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JJF 1495-2014 English PDF

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JJF 1495-2014: Calibration Specification for Vector Network Analyzers
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Basic data

Standard ID JJF 1495-2014 (JJF1495-2014)
Description (Translated English) Calibration Specification for Vector Network Analyzers
Sector / Industry Metrology & Measurement Industry Standard
Classification of Chinese Standard A56
Classification of International Standard 17.220
Word Count Estimation 43,458
Date of Issue 11/17/2014
Date of Implementation 2/17/2015
Quoted Standard IEEE STANDARD 287
Regulation (derived from) The State Administration of Quality Supervision, Inspection and Quarantine Notice 2014 No. 125
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine
Summary This Standard applies to heterodyne vector network analyzer and an extension module extends the frequency range or the number of test ports heterodyne vector network analyzer calibration.

JJF 1495-2014: Calibration Specification for Vector Network Analyzers

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Calibration Specification for Vector Network Analyzers People's Republic of China National Metrology Technical Specifications Vector network analyzer calibration specification Issued on. 2014-11-17 2015-02-17 implementation The State Administration of Quality Supervision, Inspection and Quarantine released Vector network analyzer calibration specification Focal point. the National Radio Technical Commission metering Drafting units. China Institute of Metrology China Academy of Engineering Physics Metrology This specification commissioned the National Radio Technical Commission responsible for the interpretation of measurement The main drafters of this specification. Liuxin Meng (China Institute of Metrology) Huang Hui (China Institute of Metrology) Zhu Wei (China Academy of Engineering Physics Metrology) Drafters participate. Tracy Zhang (Chinese Academy of Engineering Physics Metrology) Wang Yi (China Academy of Engineering Physics Metrology)

table of Contents

Introduction (Ⅲ) 1 Scope (1) 2. References (1) 3 terminology and units of measurement (1) 3.1 heterodyne network analyzer (1) 3.2 Test Port (1) 3.3 Crosstalk test between the ports (1) 3.4 Test port noise floor (1) 3.5 the trace noise (1) 3.6 Dynamic accuracy (1) 3.7 Calibration member (1) 3.8 Test pieces (1) 4 Overview (2) 4.1 Purpose (2) 4.2 principles and structures (2) 5 Metrological characteristics (2) 5.1 internal source frequency range (2) 5.2 internal source power range (2) 5.3 the trace noise range (2) 5.4 background noise range (2) 5.5 Crosstalk range (2) 5.6 modulus dynamic range accuracy (2) 5.7 Calibration Kit characteristic range (2) 5.8 scattering parameter measurement range (3) 6 calibration conditions (3) Environmental conditions 6.1 (3) 6.2 standards and other measuring equipment (3) 7 calibration items and calibration methods (4) 7.1 List of calibration items (4) 7.2 appearance and work of inspection (5) 7.3 Internal frequency signal source (5) 7.4 internal power source (6) 7.5 the trace noise (7) 7.6 noise floor (7) Crosstalk 7.7 (8) 7.8 modulus dynamic accuracy (9) 7.9 Calibration member characteristics (12) 7.10 scattering parameter measurement accuracy (12) Expression 8 calibration results (14) 9 Recalibration interval (14) Appendix A calibration record format (15) Appendix B Calibration Certificate page format (22) Appendix C major projects Measurement Uncertainty (26)

Introduction

This specification based JJF 1071-2010 "National Calibration Specifications writing rules" and JJF 1059.1-2012 "Evaluation and Expression of Uncertainty in Measurement" establishment. This specification mainly for the frequency range 9kHz ~ 50GHz heterodyne vector network analyzer calibration method Has been stipulated, calibration include. Internal frequency signal source, the internal power source, the trace noise, the background noise Sound, crosstalk, dynamic modulus accuracy calibration characteristic pieces, scattering parameter measurement accuracy and so on. Given in the Appendix The trace noise, uncertainty of measurement of the background noise, the dynamic modulus accuracy calibration and other major projects evaluation instance. This specification is the first release. Vector network analyzer calibration specification

1 Scope

This instruction applies to heterodyne vector network analyzer and an extension module extends the frequency range of the measurement or test terminal Port number heterodyne vector network analyzer calibration. 2. References This specification references the following documents. IEEEStandard287 precision coaxial connector standard (DC ~ 110GHz) [StandardforPrecision CoaxialConnectors (DCto110GHz)] For dated references, only the edition used in the present specification; undated reference documents Member, the latest edition (including any amendments) applies to this specification.

3 terminology and units of measurement

3.1 heterodyne network analyzer heterodynenetworkanalyzer Using heterodyne or network analyzer superheterodyne receiver. 3.2 Test port testport Port for connection to the network under test, the test signal output and input of the vector network analyzer panel. 3.3 Test port crosstalk between testportcrosstalk Used to describe the path does not pass through the test port connection between the test signal from one test to another port leak The extent of the test port, commonly used in decibels (dB), referred to as crosstalk. 3.4 Test port noise floor testportnoisefloor Used to describe the equivalent input noise power network analyzer port, common units dBm, referred to as the Noise floor. 3.5 the trace noise tracenoise Used to describe the test signal input test port, affecting the background noise can be ignored, the scattering parameters shown Value (modulus and phase angle) fluctuation over time. Note. the trace module includes a noise value that the trace noise and phase noise trace sweep, sweep trace noise common mode value is expressed in decibels (dB), phase The trace noise common in degrees (°). 3.6 Dynamic accuracy dynamicaccuracy When used to describe a test port network analyzer to measure the incident power, the measurement accuracy is dependent on the measured signal (frequency Rate, power) degree, commonly used in decibels (dB). 3.7 Calibration member calibrationkit For vector network analyzer system calibration error from a set of standards, a self-calibration method is different from the standard group As also will be different. 3.8 Test pieces verificationkit