CN1991389A - Direct current potentiometer utilizing branch line two-range shifting - Google Patents
Direct current potentiometer utilizing branch line two-range shifting Download PDFInfo
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- CN1991389A CN1991389A CN 200510062359 CN200510062359A CN1991389A CN 1991389 A CN1991389 A CN 1991389A CN 200510062359 CN200510062359 CN 200510062359 CN 200510062359 A CN200510062359 A CN 200510062359A CN 1991389 A CN1991389 A CN 1991389A
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- China
- Prior art keywords
- resistance
- dish
- measuring disk
- replacement
- measuring
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Abstract
The invention provides a potentiometer with shift diverting double range switching for DC voltage measurement, wherein 20X4 Omega is used as a No:1 measuring disc, 10X0.44 Omega is used as a No:2 measuring disc, 0-4.84 Omega is used as a No:3 measuring disc, wherein the STANDARD-UNKNOWN switch does not influence measurement result, the two measuring junction knobs and the three measuring discs are connected directly with cables, the contact resistance of the measurement step switch, the variable difference and thermoelectrical potential are eliminated outside the measurement result, and the zero potential can further raise negative potential for compensation, two resisters of 10 Omega and 81 Omega are utilized for measurement range switch by employing diverting branch method.
Description
Technical field
The present invention relates to measure the instrument of DC voltage.
Background technology
The potential difference meter of current production, when measuring disk has three when above, measure between terminal for two and have switch contact resistance and variation, therefore, even working current is little of 0.1mA, the silver-bearing copper compound substance is not only adopted in the brush of switch and contact, contact area is also done very greatly, variation is brought influence when reducing the measuring switch stepping and switching, and this just makes the instrument volume become big, the thermoelectrical potential that also has switch in addition with contact variable thermoelectric potential influence.
Summary of the invention
The problem to be solved in the present invention is, when be used in the potential difference meter measure portion two step switch and a slide wire disc are arranged the time, contact resistance and variation that the measuring switch stepping is switched, the switch thermoelectrical potential does not influence measurement result, when range was changed, range conversion was the resistance that one digit number is taken advantage of 10 integral number power with resistance.
Technical scheme of the present invention is such: working current is regulated resistance R P
1, RP
2, reduce supply voltage fixed resistance R
0Sampling is connected in the potentiometer circuit with setting up resistance and metering circuit during standardization; It is characterized in that measuring partly with two slide wire disc of two step discs, first step disc is by respectively having 20 * 4 Ω I measuring disk and I ' replacement dish to form, second step disc is by I measuring disk and II that 10 * 0.44 Ω are respectively arranged " the replacement dish forms; this advances two brushes of dish and interconnects, the promptly two slide wire discs of the 3rd dish, and two resistance wire resistances are identical; be all 0~4.84 Ω; its indicating value index dial has 11 big lattice, and the corresponding resistance of every big lattice is 0.44 Ω, and 110 little lattice are arranged; Another root of work III measuring disk slip is made III ' replacement dish slip in two slips, and the brush on two slide wire resistances of this dish is from getting off with a slice metal upper punch; I ' replacement is coiled at the 20th and is connected 6.16 Ω resistance R
1The back is coiled at the 10th with II ' replacement and is connected, 0 resistance R that connects 8.44 Ω of II measuring disk
2The back is connected with 0 of I measuring disk, and this coils the 20th connection III measuring disk does not hold, and it is 905.16 Ω resistance R that III ' replacement slip top connects a resistance
3The back is connected with 0 on I ' replacement dish; I ' replacement dish brush and 10 Ω resistance r
1Be connected in parallel on the metering circuit positive pole, resistance r
1The other end connect triac device K
1-1* 0.1 range contact, K
1-1* 1 range contact connects I measuring disk brush, and and K
1-2* 0.1 range contact short circuit, K
1-2* 81 Ω resistance r are passed through in 0.1 range contact
2Back and K
1-2* 1 range contact is connected the negative pole of metering circuit, the K of triac device
1-1And K
1-2The mutual short circuit of two-layer normally closed contact.
By above technical scheme, the measuring disk that two step discs and slide wire disc are used for measure portion connects with lead, contact resistance and variation, not in measuring the loop, the just potential difference meter work loop of influence always hinders, because total resistance resistance is very big, so variation can be ignored, the thermoelectric potential influence of several μ V be supply voltage, supply voltage be the volt, how many μ V are thermoelectrical potential be, both differ 10 the 6 power orders of magnitude, and therefore influence can be ignored, even so, even contact resistance variation and thermoelectrical potential are big to the degree of can not ignore, can be by standard is adjusted RP
2Resistance obtain revising, zero potential can increase between slide wire disc and the I measuring disk lead resistance to be revised, Just because of this, reduced requirement to switch, after adopting small-sized measurement step switch, it is many that whole instrument overall dimensions reduce, and makes the measurement data of instrument obtain good repeatability.Because the range conversion is that one digit number is taken advantage of 10 integral number power with resistance, available standards resistance is revised with resistance range conversion, has improved the accuracy of potential difference meter range ratio.
Description of drawings
Accompanying drawing is a principle of the invention circuit.
Embodiment
In the drawings, by " U
x" anodal through each measuring disk, pass through change-over switch K again
2To " U
x" negative pole is to measure the loop, by positive source through measuring step switch to setting resistance R N and temperature compensation dish RP
4, arrive resistance R then
0, adjustable resistance RP
3, RP
2And RP
1After, getting back to power cathode is the work loop, anodal through change-over switch K from standard cell EN
2, to setting up resistance R N and temperature compensation dish RP
4, be standard loop to the standard cell negative pole again.When five dishes are all thrown " 0 ", left side resistance equals 99 Ω between two brushes of first step disc, and the right resistance equals 990 Ω, and total resistance is 90 Ω between two brushes of first step disc, therefore 10/11 on the left side of total current flows between two brushes of first dish, and 1/11 flows on the right.
When * 0.1 range, be connected in parallel on the resistance r between two brushes of first step disc
1Resistance be between two brushes of first dish resistance 1/9, so flow through the electric current of measuring disk and be * the 1st, 1/10 of range, therefore the amount limit be reduced to * 1 range 1/10, parallel resistance r
1After, the metering circuit resistance is reduced, resistance r has just connected in circuit
2, make the total resistance of potentiometer circuit constant.
2.5mA working current is to determine like this, at " U
X" two of two ends measure terminals and connect normal voltage near full scale, K switch by polarity
2Throw to the left side, the measuring disk indicating value is identical with standard voltage value, regulates resistance R P by regulating working current
1And RP
2, make the galvanometer nulling, again with K switch
2Throw to the right, sampling is 407 Ω with the resistance of setting up resistance R N, and 0~1 Ω adjustable resistance RP has connected
3, regulate RP
3, make galvanometer nulling once more, again with K switch
2Throw to the left side, regulate RP
2Make the galvanometer nulling, again with K switch
2Throw to the right and regulate RP
3Make the galvanometer nulling, when switch points to the left side and the right and do not regulate the equal nulling of galvanometer, the standardization of potential difference meter working current is described, promptly set up ohmically pressure drop and equate, at this moment with RP with the electromotive force of unsaturated standard cell EN
3Locking, this potential difference meter is from now on just as standard.After the working current standardization, the I measuring disk is thrown n when * 1 range
1, the II measuring disk is thrown n
2, the III measuring disk is thrown n
3, the IV measuring disk is thrown n
4, K switch
2Throw to the left side, be positioned at this moment that voltage is between two terminals of measurement
Ux=25/11×0.44n
2+25/11×(8+0.44)+25/11×4n
1-2.5/11×4(20-n
1)-2.5/11×0.44
×(10-n
3)(mv)
=n
2+200/11+1+100n
1/11-200/11+10n
1/11-1+0.1n
3(mv)
=10n
1+n
2+0.1n
3(mv)
More than the resistance of III dish calculate n by big lattice
3Be expressed as an integer and add the radix point back and have one-bit digital to refer to little lattice in the big lattice, little lattice indicating value unit is 10 μ V during * 1 range, is 1 μ V when * 0.1 range.
Convenient in order to measure, the III dish has a big lattice negative potential.
Circuit work power is 1.5V, can work in the 1.4V-1.65V scope in order to make operating supply voltage, gets fixed resistance R
0Equal 62 Ω, adjustable resistance PR
1=20 * 4.7 Ω, PR
2Be to regulate in 0~6.2 Ω scope.
Triac device K
1-3To resistance R
4And resistance R
5Switch in difference amount limit, purpose is to mate in different range input impedance for galvanometer G.
Claims (1)
- A kind of DC potentiometer that adopts the conversion of diverter branch two ranges, it has working current to regulate resistance R P 1, RP 2, reduce supply voltage fixed resistance R 0Sampling is connected in the potentiometer circuit with setting up resistance and metering circuit during standardization; It is characterized in that measuring partly with two slide wire disc of two step discs, first step disc is by respectively having 20 * 4 Ω I measuring disk and I ' replacement dish to form, second step disc is by I measuring disk and II that 10 * 0.44 Ω are respectively arranged " the replacement dish forms; this advances two brushes of dish and interconnects, the promptly two slide wire discs of the 3rd dish, and two resistance wire resistances are identical; be all 0~4.84 Ω; its indicating value index dial has 11 big lattice, and the corresponding resistance of every big lattice is 0.44 Ω, and 110 little lattice are arranged; Another root of work III measuring disk slip is made III ' replacement dish slip in two slips, and the brush on two slide wire resistances of this dish is from getting off with a slice metal upper punch; I ' replacement is coiled at the 20th and is connected 6.16 Ω resistance R 1The back is coiled at the 10th with II ' replacement and is connected, 0 resistance R that connects 8.44 Ω of II measuring disk 2The back is connected with 0 of I measuring disk, and this coils the 20th connection III measuring disk does not hold, and it is 905.16 Ω resistance R that III ' replacement slip top connects a resistance 3The back is connected with 0 on I ' replacement dish; I ' replacement dish brush and 10 Ω resistance r 1Be connected in parallel on the metering circuit positive pole, resistance r 1The other end connect triac device K 1-1* 0.1 range contact, K 1-1* 1 range contact connects I measuring disk brush, and and K 1-2* 0.1 range contact short circuit, K 1-2* 81 Ω resistance r are passed through in 0.1 range contact 2Back and K 1-2* 1 range contact is connected the negative pole of metering circuit, the K of triac device 1-1And K 1-2The mutual short circuit of two-layer normally closed contact.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200510062359 CN1991389A (en) | 2005-12-30 | 2005-12-30 | Direct current potentiometer utilizing branch line two-range shifting |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200510062359 CN1991389A (en) | 2005-12-30 | 2005-12-30 | Direct current potentiometer utilizing branch line two-range shifting |
Publications (1)
Publication Number | Publication Date |
---|---|
CN1991389A true CN1991389A (en) | 2007-07-04 |
Family
ID=38213791
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 200510062359 Withdrawn CN1991389A (en) | 2005-12-30 | 2005-12-30 | Direct current potentiometer utilizing branch line two-range shifting |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN1991389A (en) |
-
2005
- 2005-12-30 CN CN 200510062359 patent/CN1991389A/en not_active Withdrawn
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C04 | Withdrawal of patent application after publication (patent law 2001) | ||
WW01 | Invention patent application withdrawn after publication |