CN1804652A - Integrated test bench for creepage breaker - Google Patents

Integrated test bench for creepage breaker Download PDF

Info

Publication number
CN1804652A
CN1804652A CN 200610013115 CN200610013115A CN1804652A CN 1804652 A CN1804652 A CN 1804652A CN 200610013115 CN200610013115 CN 200610013115 CN 200610013115 A CN200610013115 A CN 200610013115A CN 1804652 A CN1804652 A CN 1804652A
Authority
CN
China
Prior art keywords
optocoupler
relay
planker
coil
servomotor
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 200610013115
Other languages
Chinese (zh)
Other versions
CN100432690C (en
Inventor
梁燕
王铁镰
徐卫生
陈军
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.)
Tianjin Baili Electronic Co Ltd
Original Assignee
Tianjin Baili Electronic 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 Tianjin Baili Electronic Co Ltd filed Critical Tianjin Baili Electronic Co Ltd
Priority to CNB200610013115XA priority Critical patent/CN100432690C/en
Publication of CN1804652A publication Critical patent/CN1804652A/en
Application granted granted Critical
Publication of CN100432690C publication Critical patent/CN100432690C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Breakers (AREA)

Abstract

The invention relates to a leakage breaker combined test bench. It comprises a AC adjustable voltage power and an adjustable current power; it also comprises a picking-up device, an electrode touching device, a positioning device, a breaker gear and a controlling circuit; the picking-up device comprises a motor and a mechanism device derived by motor or liquid pressure; the positioning device comprises a space limiter fixed on the lifting gear and is used to fix the tested breaker; the electrode touching device comprises a motor, a liquid pressure driver or a device which is controlled by the electromagnetic means and connects the power electrode and the tested breaker end; the breaker gear comprises a device derived by liquid pressure, motor or electromagnetic means and is used to drag the hand of the tested breaker; the controlling circuit comprises an electric controlling wire which uses computer to connect each motivating circuit.

Description

Integrated test bench for creepage breaker
Technical field
The invention belongs to the electric device checkout equipment, particularly relate to a kind of integrated test bench for creepage breaker.
Background technology
Whether known when similar devices such as isolating switch are detected at present, it is qualified to need safe and reliable checkout equipment to detect the quality of isolating switch.Adopt the method for manual detection at present mostly for the detection of residual current circuit breaker, generally electric leakage and the voltage endurance to residual current circuit breaker detects.In the manual detection process, safety is most important when carrying out the high pressure detection, the 3000V high pressure detects, operating personnel can not be near testing equipment, and the operator need put on the insulating boot that height is wanted, and puts on very long insulating glove, this is for operating personnel, very inconvenient in when location that isolating switch is installed, and isolating switch is carried out resistance test in the isolated area of appointment, testing process is brought very big inconvenience to operating personnel.When carrying out detection of electrical leakage, the different housings isolating switch need detect on different detection of electrical leakage testing tables, has so just wasted a lot of times.Above-mentioned withstand voltage detection of electrical leakage, length consuming time, about 20 minutes of whole testing process of isolating switch, accuracy of detection is low.
Summary of the invention
The present invention for solve the technical matters that exists in the known technology provide a kind of realize to every isolating switch once leak electricity and each relatively, the integrated test bench for creepage breaker of each automatic testing of withstand voltage test content such as between mutually.
The technical scheme that the present invention takes for the technical matters that exists in the solution known technology is: include and exchange variable voltage source, exchange adjustable current source, it also includes frame and the picking-up device, electrode contact device, locating device, on/off switch device and the control circuit that are fixed on the frame; Described picking-up device includes motor and can place detected isolating switch and liftable mechanical hook-up by motor or hydraulic-driven; Described locating device includes the stop means of placing detected circuit breaker position that is used for fixing that is connected on the described jacking gear; Described electrode contact device includes the device that power electrode is connected with detected isolating switch terminal of being used for by motor, hydraulic-driven or calutron control; Described on/off switch device includes the mechanical hook-up of the detected circuit breaker handle switch of push-and-pull that is driven by hydraulic pressure, motor or calutron; Described control circuit includes by Computer I/O mouth and peripheral hardware by connecting motor, hydraulic-driven or calutron actuating circuit in motor in the described picking-up device or hydraulic-driven circuit, the electrode contact device and the electronic control circuit of hydraulic pressure, motor or calutron driving circuit in the on/off switch device.
The present invention can also adopt following technical measures:
Described picking-up device includes servomotor, gear, reduction gearing, leading screw and planker; Servomotor is coaxial with gear, gear and reduction gearing interlock, and reduction gearing and leading screw engagement, planker is connected in the upper end of leading screw.
Described electrode contact device includes electromagnet and the movable contact that is fixed on the frame, one end of movable contact lever is fixed on the hinge, and the contact of the other end of movable contact lever is relative with the electrode position that will be installed in the tested residual current circuit breaker on the planker.
Described locating device includes the register pin that is fixed on the planker.
Described on/off switch device includes combined floodgate cylinder and the separating brake that is fixed on the frame and detains cylinder again; Combined floodgate cylinder and separating brake and detains cylinder again, combined floodgate cylinder and separating brake and the piston head of detaining cylinder again place in the stroke range that the height that can pull the handle that is installed in the tested residual current circuit breaker on the planker and handle pull; Two limit switches are separately fixed on the frame up and down: the spacing minimum point of decline of spacing peak of the rising of planker and planker.
Described control circuit includes single-chip microcomputer; By single-chip microcomputer output port A01 output high level, connect relay J 10 coils by optocoupler, driving servomotor A3 just changes, and by single-chip microcomputer output port A02 output high level, connects relay J 20 coils by optocoupler, drives servomotor A3 counter-rotating; The limit switch A41 that is positioned at planker stroke peak connects direct current 12V, and the back is imported one-chip machine port A00 by optocoupler with level signal, and then Single-chip Controlling relay J 10 coils; One-chip machine port A510 exports high level, the optocoupler conducting, and electromagnet A5 coil gets.One-chip machine port A510 output low level, optocoupler ends, electromagnet A5 coil losing electricity; Single-chip microcomputer output port A02 connects two cylinder A8 by optocoupler, solenoid valve A81, the A91 of A9, thus realize the action of two cylinder A8, A9; In leakage tests, exchange adjustable current source, single-chip microcomputer output port T01 connects relay J 1 coil by optocoupler, relay J 1 normally opened contact connects the servomotor M1 of automatic coupling voltage regulator T1, single-chip simulation amount port TAD1 gathers current value, one-chip machine port T02 is by the coil of optocoupler connection relay J 2, and relay J 2 normally opened contacts connect the servomotor M1 of automatic coupling voltage regulator T1; Single-chip microcomputer output port T03 connects relay J 3 coils by optocoupler, relay J 3 normally opened contacts connect the servomotor M2 of automatic coupling voltage regulator T3, one-chip machine port T04 is by the coil of optocoupler connection relay J 4, and relay J 4 normally opened contacts connect the servomotor M2 of automatic coupling voltage regulator T3.
Advantage and good effect that the present invention has are: so owing to adopted automatic test operation testing efficiency height, want detecting electric parameter control precision height for isolating switch, the high-low pressure test can be finished on same equipment and be safe and reliable, has improved accuracy of detection and test speed.
Description of drawings
Fig. 1 is one of general structure synoptic diagram of the present invention;
Fig. 2 is the on/off switch device synoptic diagram among Fig. 1;
Fig. 3 is the picking-up device synoptic diagram among Fig. 1;
Fig. 4 is the locating device synoptic diagram among Fig. 1;
Fig. 5 is the electrode contact device synoptic diagram among Fig. 1;
Fig. 6 is that the interchange adjustable current source among Fig. 1 exchanges the variable voltage source synoptic diagram;
Fig. 7 is two of a general structure synoptic diagram of the present invention;
Fig. 8 is the on/off switch device synoptic diagram among Fig. 7;
Fig. 9 is picking-up device and the electrode contact device synoptic diagram among Fig. 7;
Figure 10 is the locating device synoptic diagram among Fig. 7.
Embodiment
For further understanding summary of the invention of the present invention, characteristics and effect, exemplify following examples now, and conjunction with figs. is described in detail as follows:
See also Fig. 1 (scheme 1), picking-up device includes servomotor A3, gear A 2, reduction gearing A1, leading screw A4 and the planker C that is fixed on the frame, servomotor A3 is coaxial with gear A 2, gear A 2 and reduction gearing A1 engagement, reduction gearing A1 and leading screw A4 engagement, planker C is fixed on the top of leading screw A4 to realize the descending operation of planker C.The electrode contact device includes electromagnet A5 and the movable contact A6 that is fixed on the frame, one end of movable contact A6 lever is fixed on the hinge, the contact of the other end of movable contact A6 lever is relative with the electrode of tested residual current circuit breaker D on will being installed in planker C, when movable contact A6 can be just in time during by electromagnet A5 absorption action downwards be installed in planker C on the electrode of tested residual current circuit breaker D contact.Combined floodgate cylinder A8 and separating brake and detain cylinder A9 again and be fixed on the frame, the piston head of cylinder A8 and cylinder A9 place in the stroke range that the height that just in time can pull the handle that is installed in the tested residual current circuit breaker on the planker C and handle pull.Limit switch A41 and limit switch A42 are separately fixed on the frame, in the spacing minimum point of decline of spacing peak of the rising of planker C and planker C.
As shown in Figure 4, the register pin A7 that is used for fixing tested residual current circuit breaker D outer casing underpart position is installed on the planker C, with the position of the tested residual current circuit breaker of relative fixed.
Picking-up device as shown in Figure 3, employing is got by single-chip microcomputer output port A01 pilot relay J10 coil, servomotor A3 just changes, driven gear A2, gear A 2 and reduction gearing A1 interlock, constitute deceleration system and drive leading screw A4, thereby drive planker C to realize the last lift operations of isolating switch D, when planker C rises to limit switch A41, direct current 12V makes the elementary conducting of optocoupler, the then secondary conducting of optocoupler, and level signal imported single-chip microcomputer, after single-chip microcomputer input port A00 receives level signal, thereby output port A01 pilot relay J10 coil losing electricity control servomotor A3 stops to rise.In like manner, single-chip microcomputer output port A02 pilot relay J20 coil gets, servomotor A3 counter-rotating, through the interlock of gear A 2, drive leading screw A4, thereby drive planker C to realize the step-down operation of isolating switch D with A1, when planker C drops to limit switch A42, the optocoupler conducting, after single-chip microcomputer input port A03 receives level signal, thereby output port A02 pilot relay J20 coil losing electricity control servomotor A3 stops to descend.
As shown in Figure 5, when the electrode contact device adopts one-chip machine port A510 output high level, the optocoupler conducting, thereby make electromagnet A5 coil get, drive movable contact A6 and contact with tested residual current circuit breaker D electrode, when one-chip machine port A510 output low level, optocoupler ends, the A5 coil losing electricity, movable contact A6 separates with the D electrode.
As shown in Figure 2, the on/off switch system adopts the break-make of Single-chip Controlling optocoupler, thereby control two cylinder A8, (A9 promptly closes a floodgate cylinder, separating brake and detains cylinder again) solenoid valve A81, A91 dead electricity, reach and promote residual current circuit breaker D handle and close a floodgate to realize D, separating brake and button operation again, when Chip Microcomputer A 810 was high level, electric thereby the optocoupler conducting makes that solenoid valve A81 gets, cylinder A8 stretched out to the right, in like manner, when Chip Microcomputer A 910 is low level, solenoid valve A91 dead electricity, cylinder A9 withdraws to the right, the handle of residual current circuit breaker closes a floodgate to the right under the drive of cylinder A8.If A9 stretches out left, A8 withdraws left, and the handle of residual current circuit breaker is separating brake or buckle again left then.
(scheme 2) as shown in Figure 7, picking-up device adopts planker C is fixed on the hydraulic piston, and the servomotor A3 in the replacement scheme 1, gear A 2, reduction gearing A1, leading screw A4 and planker C realize the purpose of residual current circuit breaker lifting.Be fixed with four guide rods on planker C, this guide rod upper end is fixed with fixed head C1.The electrode contact device adopts electromagnet B1 and the movable contact B2 that is fixed with in conduction push rod B3 and the excentric shaft B4 alternative scheme 1 on guide plate.Being fixed with on the guide plate of conduction push rod B3 has four holes that can be set in last four guide rods of planker C, and four guide rods in four guide rod upper edges that can be set on planker C slide up and down.In addition on planker C, be installed with the excentric shaft B4 that drives by reducing motor M4 below being fixed with the guide plate of conduction push rod B3.And the hole that conducting top bar B3 is passed arranged on fixed head C1.The on/off switch system adopts making electromagnet B8 and the separating brake that is fixed on the frame and detains electromagnet B9 again, on/off switch guide rod places making electromagnet B8 and separating brake and detains in the middle of the electromagnet B9 again, and making electromagnet B8 and separating brake and the on/off switch guide rod of detaining electromagnet B9 again place in the stroke range that the height that just in time can pull the handle that is installed in the tested residual current circuit breaker on the planker C and handle pull.Promote circuit breaker handle to realize residual current circuit breaker D combined floodgate, separating brake and button operation again.
As shown in figure 10, positioning system using is equipped with positioning strip B7 on fixed head C1, and the outer casing underpart of residual current circuit breaker D is positioned on the fixed head C1.
As shown in Figure 9, picking-up device adopts one-chip machine port B03 control optocoupler, when one-chip machine port B03 is high level, and the optocoupler conducting, oil cylinder solenoid valve J43 gets electric, thus control hydraulic piston B1 upwards promotes planker C, reaches the purpose that residual current circuit breaker D rises.In like manner, when one-chip machine port B03 was low level, optocoupler ended, oil cylinder solenoid valve J43 dead electricity, thus control hydraulic piston B1 descends, and reaches the purpose that residual current circuit breaker D descends.
After supporting plate rose, the electrode contact device adopted one-chip machine port B01, and B02 controls optocoupler, thus pilot relay J41, J42 break-make, thereby control reducing motor M4 rotating.When one-chip machine port B01 is a high level, J41 coil electricity, B02 are low level, the J42 coil blackout, reducing motor M4 forward rotation, excentric shaft B4 rotates counterclockwise under the drive of M4, make conduction push rod B3 upwards eject, realization contacts with the residual current circuit breaker electrode.In like manner, when one-chip machine port B01 is a low level, the J41 coil blackout, B02 is a high level, J42 coil electricity, reducing motor M4 backward rotation, excentric shaft B4 clockwise rotates under the drive of M4, makes conduction push rod B3 withdraw downwards, realizes the disconnection with the residual current circuit breaker electrode.
As shown in Figure 8, the on/off switch system adopts single machine output end B810, the break-make of B910 control optocoupler, thereby control electromagnet B8, B9's must dead electricity (be making electromagnet, separating brake reaches detains electromagnet again), promote residual current circuit breaker D handle to realize residual current circuit breaker combined floodgate, separating brake and to buckle operation again.When single-chip microcomputer output port B810 high level, electromagnet B8 coil gets, during port B910 low level, control electromagnet B9 coil losing electricity, the on/off switch guide rod in the middle of then being positioned at moves right, and promotes the residual current circuit breaker handle and closes a floodgate, if B8 dead electricity in like manner, B9 gets electric, and the on/off switch guide rod is to left movement, promotes residual current circuit breaker handle separating brake or buckles.
As shown in Figure 6, scheme 1 and 2 exchange adjustable current source and exchange variable voltage source and adopt same technology, in leakage tests, exchange adjustable current source, when single-chip microcomputer output port T01 is high level, the elementary conducting of optocoupler, then secondary conducting, make relay J 1 coil get electric adhesive, thus J1 normally opened contact closure, the servomotor M1 forward rotation of automatic coupling voltage regulator T1, thereby changed the T1 secondary voltage, thereby T1 time grade of secondary voltage that meets the elementary change T2 of power transformer T2.When single-chip microcomputer output port T02 is high level, the elementary conducting of optocoupler, then secondary conducting, make relay J 2 coils get electric adhesive, thereby J2 normally opened contact closure, the servomotor M1 backward rotation of automatic coupling voltage regulator T1, thus the T1 secondary voltage changed, thus T1 time grade of secondary voltage that meets the elementary change T2 of power transformer T2.Single-chip simulation amount port TAD1 gathers current value, single-chip microcomputer is by judging the size of this current value and setting value, thereby break-make by port T01, T02 pilot relay J1 and relay J 2, adjust the servomotor rotating of automatic coupling voltage regulator T1, thereby adjust the T1 secondary voltage, the back changes the T2 secondary voltage, after meet isolating switch D, reach the purpose of adjusting electric current.
Exchange variable voltage source, when single-chip microcomputer output port T03 is high level, the elementary conducting of optocoupler, then secondary conducting, make relay J 3 coils get electric adhesive, thereby J3 normally opened contact closure, the servomotor M2 forward rotation of automatic coupling voltage regulator T3, thereby changed the T3 secondary voltage, thereby T3 level connects the secondary voltage of the elementary change T4 of step-up transformer T4, single-chip simulation amount port TAD2 gathers the magnitude of voltage of T4 level of step-up transformer low-voltage coil TB, and judges the size of this magnitude of voltage and setting value, determines turning to of servomotor, thereby adjust the T3 secondary voltage, make that step-up transformer T4 secondary voltage obtains adjusting, after meet isolating switch D, reach the purpose of adjusting voltage.

Claims (6)

1. integrated test bench for creepage breaker, include and exchange variable voltage source, exchange adjustable current source, it is characterized in that: further comprising organic frame and the picking-up device, electrode contact device, locating device, on/off switch device and the control circuit that are fixed on the frame; Described picking-up device includes motor and can place detected isolating switch and liftable mechanical hook-up by motor or hydraulic-driven; Described locating device includes the stop means of placing detected circuit breaker position that is used for fixing that is connected on the described jacking gear; Described electrode contact device includes the device that power electrode is connected with detected isolating switch terminal of being used for by motor, hydraulic-driven or calutron control; Described on/off switch device includes the mechanical hook-up of the detected circuit breaker handle switch of push-and-pull that is driven by hydraulic pressure, motor or calutron; Described control circuit includes by Computer I/O mouth and peripheral hardware by connecting motor, hydraulic-driven or calutron actuating circuit in motor in the described picking-up device or hydraulic-driven circuit, the electrode contact device and the electronic control circuit of hydraulic pressure, motor or calutron driving circuit in the on/off switch device.
2. integrated test bench for creepage breaker according to claim 1 is characterized in that described picking-up device includes servomotor, gear, reduction gearing, leading screw and planker; Servomotor is coaxial with gear, gear and reduction gearing interlock, and reduction gearing and leading screw engagement, planker is connected in the upper end of leading screw.
3. integrated test bench for creepage breaker according to claim 1, it is characterized in that described electrode contact device includes electromagnet and the movable contact that is fixed on the frame, one end of movable contact lever is fixed on the hinge, and the contact of the other end of movable contact lever is relative with the electrode position that will be installed in the tested residual current circuit breaker on the planker.
4. integrated test bench for creepage breaker according to claim 1 is characterized in that described locating device includes the register pin that is fixed on the planker.
5. integrated test bench for creepage breaker according to claim 1 is characterized in that described on/off switch device includes combined floodgate cylinder and the separating brake that is fixed on the frame and detains cylinder again; Combined floodgate cylinder and separating brake and detains cylinder again, combined floodgate cylinder and separating brake and the piston head of detaining cylinder again place in the stroke range that the height that can pull the handle that is installed in the tested residual current circuit breaker on the planker and handle pull; Two limit switches are separately fixed on the frame up and down: the spacing minimum point of decline of spacing peak of the rising of planker and planker.
6. integrated test bench for creepage breaker according to claim 1 is characterized in that described control circuit includes single-chip microcomputer; By single-chip microcomputer output port (A01) output high level, connect relay (J10) coil by optocoupler, driving servomotor (A3) just changes, by single-chip microcomputer output port (A02) output high level, connect relay (J20) coil by optocoupler, drive servomotor (A3) counter-rotating; The limit switch (A41) that is positioned at planker stroke peak connects direct current 12V, and the back is imported one-chip machine port (A00) by optocoupler with level signal, and then Single-chip Controlling relay (J10) coil; One-chip machine port (A510) output high level, the optocoupler conducting, electromagnet (A50) coil gets.One-chip machine port (A510) output low level, optocoupler ends, electromagnet (A5) coil losing electricity; Single-chip microcomputer output port (A02) connects two cylinders (A8) by optocoupler, solenoid valve (A9) (A81), (A91), thus realize the action of two cylinders (A8), (A9); In leakage tests, exchange adjustable current source, single-chip microcomputer output port (T01) connects relay (J1) coil by optocoupler, relay (J1) normally opened contact connects the servomotor (M1) of automatic coupling voltage regulator (T1), single-chip simulation amount port (TAD1) is gathered current value, one-chip machine port (T02) is by the coil of optocoupler connection relay (J2), and relay (J2) normally opened contact connects the servomotor (M1) of automatic coupling voltage regulator (T1); Single-chip microcomputer output port (T03) connects relay (J3) coil by optocoupler, relay (J3) normally opened contact connects the servomotor (M2) of automatic coupling voltage regulator (T3), one-chip machine port (T04) is by the coil of optocoupler connection relay (J4), and relay (J4) normally opened contact connects the servomotor (M2) of automatic coupling voltage regulator (T3).
CNB200610013115XA 2006-01-25 2006-01-25 Integrated test bench for creepage breaker Expired - Fee Related CN100432690C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB200610013115XA CN100432690C (en) 2006-01-25 2006-01-25 Integrated test bench for creepage breaker

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB200610013115XA CN100432690C (en) 2006-01-25 2006-01-25 Integrated test bench for creepage breaker

Publications (2)

Publication Number Publication Date
CN1804652A true CN1804652A (en) 2006-07-19
CN100432690C CN100432690C (en) 2008-11-12

Family

ID=36866737

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB200610013115XA Expired - Fee Related CN100432690C (en) 2006-01-25 2006-01-25 Integrated test bench for creepage breaker

Country Status (1)

Country Link
CN (1) CN100432690C (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102226902A (en) * 2011-06-07 2011-10-26 株洲南车时代电气股份有限公司 Electrical switch and electrical switch system for emulation, and emulation method
CN102759708A (en) * 2012-07-27 2012-10-31 苏州贝腾特电子科技有限公司 Testing instrument
CN102914739A (en) * 2012-10-22 2013-02-06 施耐德电气(中国)有限公司 Hot test device for circuit breaker
CN102928775A (en) * 2012-10-19 2013-02-13 施耐德电气(中国)有限公司 Device for detecting direct current breaker, and production line comprising device for detecting current breaker
CN102981118A (en) * 2011-09-06 2013-03-20 首瑞(北京)投资管理集团有限公司 Breaker state monitoring system
CN101441247B (en) * 2007-11-19 2013-03-27 施耐德电器工业公司 Automatic device for circuit breaker short circuit combining and separating tests
CN104898007A (en) * 2014-03-06 2015-09-09 温州奔龙自动化科技有限公司 Electric leakage circuit breaker leakage protection function detection device
CN106932717A (en) * 2016-08-31 2017-07-07 中山市开普电器有限公司 A kind of earth leakage protective device comprehensive test device
CN110780161A (en) * 2019-09-19 2020-02-11 河北工业大学 Insulation resistance and insulation withstand voltage measuring mechanism suitable for electromagnetic relay
CN112014728A (en) * 2020-08-10 2020-12-01 西安交通大学 Switching apparatus electric arc experimental apparatus based on pneumatic actuator
CN112285443A (en) * 2020-12-31 2021-01-29 中国电力科学研究院有限公司 Electric field measuring equipment provided with self-calibration device and self-calibration method

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5272438A (en) * 1989-03-08 1993-12-21 Square D Company Field test unit for circuit breaker
CN2550769Y (en) * 2002-05-26 2003-05-14 周文海 Automatic detection and sorting machine for switch and relay parameter
CN2648455Y (en) * 2003-07-22 2004-10-13 成都旭光电子股份有限公司 Testing table for vacuum switch valve performance parameter
CN100353175C (en) * 2004-12-31 2007-12-05 河北工业大学 Test device for small breaker reliability
CN100348994C (en) * 2005-04-05 2007-11-14 天津大学 Automatic detector and method for mechanical performance of push-pull circuit breaker

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101441247B (en) * 2007-11-19 2013-03-27 施耐德电器工业公司 Automatic device for circuit breaker short circuit combining and separating tests
CN102226902A (en) * 2011-06-07 2011-10-26 株洲南车时代电气股份有限公司 Electrical switch and electrical switch system for emulation, and emulation method
CN102226902B (en) * 2011-06-07 2013-09-04 株洲南车时代电气股份有限公司 Electrical switch and electrical switch system for emulation, and emulation method
CN102981118B (en) * 2011-09-06 2015-06-03 首瑞(北京)投资管理集团有限公司 Breaker state monitoring system
CN102981118A (en) * 2011-09-06 2013-03-20 首瑞(北京)投资管理集团有限公司 Breaker state monitoring system
CN102759708A (en) * 2012-07-27 2012-10-31 苏州贝腾特电子科技有限公司 Testing instrument
CN102759708B (en) * 2012-07-27 2016-04-27 国网浙江海宁市供电公司 A kind of tester
CN102928775A (en) * 2012-10-19 2013-02-13 施耐德电气(中国)有限公司 Device for detecting direct current breaker, and production line comprising device for detecting current breaker
CN102914739B (en) * 2012-10-22 2015-01-07 施耐德电气(中国)有限公司 Hot test device for circuit breaker, its testing method and regulating method
CN102914739A (en) * 2012-10-22 2013-02-06 施耐德电气(中国)有限公司 Hot test device for circuit breaker
CN104898007A (en) * 2014-03-06 2015-09-09 温州奔龙自动化科技有限公司 Electric leakage circuit breaker leakage protection function detection device
CN106932717A (en) * 2016-08-31 2017-07-07 中山市开普电器有限公司 A kind of earth leakage protective device comprehensive test device
CN106932717B (en) * 2016-08-31 2023-02-10 中山市开普电器有限公司 Comprehensive testing device for leakage protector
CN110780161A (en) * 2019-09-19 2020-02-11 河北工业大学 Insulation resistance and insulation withstand voltage measuring mechanism suitable for electromagnetic relay
CN110780161B (en) * 2019-09-19 2022-02-22 河北工业大学 Insulation resistance and insulation withstand voltage measuring mechanism suitable for electromagnetic relay
CN112014728A (en) * 2020-08-10 2020-12-01 西安交通大学 Switching apparatus electric arc experimental apparatus based on pneumatic actuator
CN112285443A (en) * 2020-12-31 2021-01-29 中国电力科学研究院有限公司 Electric field measuring equipment provided with self-calibration device and self-calibration method
CN112285443B (en) * 2020-12-31 2021-04-13 中国电力科学研究院有限公司 Electric field measuring equipment provided with self-calibration device and self-calibration method

Also Published As

Publication number Publication date
CN100432690C (en) 2008-11-12

Similar Documents

Publication Publication Date Title
CN1804652A (en) Integrated test bench for creepage breaker
CN101399134B (en) Relay status detection method
CN209675229U (en) A kind of long-range switching off/on device for breaker in a row
CN106405403A (en) Cost control circuit breaker function test intelligent test device
CN2909503Y (en) Permanent magnet holding mechanism driven by electromagnetic
CN201117461Y (en) Low-voltage all-purpose air breaker manipulator device
CN113012999B (en) Circuit breaker operation structure for switch cabinet
CN101944445A (en) Switching appliance for AC circuit
CN204740327U (en) Integrated device of large -scale low -voltage circuit breaker cranking test
CN201011646Y (en) Novel voltage-regulating and changeover switch
CN2870134Y (en) Intelligent phase-selection indoor high-pressure vacuum circuit breaker
CN2554791Y (en) Leakag switch handle, test and reset push-button electric operator
CN202816781U (en) Indoor high-voltage AC vacuum circuit breaker
CN205920194U (en) Instantaneous testboard recloses
CN201032620Y (en) Electromagnetic drive permanent-magnet holding mechanism
CN206098279U (en) Magnetic control formula high speed circuit -breaker
CN111323624A (en) Ammeter equipment capable of automatically switching on and off circuit
CN2867572Y (en) Sudden-stop relay
CN216595812U (en) Ultra-thin high-brightness full-lamination energy-saving display module
CN208923293U (en) A kind of lamination push type broach open/close mechanism
CN219980260U (en) Pressure release protection low-voltage switchgear
CN221174876U (en) Integrated circuit board test fixture
CN221304551U (en) Bluetooth micro-breaking module for power distribution
CN212539609U (en) Device for testing mechanical performance running-in of isolating switch
CN211654746U (en) Circuit breaker with electric operating device

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: TIANJIN BENEFO STEEL STRUCTURE CO., LTD.

Free format text: FORMER OWNER: TIANJIN BENEFO ELECTRIC CO., LTD.

Effective date: 20090410

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20090410

Address after: No. 20 Hongyuan Road, Xiqing Economic Development Zone, Tianjin

Patentee after: Tianjin Benefo Kang Sing Steel Structure Co., Ltd.

Address before: No. 12 Minhe Road, Xiqing Economic Development Zone, Tianjin

Patentee before: Tianjin Baili Electronic Co., Ltd.

ASS Succession or assignment of patent right

Owner name: TIANJIN BAILI ELECTRONIC CO LTD

Free format text: FORMER OWNER: TIANJIN BENEFO KANG SING STEEL STRUCTURE CO., LTD.

Effective date: 20101224

C41 Transfer of patent application or patent right or utility model
COR Change of bibliographic data

Free format text: CORRECT: ADDRESS; FROM: 300385 NO.20, HONGYUAN ROAD, ECONOMIC DEVELOPMENT ZONE, XIQING, TIANJIN TO: 300385 NO.12, MINHE ROAD, ECONOMIC DEVELOPMENT ZONE, XIQING, TIANJIN

TR01 Transfer of patent right

Effective date of registration: 20101224

Address after: 300385 No. 12 Minhe Road, Xiqing Economic Development Zone, Tianjin

Patentee after: Tianjin Baili Electronic Co., Ltd.

Address before: 300385 No. 20 Hongyuan Road, Xiqing Economic Development Zone, Tianjin

Patentee before: Tianjin Benefo Kang Sing Steel Structure Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20081112

Termination date: 20180125

CF01 Termination of patent right due to non-payment of annual fee