Functional Safety and IEC 61508); IEC 61508-6:2010 EN-FR 23263e43 Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 6: Guidelines on the application of IEC 61508-2 and IEC 61508-3 (see Functional Safety and IEC 61508); ASTM D4003-98(2019)e1 Standard Test Methods for Programmable Horizontal Impact Test for Shipping Containers and Systems; ASTM D4003-98(2019)e1 Standard Test Methods for Programmable Horizontal Impact Test for Shipping Containers and Systems; IEC 60488-1:2004 EN 9ae282a2 Higher performance protocol for the standard digital interface for programmable instrumentation - Part 1: General; IEC 60488-2:2004 EN 95597e4b Standard digital interface for programmable instrumentation - Part 2: Codes, formats, protocols and common commands; DIN EN IEC 61131-3 Programmable controllers - Part 3: Programming languages (IEC 65B/1229/CDV:2023); German and English version prEN IEC 61131-3:2023; DIN EN 61131-10 Programmable controllers - Part 10: XML Exchange Formats for Programs according to IEC 61131-3 (IEC 65B/1070/CD:2017); Text English; DIN ETS 300777-3 Terminal Equipment (TE) - End-to-end protocols for multimedia information retrieval services - Part 3: Application Programmable Interface (API) for MHEG-5; English version ETS 300777-3:1997; DIN ETS 300243-2 Terminal Equipment (TE) - Programmable Communication Interface (PCI) APPLI/COM for facsimile group 3, facsimile group 4, teletex and telex services - Part 2: Conformance testing; English version ETS 300243-2:1995; CAN/CSA-C22.2 NO. 60601-1-4-02 Medical Electrical Equipment - Part 1-4: General Requirements for Safety - Collateral Standard: Programmable Electrical Medical Systems (Adopted CEI/IEC 60601-1-4:1996+A1:1999, edition 1.1, 2000-04); DIN ETS 300243-1 Terminal Equipment (TE) - Programmable Communication Interface (PCI) APPLI/COM for facsimile group 3, facsimile group 4, teletex and telex services - Part 1: CCITT recommendation T.611 (1992) [modified]; English version ETS 300243-1:1995; DIN IEC 47A/420/CD Blank detail specification for Programmable Logic Devices (PLDs) (IEC 47A/420/CD:1996); DIN IEC 47A(Sec)353 Classification and definition for Programmable Logic Devices (PLDs) (IEC 47A(Sec)353:1994); DIN IEC 65B/373/CD Programmable controllers - Programming languages (IEC 65B/373/CD:1998, text in English);">

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Functional Safety and IEC 61508)" title="IEC 61508-5:2010 EN-FR 3950d6c0 Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 5: Examples of methods for the determination of safety integrity levels (see Functional Safety and IEC 61508)" style="width:163px"> IEC 61508-5:2010 EN-FR 3950d6c0 Functional Safety and IEC 61508)" title="IEC 61508-5:2010 EN-FR 3950d6c0 Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 5: Examples of methods for the determination of safety integrity levels (see Functional Safety and IEC 61508)" style="width:208px"> Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 5: Examples of methods for the determination of safety integrity levels (see Functional Safety and IEC 61508) 现行 发布日期 :  2010-04-30 实施日期 : 

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Functional Safety and IEC 61508)" title="IEC 61508-6:2010 EN-FR 23263e43 Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 6: Guidelines on the application of IEC 61508-2 and IEC 61508-3 (see Functional Safety and IEC 61508)" style="width:163px"> IEC 61508-6:2010 EN-FR 23263e43 Functional Safety and IEC 61508)" title="IEC 61508-6:2010 EN-FR 23263e43 Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 6: Guidelines on the application of IEC 61508-2 and IEC 61508-3 (see Functional Safety and IEC 61508)" style="width:208px"> Functional safety of electrical/electronic/programmable electronic safety-related systems - Part 6: Guidelines on the application of IEC 61508-2 and IEC 61508-3 (see Functional Safety and IEC 61508) 现行 发布日期 :  2010-04-30 实施日期 : 

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4.1 These test methods provide a measure of a shipping container's ability to protect a product from failure due to horizontal impacts. These measures are based on controlled levels of shock input and may be used for arriving at the optimum design of a container or system to protect a product against a specified level of shipping environment hazard.4.2 These test methods provide a measure of a packaged product's ability to withstand the various levels of shipping environment hazards. These measures may be used to prescribe a mode of shipping and handling that will not induce damage to the packaged product or to define the required levels of protection that must be provided by its packaging.4.3 Test Method A is intended to simulate the rail car coupling environment. Refer to Methods D5277 for simulating the standard draft gear portion of that environment.1.1 These test methods are intended to determine the ability of a package or product to withstand laboratory simulated horizontal impact forces.1.2 The horizontal impacts used in these test methods are programmed shock inputs that represent the hazards as they occur in the shipping and handling environments. The environmental hazards may include rail switching impacts, lift truck marshalling impacts, and so forth. The following test methods apply:1.2.1 Method A, Rail Car Switching Impact—This test method simulates the types of shock pulses experienced by lading in rail car switching, with the use of a rigid bulkhead on the leading edge of the test carriage, to simulate the end wall of a railcar and shock programming devices to produce representative shock pulses. With the use of backloading, this test method may also be used to simulate compressive forces experienced by lading loads during rail car switching. It is suitable for tests of individual containers or systems as they are shipped in rail cars. It may also be used to evaluate the effectiveness of pallet patterns to determine the effect of interaction between containers during rail switching operation impacts.1.2.2 Method B, Marshalling Impact Tests of Unit Loads—This test method assesses the ability of unit loads to withstand the forces encountered during marshalling or loading operations.1.3 The test levels may be varied to represent the mode on shipping and handling used for the item under test.1.4 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.1.5 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.1.6 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

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1 Scope, object and relationship to other standards 1.201 Scope This Collateral Standard applies to the SAFETY of MEDICAL ELECTRICAL EQUIPMENT and MEDICAL ELECTRICAL SYSTEMS incorporating PROGRAMMABLE ELECTRONIC SUBSYSTEMS (PESS), hereinafter referred

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