CN204287328U - A kind of device measuring ceramic capacitor electric capacity under direct current 3kV - Google Patents

A kind of device measuring ceramic capacitor electric capacity under direct current 3kV Download PDF

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Publication number
CN204287328U
CN204287328U CN201420691875.6U CN201420691875U CN204287328U CN 204287328 U CN204287328 U CN 204287328U CN 201420691875 U CN201420691875 U CN 201420691875U CN 204287328 U CN204287328 U CN 204287328U
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China
Prior art keywords
direct current
ceramic capacitor
voltage
loop
electric capacity
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Expired - Fee Related
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CN201420691875.6U
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Chinese (zh)
Inventor
李文兴
张书鹏
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SHAANXI HUAXING ELECTRONIC DEVELOPMENT Co Ltd
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SHAANXI HUAXING ELECTRONIC DEVELOPMENT Co Ltd
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Abstract

The utility model relates to a kind of device measuring ceramic capacitor electric capacity under direct current 3kV, comprises high-voltage power supply, capacity tester, tested ceramic capacitor C x, control module, discharge loop, protective loop and stopping direct current bulky capacitor C 0, high-voltage power supply provides 0 ~ 3kV high direct voltage to be applied to measured capacitance C xtwo ends, isolation capacitance C 0with measured capacitance C xserial connection forms series loop, two input ends of capacity tester and be connected to protective loop must not higher than 5V with the voltage at guaranteed capacity tester two ends; Test terminate after by control module pilot relay by discharge loop to measured capacitance C xdischarge the electric energy stored of releasing at two ends.The utility model adopts the scheme of " bulky capacitor series connection " successfully to test the actual capacitance value of ceramic capacitor under direct current 3kV state.With low cost, be easy to operation, safe and reliable.

Description

A kind of device measuring ceramic capacitor electric capacity under direct current 3kV
One, technical field
The utility model relates to a kind of device measuring ceramic capacitor electric capacity under direct current 3kV, specifically the measurement of ceramic capacitor actual capacitance in a high voltage state, belongs to radio survey field.
Two, background technology
The major parameter of ceramic capacitor is rated capacity, its measurement be 25 DEG C, measure under the condition of voltage 1.0V ± 0.1Vrms, frequency 1KHz or 1MHz, this capability value is also static capacity.This type of capacity tester of comparative maturity is a lot of in the market, abroad with Agilent company of the U.S. for representative, domestic with Changzhou with son of sending us by cable for representative.Conventional capacitance measuring tester, test voltage is 1V ± 0.2Vrms, and measured capacitance is attempted by test fixture two ends, if directly apply DC voltage on the capacitor: (5V < V when voltage is lower dC< 10V) test value can be made to occur very large deviation; (V when voltage is higher dC> 10V) testing tool will inevitably puncture or damage.Clearly, direct weighting is difficult to the on-line testing realizing condenser capacity.
Along with the continuous expansion of ceramic capacitor application; user often can seek ceramic capacitor when adding voltage (in practical application circuit; voltage range 0 ~ 3kV) capability value; capacitor manufacturers is suffered from does not have ready-made testing tool to measure, and is difficult to provide compellent data.
Three, the content of utility model
The purpose of this utility model is the defect existed for prior art, provides a kind of scheme of " bulky capacitor series connection " that adopts to select the proving installation of existing capacity tester, high-voltage DC power supply, control module and effluve and high voltage protective loop combination more adequately can test out a kind of device measuring ceramic capacitor electric capacity under direct current 3kV of the actual capacity value of ceramic capacitor under direct current 3kV state.
Realize the capacity measurement of the utility model under High Level DC Voltage state, three problems must be solved:
1, the high pressure be applied on measured capacitance device is cut off, and ensures that capacitance measuring tester normally works;
2, make to there is certain incidence relation between the electric capacity data that normally record and measured capacitance, thus indirectly try to achieve the online capability value of capacitor.Conveniently use the online capability value that preferably directly can read measured capacitance device and its error must not be greater than ± 2%;
3, test process must have high voltage protective, and test terminates must there be discharge loop to release energy.
Thinking of the present utility model is: it is made up of high-voltage power supply, capacity tester, control module, discharge loop, protective loop and stopping direct current bulky capacitor.Wherein high-voltage power supply provides high direct voltage (0 ~ 3kV) to be applied to measured capacitance C xtwo ends, concrete magnitude of voltage needs to be exported by high-voltage power supply according to test; Isolation capacitance C 0with C xserial connection forms series loop, and tank capacitance Cn directly can be read by capacity tester and (work as C 0> > C xtime, tank capacitance Cn approximates measured capacitance C x); In measuring process capacity tester two input ends and be connected to protective loop must not higher than 5V with the voltage at guaranteed capacity tester two ends; Test terminate after by control module pilot relay by discharge loop to C xdischarge the electric energy stored of releasing at two ends.
The utility model adopts a known bulky capacitor to connect with measured capacitance, and bulky capacitor can cut off direct current makes capacitance measuring tester normally work and measure the total capacitance in loop.The electric capacity of measured capacitance is indirectly drawn again by the computing formula of two series capacitance total volumies.The electric capacity of bulky capacitor is such as adopted to be C 0, measured capacitance capacity is C x, so loop total capacitance wherein C 0for known, C ncan normally measure, C xcan obtain.In actual fabrication of the present invention, known capacitance C 0> > C xtime, the total volume value that instrument reads just is approximately equal to tested capacitance (i.e. C n≈ C x).Measured capacitance actual value and loop total capacitance value (capacity tester displayed value) difference≤± 2% can be verified through theory calculate.
For realizing the purpose of this utility model; adopt following technical scheme: a kind of device measuring ceramic capacitor electric capacity under direct current 3kV; comprise high-voltage power supply, capacity tester, control module, discharge loop, protective loop and stopping direct current bulky capacitor, high-voltage power supply provides 0 ~ 3kV high direct voltage to be applied to measured capacitance C xtwo ends, concrete magnitude of voltage needs to be exported by high-voltage power supply according to test; Isolation capacitance C 0with measured capacitance C xserial connection forms series loop, and tank capacitance Cn directly can be read by capacity tester, works as C 0> > C xtime, tank capacitance Cn approximates measured capacitance C x; Two input ends of capacity tester and be connected to protective loop must not higher than 5V with the voltage at guaranteed capacity tester two ends; Test terminate after by control module pilot relay by discharge loop to measured capacitance C xdischarge the electric energy stored of releasing at two ends; Described protection circuit by two diode D1, D2 inverse parallels, a simultaneously transient diode TVS in parallel, described diode D1, D2 are two schottky diode HER607; Described discharge loop selects high-voltage relay KM1 and serial connection bleeder resistance R to form discharge loop; Described control module is made up of Switching Power Supply, timer and pilot relay, and the two ends of pilot relay connect high-voltage power supply and discharge loop respectively; Described stopping direct current bulky capacitor C 0optimum range value is 1.1 μ F≤C 0≤ 11 μ F, the optimum range of concrete stepping is:
Garden plate electric capacity 1.1 μ F≤C 0≤ 4.7 μ F tested scope 1PF ~ 10000pF;
Sheet capacitor 4.7 μ F≤C 0≤ 11 μ F tested scope 10nF ~ 100nF.
The utility model adopt known bulky capacitor (rated voltage is CHM high pressure, the complex media impulse capacitor of 5kV: there is positive temperature coefficient and voltage coefficient is 0 and self-healing property is good) the online volume test device that makes by above scheme, it is applicable for testing under high voltage direct current state for ceramic capacitor (circular plate type pF level, chip multilayer nF level), within its measured value (directly read) and actual value error ± 2% (and K, M level error of capacitor be respectively ± 10%, ± 20%), effectively and low cost solve problem.
Four, accompanying drawing explanation
Accompanying drawing 1 is structural drawing of the present utility model.
Accompanying drawing 2 is protection circuit circuit diagram of the present utility model.
Accompanying drawing 3 is discharge loop circuit diagram of the present utility model.
Accompanying drawing 4 is the schematic diagram of control module of the present utility model.
Five, embodiment
Below in conjunction with drawings and Examples the utility model done and carefully describe furtherly.
With reference to accompanying drawing, a kind of device measuring ceramic capacitor electric capacity under direct current 3kV of the utility model, comprises high-voltage power supply 1, capacity tester 2, tested ceramic capacitor C x, control module 3, discharge loop 4, protective loop 5 and stopping direct current bulky capacitor C 0, high-voltage power supply 1 provides 0 ~ 3kV high direct voltage to be applied to measured capacitance C xtwo ends, concrete magnitude of voltage needs to be exported by high-voltage power supply according to test; Isolation capacitance C 0with measured capacitance C xserial connection forms series loop, and tank capacitance Cn directly can be read by capacity tester, works as C 0> > C xtime, tank capacitance Cn approximates measured capacitance C x; Two input ends of capacity tester 2 and be connected to protective loop 5 must not higher than 5V with the voltage at guaranteed capacity tester two ends; Test terminate after by control module 3 pilot relay by discharge loop 4 couples of measured capacitance C xdischarge the electric energy stored of releasing at two ends; Described protection circuit 5 by two diode D1, D2 inverse parallels, a simultaneously transient diode TVS in parallel, described diode D1, D2 are two schottky diode HER607; Described discharge loop 4 selects high-voltage relay KM1 and serial connection bleeder resistance R to form discharge loop; Described control module 3 is made up of Switching Power Supply 6, timer 7 and pilot relay 8, and the two ends of pilot relay 8 connect high-voltage power supply 1 and discharge loop 4 respectively; Described stopping direct current bulky capacitor C 0optimum range value is 1.1 μ F≤C 0≤ 11 μ F, the optimum range of concrete stepping is:
Garden plate electric capacity 1.1 μ F≤C 0≤ 4.7 μ F tested scope 1PF ~ 10000pF;
Sheet capacitor 4.7 μ F≤C 0≤ 11 μ F tested scope 10nF ~ 100nF.
The pertinent instruments adopted in embodiment, the major function of circuit and parameter are as follows:
Capacity tester: Agilent (Agilent) 4263B
1) measurement parameter: L, C, R etc.
2) fundamental measurement precision: 0.1%
3) test frequency: 1kHz, 1MHz
4) inner direct current biasing: 1.5VDC and 2VDC
High-voltage DC power supply: HV ~ 502P200
1) output voltage: 0 ~ 5000VDC, exports altogether
2) output current: 200mA
3) there is overvoltage, overcurrent protection function
Protection circuit: mainly Protection capacity tester can not have high-tension impact, otherwise will instrument be damaged.Adopt two schottky diode HER607 inverse parallel; simultaneously a transient diode in parallel has response time fast, the feature such as transient power is large, leakage current is low; reliably test instrumentation test lead voltage case is parked in below 5V, protection capacitance measuring tester is not by high-tension impact.
Discharge loop: select high-voltage relay and serial connection bleeder resistance to form discharge loop.The high-end of test product is discharged over the ground by bleeder resistance after having tested by control module.
Control module: control module is made up of Switching Power Supply, timer (setting of test duration) and pilot relay.The High voltage output of major control high-voltage power supply and the duty of discharge loop.
1, ceramic plectane capacitor (range of capacity 1PF ~ 10000pF and 0.001nF ~ 10nF);
Embodiment (one) measured capacitance CHM 3kV-10000Pf, tests under 3kV
Select C 01when being 1.1 μ F (1100nF)
If C xfor 10000pF (10nF), measured value is 9911pF
Theoretical value
Then C n1and C xdifference
Embodiment (two) measured capacitance CHM 3kV-10000pF, tests under 3kV
Select C 02when being 4.7 μ F (4700nF)
If C xbe still 10000PF (10nF), measured value is 9986pF
Theoretical value
Then C n2and C xdifference < < 10000 9978 10000 < < 0.22 %
If C xduring < 10000PF, C nand C xphase difference can be less.
2, ceramics water type multi-layer capacitor (10nF ~ 100nF)
Embodiment (three) measured capacitance CHM 3kV-100nF, tests under 3kV
Select C 03when being 4.7 μ F (4700nF)
If C xfor 100nF, survey as 97.955nF
Theoretical value c n 3 < < 4700 100 4700 100 < < 97.916 nF
Then C n3and C xdifference
Embodiment (four) measured capacitance CHM 3kV-100nF, tests under 3kV
Select C 04when being 11 μ F (11000nF)
If C xbe still 100nF, survey as 99.133nF
Theoretical value c n 4 < < 11000 100 11000 100 < < 99.099 nF
Then C n4and C xdifference < < 100 99.099 100 < < 0.90 %
If C xduring < 100nF, C nand C xphase difference also can be less.
It should be noted that: in embodiment, the actual capability value measured and theoretical value above can maintain the error within 0.1%, that is theoretical value is similar to measured value (because measured value is a bit larger tham theoretical value, by the C of measured value calculating nand C xerror amount also can be less); On the other hand, the effect being less than bulky capacitor obstruct direct current when 3kV tests when applying voltage can be stronger, and error amount also can correspondingly become less, and effect can be better
Found out by embodiment, the present invention is used to make online volume test device, when the capability value of tested ceramic capacitor is between 1pF ~ 10000pF (10nF) ~ 100000pF (100nF) time the full capacity scope of ceramic capacitor (be almost cover), known bulky capacitor selects 1.1 μ F and 4.7 μ F, two gears just successfully can realize online volume test (V dC≤ 3kV), and the capacity measured differ with actual value≤± 2%.Consider cost and test accuracy two kinds of factor C simultaneously 0should not be greater than 11 μ F, can not be less than 1.1 μ F, optimum range value is 1.1 μ F≤C 0≤ 11 μ F.The optimum range of concrete stepping is:
Garden plate electric capacity 1.1 μ F≤C 0≤ 4.7 μ F tested scope 1PF ~ 10000pF;
Sheet capacitor 4.7 μ F≤C 0≤ 11 μ F tested scope 10nF ~ 100nF.

Claims (5)

1. measure a device for ceramic capacitor electric capacity under direct current 3kV, comprise high-voltage power supply (1), capacity tester (2), tested ceramic capacitor C x, control module (3), discharge loop (4), protective loop (5) and stopping direct current bulky capacitor C 0, it is characterized in that: high-voltage power supply (1) provides 0 ~ 3kV high direct voltage to be applied to measured capacitance C xtwo ends, isolation capacitance C 0with measured capacitance C xserial connection forms series loop, two input ends of capacity tester (2) and be connected to protective loop (5) must not higher than 5V with the voltage at guaranteed capacity tester two ends; Discharge loop (4) is passed through to measured capacitance C by control module (3) pilot relay after test terminates xdischarge the electric energy stored of releasing at two ends.
2. a kind of device measuring ceramic capacitor electric capacity under direct current 3kV as claimed in claim 1; it is characterized in that: protection circuit (5) is by two diode D1, D2 inverse parallels; a transient diode TVS in parallel simultaneously, described diode D1, D2 are two schottky diode HER607.
3. a kind of device measuring ceramic capacitor electric capacity under direct current 3kV as claimed in claim 1, is characterized in that: discharge loop (4) selects high-voltage relay KM1 and serial connection bleeder resistance R to form discharge loop.
4. a kind of device measuring ceramic capacitor electric capacity under direct current 3kV as claimed in claim 1, it is characterized in that: control module (3) is made up of Switching Power Supply (6), timer (7) and pilot relay (8), the two ends of pilot relay (8) connect high-voltage power supply (1) and discharge loop (4) respectively.
5. a kind of device measuring ceramic capacitor electric capacity under direct current 3kV as claimed in claim 1, is characterized in that: stopping direct current bulky capacitor C 0optimum range value is 1.1 μ F≤C 0≤ 11 μ F, the optimum range of concrete stepping is:
Garden plate electric capacity 1.1 μ F≤C 0≤ 4.7 μ F tested scope 1PF ~ 10000pF;
Sheet capacitor 4.7 μ F≤C 0≤ 11 μ F tested scope 10nF ~ 100nF.
CN201420691875.6U 2014-11-06 2014-11-06 A kind of device measuring ceramic capacitor electric capacity under direct current 3kV Expired - Fee Related CN204287328U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420691875.6U CN204287328U (en) 2014-11-06 2014-11-06 A kind of device measuring ceramic capacitor electric capacity under direct current 3kV

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420691875.6U CN204287328U (en) 2014-11-06 2014-11-06 A kind of device measuring ceramic capacitor electric capacity under direct current 3kV

Publications (1)

Publication Number Publication Date
CN204287328U true CN204287328U (en) 2015-04-22

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Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN204287328U (en)

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Granted publication date: 20150422

Termination date: 20191106