CN204065207U - There is the pressure measuring instrument of five step discs - Google Patents

There is the pressure measuring instrument of five step discs Download PDF

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Publication number
CN204065207U
CN204065207U CN201420419440.6U CN201420419440U CN204065207U CN 204065207 U CN204065207 U CN 204065207U CN 201420419440 U CN201420419440 U CN 201420419440U CN 204065207 U CN204065207 U CN 204065207U
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China
Prior art keywords
dish
resistance
measurement
contact
replacement
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Expired - Fee Related
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CN201420419440.6U
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Chinese (zh)
Inventor
袁乐香
骆晓峰
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Individual
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Abstract

A kind of pressure measuring instrument having five step discs for DC voltage measurement, five step discs are all coiled by measurement and the replacement dish identical with measurement dish structure forms, 0.1 Ω resistance one is welded between the measurement dish of three step discs and the adjacent contacts of replacement dish before it, two step disc measurement dishes next are connected with the corresponding contact on replacement dish with the 3rd step disc measurement dish with the contact on replacement dish, and it makes pressure measuring instrument inner lead resistance, switch contact resistance and variation, thermoelectrical potential can both be ignored pressure measuring instrument impact.

Description

There is the pressure measuring instrument of five step discs
Technical field
The utility model relates to the instrument measured DC voltage.
Background technology
The current pressure measuring instrument for there being five step discs, in the connection between five step discs, telophragma generally adopts switching over, so just produces the variation of contact resistance, brings restriction to resolution.In order to overcome this problem, the large brush of general employing with enlarge active surface, and adopts silver-carbon/carbon-copper composite material; The new method that the pressure measuring instrument solution switch contact resistance that application number 200810121911.4 discloses five step discs is deteriorated, its five step discs are all coiled by measurement and replacement dish forms, not containing bracket panel, each measurement dish and replacement dish there is resistance, measurement dish on its five step discs and replacement dish constitute bridge circuit in circuit, its maximum defect is that error is not independent, once measurement coil certain some indicating value overproof, just cannot to determine which resistance is overproof to cause, this makes troubles to qualification and maintenance.
Utility model content
The purpose of this utility model is a kind of pressure measuring instrument having five step discs of design, and it does not adopt bridge circuit, and such error can be independent, and does not have resistance between rear two step disc contacts, and this can reduce costs, and reduces instrument volume.
The technical solution of the utility model is taked like this: pressure measuring instrument is from the external working power E positive pole terminal adjustable resistance R through 20 2.5 Ω resistant series be made up of of range of adjustment between 1 ~ 1.5V p1, the adjustable resistance R to be made up of 20 0.2 Ω resistant series p2, and the adjustable resistance R of range of adjustment between 0 ~ 0.3 Ω p3, through five step discs, set up resistance R to 101.8 Ω n, then through the adjustable resistance R of 0 ~ 0.2 Ω lockable sliding contact p4get back to the external working power E negative pole terminal composition pressure measuring instrument performance loop of range of adjustment between 1 ~ 1.5V, from unsaturated standard cell E nthe double-point double-throw switch K that positive pole is connected to galvanometer G between two normally closed contacts sets up resistance R to 101.8 Ω nand the adjustable resistance R of range of adjustment lockable sliding contact between 0 ~ 0.2 Ω p4, then through 200K Ω resistance R 0to unsaturated standard cell E nnegative pole composition pressure measuring instrument standard loop, for connecting measured " U x" two terminals, positive pole terminal is after five measurement dishes, then the double-point double-throw switch K being connected to galvanometer G between two normally closed contacts is to negative pole terminal composition pressure measuring instrument equalizing network, it is characterized in that the first step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish I with have 0, 1, 2, the replacement dish I ' composition of 10 totally 11 gears, 0.1 Ω resistance one is welded between measurement dish I with upper every two adjacent contacts of replacement dish I ', second step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish II with have 0, 1, 2, the replacement dish II ' composition of 10 totally 11 gears, 0.1 Ω resistance one is welded between measurement dish II with upper every two adjacent contacts of replacement dish II ', 3rd step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish III with have 0, 1, 2, the replacement dish III ' composition of 10 totally 11 gears, 0.1 Ω resistance one is welded between measurement dish III with upper every two adjacent contacts of replacement dish III ', " 0 " contact of measurement dish III is circuit node A, " 10 " contact of replacement dish III ' is circuit node B, by 112.49 Ω resistance R between node A and Node B 5connect, 4th step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish IV with have 0, 1, 2, the replacement dish IV ' composition of 10 totally 11 gears, 5th step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish V with have 0, 1, 2, the replacement dish V ' composition of 10 totally 11 gears, each contact in 4th step disc on measurement dish IV and replacement dish IV ', each contact in 5th step disc on measurement dish V and replacement dish V ', be connected with the corresponding contact of replacement dish III ' with measurement dish III in the 3rd step disc, the Metal Contact ring of the 3rd step disc measurement dish III and the Metal Contact interannular of the replacement dish III ' resistance R of 999 Ω 1connect, the Metal Contact ring of the 4th step disc measurement dish IV and the Metal Contact interannular of the replacement dish IV ' resistance R of 9999 Ω 2connect, the Metal Contact ring of the 5th step disc measurement dish V and the Metal Contact interannular of the replacement dish V ' resistance R of 100K Ω 3connect, it is synchronous when brush on each step disc measurement dish rotates with the brush on replacement dish, " 0 " contact of measurement dish III and node A connect " 0 " contact of measurement dish II, the Metal Contact ring of measurement dish II connects the Metal Contact ring of measurement dish I, " 10 " contact of replacement dish III ' and Node B connect " 10 " contact of replacement dish II ', and the Metal Contact ring of replacement dish II ' is through the resistance R of 7 Ω 6connect the Metal Contact ring of replacement dish I ', " 10 " contact of measurement dish I is by 11 Ω resistance R 4connect " 0 " contact of replacement dish I ', " 10 " contact of replacement dish I ' connects 101.8 Ω and sets up resistance R nhot end, " 0 " contact of measurement dish I connects adjustable resistance R p3cold end, for connecting measured " U x" two measure terminals, positive pole terminal is connected with " 0 " contact of measurement dish I, and negative pole terminal is connected with " 10 " contact of measurement dish III after being connected to the double-point double-throw switch K of galvanometer G between two normally closed contacts.
By above technical scheme, first, second, third step disc construction of switch is identical, and resistance is identical, and all there is no resistance between the 4th, the 5th step disc contact, this gives to produce and brings convenience with maintenance, also makes pressure measuring instrument structure simple, volume-diminished, thus reduce production cost.
Accompanying drawing explanation
Fig. 1 is a kind of schematic circuit of the present utility model.
In FIG, the adjustable resistance R of 20 × 2.5 Ω p1, represent adjustable resistance R p1on have 20 resistances to be resistant series of 2.5 Ω, in like manner, the adjustable resistance R of 20 × 0.2 Ω p2, represent adjustable resistance R p2on have 20 resistances to be resistant series of 0.2 Ω, 10 × 0.1 Ω on the first step disc, the second step disc, the 3rd step disc, represent and measurement dish and replacement dish have 10 resistances to be resistant series of 0.1 Ω,
In FIG, on step disc, thick black line represents Metal Contact ring, and hollow small circle represents hard contact, and four-headed arrow represents metallic brush.
Embodiment
In FIG, the resistance that every stepping is coiled in first, second step disc measurement to be increased equals the resistance that every stepping minimizing is coiled in replacement, so measurement dish is in rotation process, circuit always hinders constant; When in three step discs between node A, Node B, any one step disc rotates, the resistance that electric current flows through measurement dish to be increased equals the resistance that electric current flows through the minimizing of replacement dish, vice versa, so, what indicating value no matter rear three step discs put, and this step disc resistance value between node A and Node B is constant, and this can ensure what indicating value no matter rear three step discs put, each step disc resistance ratio is substantially constant, also ensures that the electric current of each step disc is substantially constant.
The current design that pressure measuring instrument standard operation electric current flows through between node A, B becomes 1mA, and working current is divided into four tunnels after node A: a road is through measurement dish III, and a road is through measurement dish IV, and a road is through measurement dish V, then a road is through 112.5 Ω resistance R 5, four road electric currents meet at Node B.Remove through resistance R 5outside branch road, each branch resistance ratio between node A, Node B: the 5th step disc: the 4th stepping: the 3rd step disc=100: 10: 1, so, except flowing through resistance R 5outside branch road, flowing through each branch current ratio between node A, Node B is: the 5th step disc: the 4th stepping: the 3rd step disc=1: 10: 100, except resistance R 5outside branch road, between node A, Node B, resistance is about 100K Ω/111, allows the total current flowing through measurement dish V, measurement dish IV and measurement dish III be 0.111mA, flows through resistance R 5electric current be 0.889mA, then 0.889mA × R 5=100K Ω/111 × 0.111mA, resistance R 5≈ 112.49 Ω.Pressure measuring instrument 1mA working current is through resistance R 5shunting, making to flow through measurement dish V electric current is 0.001mA, and measurement dish IV electric current is 0.01mA, and measurement dish III is 0.1mA; Resistance 100 Ω between node A, B, adds 1 Ω and the resistance R of the second step disc 67 Ω, totally 108 Ω, on first step disc measurement dish I and replacement dish I ' two brushes between resistance be 12 Ω, 108 Ω are its nine times, when pressure measuring instrument standard operation current design becomes 10mA, electric current between first step disc measurement dish I brush and replacement dish I ' brush is that 9mA, 1mA electric current flows through the second step disc and node A, Node B; At this moment each stepping of the first step disc is 1 × 10 -3mV, each stepping of the second step disc is 1 × 10 -4mV, each stepping of the 3rd step disc is 1 × 10 -5mV, each stepping of the 4th step disc is 1 × 10 -6mV, each stepping of the 5th step disc is 1 × 10 -7mV.
When after working current standardization, n thrown by I measurement dish 1, n thrown by II measurement dish 2, n thrown by III measurement dish 3, n thrown by IV measurement dish 4, n thrown by V measurement dish 5, K switch is thrown to the left side, and between two terminals being at this moment positioned at measurement, voltage is:
U X=10×0.1n 1+1×0.1n 2+0.1×0.1n 3+0.01×0.1n 4+0.001×0.1n 5(mV)
U X=n 1+0.1n 2+0.01n 3+0.001n 4+0.0001n 5(mV)
Pressure measuring instrument working current 10mA is larger, A-battery is adopted to be do not stablize, working power will adopt the continuously adjustable high stability stabilized voltage supply of YJ49b type 1 ~ 1.5V, this pressure measuring instrument adopts larger working current and this smaller resistance of 0.1 Ω, when being to measure small voltage, reduce the requirement to current detector sensitivity.
In standard loop, for avoiding loop current excessive, adopt 200K Ω resistance R 0carry out current limliting, the electromotive force due to unsaturated standard cell is discrete, and between 1.0188V ~ 1.0196V, standardized working current is 10 mA, therefore sets up resistance R nget 101.8 Ω, the lockable adjustable resistance R of additional 0 ~ 0.2 Ω p4, can the variation range of coverage criteria cell emf.
The standard operation electric current of pressure measuring instrument is such acquisition: 1mV standard signal voltage by polarity and pressure measuring instrument " U x" two measure terminal and connect, the total indicating value of each step disc of pressure measuring instrument is identical with standard signal magnitude of voltage, and double-point double-throw switch K throws to the left side, adjustment adjustable resistance R p1, adjustable resistance R p2and adjustable resistance R p3, make galvanometer G nulling; Again double-point double-throw switch K is thrown to the right, regulate adjustable resistance R p4, make galvanometer G nulling, then repeat once, adjustable resistance R p4locking, at this moment the working current of pressure measuring instrument is with regard to standardization, when instrument uses, first proofreads standard, when will carry out reading to reading dial, reading again after check and correction standard.

Claims (1)

1. have a pressure measuring instrument for five step discs, pressure measuring instrument is from the external working power E positive pole terminal adjustable resistance R through 20 2.5 Ω resistant series be made up of of range of adjustment between 1 ~ 1.5V p1, the adjustable resistance R to be made up of 20 0.2 Ω resistant series p2, and the adjustable resistance R of range of adjustment between 0 ~ 0.3 Ω p3, through five step discs, set up resistance R to 101.8 Ω n, then through the adjustable resistance R of 0 ~ 0.2 Ω lockable sliding contact p4get back to the external working power E negative pole terminal composition pressure measuring instrument performance loop of range of adjustment between 1 ~ 1.5V, from unsaturated standard cell E nthe double-point double-throw switch K that positive pole is connected to galvanometer G between two normally closed contacts sets up resistance R to 101.8 Ω nand the adjustable resistance R of range of adjustment lockable sliding contact between 0 ~ 0.2 Ω p4, then through 200K Ω resistance R 0to unsaturated standard cell E nnegative pole composition pressure measuring instrument standard loop, for connecting measured " U x" two terminals, positive pole terminal is after five measurement dishes, then the double-point double-throw switch K being connected to galvanometer G between two normally closed contacts is to negative pole terminal composition pressure measuring instrument equalizing network, it is characterized in that the first step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish I with have 0, 1, 2, the replacement dish I ' composition of 10 totally 11 gears, 0.1 Ω resistance one is welded between measurement dish I with upper every two adjacent contacts of replacement dish I ', second step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish II with have 0, 1, 2, the replacement dish II ' composition of 10 totally 11 gears, 0.1 Ω resistance one is welded between measurement dish II with upper every two adjacent contacts of replacement dish II ', 3rd step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish III with have 0, 1, 2, the replacement dish III ' composition of 10 totally 11 gears, 0.1 Ω resistance one is welded between measurement dish III with upper every two adjacent contacts of replacement dish III ', " 0 " contact of measurement dish III is circuit node A, " 10 " contact of replacement dish III ' is circuit node B, by 112.49 Ω resistance R between node A and Node B 5connect, 4th step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish IV with have 0, 1, 2, the replacement dish IV ' composition of 10 totally 11 gears, 5th step disc is by having 0, 1, 2, 10 totally 11 gears measurement dish V with have 0, 1, 2, the replacement dish V ' composition of 10 totally 11 gears, each contact in 4th step disc on measurement dish IV and replacement dish IV ', each contact in 5th step disc on measurement dish V and replacement dish V ', be connected with the corresponding contact of replacement dish III ' with measurement dish III in the 3rd step disc, the Metal Contact ring of the 3rd step disc measurement dish III and the Metal Contact interannular of the replacement dish III ' resistance R of 999 Ω 1connect, the Metal Contact ring of the 4th step disc measurement dish IV and the Metal Contact interannular of the replacement dish IV ' resistance R of 9999 Ω 2connect, the Metal Contact ring of the 5th step disc measurement dish V and the Metal Contact interannular of the replacement dish V ' resistance R of 100K Ω 3connect, it is synchronous when brush on each step disc measurement dish rotates with the brush on replacement dish, " 0 " contact of measurement dish III and node A connect " 0 " contact of measurement dish II, the Metal Contact ring of measurement dish II connects the Metal Contact ring of measurement dish I, " 10 " contact of replacement dish III ' and Node B connect " 10 " contact of replacement dish II ', and the Metal Contact ring of replacement dish II ' is through the resistance R of 7 Ω 6connect the Metal Contact ring of replacement dish I ', " 10 " contact of measurement dish I is by 11 Ω resistance R 4connect " 0 " contact of replacement dish I ', " 10 " contact of replacement dish I ' connects 101.8 Ω and sets up resistance R nhot end, " 0 " contact of measurement dish I connects adjustable resistance R p3cold end, for connecting measured " U x" two measure terminals, positive pole terminal is connected with " 0 " contact of measurement dish I, and negative pole terminal is connected with " 10 " contact of measurement dish III after being connected to the double-point double-throw switch K of galvanometer G between two normally closed contacts.
CN201420419440.6U 2014-07-24 2014-07-24 There is the pressure measuring instrument of five step discs Expired - Fee Related CN204065207U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104101756A (en) * 2014-07-24 2014-10-15 富阳兴远仪器仪表经营部 Voltage measuring apparatus with five stepping plates
CN106124825A (en) * 2016-08-17 2016-11-16 杭州戎密科技有限公司 There is the potential difference meter of five step discs

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104101756A (en) * 2014-07-24 2014-10-15 富阳兴远仪器仪表经营部 Voltage measuring apparatus with five stepping plates
CN104101756B (en) * 2014-07-24 2017-03-22 杭州戎密科技有限公司 Voltage measuring apparatus with five stepping plates
CN106124825A (en) * 2016-08-17 2016-11-16 杭州戎密科技有限公司 There is the potential difference meter of five step discs

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141231

Termination date: 20160724

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