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JJG 353-2006 English PDF

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JJG 353-2006: Verification Regulation of 633nm Frequency Stabilized Lasers
Status: Valid

JJG 353: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
JJG 353-2006English469 Add to Cart 3 days [Need to translate] Verification Regulation of 633nm Frequency Stabilized Lasers Valid JJG 353-2006
JJG 353-1994English319 Add to Cart 3 days [Need to translate] Verification Regulation of Lamb Dip Stabilized He-Ne Laser Obsolete JJG 353-1994
JJG 353-1984EnglishRFQ ASK 3 days [Need to translate] (Chinese Industry Standard) Obsolete JJG 353-1984

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Basic data

Standard ID JJG 353-2006 (JJG353-2006)
Description (Translated English) Verification Regulation of 633nm Frequency Stabilized Lasers
Sector / Industry Metrology & Measurement Industry Standard
Classification of Chinese Standard A52
Classification of International Standard 17.040
Word Count Estimation 18,143
Date of Issue 2006-03-08
Date of Implementation 2006-09-08
Older Standard (superseded by this standard) JJG 353-1994
Quoted Standard State Administration of Quality Supervision, Inspection and Quarantine Notice 2006 No. 33
Regulation (derived from) State Administration of Quality Supervision, Inspection and Quarantine Notice 2006 No. 33
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine
Summary This standard applies to different types of 633nm laser frequency stabilization initial verification and follow-up examination. For a variety of frequency stabilization of the laser output wavelength 633nm wavelength in vacuum (frequency) values ??traceability and different sampling interval frequency stability measurements. Passed the test of 633nm laser frequency stabilization device can be used as a base standard interferometer light source for national, provincial (ministry) level and the enterprises and institutions of the various test, calibration devices interferometric measurement systems.

JJG 353-2006: Verification Regulation of 633nm Frequency Stabilized Lasers

---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 633nm Frequency Stabilized Lasers National Metrology Verification Regulations of the People's Republic 633nm frequency stabilization laser Released on.2006-03-08 2006-09-08 implementation The General Administration of Quality Supervision, Inspection and Quarantine issued 633nm frequency stabilization laser verification procedure 633nmFrequency Replace JJG 353-1994 This regulation was approved by the General Administration of Quality Supervision, Inspection and Quarantine on March 8,.2006, and since.2006. It will take effect on September 8th. Focal Point. National Geometric Length Measurement Technical Committee Drafted by. China Institute of Metrology This regulation entrusts the National Geometric Length Measurement Technical Committee to explain Drafters of this procedure. Qian Jin (China Institute of Metrology) Liu Xiuying (China Institute of Metrology) Shi Chunying (China Institute of Metrology)

table of Contents

1 Scope (1) 2 Citations (1) 3 Overview of the frequency stabilization principle of the 633nm stabilized laser detected (2) 4 Metrological performance requirements (2) 4.1 Average frequency value and vacuum wavelength value of the 633nm stabilized laser detected (2) 4.2 Relatively Extended Uncertainty of 633nm Stabilized Laser Wavelength (2) 4.3 Relative frequency stability (3) 5 General technical requirements (3) 5.1 signs (3) 5.2 Technical Information (3) 5.3 Structure and appearance (3) 5.4 Function keys (3) 6 measuring instrument control (3) 6.1 Verification conditions (3) 6.2 Verification project (4) 6.3 Verification method (4) 6.4 Processing of verification results (7) 6.5 verification period (7) Appendix A Verifying the Original Record Format (8) Appendix B Verification Certificate (inside page) format (9) Appendix C Format of the verification result (inside page) format (10) Appendix D Introduction to Various Stabilized Lasers (11) Appendix E Wavelength Relative Expansion Uncertainty of Different Interferometer Sources (12) Appendix F Relative Depth of Lasers in Lamb Depression (13) 633nm frequency stabilization laser verification procedure Meter is the basic length unit in the International System of Units (SI). The 17th International Metrology Conference in October 1983 (CGPM) passed the current m definition, ie "meter is light in vacuum, at intervals of 1/299,792,458 seconds The length of the internal propagation". At the same time, the original m definition was abolished. There are three methods for recurring the current m definition. ---l=c·t, that is, first measure the time t required for the plane electromagnetic wave to propagate over the distance l in the vacuum, and then c·t can find the measured length l; ---λ=cf , that is, measuring the frequency f of the plane electromagnetic wave, and then by cf Find the vacuum wavelength λ and use λ as the length standard; --- Directly refer to the 12 laser radiation lines recommended by the International Metrology Commission (see the cited literature for details) Vacuum wavelength value or frequency value and used according to the given uncertainty. This procedure uses the third method described above and selects 633nm stabilized on the saturated absorption line of iodine molecules. The He-Ne laser wavelength is used as a measurement standard. In.1992, the International Metrology Conference specified a relative standard uncertainty of 2.5×10-11 for the 633 nm laser wavelength reference. The laser interferometer as the base standard of the length measurement in the length measurement is calculated according to the emission wavelength of the light source. Length value. Various frequency-stabilized lasers as interferometer light sources have stable output wavelength (frequency) characteristics. It is the basic working condition to ensure the normal operation of the interferometer.

1 Scope

This procedure applies to the first verification and subsequent verification of different types of frequency-stabilized 633 nm lasers. Suitable for all kinds of The trace value of the vacuum wavelength (frequency) value of the output wavelength of the stabilized 633 nm laser and the different sampling intervals Measurement of frequency stability. The qualified 633nm frequency-stabilized laser can be used as the interferometer source of the standard equipment for national level, Provincial (department) level and interferometric measurement systems for various verification and calibration devices of enterprises and institutions.

2 Citations

This procedure refers to the following documents. DocumentsConcerningtheNewDefinitionoftheMeter, Metrologia, 19 (1984) 163. (the document of the definition of the new meter, the measurement, 19 volumes (1984) 163 pages.) MiseenPratiqueoftheDefinitionoftheMetre (1992), Metrologia, 30 (1994) 523. (Implementation method of the definition of the meter (1992), measurement, 30 volumes (1994) 523 pages.) PracticalRealization of the Definition of the Metre (1997), Metrologia, 36 (1997) 211. (Implementation of the definition of meters (1997), Measurement, Vol. 36 (1997) 211.)

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