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How to use the oscillator

How to use the oscillator, Total:221 items.

In the international standard classification, How to use the oscillator involves: Construction materials, Structures of buildings, Electronic components in general, Piezoelectric and dielectric devices, Electricity. Magnetism. Electrical and magnetic measurements, Telecommunication terminal equipment, Integrated circuits. Microelectronics, Surface treatment and coating, Paint ingredients, Metrology and measurement in general, Measurement of volume, mass, density, viscosity, Physics. Chemistry, Semiconductor devices, Lubricants, industrial oils and related products, Water quality, Rubber, Adhesives, Lubrication systems, Paints and varnishes, Vocabularies, Components for electrical equipment, Transformers. Reactors, Electrical and electronic testing, Electromagnetic compatibility (EMC), Domestic electrical appliances in general, Corrosion of metals, Vibrations, shock and vibration measurements, Fuels, Hinges, eyelets and other articulated joints, Air quality, Fibre optic communications, Rubber and plastics products.


German Institute for Standardization, How to use the oscillator

  • DIN 4235-1:1978 Compacting of Concrete by Vibrating; Vibrators and Vibration Mechanics
  • DIN IEC 60679-2:1997 Quartz crystal controlled oscillators - Part 2: Guide to the use of quartz crystal controlled oscillators (IEC 60679-2:1981)
  • DIN 4235-5:1978 Compacting of Concrete by Vibrating; Compacting by Surface Vibrators
  • DIN 4235-4:1978 Compacting of Concrete by Vibrating; Compacting of In-situ by Formwork Vibrators
  • DIN IEC 60679-2:1997-09 Quartz crystal controlled oscillators - Part 2: Guide to the use of quartz crystal controlled oscillators (IEC 60679-2:1981)
  • DIN 4235-3:1978 Compacting of Concrete by Vibrating; Compacting by External Vibrators during the Manufacture of Precast Components
  • DIN EN 60679-6:2011 Quartz crystal controlled oscillators of assessed quality - Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guidelines (IEC 60679-6:2011); German version EN 60679-6:2011
  • DIN 4235-2:1978 Compacting of Concrete by Vibrating; Compacting by Internal Vibrators
  • DIN EN 17408:2020-11 Determination of the flowability and application behaviour of viscoelastic adhesives using the oscillatory rheometry; German version EN 17408:2020
  • DIN 53019-4:2016-10 Rheometry - Measurement of rheological properties using rotational rheometers - Part 4: Oscillatory rheology
  • DIN EN 62884-1:2018-02 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement (IEC 62884-1:2017); German version EN 62884-1:2017
  • DIN EN ISO 8780-2:1995-04 Pigments and extenders - Methods of dispersion for assessment of dispersion characteristics - Part 2: Dispersion using an oscillatory shaking machine (ISO 8780-2:1990); German version EN ISO 8780-2:1995
  • DIN EN 62884-2:2018-05 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 2: Phase jitter measurement method (IEC 62884-2:2017); German version EN 62884-2:2017
  • DIN EN IEC 62884-3:2018-10 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 3: Frequency aging test methods (IEC 62884-3:2018); German version EN IEC 62884-3:2018
  • DIN 53238-13:2000-10 Pigments and extenders - Method for assessment of ease of dispersion - Part 13: Dispersion in low viscous mediums using an oscillatory shaking machine
  • DIN EN 17408:2020 Determination of the flowability and application behaviour of viscoelastic adhesives using the oscillatory rheometry; German version EN 17408:2020
  • DIN EN IEC 62884-4:2020-02 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 4: Short-term frequency stability test methods (IEC 62884-4:2019); German version EN IEC 62884-4:2019
  • DIN EN 60444-11:2011 Measurement of quartz crystal unit parameters - Part 11: Standard method for the determination of the load resonance frequency f<(Index)L> and the effective load capacitance C<(Index)Leff> using automatic network analyzer techniques and error correction (
  • DIN EN 62884-1:2018 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement (IEC 62884-1:2017); German version EN 62884-1:2017

Professional Standard - Electron, How to use the oscillator

  • SJ/Z 9155.2-1987 Quartz crystal oscillator Part 2: Guide to the use of quartz crystal oscillator
  • SJ 2942-1988 Methods of measurement for level oscillators
  • SJ/T 10638-1995 Measurement methods for quartz crystal oscillators
  • SJ 20803-2001 Microwave circuits Measuring methods for voltage controlled oscillator
  • SJ/T 11457.2-2022 Waveguide Dielectric Resonators Part 2: Usage Guidelines for Oscillators and Filters

International Electrotechnical Commission (IEC), How to use the oscillator

  • IEC 60679-2:1981 Quartz crystal controlled oscillators. Part 2 : Guide to the use of quartz crystal controlled oscillators
  • IEC 60679-6:2011 Quartz crystal controlled oscillators of assessed quality - Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guide
  • IEC PAS 60679-6:2008 Quartz crystal controlled oscillators of assessed quality - Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guide
  • IEC 62860-1:2013 Test Methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • IEC 60679-1:1980 Quartz crystal controlled oscillators. Part 1 : General information, test conditions and methods
  • IEC 60679-1/AMD1:1985 Quartz crystal controlled oscillators. Part 1 : General information, test conditions and methods
  • IEC 62884-1:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement
  • IEC 62884-3:2018 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 3: Frequency aging test methods
  • IEC 62884-2:2017 Measurement techniques of piezoelectric, dieletric and electrostatic oscillators - Part 2: Phase jitter measurement method
  • IEC 60444-11:2010 Measurement of Quartz crystal unit parameters - Part 11: Standard method for the determination of the load resonance frequency fL and the effective load capacitance CLeff using automatic network analyzer technique and error correction
  • IEC 62884-4:2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 4 : Short-term frequency stability test methods

Korean Agency for Technology and Standards (KATS), How to use the oscillator

  • KS C IEC 60679-2:2018 Quartz crystal controlled oscillators — Part 2: Guide to the use of quartz crystal controlled oscillators
  • KS C IEC 60679-2-2023 Quartz Crystal Oscillator Part 2: A Guide to Using a Quartz Crystal Oscillator
  • KS C IEC 60679-6:2018 Quartz crystal controlled oscillators of assessed quality — Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators – Application guidelines
  • KS C IEC 60679-6-2023 Qualified Quartz Crystal Oscillators Part 6: Application Guidelines for Phase Jitter Measurement Methods for Quartz Crystal Oscillators and Surface Acoustic Wave Oscillators
  • KS M ISO 8780-2:2022 Pigments and extenders — Methods of dispersion for assessment of dispersion characteristics — Part 2: Dispersion using an oscillatory shaking machine
  • KS C IEC 62860-1:2018 Test methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • KS M ISO 8780-2-2007(2017) Pigments and extenders-Methods of dispersion for assessment of dispersion characteristics-Part 2:Dispersion using an oscillatory shaking machine
  • KS C IEC 62884-1:2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 1: Basic methods for the measurement
  • KS C IEC 62884-2:2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 2: Phase jitter measurement method
  • KS B ISO 5347-20_2001-2001(2011) Methods for the calibration of vibration and shock pick-ups-Part 20:Primary vibration calibration by the reciprocity method
  • KS M ISO 8780-2:2007 Pigments and extenders-Methods of dispersion for assessment of dispersion characteristics-Part 2:Dispersion using an oscillatory shaking machine
  • KS C IEC 62884-4:2022 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 4: Short-term frequency stability test methods
  • KS B ISO 5347-20_2001:2012 Methods for the calibration of vibration and shock pick-ups-Part 20:Primary vibration calibration by the reciprocity method
  • KS B 0713-1-2012 Methods for the calibration of vibration and shock pick-ups-Part 1:Primary vibration calibration by laser interferometry
  • KS B ISO 5347-22_2001-2016(2021) Methods for the calibration of vibration and shock pick-ups-Part 22:Accelerometer resonance testing-General methods
  • KS C 6913-1995 Test methods of optical isolators for light beam transmission
  • KS B ISO 5347-22:2001 Methods for the calibration of vibration and shock pick-ups-Part 22:Accelerometer resonance testing-General methods
  • KS B ISO 5347-22_2001:2001 Methods for the calibration of vibration and shock pick-ups-Part 22:Accelerometer resonance testing-General methods
  • KS M 6675-2016 Testing methods for fatigue properties of rubber materials for vibration isolators
  • KS M 6665-2011(2021) Testing method for dynamic properties of rubber materials for vibration isolators
  • KS M 6675-2016(2021) Testing methods for fatigue properties of rubber materials for vibration isolators
  • KS B 0713-2-2012 Methods for the calibration of vibration and shock pick-ups-Part 2 : Primary shock calibration by light cutting

KR-KS, How to use the oscillator

  • KS C IEC 60679-2-2018 Quartz crystal controlled oscillators — Part 2: Guide to the use of quartz crystal controlled oscillators
  • KS C IEC 60679-2-2018(2023) Quartz crystal controlled oscillators — Part 2: Guide to the use of quartz crystal controlled oscillators
  • KS C IEC 60679-6-2018(2023) Quartz crystal controlled oscillators of assessed quality — Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators – Application guidelines
  • KS C IEC 60679-6-2018 Quartz crystal controlled oscillators of assessed quality — Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators – Application guidelines
  • KS M ISO 8780-2-2022 Pigments and extenders — Methods of dispersion for assessment of dispersion characteristics — Part 2: Dispersion using an oscillatory shaking machine
  • KS C IEC 62860-1-2018 Test methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • KS C IEC 62860-1-2018(2023) Test methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • KS C IEC 62884-1-2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 1: Basic methods for the measurement
  • KS C IEC 62884-2-2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 2: Phase jitter measurement method
  • KS C IEC 62884-3-2023 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 3: Frequency aging test methods
  • KS C IEC 62884-4-2022 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators — Part 4: Short-term frequency stability test methods
  • KS B ISO 5347-22_2001-2016 Methods for the calibration of vibration and shock pick-ups-Part 22:Accelerometer resonance testing-General methods

Professional Standard - Post and Telecommunication, How to use the oscillator

Japanese Industrial Standards Committee (JISC), How to use the oscillator

  • JIS C 6710:2021 Generic specification and test methods of oscillators
  • JIS C 6790:2022 Load test of a bolt-clamped Langevin vibrator using wattmeter method

未注明发布机构, How to use the oscillator

  • DIN IEC 679-2:1997 Quartz crystal controlled oscillators; Part 2; Guide to the use of quartz crystal controlled oscillators
  • BS EN ISO 8780-2:1992(2000) Pigments and extenders — Methods of dispersion for assessment of dispersion characteristics — Part 2 : Dispersion using an oscillatory shaking machine

British Standards Institution (BSI), How to use the oscillator

  • BS EN 60679-6:2011 Quartz crystal controlled oscillators of assessed quality. Phase jitter measurement method for quartz crystal oscillators and SAW oscillators. Application guidelines
  • BS 9620:1975 Specification for quartz crystal oscillators of assessed quality: generic data and methods of test
  • BS EN ISO 15212-2:2002 Oscillation-type density meters — Part 2: Process instruments for homogenous liquids
  • BS EN ISO 8780-2:1995 Pigments and extenders. Methods of dispersion for assessment of dispersion characteristics. Dispersion using an oscillatory shaking machine
  • BS IEC 62860-1:2013 Test methods for the characterization of organic transistor-based ring oscillators
  • BS EN 62884-1:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Basic methods for the measurement
  • BS EN ISO 8780-2:1991 Pigments and extenders. Methods of dispersion for assessment of dispersion characteristics. Dispersion using an oscillatory shaking machine
  • BS EN 17408:2020 Determination of the flowability and application behaviour of viscoelastic adhesives using the oscillatory rheometry
  • BS ISO 12013-1:2012 Paints and varnishes. Determination of curing characteristics using a free damped oscillation method. Start temperature of the curing reaction
  • BS EN 62884-2:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Phase jitter measurement method
  • BS EN IEC 62884-3:2018 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators. Frequency aging test methods
  • BS EN IEC 62884-4:2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Short-term frequency stability test methods
  • BS DD CEN/TS 15149-1:2006 Solid biofuels - Methods for the determination of particle size distribution - Oscillating screen method using sieve apertures of 3, 15 mm and above
  • BS ISO 16063-12:2002 Methods for the calibration of vibration and shock transducers - Primary vibration calibration by the reciprocity method
  • PD ISO/TS 3550-3:2015 Cigarettes. Determination of loss of tobacco from the ends. Method using a vibro-bench
  • BS EN IEC 62969-2:2018 Semiconductor devices. Semiconductor interface for automotive vehicles - Efficiency evaluation methods of wireless power transmission using resonance for automotive vehicles sensors

Association Francaise de Normalisation, How to use the oscillator

  • NF EN 60679-6:2011 Oscillateurs pilotés par quartz sous assurance de la qualité - Partie 6 : méthode de mesure de la gigue de phase pour les oscillateurs à quartz et les oscillateurs SAW - Lignes directrices pour l'application
  • NF C93-620-6*NF EN 60679-6:2011 Quartz crystal controlled oscillators of assessed quality - Part 6 : phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guidelines
  • NF EN 14036:2004 Articles de puériculture - Nacelles à oscillation verticale - Exigences de sécurité et méthodes d'essai
  • NF T34-558-2*NF ISO 12013-2:2012 Paints and varnishes - Determination of curing characteristics using a free damped oscillation method - Part 2: glass transition temperature
  • NF EN 62884-1:2017 Techniques de mesure des oscillateurs piézoélectriques, diélectriques et électrostatiques - Partie 1 : méthodes fondamentales pour le mesurage
  • NF C93-621-11*NF EN 60444-11:2011 Measurement of quartz crystal unit parameters - Part 11 : standard method for the determination of the load resonance frequency fL and the effective load capacitance CLeff using automatic network analyzer techniques and error correction.
  • NF C93-684-3*NF EN IEC 62884-3:2018 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 3 : frequency aging test methods
  • NF C93-684-2*NF EN 62884-2:2017 Measurement techniques of piezoelectric, dieletric and electrostatic oscillators - Part 2 : phase jitter measurement method
  • NF EN IEC 62884-3:2018 Techniques de mesure des oscillateurs piézoélectriques, diélectriques et électrostatiques Partie 3 : méthodes d'essai de vieillissement en fréquence
  • NF EN 62884-2:2017 Techniques de mesure des oscillateurs piézoélectriques, diélectriques et électrostatiques - Partie 2 : méthode de mesure de la gigue de phase
  • NF T31-210-2*NF EN ISO 8780-2:1995 Pigments and extenders. Methods of dispersion for assessment of dispersion characteristics. Part 2 : dispersion using an oscillatory shaking machine.
  • NF C93-684-4*NF EN IEC 62884-4:2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 4 : short-term frequency stability test methods

IEC - International Electrotechnical Commission, How to use the oscillator

  • PAS 60679-6-2008 Quartz crystal controlled oscillators of assessed quality – Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators – Application guide (Edition 1.0)

Danish Standards Foundation, How to use the oscillator

  • DS/EN 60679-6:2011 Quartz crystal controlled oscillators of assessed quality - Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guidelines

CENELEC - European Committee for Electrotechnical Standardization, How to use the oscillator

  • EN 60679-6:2011 Quartz crystal controlled oscillators of assessed quality - Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guidelines
  • EN IEC 62884-3:2018 Measurement techniques of piezoelectric@ dielectric and electrostatic oscillators - Part 3: Frequency aging test methods
  • EN IEC 62884-4:2019 Measurement techniques of piezoelectric@ dielectric and electrostatic oscillators - Part 4 : Short-term frequency stability test methods

中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会, How to use the oscillator

  • GB/T 35011-2018 Microwave circuits—Measuring methods for voltage controlled oscillater

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, How to use the oscillator

  • GB/T 12275-1990 The rule of type designation for quarz crystal oscillators
  • GB 12275-1990 Quartz Crystal Oscillator Model Nomenclature
  • GB/T 43024.2-2023 Measurement techniques for piezoelectric, dielectric and electrostatic oscillators Part 2: Phase jitter measurement methods
  • GB/T 21868.2-2008 Pigments and extenders.Methods of dispersion for assessment of dispersion characteristics.Part 2:Dispersion using an oscillatory shaking machine
  • GB/T 13823.20-2008 Methods for the calibration of vibration and shock pick-ups-Accelerometer resonance testing-General methods
  • GB/T 13823.20-2008 Methods for the calibration of vibration and shock pick-ups-Accelerometer resonance testing-General methods

Lithuanian Standards Office , How to use the oscillator

  • LST EN 60679-6-2011 Quartz crystal controlled oscillators of assessed quality -- Part 6: Phase jitter measurement method for quartz crystal oscillators and SAW oscillators - Application guidelines (IEC 60679-6:2011)

IN-BIS, How to use the oscillator

American Society for Testing and Materials (ASTM), How to use the oscillator

  • ASTM F735-94 Standard Test Method for Abrasion Resistance of Transparent Plastics and Coatings Using the Oscillating Sand Method
  • ASTM F735-94(2001) Standard Test Method for Abrasion Resistance of Transparent Plastics and Coatings Using the Oscillating Sand Method
  • ASTM F735-17 Standard Test Method for Abrasion Resistance of Transparent Plastics and Coatings Using the Oscillating Sand Method
  • ASTM D7271-06(2020) Standard Test Method for Viscoelastic Properties of Paste Ink Vehicle Using an Oscillatory Rheometer
  • ASTM D7271-06 Standard Test Method for Viscoelastic Properties of Paste Ink Vehicle Using an Oscillatory Rheometer
  • ASTM D5706-05 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Greases Using A High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7421-16 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Oils Using High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7421-19 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Oils Using High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5706-16 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Greases Using A High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7271-06(2012) Standard Test Method for Viscoelastic Properties of Paste Ink Vehicle Using an Oscillatory Rheometer
  • ASTM D3987-06 Standard Test Method for Shake Extraction of Solid Waste with Water
  • ASTM D5706-97(2002)e1 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Greases Using A High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5706-97 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Greases Using A High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7421-08 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Oils Using High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7217-05(2010)e1 Standard Test Method for Determining Extreme Pressure Properties of Solid Bonded Films Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5706-05(2011)e1 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Greases Using A High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5706-11 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Greases Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7421-11 Standard Test Method for Determining Extreme Pressure Properties of Lubricating Oils Using High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7217-16 Standard Test Method for Determining Extreme Pressure Properties of Solid Bonded Films Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5707-05(2011)e1 Standard Test Method for Measuring Friction and Wear Properties of Lubricating Grease Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D2084-07 Standard Test Method for Rubber Property-Vulcanization Using Oscillating Disk Cure Meter
  • ASTM D2084-01 Standard Test Method for Rubber Property-Vulcanization Using Oscillating Disk Cure Meter
  • ASTM D2084-11 Standard Test Method for Rubber Propertymdash;Vulcanization Using Oscillating Disk Cure Meter
  • ASTM G32-98 Standard Test Method for Cavitation Erosion Using Vibratory Apparatus
  • ASTM G32-03 Standard Test Method for Cavitation Erosion Using Vibratory Apparatus
  • ASTM D7594-16 Standard Test Method for Determining Fretting Wear Resistance of Lubricating Greases Under High Hertzian Contact Pressures Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7594-19 Standard Test Method for Determining Fretting Wear Resistance of Lubricating Greases Under High Hertzian Contact Pressures Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM G32-09 Standard Test Method for Cavitation Erosion Using Vibratory Apparatus
  • ASTM D8227-18 Standard Test Method for Determining the Coefficient of Friction of Synchronizer Lubricated by Mechanical Transmission Fluids (MTF) Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D8227-20 Standard Test Method for Determining the Coefficient of Friction of Synchronizer Lubricated by Mechanical Transmission Fluids (MTF) Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7420-18 Standard Test Method for Determining Tribomechanical Properties of Grease Lubricated Plastic Socket Suspension Joints Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7420-17 Standard Test Method for Determining Tribomechanical Properties of Grease Lubricated Plastic Socket Suspension Joints Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5707-98(2003)e1 Standard Test Method for Measuring Friction and Wear Properties of Lubricating Grease Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5707-98 Standard Test Method for Measuring Friction and Wear Properties of Lubricating Grease Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5707-19 Standard Test Method for Measuring Friction and Wear Properties of Lubricating Grease Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D5707-16 Standard Test Method for Measuring Friction and Wear Properties of Lubricating Grease Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM G32-06 Standard Test Method for Cavitation Erosion Using Vibratory Apparatus
  • ASTM G32-16 Standard Test Method for Cavitation Erosion Using Vibratory Apparatus
  • ASTM G32-10 Standard Test Method for Cavitation Erosion Using Vibratory Apparatus
  • ASTM D7941/D7941M-23 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM D7217-22 Standard Test Method for Determining Extreme Pressure Properties of Solid Bonded Films Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
  • ASTM D7454-08 Standard Test Method for Determination of Vibrated Bulk Density of Calcined Petroleum Coke using a Semi-Automated Apparatus
  • ASTM D7454-14e1 Standard Test Method for Determination of Vibrated Bulk Density of Calcined Petroleum Coke using a Semi-Automated Apparatus
  • ASTM D5992-96(2001)e1 Standard Guide for Dynamic Testing of Vulcanized Rubber and Rubber-Like Materials Using Vibratory Methods
  • ASTM D5992-96(2006)e1 Standard Guide for Dynamic Testing of Vulcanized Rubber and Rubber-Like Materials Using Vibratory Methods
  • ASTM D7941/D7941M-14 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM C1176/C1176M-08 Standard Practice for Making Roller-Compacted Concrete in Cylinder Molds Using a Vibrating Table

RU-GOST R, How to use the oscillator

  • GOST 16863-1971 Measuring generators for frequency range 0,1-35 MHz. Methods and means of verification
  • GOST 12152-1966 Frequency characteristics meters and generators of fluctuating freqnency. Control methods
  • GOST R 50563.2-1993 Pigments and extenders. Methods of dispersion for assessment of dispersion characteristics. Dispersion using an oscillatory shaking machine
  • GOST 29179-1991 Electromagnetic compatibility of technical means. HUF equipment. Methods of measurements for side oscillations
  • GOST 27805-1988 Electric househould appliances. Method for measuring of vibration

Institute of Electrical and Electronics Engineers (IEEE), How to use the oscillator

  • IEC 62860-1:2013*IEEE Std 1620.1:2006 IEC/IEEE Test methods for the characterization of organic transistor-based ring oscillators
  • IEEE/IEC 62860-1-2013 IEC/IEEE Test methods for the characterization of organic transistor-based ring oscillators
  • IEC 62860-1:2013(E) IEEE Std. 1620.1-2006 IEC/IEEE Test methods for the characterization of organic transistor-based ring oscillators
  • IEEE Std 1620.1-2006 IEEE Standard for Test Methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • IEEE Std P1620.1/D8, Jul 2005 IEEE Draft Standard for Test Methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • IEEE P1871.1/D4, April 2014 IEEE Draft Recommended Practice for Using IEEE 1671.2 Instrument Description Templates for Describing Synthetic Instrumentation for Classes of Instruments Such as Waveform Generators, Digitizers, External Oscillators, and Up & Down Converters
  • IEEE Std 1871.1-2014 IEEE Recommended Practice for Using IEEE 1671.2(TM) Instrument Description Templates for Describing Synthetic Instrumentation for Classes of Instruments such as Waveform Generators, Digitizers, External Oscillators, and Up and Down Converters
  • IEEE P1871.1/D5, August 2014 IEEE Approved Draft Recommended Practice for Using IEEE 1671.2 Instrument Description Templates for Describing Synthetic Instrumentation for Classes of Instruments Such as Waveform Generators, Digitizers, External Oscillators, and Up & Down Converters

Military Standard of the People's Republic of China-General Armament Department, How to use the oscillator

  • GJB 3480-1998 Low-speed wind tunnel test method for aircraft model rotation and oscillation motion
  • GJB 3480A-2021 Low-speed wind tunnel test method for aircraft model rotation and oscillation motion
  • GJB 8547-2015 Multi-exciter vibration test method for military materiel
  • GJB 573.20-1988 Fuze environment and performance test methods tactical use vibration-temperature test

AENOR, How to use the oscillator

  • UNE-EN ISO 8780-2:1996 PIGMENTS AND EXTENDERS. METHODS OF DISPERSION FOR ASSESSMENT OF DISPERSION CHARACTERISTICS. PART 2: DISPERSION USING A OSCILLATORY SHAKING MACHINE. (ISO 8780-2:1990).

Standard Association of Australia (SAA), How to use the oscillator

  • AS 1683.22:2001 Methods of test for rubber - Determination of vulcaniztion characteristics using the oscillating disc curemeter
  • AS/NZS 3580.9.13:2022 Methods for sampling and analysis of ambient air, Method 9.13: Determination of suspended particulate matter — PM2.5 continuous direct mass method using a tapered element oscillating microbalance monitor
  • AS/NZS 3580.9.13:2013
  • AS 3580.9.8:2001 Methods for sampling and analysis of ambient air Method 9.8: Determination of suspended particulate matter--PM continuous direct mass method using a tapered element oscillating microbalance analyser
  • AS 3580.9.8:2022 Methods for sampling and analysis of ambient air, Method 9.8: Determination of suspended particulate matter — PM10 continuous direct mass method using a tapered element oscillating microbalance analyser
  • AS 3580.9.8:2008 Methods for sampling and analysis of ambient air - Determination of suspended particulate matter - PM10 continuous direct mass method using a tapered element oscillating microbalance analyser
  • AS 1289.3.7.1:2002(R2013)

ES-UNE, How to use the oscillator

  • UNE-EN 17408:2021 Determination of the flowability and application behaviour of viscoelastic adhesives using the oscillatory rheometry
  • UNE-EN 62884-1:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement (Endorsed by Asociación Española de Normalización in November of 2017.)
  • UNE-EN 62884-2:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 2: Phase jitter measurement method (Endorsed by Asociación Española de Normalización in January of 2018.)
  • UNE-EN IEC 62884-3:2018 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators – Part 3: Frequency aging test methods (Endorsed by Asociación Española de Normalización in June of 2018.)
  • UNE-EN IEC 62884-4:2019 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 4 : Short-term frequency stability test methods (Endorsed by Asociación Española de Normalización in August of 2019.)

TR-TSE, How to use the oscillator

  • TS 2619-1977 GENERAL METHODS OF TEST FOR PIGMENTS PART XX COMPARISON OF EASE OF DISPERSION (OSCILLATORY SHAKING METHOD)

International Organization for Standardization (ISO), How to use the oscillator

  • ISO 12013-2:2012 Paints and varnishes - Determination of curing characteristics using a free damped oscillation method - Part 2: Glass transition temperature
  • ISO 12013-1:2012 Paints and varnishes - Determination of curing characteristics using a free damped oscillation method - Part 1: Start temperature of the curing reaction
  • ISO 8780-2:1990 Pigments and extenders; methods of dispersion for assessment of dispersion characteristics; part 2: dispersion using an oscillatory shaking machine

American National Standards Institute (ANSI), How to use the oscillator

  • ANSI/IEEE 1620.1:2006 Standard for Test Methods for the Characterization of Organic Transistor-Based Ring Oscillators
  • ANSI/TIA/EIA 455-113-1996 Polarization-Mode Dispersion Measurement for Single-Mode Optical Fibers by the Fixed Analyzer Method

Taiwan Provincial Standard of the People's Republic of China, How to use the oscillator

  • CNS 3770-1989 Dimensions and Winding of Intermediate Frequency Transformer and Oscillator Coil for Transistor Radio

European Committee for Electrotechnical Standardization(CENELEC), How to use the oscillator

  • EN 62884-1:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 1: Basic methods for the measurement
  • EN 60444-11:2010 Measurement of quartz crystal unit parameters - Part 11: Standard method for the determination of the load resonance frequency fL and the effective load capacitance CLeff using automatic network analyzer techniques and error correction
  • EN 62884-2:2017 Measurement techniques of piezoelectric, dielectric and electrostatic oscillators - Part 2: Phase jitter measurement method

IEEE - The Institute of Electrical and Electronics Engineers@ Inc., How to use the oscillator

  • IEEE 1620.1-2006 Test Methods for the Characterization of Organic Transistor-Based Ring Oscillators (IEEE Computer Society)

TH-TISI, How to use the oscillator

  • TIS 1862.2-1999 Pigments and extenders.methods of dispersion for assessment of dispersion characteristics.part 2: dispersion using an oscillatory shaking machine

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., How to use the oscillator

European Committee for Standardization (CEN), How to use the oscillator

  • EN ISO 8780-2:1995 Pigments and Extenders - Methods of Dispersion for Assessment of Dispersion Characteristics - Part 2: Dispersion Using an Oscillatory Shaking Machine (ISO 8780-2: 1990)

工业和信息化部, How to use the oscillator

  • JB/T 13513-2018 Bench test method for cylindrical shock absorbers for low-speed vehicles




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