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safe by design

safe by design, Total:226 items.

In the international standard classification, safe by design involves: Equipment for entertainment, Nuclear energy engineering, Buildings, Standardization. General rules, Safety of machinery, Sports equipment and facilities, Products of the chemical industry, Construction industry, Radiation protection, ENERGY AND HEAT TRANSFER ENGINEERING, Lifting equipment, Occupational safety. Industrial hygiene, Electrical equipment for working in special conditions, Hydraulic energy engineering, Hydraulic construction, Fluid power systems, Farm buildings, structures and installations, Protection against fire, Road engineering, Bridge construction, Earthworks. Excavations. Foundation construction. Underground works, Chipless working equipment, Cableway equipment, Industrial trucks, Electrical engineering in general, Rotating machinery, Agricultural machines, implements and equipment, Fasteners, Ground service and maintenance equipment, Shipbuilding and marine structures in general, Freight distribution of goods, Machine tool systems, Electric traction equipment, Railway rolling stock, Transport, Solar energy engineering, Mechanical structures for electronic equipment, Internal combustion engines for road vehicles.


Korean Agency for Technology and Standards (KATS), safe by design

Professional Standard - Nuclear Industry, safe by design

  • EJ/T 1200-2006 Safety criteria for decommissioning design of production reactor
  • EJ/T 1201-2006 Safety criteria for decommissioning design of spect fuel reprocessing plant
  • EJ/T 559-1991 Design Safety Principles and Basic Requirements for Nuclear Heating Stations
  • EJ/T 20042-2014 Design criteria for sodium cooled fast breeder reactor.Safety design

HU-MSZT, safe by design

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, safe by design

  • GB 50161-1992 Safety code for design of fireworks and firecracker plant
  • GB 50161-2009 Safety code for design of engineering of fireworks and firecracker
  • GB 50089-1998 Safety code for design of industrial explosive materials manufacturing plants
  • GB 50089-2007 Safety code for design of engineering of civil explosives materials
  • GB 50089-2018 Safety standards for engineering design of civil explosives
  • GB 17279-1998 Criteria for safe design of wet source storage gamma irradiators
  • GB 50154-1992 Safety code for design of underground and earth cover store of powders and explosives
  • GB 50154-2009 Code for safety design of underground and earth-covered gunpowder and explosive warehouses
  • GB/T 30175-2013 Safety of machinery.Guidance on the application of GB/T 16855.1 and GB 28526 in the design of safety-related control systems
  • GB/T 4064-1983 General guide for designing of electrical equipment to satisfy safety requirements
  • GB/T 25295-2010 Guidelines on safety disigns for electric equipments
  • GB/T 42157.1-2023 Non-integrated personnel working platforms for off-road forklifts Part 1: Design, safety requirements and verification
  • GB/T 23290-2009 Machine-tools safety - Safety requirements for the design and construction of work holding chucks
  • GB 23290-2009 Machine-tools safety.Safety requirements for the design and construction of work holding chucks
  • GB/T 28568-2012 Cabinets for electrotechnical and electronic equipment.Safety design requirements
  • GB 5083-1999 General rules for designing the production facilities in accordance with safety and health requirements

Professional Standard - Petrochemical Industry, safe by design

Professional Standard - Urban Construction, safe by design

  • GB 50161-2022 Fireworks and firecrackers engineering design safety standards

Danish Standards Foundation, safe by design

European Committee for Standardization (CEN), safe by design

  • EN 15288-1:2008 Swimming pools - Part 1: Safety requirements for design (Incorporates Amendment A1: 2010)
  • EN 13243:2015 Safety requirements for cableway installations designed to carry persons - Electrical equipment other than for drive systems
  • EN 15288-1:2008+A1:2010 Swimming pools - Part 1: Safety requirements for design
  • EN 12674-2:2001 Roll containers - Part 2: General design and safety principles

North Atlantic Treaty Organization Standards Agency, safe by design

  • STANAG 4433-2001 FIELD MORTAR MUNITIONS, DESIGN SAFETY REQUIREMENTS
  • STANAG 4519-2000 GAS GENERATORS, DESIGN SAFETY PRINCIPLES AND SAFETY AND SUITABILITY FOR SERVICE EVALUATION
  • STANAG 4608-2006 AMMUNITION BELOW 12.7mm CALIBRE - DESIGN SAFETY REQUIREMENTS AND SAFETY AND SUITABILITY FOR SERVICE (S3) EVALUATION
  • STANAG 4599-2007 WEAPON LAUNCHED GRENADE SYSTEMS - DESIGN SAFETY REQUIRMENTS AND SAFETY AND SUITABILITY FOR SERVICE EVALUATION
  • STANAG 4517-2007 LARGE CALIBRE ORDNANCE/MUNITION COMPATIBILITY, DESIGN SAFETY REQUIREMENTS AND SAFETY AND SUITABILITY FOR SERVICE EVALUATION
  • STANAG 4520-2003 RIFLE LAUNCHED GRENADES SYSTEMS, DESIGN SAFETY REQUIREMENTS AND SAFETY AND SUITABILITY FOR SERVICE EVALUATION
  • STANAG 4516-2001 CANNON (GREATER THAN 12.7mm), DESIGN SAFETY REQUIREMENTS AND SAFETY AND SUITABILITY FOR SERVICE EVALUATION OF THE WEAPON/MUNITION COMBINATION

Professional Standard - Chemical Industry, safe by design

  • HG 20532-1993 Safety and hygiene specifications for the powder engineering of chemical industry
  • HG 20532-1993(条文说明) Safety and Hygienic Regulations for Chemical Powder Engineering Design
  • HG/T 20532-1993 Safety and health regulations for chemical powder engineering design (with explanations)

Professional Standard-Safe Production, safe by design

  • AQ 4126-2018 Code for Safety Review of Fireworks and Firecrackers Engineering Design
  • AQ/T 3033-2010 Safety design management guidelines for chemical construction projects
  • AQ/T 3033-2022 Guidelines for Safety Design Management of Chemical Construction Projects

Military Standard of the People's Republic of China-General Armament Department, safe by design

  • GJB 843.26-1995 Safety regulations for submarine nuclear power plant design and control room design requirements
  • GJB 843.1-1990 General Principles of Safety Regulations for Design of Submarine Nuclear Power Plants
  • GJB 843.39-2002 Safety regulations for submarine nuclear power plant design and purification system design requirements
  • GJB 843.38-2002 Safety regulations for submarine nuclear power plant design and water supply system design requirements
  • GJB 843.32-1997 Safety regulations for submarine nuclear power plant design and reliable power supply design requirements
  • GJB 843.21-1994 Safety regulations for submarine nuclear power plant design Radiation shielding design criteria
  • GJB 843.12-1992 Safety regulations for submarine nuclear power plant design and instrument system design criteria
  • GJB 843.10-1992 Safety regulations for submarine nuclear power plant design and control system design criteria
  • GJB 843.14-1992 Safety regulations for submarine nuclear power plant design and power supply system design criteria
  • GJB 843.15-1992 Safety regulations for submarine nuclear power plant design and power distribution system design criteria
  • GJB 843.11-1992 Safety regulations for submarine nuclear power plant design and protection system design criteria
  • GJB 843.34-2000 Design safety regulations for submarine nuclear power plants Design requirements for pressure safety systems
  • GJB 843.35-2000 Safety regulations for submarine nuclear power plant design and safety injection system design requirements
  • GJB 843.36-2001 Safety regulations for submarine nuclear power plant design and equipment cooling water system design requirements
  • GJB 843.4-1990 Submarine nuclear power plant design safety regulations system and equipment chemical decontamination guidelines
  • GJB 843.33-1999 Safety regulations for submarine nuclear power plant design and emergency control point design requirements
  • GJB 843.29-1995 Secondary circuit cleaning requirements of submarine nuclear power plant design safety regulations
  • GJB 843.5-1990 Design of process radiation monitoring system for submarine nuclear power plant design safety regulations
  • GJB 843.6-1990 Design of safety regulations for submarine nuclear power plant design and cabin radiation monitoring system
  • GJB 843.37-2001 Safety regulations for submarine nuclear power plant design and design requirements for waste heat removal systems
  • GJB 843.22-1994 Safety regulations for submarine nuclear power plant design and radiation shielding structure design criteria
  • GJB 9549-2018 Safety requirements for design of factories and warehouses for composite solid propellants and their products
  • GJB 1329-1991 Safety design and safety appraisal criteria for aircraft carrier bombs
  • GJB 1329A-2021 Safety design and safety appraisal criteria for aircraft carrier bombs
  • GJB 843.20-1994 Safety regulations for submarine nuclear power plant design and design criteria for pressurized water reactor internals
  • GJB 843.18-1994 Safety regulations for submarine nuclear power plant design Nuclear design criteria for pressurized water reactors
  • GJB 843.2-1990 Design Safety Regulations for Submarine Nuclear Power Plants Reactor Pressure Vessel Design Criteria
  • GJB 843.16-1993 Safety regulations for submarine nuclear power plant design and primary circuit system layout design criteria
  • GJB 843.9-1992 Safety regulations for submarine nuclear power plant design General design criteria for pressurized water reactor structures
  • GJB 843.19-1994 Design Safety Regulations for Submarine Nuclear Power Plants Reactor Thermal Hydraulic Design Criteria
  • GJB 843.23-1994 Safety regulations for submarine nuclear power plant design, secondary circuit system and equipment design criteria
  • GJB 843.13-1992 Safety regulations for the design of submarine nuclear power plants. Design criteria for fuel handling equipment and storage facilities.
  • GJB 843.41-2004 Submarine Nuclear Power Plant Design Safety Regulations Reactor Coolant System Design Requirements
  • GJB 843.32A-2021 Safety regulations for the design of submarine nuclear power plants Part 32: Reliable power supply design requirements
  • GJB 843.12A-2021 Safety regulations for the design of submarine nuclear power plants Part 12: Instrument system design criteria
  • GJB 843.30-1996 Safety regulations for submarine nuclear power plant design and protection system internal isolation design criteria
  • GJB 843.15A-2004 Safety regulations for the design of submarine nuclear power plants Part 15: Design criteria for power distribution systems
  • GJB 843.8-1991 Safety regulations for submarine nuclear power plant design, reactor compartment and system design criteria
  • GJB 843.14A-2004 Safety regulations for the design of submarine nuclear power plants Part 14: Design criteria for power supply systems
  • GJB 843.10A-2021 Safety regulations for the design of submarine nuclear power plants Part 10: Control system design criteria
  • GJB 843.27-1995 Safety regulations for submarine nuclear power plant design, primary circuit system and its equipment design criteria
  • GJB 843.33A-2021 Safety Regulations for Design of Submarine Nuclear Power Plants Part 33: Design Requirements for Emergency Control Points
  • GJB 843.40-2003 Design safety regulations for submarine nuclear power plants Design criteria for reactor plate fuel assemblies
  • GJB 843.17-1993 Safety regulations for the design of submarine nuclear power plants Design criteria for radioactive waste disposal systems
  • GJB 843.17A-2003 Safety regulations for the design of submarine nuclear power plants Design criteria for radioactive waste disposal systems
  • GJB 843.24-1994 Design safety regulations for submarine nuclear power plants Design criteria for reactor control rod drive mechanisms
  • GJB 843.7A-2003 Submarine Nuclear Power Plant Design Safety Regulations Submarine Nuclear Power Plant Safety Functions and Equipment Classification
  • GJB 843.7-1991 Submarine Nuclear Power Plant Design Safety Regulations Submarine Nuclear Power Plant Safety Functions and Equipment Classification
  • GJB 843.20A-2005 Safety regulations for the design of submarine nuclear power plants - Part 20: Design criteria for pressurized water reactor internals
  • GJB 843.31-1997 Safety regulations for submarine nuclear power plant design and impact resistance design requirements for submarine reactor structures and equipment
  • GJB 843.28-1995 Design Safety Regulations for Submarine Nuclear Power Plants Design Criteria for Reactor Coolant System Main Equipment Support Parts
  • GJB 843.3-1990 Safety regulations for submarine nuclear power plant design and design criteria for the interface between nuclear steam supply system and power conversion system
  • GJB 843.25-1994 Safety regulations for submarine nuclear power plant design, design criteria for reactor fuel assemblies and fuel-related components
  • GJB 843.25A-2005 Design Safety Regulations for Submarine Nuclear Power Plants Part 25: Design Criteria for Reactor Fuel Assemblies and Fuel-Related Assemblies
  • GJB 843.31A-2005 Safety Regulations for Design of Submarine Nuclear Power Plants Part 31: Requirements for Mechanical Analysis of Reactors and Primary Circuit Systems and Equipment
  • GJB 3194-1998 Design Guidelines for Safety of Hand-Layed Weapons

Association Francaise de Normalisation, safe by design

  • NF S52-408-1*NF EN 15288-1:2018 Swimming pools for public use - Part 1 : safety requirements for design
  • NF EN 15288-1:2018 Piscines à usage public - Partie 1 : exigences de sécurité pour la conception
  • NF U57-002:2007 Agricultural greenhouses - Design-integrated safety for installation, maintenance and use operations.
  • NF E27-815-1:1997 Anchor bolts. Part 1 : general, terminology, design safety rules for anchor bolts joints.
  • NF S52-408-1:2008 Swimming pools - Part 1 : safety requirements for design.
  • NF S52-408-1:2010 Swimming pools - Part 1 : safety requirements for design.
  • NF S52-408-1/IN1:2010 Swimming pools - Part 1 : safety requirements for design.
  • NF ISO 12140-1:2020 Remorques agricoles et matériel traîné - Béquilles d'attelage - Partie 1 : sécurité par conception, méthode d'essai et critères d'acceptation
  • NF H50-501-2*NF EN 12674-2:2002 Roll containers - Part 2 : general design and safety principles
  • NF EN 12674-2:2002 Conteneurs à roulettes - Partie 2 : principes généraux de conception et de sécurité

German Institute for Standardization, safe by design

  • DIN EN 15288-1:2019 Swimming pools for public use - Part 1: Safety requirements for design
  • DIN EN 15288-1:2019-05 Swimming pools for public use - Part 1: Safety requirements for design; German version EN 15288-1:2018
  • DIN EN 15288-1/A1:2023-05 Swimming pools for public use - Part 1: Safety requirements for design; German and English version EN 15288-1:2018/prA1:2023 / Note: Date of issue 2023-04-14*Intended as an amendment to DIN EN 15288-1 (2019-05).
  • DIN 1055-100:2001 Actions on structures - Part 100: Basis of design, safety concept and design rules
  • DIN 3607-1:2023-05 Limescale protection devices for use in drinking water installations - Part 1: Requirements for design, safety and testing / Note: This standard is part of the DVGW body of rules.
  • DIN EN 15288-1:2008 Swimming pools - Part 1: Safety requirements for design; German version EN 15288-1:2008
  • DIN EN 12674-2:2002-03 Roll containers - Part 2: General design and safety principles; German version EN 12674-2:2001
  • DIN 5510-4:1988-10 Preventive fire protection in railway vehicles; vehicle design; safety requirements

ES-UNE, safe by design

Professional Standard - Technical Standards for Wind Farm Engineering, safe by design

  • FD 002-2007 Classification and design safety standard of windpower projects

SG-SPRING SG, safe by design

  • SS 497-2002 SPECIFICATION FOR Design, safe use and maintenance of overhead travelling cranes
  • SS 497-2011 Code of pracitce for design, safe use and maintenance of gantry cranes,overhead travelling cranes and monorail hoists
  • SS 497-2011 3125 Code of pracitce for design, safe use and maintenance of gantry cranes,overhead travelling cranes and monorail hoists

NATO - North Atlantic Treaty Organization, safe by design

  • STANAG 3525-1994 Design Safety Requirements - Airborne Fuzing Systems (ED 6 AMD 0; To obtain please contact your national Defense Standardization Office or the NATO Standardization Office website: http:/ so.nato.int so@ Phone: +32 (0)2 – 707 5556@ email: nso@nso.nato.int.
  • STANAG 3786-1985 Design Safety Principles and General Design Criteria for Airborne Dispenser Weapons (ED 2 AMD 3; To obtain please contact your national Defense Standardization Office or the NATO Standardization Office website: http:/ so.nato.int so@ Phone: +32 (0)2 – 707
  • STANAG 3525-1987 Design Safety Principles and General Design Criteria for Airborne Weapon Fuzing Systems (ED 5 AMD 0; To obtain please contact your national Defense Standardization Office or the NATO Standardization Office website: http:/ so.nato.int so@ Phone: +32 (0)2 –

Heilongjiang Provincial Standard of the People's Republic of China, safe by design

  • DB23/T 2572-2020 Safety code for design of dust removal system in wood processing industry

国家能源局, safe by design

  • NB/T 10101-2018 Wind farm engineering classification and design safety standards

PL-PKN, safe by design

  • PN H54559-1990 Foundry machinery and plant Machines for pressure die casting Designing safety requirements
  • PN H54558-1989 Foundry machinery and plant Moulding sand preparation machinery and e?uipment Desiging safety re?uirements

SAE - SAE International, safe by design

CU-NC, safe by design

  • NC 19-02-10-1987 Occupational Higiene and Safety Standards System. Wood Sanders. Safety Requirements for Design, Construction and Exploitation
  • NC 19-02-55-1988 Occupational Hygiene and Safety Standards System. Wood Millers. Safety Requirements for Design, Construction and Exploitation
  • NC 19-02-09-1987 Occupational Hygiene and Safety Standards System. Wood Circular Saws. Safety Requirements for Design, Construction and Exploitation
  • NC 19-02-06-1987 Occupational Hygiene and Safety Standards System. Wood Planers. Safety Requirements for Design, Construction and Exploitation

Professional Standard - Electricity, safe by design

Professional Standard - Energy, safe by design

  • NB/T 11102-2023 Classification and design safety standards of bio-natural gas engineering

Group Standards of the People's Republic of China, safe by design

  • T/BSRS 099-2023 Nuclear design safety evaluation methods for small fluoride salt-cooled high-temperature reactor
  • T/BSRS 102-2023 Shielding design safety evaluation method for small fluoride salt-cooled high-temperature Reactor
  • T/CECPA 002-2020 Evaluation and Validation Method for Nuclear Power Design and Safety Analysis Software

Liaoning Provincial Standard of the People's Republic of China, safe by design

  • DB21/T 2477-2015 Guidelines for Preliminary Design Safety Special Articles of Substation Construction Projects
  • DB21/T 2478-2015 Guidance for compiling a special chapter on safety in the preliminary design of wind farm construction projects

RU-GOST R, safe by design

  • GOST 12.2.101-1984 Occupational safety standards system. Pheumatic drives. General design safety requirements
  • GOST R IEC 60034-5-2007 Rotating electrical machines. Part 5. Classification of protection degrees provided by the integral design of rotating electrical machines (IP code)
  • GOST R 54125-2010 Safety of machinery and equipment. Principles for safety ensuring while designing
  • GOST R 56486-2015 Air transport. Safety management system of helicopter activity. Risk management. The standard guide on safety management system of helicopters design. Main provisions

Indonesia Standards, safe by design

  • SNI 03-3987-1995 Codes for design, installation of light fire extinguishers for fire protection in houses and buildings

British Standards Institution (BSI), safe by design

  • BS EN 15288-1:2018 Tracked Changes. Swimming pools for public use. Safety requirements for design
  • BS EN 15288-1:2008 Swimming pools - Part 1: Safety requirements for design
  • BS EN 15288-1+A1:2009 Swimming pools - Safety requirements for design
  • BS EN 15288-1:2008+A1:2010 Swimming pools - Safety requirements for design
  • BS ISO 18479-1:2015 Rough-terrain trucks. Non-integrated personnel work platforms. Design, safety requirements and verification
  • BS ISO 12140-1:2020 Agricultural trailers and trailed equipment. Drawbar jacks - Design safety, test methods and acceptance criteria
  • BS EN IEC 62443-3-2:2020 Security for industrial automation and control systems - Security risk assessment for system design
  • BS ISO 18154:2017 Ships and marine technology. Safety valve for cargo tanks of LNG carriers. Design and testing requirements
  • BS EN 12674-2:2002 Roll containers - General design and safety principles
  • PD IEC/TS 62915:2018 Photovoltaic (PV) modules. Type approval, design and safety qualification. Retesting
  • PD IEC TS 62915:2023 Photovoltaic (PV) modules. Type approval, design and safety qualification. Retesting
  • 19/30389931 DC BS ISO 12140-1. Agricultural machinery. Agricultural trailers and trailed equipment. Drawbar jacks. Part 1. Design safety, test methods and acceptance criteria
  • BS ISO 17842-1:2023 Safety of amusement rides and amusement devices - Design and manufacture

未注明发布机构, safe by design

  • GJB 843.34A-2018 Design Safety Regulations for Submarine Nuclear Power Plants Part 34: Design Requirements for Pressure Safety Systems
  • GJB 843.35A-2018 Safety regulations for the design of submarine nuclear power plants Part 35: Design requirements for safety injection systems
  • GJB 843.36A-2017 Safety regulations for the design of submarine nuclear power plants Part 36: Design requirements for water supply systems
  • GJB 843.36-2015 Safety regulations for the design of submarine nuclear power plants Part 36: Design requirements for water supply systems
  • GJB 843.37-2017 Safety regulations for the design of submarine nuclear power plants Part 37: Purification system design requirements
  • GJB 843.38-2018 Safety Regulations for Design of Submarine Nuclear Power Plants Part 38: Design Requirements for Equipment Cooling Water Systems
  • GJB 843.39-2018 Safety regulations for the design of submarine nuclear power plants Part 39: Design requirements for waste heat removal systems
  • DIN/TS 19689:2022 Water conditioning equipment inside buildings - Reduction in concentration of microorganisms - Requirements for design, safety and testing / Note: This standard is part of the DVGW body of rules.
  • GJB 843.18A-2017 Safety regulations for the design of submarine nuclear power plants Part 18: Nuclear design requirements for pressurized water reactors
  • GJB 843.2A-2017 Safety regulations for the design of submarine nuclear power plants Part 2: Design requirements for reactor pressure vessels
  • GJB 843.20A-2018 Safety regulations for the design of submarine nuclear power plants Part 20: Design criteria for pressurized water reactor internals
  • GJB 843.9A-2018 Safety regulations for the design of submarine nuclear power plants Part 9: Overall design criteria for pressurized water reactor structures
  • GJB 843.23A-2020 Design Safety Regulations for Submarine Nuclear Power Plants Part 23: Design Criteria for Secondary Circuit Systems and Equipment
  • GJB 843.41-2018 Safety Regulations for Design of Submarine Nuclear Power Plants Part 41: Design Requirements for Reactor Coolant Systems
  • GJB 843.40-2018 Safety Regulations for Design of Submarine Nuclear Power Plants Part 40: Design Guidelines for Reactor Plate Fuel Assemblies
  • GJB 843.24A-2017 Design Safety Regulations for Submarine Nuclear Power Plants Part 24: Design Requirements for Reactor Control Rod Driving Mechanisms
  • GJB 843.31A-2018 Safety Regulations for Design of Submarine Nuclear Power Plants Part 31: Mechanical Analysis Requirements for Safety Level I, II, and III Equipment and Systems
  • GJB 843.13A-2018 Safety regulations for the design of submarine nuclear power plants Part 13: Design criteria for reactor fuel handling and storage systems
  • GJB 843.28A-2018 Safety regulations for the design of submarine nuclear power plants Part 28: Design criteria for main equipment supports of reactor coolant systems

U.S. Military Regulations and Norms, safe by design

Beijing Provincial Standard of the People's Republic of China, safe by design

  • DB11/ 1067-2014 Code for safety risk assessment of urban rail transit civil engineering design

Anhui Provincial Standard of the People's Republic of China, safe by design

  • DB34/T 2288-2015 Safety Risk Assessment Guidelines for Construction Organization Design of Highway and Bridge Engineering

Shandong Provincial Standard of the People's Republic of China, safe by design

  • DB37/T 4445-2021 Code for safety risk assessment of urban rail transit civil engineering design

Military Standard of the People's Republic of China-Commission of Science,Technology and Industry for National Defence, safe by design

  • GJB 843.5A-2008 Safety code for submarine nuclear power plant design.design criteria of process radiation monitoring system
  • GJB 843.6A-2008 Safety code for submarine nuclear power plant design.design criteria of compartment radiation monitoring system
  • GJB 843.11A-2006 Safety code of design for submarine nuclear power plants Part 11: Design criteria for protection system
  • GJB 843.12A-2006 Safety code of design for submarine nuclear power plants Part 12: Design criteria for instrumentation system
  • GJB 843.21A-2006 Safety code of design for submarine nuclear power plants Part 21: Design criteria for radiation shielding
  • GJB 843.16A-2018 Safety code of design for submarine nuclear power plants Part 16: Arrangement design criterion for primary system
  • GJB 843.19A-2005 Safety code of design for submarine nuclear power plants part 19: Reactor thermal-hydraulic design criteria
  • GJB 843.16A-2006 Safety code of design for submarine nuclear power plants Part 16: Arrangement design criterion for primary system

Professional Standard - Military and Civilian Products, safe by design

  • WJ 2470-1997 Code for safety design of buildings with small quantities of gunpowder, explosives and their products dangerous

CZ-CSN, safe by design

Professional Standard - Aerospace, safe by design

  • QJ 2966-1997 General requirements for safe design and safe operation of missile and spacecraft pressure systems

NZ-SNZ, safe by design

  • MP 2801-1971 GUIDELINES ON THE SAFE DESIGN OF DOMESTIC EQUIPMENT

International Organization for Standardization (ISO), safe by design

  • ISO 18479-1:2015 Rough-terrain trucks - Non-integrated personnel work platforms - Part 1: Design, safety requirements and verification
  • ISO 12140-1:2020 Agricultural trailers and trailed equipment — Drawbar jacks — Part 1: Design safety, test methods and acceptance criteria

Society of Automotive Engineers (SAE), safe by design

Lithuanian Standards Office , safe by design

AENOR, safe by design

ITE - Institute of Transportation Engineers, safe by design

  • RP-026A-1998 Design and Safety of Pedestrian Facilities: An ITE Recommended Practice

US-FCR, safe by design

SE-SIS, safe by design

KR-KS, safe by design

  • KS B ISO 12140-1-2021 Agricultural trailers and trailed equipment — Drawbar jacks —Part 1: Design safety, test methods and acceptance criteria

ZA-SANS, safe by design

Taiwan Provincial Standard of the People's Republic of China, safe by design

  • CNS 12642-2005 Safety aspects of playground equipment - Design and installation

CN-STDBOOK, safe by design

National Aeronautics and Space Administration (NASA), safe by design

International Electrotechnical Commission (IEC), safe by design

  • IEC TS 62915:2018 Photovoltaic (PV) modules - Type approval, design and safety qualification - Retesting

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, safe by design

  • GB/T 33940-2017 Safety of machinery—Guide for safety design and lean manufacturing

IAEA - International Atomic Energy Agency, safe by design

AT-ON, safe by design

  • ONORM EN 289-1994 Rubber and plastics machinery. Compression and transfer moulding presses. Safety requirements for the design




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