Vacuum pump efficiency
Vacuum pump efficiency, Total:280 items.
The international standard classification for "Vacuum pump efficiency" includes: Vacuum technology , Reproduction equipment , Pumps , Energy and heat transfer engineering in general , Construction equipment .
The Chinese standard classification for "Vacuum pump efficiency" includes: Vacuum technique and equipment , Printing machinery , Pump , Stock and poultry raising machinery and tools , Technical management , Architectural engineering construction machinery , Other light industry machinery .
Professional Standard - Machinery
- JB/T 4081-2011 Vacuum technology - Sputter-ion pumps
- JB/T 5971-1992 Single stage multi-rotary vane vacuum pump
- JB/T 8472.1-1996 Performance measurement of vapor flow vacuum pump Part 1: Determination of pumping rate (volume flow rate)
- JB/T 8540-1997 Water vapor jet vacuum pump
- JB/T 53022-1999 Slide valve vacuum pump product quality classification
- JB/T 1246-2007 Vacuum technology-Rotary plunger vacuum pump
- JB/T 12585-2016 Vacuum technology―Magnetic levitated turbomolecular pump
- JB/T 7255-2007 Water ring vacuum pumps and compressors
- JB/T 8944-1999 Single stage rotary vane vacuum pump
- JB/T 7675-2005 Piston vacuum pump
- JB/T 8944-2010 Single stage rotary vane vacuum pumps
- JB/T 10771-2007 Vacuum technology-Hybrid molecular pumps
- JB/T 10552-2006 Vacuum technology-Claw dry vacuum pump
- JB/T 10770-2007 Vacuum technology-Acceptance specifications for liquid ring vacuum pumps
- JB/T 1246-2019 Vacuum technology-Rotary plunger vacuum pump
- JB/T 6533-1997 Rotary vane vacuum pump
- JB/T 8107-1999 Methods of measurement for mechanical vibation of positive - displacement vacuum pumps
- JB/T 3565-2006 Borehole shaft driven centrifugal pump-Efficiency
- JB/T 6921-1993 Roots vacuum pump unit
- JB/T 7265-1994 Vapor Flow Vacuum Pump
- JB/T 1246-1997 Slide valve vacuum pump
- JB/T 7265-2004 Vapour vacuum pumps
- JB/T 7255-2020 Water ring vacuum pumps and compressors
- JB/T 7675-2016 Piston vacuum pump
- JB/T 53017-1999 Rotary vane vacuum pump product quality classification
- JB/T 7674-2005 Roots vacuum pump
- JB/T 11716-2013 Vacuum technology - Screw dry vacuum pump
- JB/T 7255-1994 Water ring vacuum pumps and water ring compressors
- JB/T 53016-1999 Reciprocating vacuum pump product quality classification
- JB/T 7675-1995 reciprocating vacuum pump
- JB/T 11237-2011 Vacuum technology — Multi-stage Roots dry pumps
- JB/T 10462-2004 Water ejector vacuum pump
- JB/T 11238-2011 Vacuum technology — Efficiency of liquid- ring vacuum pumps
- JB/T 10770-2019 Vacuum technology-Acceptance specification for liquid ring vacuum pumps
- JB/T 8106-1999 Methods of measurement for noise emitted by positive - displacement vacuum pumps
- JB/T 5425-1991 Vacuum pressure composite air pump
- JB/T 53018-1999 Roots Vacuum Pump Product Quality Grading
- JB/T 7674-2017 Roots vacuum pump
- JB/T 9808-2013 Milking Machine Installations - Vacuum Pump
- JB/T 6921-2017 Roots vacuum pump system
- JB/T 8107-2011 Positive-displacement vacuum pump─Measuring methods for mechanical vibration
- JB/T 11081-2011 Vacuum technology — Refrigerator cooled cryopumps
- JB/T 3565-1992 Long shaft centrifugal deep well pump efficiency
- JB/T 9125-2007 Vacuum technology-Turbomolecular pumps
- JB/T 7674-1995 Roots vacuum pump
- JB/T 5425-2004 Vacuum pressure combined pump
- JB/T 8540-2013 Steam jet vacuum pumps
- JB/T 12586-2016 Vacuum technology. Wet roots vacuum pump
- JB/T 11080-2011 Vacuum technology - Scroll vacuum pump
- JB/T 8944-2019 Single stage rotary vane vacuum pumps
- JB/T 8540-2004 Water vapour jet vacuum pump
- JB/T 6533-2017 Sliding vane rotary vacuum pump
- JB/T 14164-2022 Minimum allowable values of energy efficiency and energy efficiency grades for water ring vacuum pumps and compressors
- JB/T 6921-2004 Roots vacuum pump system
- JB/T 6533-2005 Sliding vane rotary vacuum pump
Group Standards of the People's Republic of China
- T/CRES 0010-2022 Test method for optical efficiency of straight-though evacuated solar collector tube
- T/FSI 114-2023 275# high vacuum diffusion pump oil
- T/FSI 113-2023 274# high vacuum diffusion pump oil
- T/ZZB 2103-2021 Variable pitch Screw dry vacuum pump
- T/ZZB 0063-2016 Automobile electric vacuum pump
- T/SARI 0004-2019 The minimum allowable values of the energy efficiency and energy efficiency grades for water-source multi-connected air-conditioning (heat pump) unit
- T/ZZB 0310-2018 Rotary piston vacuum pump
- T/CAMER 028-2024 Variable pitch screw dry vacuum pump
工业和信息化部
- JBT10770-2019 Vacuum technology liquid ring vacuum pump acceptance specifications
- JBT8944-2019 Single stage rotary vane vacuum pump
- JBT1246-2019 Vacuum technology slide valve vacuum pump
Professional Standard - Agriculture
- JB/T 9808.1-1999 Technical conditions of milk vacuum pump
- JB/T 9808.2-1999 Vacuum Pump Used for Milking - Test Methods
- JB 3560-1984 centrifugal pump efficiency
- JB 3563-1984 centrifugal pump efficiency
- JB 3559-1984 centrifugal pump efficiency
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 40344.3-2024 Vacuum technology—Standard methods for measuring vacuum pump performance—Part 3: Specific parameters for mechanical booster vacuum pumps
- GB/T 22360-2008 Vacuum pumps - Safety requirements
- GB/T 33633-2017 Vacuum technology―Positive-displacement vacuum pump―Measurement of water vapour tolerance
- GB/T 21272-2007 Vapour vacuum pumps - Measurement of performance characteristics Measurement of back-streaming rate of pump fluid and the heating time
- GB/T 13007-2011 Centrifugal pump—Effeciency
- GB/T 32218-2015 Vacuum technology―Test methods for leak rates of vacuum system
- GB/T 13007-1991 Efficiencies for centrifugal pumps
- GB/T 40344.2-2021 Vacuum technology—Standard methods for measuring vacuum-pump performance— Part 2:Positive displacement vacuum pumps
- GB/T 21271-2007 Vacuum technology - Noise measurement for vacuum pumps
- GB 22360-2008 Vacuum pumps - Safety requirements
- GB 21454-2008 The Minimum Allowable Values of the IPLV and Energy Efficiency Grades for Multi-connected Air-condition (Heat Pump) Unit
未注明发布机构
- EEMUA PUB NO 151-1987 Liquid Ring Vacuum Pumps and Compressors
- JIS B 8323:1985 Water Ring Vacuum Pumps
Professional Standard - Construction Industry
- JG/T 5060.1-1995 Specifications for concrete vacuum dewatering facilities
Professional Standard - Petrochemical Industry
- SH/T 0528-1992 Mineral Vacuum Pump Oil
Professional Standard-Packaging
- BB/T 0028-2004 Pump
Shanghai Provincial Standard of the People's Republic of China
- DB31/ 640-2012 Minimum allowable values of the energy efficiency and energy efficiency grades for water-source multi-connected air-conditioning(heat pump) unit
Professional Standard - Light Industry
- QB/T 1702.7-1993 Vacuum Concentration Pan with Double Effect
Taiwan Provincial Standard of the People's Republic of China
- CNS 663-1967 Method of Test for Power and Efficiency of Water Pumps
National Metrological Technical Specifications of the People's Republic of China
- JJF 1770-2019 Rules of Metrology Testing for Energy Efficiency of Multi-connected Air-condition(heat pump) Units
CZ-CSN
- CSN 10 7065-1973 Methods of measuxement of -the perfor-mance characteristiCiS of diffusion, ejecbor and booster vaccuuin pum:ps,_ Measurement oí the volume rate of flow
Canadian Standards Association (CSA)
- CSA C273.3-M1977-1977 Efficiency of centralized heat pump air conditioners
- CSA TIL CA-04-1993 Appliances; Air Compressors and Vacuum Pumps; Component Acceptance Requirements for Component Air Compressors and Vacuum Pumps
- CAN/CSA-P.11-2007(C2013) Methode d'essai pour mesurer l'efficacité et la consommation énergétique des aérothermes à gaz
Ente Nazionale Italiano di Unificazione
- UNI EN 1012-2:1997 Compressors and vacuum pumps. Safety requirements. Vacuum pumps.
- UNI EN 1012-2:2009 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- UNI EN 16480:2021 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- UNI EN 1012-1:1997 Compressors and vacuum pumps. Safety requirements. Compressors.
- UNI EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
German Institute for Standardization
- DIN 28426-1:1983-08 Vacuum technology; acceptance specifications for rotary plunger vacuum pumps, sliding vane rotary vacuum pumps and rotary piston vacuum pumps for the ranges of rough and medium vacuum
- DIN EN 1012-2:1996-07 Safety requirements for compressors and vacuum pumps - Vacuum pumps
- DIN 28426-1:1983 Vacuum technology; acceptance specifications for rotary plunger vacuum pumps, sliding vane rotary vacuum pumps and rotary piston vacuum pumps for the ranges of rough and medium vacuum
- DIN 28400-2:1980-10 Vacuum technology; terms and definitions, vacuum pumps
- DIN EN 1012-2:2011-12 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps; German version EN 1012-2:1996+A1:2009
- DIN EN 1012-2:1996 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- DIN 28400-2:1980 Vacuum technology; terms and definitions, vacuum pumps
- DIN 53014-1:2019-03 Vacuum technology - acceptance specifications for liquid ring vacuum pumps
- DIN 28431:2019 Vacuum technology - acceptance specifications for liquid ring vacuum pumps
- DIN 28432:1996 Vacuum technology - Acceptance specifications for diaphragm vacuum pumps
- DIN 50937:2019-03 Vacuum technology - acceptance specifications for liquid ring vacuum pumps
- DIN 28431:2019-03 Vacuum technology - acceptance specifications for liquid ring vacuum pumps
- DIN EN 16480:2022-07 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI); German version EN 16480:2021
- DIN EN 16480:2022 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- DIN 28426-2:1976-03 Vacuum technology; acceptance specifications for roots vacuum pumps for the range of medium vacuum
- DIN 28432:1996-09 Vacuum technology - Acceptance specifications for diaphragm vacuum pumps
- DIN 28431:2018-05 Draft Document - Vacuum technology - acceptance specifications for liquid ring vacuum pumps
- DIN 28431 E:2018 Draft Document - Vacuum technology - acceptance specifications for liquid ring vacuum pumps
- DIN EN 16480 E:2014-06 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- DIN 28431:1987-01 Vacuum technology; acceptance specifications for liquid ring vacuum pumps
- DIN EN 16480:2017-07 Pumps - Minimum required efficiency of rotodynamic water pumps
- DIN 28426-2:1976 Vacuum technology; acceptance specifications for roots vacuum pumps for the range of medium vacuum
- DIN 28431 E:2018-05 Vacuum technology; acceptance specifications for liquid ring vacuum pumps
- DIN 28431:1987 Vacuum technology; acceptance specifications for liquid ring vacuum pumps
- DIN 28427:1983-02 Vacuum technology; acceptance specifications for diffusions pumps and vapour jet vacuum pumps for vapour pressures of the pump fluid <1 mbar
- DIN EN 1012-2:2010-02 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps (includes Amendment A1:2009)
- DIN EN 1012-2:2011 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps; German version EN 1012-2:1996+A1:2009
- DIN 28427:1983 Vacuum technology; acceptance specifications for diffusions pumps and vapour jet vacuum pumps for vapour pressures of the pump fluid
1 mbar - DIN EN 1012-2:2010 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps; German version EN 1012-2:1996+A1:2009
Association Francaise de Normalisation
- NF X10-501:1976 Vacuum technology. Vocabulary. Vacuum pumps.
- NF EN 1012-2+A1:2009 Compressors and vacuum pumps - Safety requirements - Part 2: vacuum pumps
- NF EN 1012-2/IN1:2009 Compressors and vacuum pumps - Safety requirements - Part 2: vacuum pumps
- NF X10-510-2:2012 Vacuum technology - Standard methods for measuring vacuum-pump performance - Part 2 : positive displacement vacuum pumps.
- NF E51-291:1996 Compressors and vacuum pumps. Safety requirements. Part 2 : vacuum pumps.
- NF E51-290-2/IN1*NF EN 1012-2/IN1:2009 Compressors and vacuum pumps - Safety requirements - Part 2 : vacuum pumps.
- NF X10-511:1971 Vacuum technology-positive-displacement vacuum pumps-measurement ofthe volume rate of flow (pumping speed).
- NF E51-290-2*NF EN 1012-2+A1:2009 Compressors and vacuum pumps - Safety requirements - Part 2 : Vacuum pumps.
- NF X10-510-4*NF ISO 21360-4:2018 Vacuum technology - Standard methods for measuring vacuum-pump performance - Part 4 : Turbomolecular vacuum pumps
- NF EN 16480:2021 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of the Minimum Efficiency Index (MEI)
- NF E44-404*NF EN 16480:2021 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- NF X10-515:1971 Vacuum technology. Vapour vacuum pumps. Measurement of the volume rate of flow (pumping speed).
- NF ISO 21360-3:2019 Technique du vide - Méthodes normalisées pour mesurer les performances des pompes à vide - Partie 3 : paramètres spécifiques aux pompes à vide intermédiaires mécaniques
- NF X10-510-3*NF ISO 21360-3:2019 Vacuum technology - Standard methods for measuring vacuum pump performance - Part 3 : specific parameters for mechanical booster vacuum pumps
- NF X10-512:1975 Vacuum technology - Positive-displacement vacuum pumps - Measurement of ultimate pressure.
- NF E44-404:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
- NF X10-502-2:2012 Vacuum technology - Vocabulary - Part 2 : vacuum pumps and related terms.
- NF X10-516:1975 Vacuum technology. Vapour vacuum pumps. Measurement of critical backing pressure.
United States Navy
- NAVY MIL-V-18683 A (1)-1986 VACUUM PUMPS, POWER DRIVEN, CENTRIFUGAL PUMP PRIMING SERVICE, NAVAL SHIPBOARD
- NAVY MIL-V-18683 A-1971 VACUUM PUMPS, POWER DRIVEN, CENTRIFUGAL PUMP PRIMING SERVICE, NAVAL SHIPBOARD
- NAVY MIL-V-15765 A-1952 VACUUM PUMP, ROTARY (FOR PHOTOGRAPHIC USE)
British Standards Institution (BSI)
- BS EN 1012-2:1996+A1:2009 Compressors and vacuum pumps - Safety requirements - Vacuum pumps
- BS EN 1012-2:1997 Compressors and vacuum pumps - Safety requirements - Vacuum pumps
- BS ISO 21360-6:2023 Vacuum technology. Standard methods for measuring vacuum-pump performance - Cryogenic vacuum pumps
- BS EN 1012-2+A1:1997 Compressors and vacuum pumps. Safety requirements. Vacuum pumps
- BS ISO 21360-2:2012 Vacuum technology. Standard methods for measuring vacuum-pump performance. Positive displacement vacuum pumps
- BS ISO 21360-2:2020 Vacuum technology. Standard methods for measuring vacuum-pump performance - Positive displacement vacuum pumps
- BS ISO 21360-4:2018 Vacuum technology. Standard methods for measuring vacuum-pump performance. Turbomolecular vacuum pumps
- BS ISO 21360-5:2023 Vacuum technology. Standard methods for measuring vacuum-pump performance - Non-evaporable getter (NEG) vacuum pumps
- BS ISO 3529-2:2020 Vacuum technology. Vocabulary - Vacuum pumps and related terms
- 22/30449831 DC BS ISO 21360-5. Vacuum technology. Standard methods for measuring vacuum-pump performance - Part 5. NEG vacuum pumps
- BS ISO 21360-3:2019 Vacuum technology. Standard methods for measuring vacuum pump performance - Specific parameters for mechanical booster vacuum pumps
- BS EN 16480:2021 Pumps. Rotodynamic pumps. Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- 22/30449834 DC BS ISO 21360-6. Vacuum technology. Standard methods for measuring vacuum-pump performance - Part 6. Cryo vacuum pumps
- 09/30176359 DC BS ISO 21360-2. Vacuum technology. Standard methods for measuring. vacuum-pump performance. Part 2. Positive displacement vacuum pumps
- BS EN 16480:2016 Pumps. Minimum required efficiency of rotodynamic water pumps
- BS ISO 21360-1:2020 Vacuum technology. Standard methods for measuring vacuum-pump performance - General description
- BS ISO 21360-1:2012 Vacuum technology. Standard methods for measuring vacuum-pump performance. General description
- 05/30133137 DC ISO 21360. Vacuum technology. Standard methods for measuring vacuum-pump performance. General description
- BS ISO 21360:2007 Vacuum technology. Standard methods for measuring vacuum-pump performance. General description
- 12/30227451 DC BS EN 16480. Pumps. Minimum required efficiency of rotodynamic water pumps
US-FCR
- FCR FED H-08-4 VOL 3 SEC II 612.4-1988 CONDENSATE PUMP & VACUUM PUMP
International Association of Plumbing and Mechanical Officials
- IAPMO PS 73-1993 Dental Vacuum Pumps
- IAPMO PS 73-2015 Dental Vacuum Pumps
Japanese Industrial Standards Committee (JISC)
- JIS B 8323:2003 Water ring vacuum pumps
- JIS B 8323:1995 Water ring vacuum pumps
- JIS B 8329-2:2015 Vacuum technology -- Standard methods for measuring vacuum-pump performance -- Part 2: Positive displacement vacuum pumps
- JIS Z 8127:1981 Vacuum technology-vocabulary (vacuum pumps and related terms)
- JIS B 8326:1985 Positive-displacement oil-sealed rotary vacuum pumps
- JIS Z 8126-2:1999 Vacuum technology -- Vocabulary -- Part 2: Vacuum pumps and related terms
- JIS B 8316:1994 Positive-displacement vacuum pumps -- Test methods
Korean Agency for Technology and Standards (KATS)
- KS B 6319-2009 Water ring vacuum pumps
- KS B 6319-1985 Water ring vacuum pumps
- KS A 3017-1988 Vacuum technology-Vocabulary(vacuum pumps and related terms)
- KS B 6324-1986 Positive-displacement Oil- sealed Rotary Vacuum Pumps
- KS A 3017-1988(2014) Vacuum technology-Vocabulary(vacuum pumps and related terms)
- KS B ISO 3529-2:2008 Vacuum technology - Vocabulary - Part 2: Vacuum pumps and related terms
- KS B ISO 3529-2-2008(2023) Vacuum technology-Vocabulary-Part 2:Vacuum pumps and related terms
- KS B ISO 3529-2-2008(2018) Vacuum technology-Vocabulary-Part 2:Vacuum pumps and related terms
- KS B ISO 3529-2-2023 Vacuum technology-Vocabulary-Part 2:Vacuum pumps and related terms
- KS B 6324-1986(2011) Positive-displacement Oil- sealed Rotary Vacuum Pumps
- KS B 6324-2013 Positive-displacement Oil- sealed Rotary Vacuum Pumps
- KS B ISO 16330:2005 Reciprocating positive displacement pumps and pump units-Technical requirements
- KS B ISO 16330:2013 Reciprocating positive displacement pumps and pump units-Technical requirements
- KS B 6930-2003(2023) Low vacuum pumps-Measurement of performance characteristics
- KS B 6930-2003(2018) Low vacuum pumps-Measurement of performance characteristics
- KS B 6930-2023 Low vacuum pumps-Measurement of performance characteristics
- KS B 6860-2009 Roots pumps-Acceptance test code
Swedish Institute for Standards
- SS-EN 1012-2+A1:2009 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- SS-EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
- SS-EN 16480:2021 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
Spanish Association for Standardization (UNE)
- UNE-EN 1012-2:1996+A1:2010 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- UNE-EN 1012-2:1996 COMPRESSORS AND VACUUM PUMPS. SAFETY REQUIREMENTS. PART 2: VACUUM PUMPS.
- UNE-EN 16480:2023 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- AENOR UNE-EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
International Organization for Standardization (ISO)
- ISO/DIS 21360-5 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 5: NEG vacuum pumps
- ISO/FDIS 21360-6:2023 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 6: Cryo vacuum pumps
- ISO 21360-6:2023 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 6: Cryo vacuum pumps
- ISO 21360-2:2012 Vacuum technology - Standard methods for measuring vacuum-pump performance - Part 2: Positive displacement vacuum pumps
- ISO/DIS 21360-6 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 6: Cryo vacuum pumps
- ISO 1607-1:1980 Positive-displacement vacuum pumps; Measurement of performance characteristics; Part 1 : Measurement of volume rate of flow (pumping speed)
- ISO 21360-2:2020 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 2: Positive displacement vacuum pumps
- ISO 21360-4:2018 Vacuum technology - Standard methods for measuring vacuum-pump performance - Part 4: Turbomolecular vacuum pumps
- ISO 21360-5:2023 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 5: Non-evaporable getter (NEG) vacuum pumps
- ISO/FDIS 21360-5:2023 Vacuum technology — Standard methods for measuring vacuum-pump performance — Part 5: Non-evaporable getter (NEG) vacuum pumps
- ISO 21360-3:2019 Vacuum technology — Standard methods for measuring vacuum pump performance — Part 3: Specific parameters for mechanical booster vacuum pumps
- ISO/CD 18107:2023 Seasonal efficiency rating for variable refrigerant flow air-to-air air-conditioners and air-to-air heat pumps
- ISO 3529-2:2020 Vacuum technology — Vocabulary — Part 2: Vacuum pumps and related terms
- ISO 16330:2003 Reciprocating positive displacement pumps and pump units - Technical requirements
- ISO 21360:2007 Vacuum technology - Standard methods for measuring vacuum-pump performance - General description
Gosstandart of Russia
- GOST R 52615-2006 Compressors and vacuum pumps. Safety requirements. Part 2. Vacuum pumps
- GOST 32974-2014 Vacuum technology. Standard methods for measuring vacuum-pump performance. Part 2. Positive displacement vacuum pumps
- GOST 32974.2-2023 Vacuum technology. Standard methods for measuring vacuum-pump performance. Part 2. Positive displacement vacuum pumps
- GOST 32974.4-2023 Vacuum technology. Standard methods for measuring vacuum pump performance. Part 4. Turbomolecular vacuum pumps
- GOST 25663-1983 Vacuum equipment. Mechanical vacuum pumps. Test methods
- GOST R 54807-2011 Vacuum technology. Standard methods for measuring vacuum-pump performance
- GOST 32974.3-2023 Vacuum technology. Standard methods for measuring vacuum pump performance. Part 3. Specific parameters for mechanical booster vacuum pumps
- GOST 33970-2016 Energy effectiveness. Centrifugal pumps for water. Evaluation of the minimal required efficiency and index of energy effectiveness
- GOST R 53335-2009 Vacuum equipment. Positive-displacement vacuum pumps. Measurement of performance characteristics. Part 1. Measurement of volume rate of flow (pumping speed)
- GOST 33969-2016 Energy effectiveness. Pumping system energy assessment
Semiconductor Equipment and Materials International (SEMI)
- SEMI E73-0301 (Reapproved 0307)-2007 SPECIFICATION FOR VACUUM PUMP INTERFACES - DRY PUMPS
- SEMI E74-0301 (Reapproved 0307)-2007 SPECIFICATION FOR VACUUM PUMP INTERFACES TURBOMOLECULAR PUMPS
Lithuanian Standards Office
- LST EN 1012-2-1999+A1-2010 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
Danish Standards Foundation
- DS/EN 1012-2+A1:2009 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- DS/EN 16480:2021 Pumps – Rotodynamic pumps – Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- DANSK DS/EN 16480:2016 Pumps – Minimum required efficiency of rotodynamic water pumps
The Directorate General of Specifications and Metrology (DGSM)
- OS GSO EN 1012-2:2011 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- OS GSO ISO 21360-2:2016 Vacuum technology -- Standard methods for measuring vacuum-pump performance -- Part 2: Positive displacement vacuum pumps
- OS GSO ISO 3529-2:2016 Vacuum technology -- Vocabulary -- Part 2: Vacuum pumps and related terms
Standards Norway
- NS-EN 1012-2:1996 Compressors and vacuum pumps — Safety requirements — Part 2: Vacuum Pumps
- NS-EN 1012-2:1996+A1:2009 Compressors and vacuum pumps — Safety requirements — Part 2: Vacuum pumps
- NS-EN 16480:2021 Pumps – Rotodynamic pumps – Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- NS-EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
Bureau of Indian Standards
- IS/ISO 21360-2-2020 Vacuum Technology Standard Method For Measuring Vacuum- Pump Performance - Part 2 Positive Displacement Vacuum Pumps
- IS 17292-2020 Pumps - Minimum Required Efficiency of Rotodynamic Water Pumps
- IS 4110-2-2023 Vacuum Technology Vocabulary - Part 2 Vacuum Pumps And Related Terms
GCC Standardization Organization
- GSO ISO 21360-2:2016 Vacuum technology -- Standard methods for measuring vacuum-pump performance -- Part 2: Positive displacement vacuum pumps
- GSO EN 16480:2024 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- GSO EN 16480:2021 Pumps – Minimum required efficiency of rotodynamic water pumps
- GSO ISO 3529-2:2016 Vacuum technology -- Vocabulary -- Part 2: Vacuum pumps and related terms
- GSO 1181:2023 Lubricating oils for air compressors and vacuum pumps
- GSO ISO 22712:2024 Refrigerating systems and heat pumps — Competence of personnel
European Committee for Standardization (CEN)
- EN 1012-2:1996+A1:2009 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps
- EN 16480:2016 Pumps - Minimum required efficiency of rotodynamic water pumps
- EN 16480:2021 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- EN 1012-2:1996 Compressors and vacuum pumps - Safety requirements - Part 2: Vacuum pumps (Incorporates Amendment A1: 2009)
IT-UNI
- UNI ISO 21360-2:2020 Vacuum technology -- Standard methods for measuring vacuum-pump performance - Part 2: Positive displacement vacuum pumps
- UNI ISO 21360-4:2020 Vacuum technology -- Standard methods for measuring vacuum-pump performance - Part 4: Turbomolecular vacuum pumps
- UNI ISO 21360-3:2020 Vacuum technology -- Standard methods for measuring vacuum pump performance - Part 3: Specific parameters for mechanical booster vacuum pumps
- UNI ISO 3529-2:2020 Vacuum technology -- Vocabulary - Part 2: Vacuum pumps and related terms
Military Standards (MIL-STD)
- MIL MIL-J-23049C-1986 JUGS, VACUUM OR INSULATED, THERMAL EFFICIENT (S/S BY A-A-52149)
- MIL MIL-DTL-83767C-2007 Lubricating Oil, Vacuum Pump, Mechanical
Kingdom of Bahrain Testing and Metrology Directorate
- BH GSO EN 16480:2024 Pumps - Rotodynamic pumps - Minimum required efficiency of water pumps and determination of Minimum Efficiency Index (MEI)
- BH GSO EN 16480:2022 Pumps – Minimum required efficiency of rotodynamic water pumps
- BH GSO ISO 3529-2:2017 Vacuum technology -- Vocabulary -- Part 2: Vacuum pumps and related terms
- BH GSO 1181:2023 Lubricating oils for air compressors and vacuum pumps
Defense Logistics Agency
- DLA MIL-DTL-83767 C (1)-2012 LUBRICATING OIL, VACUUM PUMP, MECHANICAL
Hydraulic Institute (HI)
- HI 20.3-2020 Rotodynamic Pump Efficiency Prediction
- HI 20.3-2015 Rotodynamic Pump Efficiency Prediction
- HI 40.6-2021 Methods for Rotodynamic Pump Efficiency Testing
- HI 40.6-2014 Methods for Rotodynamic Pump Efficiency Testing
- HI 40.6-2016 Methods for Rotodynamic Pump Efficiency Testing
GB-REG
- REG NASA-LLIS-0216-1993 Lessons Learned - Altitude Tanks Vacuum Pumps
- REG NASA-LLIS-0488-1997 Lessons Learned - Vacuum Pump Outlet Hazard
American National Standards Institute (ANSI)
- ANSI/HI 20.3-2020 Efficiency prediction of rotodynamic pumps
- ANSI HI 20.3-2015 Rotodynamic Pump Efficiency Prediction Guide
- ANSI HI 40.6-2016 Test method for efficiency of rotodynamic pumps
- ANSI/HI 40.6-2021 Methods for Rotodynamic Pump Efficiency Testing
AT-ON
- ONORM ISO 3529 Teil.2:1984 Vacuum technology; terms and definitions; vacuum pumps and related terms
RO-ASRO
- STAS 10391-1975 POWER ACTUATED VACUUM PUMPS Classification
- STAS SR ISO 3529-2:1996 Vacuum technology - Vocabulary -Part 2: Vacuum pumps and relates terms
efficiency test,Diffraction efficiency,Thermal efficiency,Anti-corrosion efficiency,discharge efficiency,vacuum efficiency,efficiency loss,Detection efficiency,biological efficiency,efficiency curve,iec efficiency,slope efficiency,Sample efficiency,station efficiency,Vacuum pump efficiency,vacuum pump vacuum pump,Quantum Efficiency and Optical Efficiency,vacuum pump vacuum pump,Efficiency of the vacuum pump,Vacuum pump efficiency