ISO/TR 22100-1:2015
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
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Safety of machinery Relationship with ISO 12100 Part 1: How ISO 12100 relates to type-B and type-C standards
Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users
02-02-2021
English
05-21-2015
ISO/TR 22100-1:2015 provides assistance to the designer/manufacturer of machinery and related components as to how the system of existing type-A, type-B and type-C machinery safety standards should be applied in order to design a machine to achieve a level of tolerable risk by adequate risk reduction.
It explains the general principles of ISO 12100 and how this type-A standard should be used for practical cases in conjunction with type-B and type-C machinery safety standards.
ISO/TR 22100-1:2015 provides assistance to standards writing committees on how ISO 12100 and type-B and type-C standards relate and explains their function in the risk assessment and risk reduction process according to ISO 12100.
It includes an overview of existing categories of type-B standards to assist standards readers and writers to navigate the many standards.
DocumentType |
Technical Report
|
Pages |
16
|
PublisherName |
International Organization for Standardization
|
Status |
Withdrawn
|
SupersededBy |
Standards | Relationship |
DIN ISO/TR 22100-1;DIN SPEC 33886:2016-07 | Identical |
CEN ISO/TR 22100-1:2017 | Identical |
SIS-CEN ISO/TR 22100-1 : 2017 | Identical |
NEN NPR CEN ISO/TR 22100-1 : 2017 | Identical |
S.R. CEN ISO/TR 22100-1:2017 | Identical |
PD CEN ISO/TR 22100-1:2017 | Identical |
PNE-FprCEN ISO/TR 22100-1 | Identical |
NEN NPR ISO/TR 22100-1 : 2015 | Identical |
CEI EN IEC 62061:2023 | Safety of machinery - Functional safety of safety-related control systems |
ISO 13855:2010 | Safety of machinery Positioning of safeguards with respect to the approach speeds of parts of the human body |
ISO 11202:2010 | Acoustics Noise emitted by machinery and equipment Determination of emission sound pressure levels at a work station and at other specified positions applying approximate environmental corrections |
ISO 11200:2014 | Acoustics Noise emitted by machinery and equipment Guidelines for the use of basic standards for the determination of emission sound pressure levels at a work station and at other specified positions |
ISO 7010:2011 | Graphical symbols Safety colours and safety signs Registered safety signs |
ISO 4871:1996 | Acoustics — Declaration and verification of noise emission values of machinery and equipment |
ISO 14119:2013 | Safety of machinery — Interlocking devices associated with guards — Principles for design and selection |
ISO 3744:2010 | Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering methods for an essentially free field over a reflecting plane |
ISO 11161:2007 | Safety of machinery — Integrated manufacturing systems — Basic requirements |
ISO 20643:2005 | Mechanical vibration — Hand-held and hand-guided machinery — Principles for evaluation of vibration emission |
ISO 14120:2015 | Safety of machinery Guards General requirements for the design and construction of fixed and movable guards |
ISO 13732-1:2006 | Ergonomics of the thermal environment — Methods for the assessment of human responses to contact with surfaces — Part 1: Hot surfaces |
ISO 4413:2010 | Hydraulic fluid power General rules and safety requirements for systems and their components |
IEC 60204-1:2016 | Safety of machinery - Electrical equipment of machines - Part 1: General requirements |
ISO 14738:2002 | Safety of machinery — Anthropometric requirements for the design of workstations at machinery |
ISO 3747:2010 | Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering/survey methods for use in situ in a reverberant environment |
ISO 11957:1996 | Acoustics — Determination of sound insulation performance of cabins — Laboratory and in situ measurements |
ISO 14118:2000 | Safety of machinery Prevention of unexpected start-up |
ISO 13851:2002 | Safety of machinery Two-hand control devices Functional aspects and design principles |
ISO 14123-1:2015 | Safety of machinery Reduction of risks to health resulting from hazardous substances emitted by machinery Part 1: Principles and specifications for machinery manufacturers |
ISO 12100:2010 | Safety of machinery — General principles for design — Risk assessment and risk reduction |
ISO 7731:2003 | Ergonomics Danger signals for public and work areas Auditory danger signals |
ISO/TR 14121-2:2012 | Safety of machinery — Risk assessment — Part 2: Practical guidance and examples of methods |
ISO 11205:2003 | Acoustics — Noise emitted by machinery and equipment — Engineering method for the determination of emission sound pressure levels in situ at the work station and at other specified positions using sound intensity |
ISO/IEC Guide 51:2014 | Safety aspects — Guidelines for their inclusion in standards |
ISO 14159:2002 | Safety of machinery — Hygiene requirements for the design of machinery |
ISO 3746:2010 | Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Survey method using an enveloping measurement surface over a reflecting plane |
ISO 13849-2:2012 | Safety of machinery — Safety-related parts of control systems — Part 2: Validation |
ISO 13857:2008 | Safety of machinery Safety distances to prevent hazard zones being reached by upper and lower limbs |
ISO 11203:1995 | Acoustics — Noise emitted by machinery and equipment — Determination of emission sound pressure levels at a work station and at other specified positions from the sound power level |
ISO 3864-1:2011 | Graphical symbols Safety colours and safety signs Part 1: Design principles for safety signs and safety markings |
ISO 13854:2017 | Safety of machinery — Minimum gaps to avoid crushing of parts of the human body |
ISO 4414:2010 | Pneumatic fluid power General rules and safety requirements for systems and their components |
ISO 13850:2015 | Safety of machinery Emergency stop function Principles for design |
IEC 61310-1:2007 | Safety of machinery - Indication, marking and actuation - Part 1: Requirements for visual, acoustic and tactile signals |
ISO 3741:2010 | Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Precision methods for reverberation test rooms |
ISO 13753:1998 | Mechanical vibration and shock — Hand-arm vibration — Method for measuring the vibration transmissibility of resilient materials when loaded by the hand-arm system |
ISO 3745:2012 | Acoustics — Determination of sound power levels and sound energy levels of noise sources using sound pressure — Precision methods for anechoic rooms and hemi-anechoic rooms |
ISO 15536-1:2005 | Ergonomics Computer manikins and body templates Part 1: General requirements |
ISO 11145:2016 | Optics and photonics Lasers and laser-related equipment Vocabulary and symbols |
ISO 13849-1:2015 | Safety of machinery — Safety-related parts of control systems — Part 1: General principles for design |
ISO 11201:2010 | Acoustics Noise emitted by machinery and equipment Determination of emission sound pressure levels at a work station and at other specified positions in an essentially free field over a reflecting plane with negligible environmental corrections |
ISO 11204:2010 | Acoustics Noise emitted by machinery and equipment Determination of emission sound pressure levels at a work station and at other specified positions applying accurate environmental corrections |
ISO Guide 78:2008 | Safety of machinery Rules for drafting and presentation of safety standards |
ISO 19353:2015 | Safety of machinery Fire prevention and fire protection |
ISO 14123-2:2015 | Safety of machinery Reduction of risks to health resulting from hazardous substances emitted by machinery Part 2: Methodology leading to verification procedures |
ISO 3743-1:2010 | Acoustics Determination of sound power levels and sound energy levels of noise sources using sound pressure Engineering methods for small movable sources in reverberant fields Part 1: Comparison method for a hard-walled test room |
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