UL 1741 CRD-2018 UL Standard for Safety Inverters Converters Controllers and Interconnection System Equipment for Use With Distributed Energy Resources - Section Paragraph Referen.pdf
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1、UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION ORDISTRIBUTION WITHOUT PERMISSION FROM ULUNDERWRITERS LABORATORIES INC. CERTIFICATION REQUIREMENT DECISIONThis Certification Requirement Decision is prepared by UL LLC. It is normative for the applicable ULProduct Certification Program(
2、s); however, it is currently not part of the UL Standard(s) referencedbelow.Product Category (CCN): QIKHStandard Number: UL 1741Standard Title: Standard for Inverters, Converters, Controllers and InterconnectionSystem Equipment for Use With Distributed Energy ResourcesEdition Date: January 28, 2010E
3、dition Number: 2Section / Paragraph Reference: New Sections 2.1.7A, 2.1.28A, 2.1,30A, 2.1.31A,2.1.39A, 2.1.40A, sections (14.1.4- 14.1.5.6), 14.3, 14.3.1, 19.2.1 to 19.2.3, 19.3Exceptions 1) and 2), 19.5, 47.1.8, new sections (46.2, 46.3 and 46.4), 47.1.8, 64.16and 64.17. Revisions 2.1.42, 19.1, 19.
4、2, 19.3 and 63.15.Subject: Clarification of Multi-Mode Inverter Requirements Including SupplyConductor GroundingDECISION:Definitions2.1.7A CLOSED TRANSITION TRANSFER A switching event with overlapping connections betweentwo AC power sources (to provide a make before break transfer operation) that ar
5、e synchronized at thetime of transfer. The two sources shall be paralleled for no more than 100 ms.2.1.28A MAIN BONDING JUMPER The conductor used for the connection between the groundedservice conductor (typically the neutral conductor) and the equipment grounding conductor.2.1.30A MULTI-MODE INVERT
6、ER An inverter with both utility interactive capabilities and standaloneinverter capabilities. Some multimode inverters are capable of switching between operational modesautomatically depending on utility availability or other pre-defined conditions. Some products can performan open transition trans
7、fer, some can provide a closed transition transfer between modes and some canperform both depending on settings.2.1.31A OPEN TRANSITION TRANSFER A switching event that provides a break before make transferoperation between two power sources such that the load is intentionally disconnected from both
8、sources.2.1.39A SEPARATELY DERIVED SOURCE An Electrical Power Source, (other than an electric utility),having no direct connection(s) to any other electrical source except for grounding and bondingconnections (from NFPA 70).2.1.40A SERVICE EQUIPMENT Equipment that serve to connect to the service con
9、ductors load end toa building, structure, or otherwise designated area, and is intended to provide the function of main controland supply disconnect. Service equipment typically includes Over current protection (circuit breaker(s) orfuse(s), switches and applicable accessories. Utility interactive,
10、standalone and multimode products mayperform service equipment functionality including the service neutral to ground bond (From NFPA 70)2.1.42 STAND-ALONE INVERTER An inverter intended to supply a load and does not provide powerback to the electric utility. Some stand-alone inverters have an EPS or
11、other AC input sourceconnection(s) that can supply power to loads and or charge energy storage systems.UL COPYRIGHTED MATERIAL NOT AUTHORIZED FOR FURTHER REPRODUCTION ORDISTRIBUTION WITHOUT PERMISSION FROM ULAdd the following Sections to UL1741.14.1.4 Stand-alone inverters that receive EPS or other
12、AC input source power to supply loads shallcomply with the Backfeed Test in Sections 14.1.5 and 46.4 to all sources of input AC power.14.1.5 Backfeed Protection14.1.5.1 A standalone inverter that has an EPS or AC input source connection UPS shall be provided withbackfeed protection to prevent a pote
13、ntial involving a risk of electric shock (see Electric Shock, Section11) from being present on its input ac terminals and or backfeeding the EPS or AC input source circuitduring inverter power generation.14.1.5.2 With reference to the requirement in 14.1.5.1, performance of the protection is to be j
14、udged byconducting the Backfeed Protection Test, Section 46.4.14.1.5.3 The protection mentioned in 14.1.5.1 shall employ an automatic switching device having air-gapcontacts such as an electromechanical relay for preventing a potential involving a risk of electric shockfrom appearing on the AC EPS o
15、r other AC input terminals.Exception: An electronic control employing a solid state power switching component and subjected to thetests described in 14.1.5.4 may be provided in lieu of an air-gap contact device.14.1.5.4 The backfeed protection for stand-alone inverter, with an output that is not a s
16、eparately derivedsystem, shall open or de-energize all supply conductors when subjected to the requirements specified fora GFDI circuit in paragraphs 31.5 31.10 except the functionality being evaluated is backfeed protection.14.1.5.5 With reference to 14.1.5.4, the conditions described in either (a)
17、 or (b) resulting from ashort-circuit failure of a solid-state component during the normal mode of operation that is used forisolation between the input-ac terminals and the inverter is considered to comply with the requirement in14.1.5.4.a) Operation of an input-ac, overcurrent-protective device; o
18、rb) Shut-down of the inverter.14.3 Multi-Mode Products14.3.1 Multi-Mode products shall comply with multi-mode requirements, requirements for stand-aloneproducts, charge controllers if applicable, and the requirements for utility interactive products.19.1 The requirements for circuit grounding specif
19、ied in 19.3 19.5 apply to the ac output circuit of astand-alone inverter, multimode inverters and utility interactive inverters that include a means to bond theAC output circuit to ground within the product shall comply as required in 19.3.19.2 An inverter intended to be utility-interactive (not ser
20、vice equipment rated) shall not have a direct/solidelectrical connection between any output ac conductor and the enclosure. If the inverter is capable ofchanging to a standalone operating mode then 19.3 shall apply during the standalone operation if theinverter transitions the wiring system bonding
21、to a separately derived Neutral-ground bonding system.19.2.1 A Multi-Mode or standalone inverter relying on service conductor bonding by a separate piece ofequipment, that is in a nonseparately derived system, shall have the marking described in 64.17.STANDARD NUMBER: UL 1741 -2-UL COPYRIGHTED MATER
22、IAL NOT AUTHORIZED FOR FURTHER REPRODUCTION ORDISTRIBUTION WITHOUT PERMISSION FROM UL19.2.2 Multi-mode or standalone inverters that switch between multiple ground bond locations shall notallow the switching action to result in a temporal gap in system ground bonding (such that the system canbecome u
23、ngrounded) and the switching event shall not allow for an overlap with multiple ground bondsfor more than 0.1 seconds as verified though the Ground Bond Transfer Switch Timing Test 46.2.Note: this requirement is intended to prevent operation without a ground bond, or multiple bonds in the wiring sys
24、tem.19.3 Other than as specified in 19.2.1 19.2.3, each ac output circuit shall have a grounded conductor.The ac output circuit conductor to be grounded shall be as follows:a) Single-phase, 2-wire one conductor.b) Single-phase, 3-wire the neutral conductor.c) Multiphase system having one wire common
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