description succinct, the all possible combination of each technical characteristic in above-described embodiment is not all described, but, as long as the combination of these technical characteristics does not exist contradiction, be all considered to be the scope that this instructions is recorded.
The above embodiment only have expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to utility model patent scope.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.

Claims (10)

1. electric capacitor is energized a machine clamp, it is characterized in that, comprising:
Base, described base runs through the first through hole;
Bearing, described bearing is installed on described base, and described bearing is provided with chamber, and described chamber communicates with described first through hole, and described bearing sidewall is provided with several the second through holes, and described chamber is communicated with external environment by described second through hole;
Test contact, described test contact is installed on described bearing;
Driving shaft, described driving shaft to be installed in described first through hole and can to move along described first through hole, and described driving shaft is arranged with spring and the position-arresting disk of described spring of conflicting, described spring is arranged between described position-arresting disk and described base; And
Several clamping limbs, clamping limb described in several and the second through hole one_to_one corresponding described in several, described clamping limb passes described second through hole and extend in described chamber, described clamping limb and described bearing are rotatably connected, described clamping limb one end is relative with described test contact, and the described clamping limb other end is connected with described driving shaft transmission.
2. electric capacitor according to claim 1 is energized machine clamp, it is characterized in that, described clamping limb comprises the head rod, the second connecting link and the 3rd connecting link that are connected successively, described head rod, angle between the 3rd connecting link and described second connecting link are 120 ~ 150 °, described head rod is connected with described driving shaft transmission, and described 3rd connecting link is relative with described test contact.
3. electric capacitor according to claim 2 is energized machine clamp, it is characterized in that, described driveshaft end is connected with joint pin, the sidewall of described joint pin is provided with ring groove, the end of described head rod is equiped with roller by bearing, and described roller is arranged in described ring groove and conflicts with described joint pin.
4. electric capacitor according to claim 2 is energized machine clamp, and it is characterized in that, the end of described 3rd connecting link is connected with two rubber tires, and two described rubber tires are positioned at the both sides of described 3rd connecting link.
5. electric capacitor according to claim 2 is energized machine clamp, it is characterized in that, described bearing comprises the first cylindrical shell and the second cylindrical shell, described first barrel end is provided with several bearing seats, bearing seat described in several and clamping limb one_to_one corresponding described in several, described head rod is provided with axis hole, described head rod is arranged on described bearing seat by rotation axis through described axis hole, described second cylindrical shell is provided with the second through hole described in several, second through hole described in several and bearing seat one_to_one corresponding described in several, described bearing seat is in described second through hole, the end of described second cylindrical shell is connected with end cap, described test contact is installed on described end cap.
6. electric capacitor according to claim 1 is energized machine clamp, it is characterized in that, described test contact comprises copper post, the middle part in described copper styletable face is provided with groove and high-tension electricity trough and low tension trough, described high-tension electricity trough and described low tension trough are set up in parallel, and one end of described high-tension electricity trough, described low tension trough is connected with described groove, the other end of described high-tension electricity trough, described low tension trough communicates with external environment.
7. electric capacitor according to claim 6 is energized machine clamp, and it is characterized in that, described copper styletable face is provided with two rinse baths, and described rinse bath one end is connected with described groove, and the described rinse bath other end communicates with external environment.
8. the electric capacitor according to any one of claim 1 to 7 is energized machine clamp, and it is characterized in that, described clamping limb, described second through hole are four, and four described second through holes are evenly distributed on described bearing sidewall.
9. the detection of an electric capacitor and enabling apparatus, it is characterized in that, comprise multiple electric capacitor as described in any one of claim 1 to 8 to energize machine clamp, multiple installing plate and rolling disc, multiple described installing plate and multiple described electric capacitor are energized machine clamp one_to_one corresponding, described installing plate one end is connected with described rolling disc, the described installing plate other end is equiped with described electric capacitor and energizes machine clamp, described installing plate end opens has mounting hole, described base is installed on described installing plate, described first through hole communicates with described mounting hole, described driving shaft one end is positioned at described chamber, the described driving shaft other end reaches below described installing plate through described first through hole and described mounting hole, described driving shaft can move along described mounting hole.
10. the detection of electric capacitor according to claim 9 and enabling apparatus, is characterized in that, multiple described electric capacitor machine clamp of energizing is circumferentially same for the center of circle is evenly distributed on the center of described rolling disc.
CN201520988779.2U 2015-12-01 2015-12-01 Electric capacitance energize quick -witted anchor clamps and electric capacitance's detection and device of energizing Withdrawn - After Issue CN205229197U (en)

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CN201520988779.2U CN205229197U (en) 2015-12-01 2015-12-01 Electric capacitance energize quick -witted anchor clamps and electric capacitance's detection and device of energizing

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Application Number Priority Date Filing Date Title
CN201520988779.2U CN205229197U (en) 2015-12-01 2015-12-01 Electric capacitance energize quick -witted anchor clamps and electric capacitance's detection and device of energizing

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CN205229197U true CN205229197U (en) 2016-05-11

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105334358A (en) * 2015-12-01 2016-02-17 广州市番禺桂博自动化设备制造厂 Energizing machine clamp for power capacitors and detecting and energizing device for power capacitors
CN111289030A (en) * 2020-03-07 2020-06-16 中国计量科学研究院 Capacitive sensor stability testing device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105334358A (en) * 2015-12-01 2016-02-17 广州市番禺桂博自动化设备制造厂 Energizing machine clamp for power capacitors and detecting and energizing device for power capacitors
CN105334358B (en) * 2015-12-01 2018-03-27 广州桂博自动化设备有限公司 A kind of electric capacitor is energized detection and the enabling apparatus of machine clamp and electric capacitor
CN111289030A (en) * 2020-03-07 2020-06-16 中国计量科学研究院 Capacitive sensor stability testing device
CN111289030B (en) * 2020-03-07 2022-03-18 中国计量科学研究院 Capacitive sensor stability testing device

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C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20170524

Address after: 518000 Guangdong city in Guangzhou Province, Panyu District Road No. 24, one of the Chinese Dragon Street

Patentee after: Automation equipment Co., Ltd. Guangzhou Bo Bo

Address before: 14 No. 510000 Guangdong province Panyu District Dalong Street Chinese industrial village of Guangzhou City Chinese Avenue

Patentee before: GUANGZHOU PANYU GUIBO AUTOMATIC MACHINE FACTORY

TR01 Transfer of patent right
AV01 Patent right actively abandoned

Granted publication date: 20160511

Effective date of abandoning: 20180327

AV01 Patent right actively abandoned