US$849.00 · In stock Delivery: <= 6 days. True-PDF full-copy in English will be manually translated and delivered via email. JJG 125-2004: Verification Regulation of D.C.Bridges Status: Valid JJG 125: Evolution and historical versions
Standard ID | Contents [version] | USD | STEP2 | [PDF] delivered in | Standard Title (Description) | Status | PDF |
JJG 125-2004 | English | 849 |
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6 days [Need to translate]
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Verification Regulation of D.C.Bridges
| Valid |
JJG 125-2004
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JJG 125-1991 | English | RFQ |
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3 days [Need to translate]
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(Frequency selection (broadband) level meter test procedures)
| Obsolete |
JJG 125-1991
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JJG 125-1986 | English | RFQ |
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9 days [Need to translate]
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DC bridges
| Obsolete |
JJG 125-1986
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JJG 125-1976 | English | RFQ |
ASK
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3 days [Need to translate]
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(Chinese Industry Standard)
| Obsolete |
JJG 125-1976
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PDF similar to JJG 125-2004
Basic data Standard ID | JJG 125-2004 (JJG125-2004) | Description (Translated English) | Verification Regulation of D.C.Bridges | Sector / Industry | Metrology & Measurement Industry Standard | Classification of Chinese Standard | A55 | Classification of International Standard | 17.220 | Word Count Estimation | 33,370 | Date of Issue | 2004-09-21 | Date of Implementation | 2005-03-21 | Older Standard (superseded by this standard) | JJG 125-1986 | Quoted Standard | JJF 1059-1999; JJF 1015-2002; GB 4793-1995; GB 3930-1983; IEC 60564-1997 | Regulation (derived from) | 2004 technical regulations issued by national metrology (industrial measurement 2005 Volume 15, Issue 1) | Issuing agency(ies) | State Administration of Quality Supervision, Inspection and Quarantine | Summary | This standard applies to the resistance measurement limit of less than 10 ^ 8��, the level of accuracy equal to or less than 0. 005 resistive type DC bridge (hereinafter referred to as the bridge) initial verification, testing and use of the follow-up inspection. This procedure does not apply to automatic test bridge, semi-bridge, current comparator bridge, digital bridge and other special-purpose bridge. |
JJG 125-2004: Verification Regulation of D.C.Bridges---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Verification Regulation of DCBridges
National Metrology Verification Regulations of the People's Republic
DC bridge
DCBridges
Released on.2004-09-21
2005-03-21 implementation
The General Administration of Quality Supervision, Inspection and Quarantine issued
Replacing JJG 125-1986
This regulation was approved by the General Administration of Quality Supervision, Inspection and Quarantine on September 21,.2004, and
It will take effect on March 21,.2005.
Focal Point. National Electromagnetic Measurement Technical Committee
Main drafting unit. Shanghai Institute of Metrology and Testing Technology
Participated in the drafting unit. Shanghai Precision Scientific Instrument Co., Ltd.
Shanghai Instrument and Meter Research Institute
This procedure entrusts the National Electromagnetic Measurement Technical Committee to explain
The main drafters of this procedure.
Shi Xiaotao (Shanghai Institute of Metrology and Testing Technology)
Sheng Junliang (Shanghai Institute of Metrology and Testing Technology)
Xu Feng (Shanghai Institute of Metrology and Testing Technology)
Participate in the drafters.
Sang Shiming (Shanghai Precision Scientific Instrument Co., Ltd.)
Zhang Yinfu (Shanghai Instrument and Meter Research Institute)
table of Contents
1 Scope (1)
2 Citations (1)
3 Terms and definitions (1)
4 Overview (2)
5 Metrological performance requirements (2)
5.1 Basic error (2)
5.2 Accuracy level (2)
5.3 The requirements for the zero instrument are included (2)
5.4 Influence of insulation resistance on overall error (3)
6 General technical requirements (3)
6.1 Appearance, nameplate and line inspection (3)
6.2 Insulation resistance (3)
6.3 Dielectric strength test (3)
7 Measuring instrument control (4)
7.1 Verification conditions (4)
7.2 Verification project (7)
7.3 Verification method (7)
7.4 Processing of verification results (14)
7.5 Verification cycle (15)
Appendix A Measuring Bridge Resistance by Bridge Method (16)
Appendix B Measuring bridge resistance by displacement method (17)
Appendix C Measuring Resistance with Constant Current Source and Digital Voltmeter (19)
Appendix D Measuring Resistance with Potentiometer (20)
Appendix E Semi-overall verification and overall verification method for component verification bridge (22)
Appendix F DC Bridge Calibration Original Record Format (23)
Appendix G DC Bridge Verification Certificate Inner Page Format (25)
Appendix H Format of the DC Bridge Verification Result Notice (27)
DC bridge verification procedure
1 Scope
This procedure is applicable to resistors with an upper limit of resistance measurement less than 108 Ω and an accuracy level equal to or lower than 0.005.
The first verification, subsequent verification and in-use inspection of the current bridge (hereinafter referred to as the bridge).
This procedure does not apply to automatic bridges, semi-automatic bridges, current comparator bridges, digital bridges and other special applications.
Verification of the way bridge.
2 Citations
This procedure refers to the following documents
JJF1059-1999 "Measurement and Expression of Measurement Uncertainty"
JJF1015-2002 "General specification for measuring instruments"
GB 4793-1995 "Safety requirements for electrical equipment for measurement, control and laboratory"
GB 3930-1983 "DC Bridge for Measuring Resistance"
IEC 60564-1997 "Direct Current Bridge for Measuring Resistance"
When using this procedure, care should be taken to use the current valid version of the above cited documents.
3 Terms and definitions
3.1 Resistive DC Bridge
A combination of at least three resistive arms, plus a test resistor, forms a bridge network; when the bridge is in operation
A DC power supply and a zero gauge are also required, which may or may not be attached. Each bridge is balanced when the bridge is balanced
There is a computable relationship between the resistances of the devices.
Note. The two-terminal bridge refers to the bridge used to measure the two-terminal resistor; the four-terminal bridge is used to measure the four-terminal resistor.
Bridge.
3.2 Range Converter
a transfer switch or similar device by which the effective range can be multiplied by a factor called "range factor" or
The factor of "Range Magnification" (eg 0.1).
3.3 Effective range
For a given range factor, the bridge can measure between the lowest and highest resistance values with the specified accuracy
The range of resistance.
3.4 Total effective range
The range of total resistance values that can be measured with the specified accuracy using all range factors.
3.5 scale display value
The number of measuring discs after the bridge is balanced. When determining the resistance of the test resistor, multiply the range system if applicable
number.
3.6 Measuring plate
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