Bulletin Wiring methods for Solar Photovoltaic Systems Rule and , Tables 11 and 19
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1 -4-0 Bulletin -4-0 Wiring methods for Solar Photovoltaic Systems Rule -018 and -020, Tables 11 and 19 Scope Issued May 2012 (1) Introduction (2) New cable types RPV & RPVU (3) Wiring methods within photovoltaic array (a) Acceptable wiring methods within an array (b) Combiner box (c) Cable support (d) Attachment plugs (e) Wiring method within an array for ungrounded PV systems (4) Accessibility to public & guarding of ground-mounted PV installations (1) Introduction The intent of this bulletin is to clarify some of the wiring method requirements as per Section rules. In addition to this Bulletin, the following documents provide additional information on the installation of solar photovoltaic systems: Bulletin -1-* Installation of Solar Photovoltaic Systems Bulletin -2-* Grounding and Bonding of Solar Photovoltaic Systems Bulletin -3-* Voltage rating of a photovoltaic source circuit (2) New cable types RPV & RPVU New cable types RPV and RPVU, approved to CSA C22.2 No 271, are introduced in the code. The following table shows different usages of RPV and RPVU type cables as permitted by Rule -018 and listed in Table 19: Table B1 Usage of RPV & RPVU conductors Installation RPV RPVU Raceway (except cable tray) in dry/damp location Table 19 Table 19 (note 5) Raceway (except cable tray) in wet location Table 19 Table 19 Inside building or structure in a raceway -018(8) -018(8) Cable tray for interconnection of PV system* (5) Exposed to weather for interconnection of panels within (4) an array without raceway** Direct earth burial - Table 19 (*) conductors type RPV are not permitted for cable tray installation, unless marked (TC) or equivalent (**) provided that conductors are mechanically protected, serviced by qualified person, and inaccessible to public Page 1 of 5
2 -4-0 Ontario Electrical Safety Code - Bulletins (3) Wiring methods within photovoltaic array (a) Acceptable wiring methods within an array In addition to conductors type RPVU, the following is also permitted for wiring within an array: Flexible cords for extra-hard usage as listed in Table 11, as per Rule -018(1); Conductors approved for exposed installations where subject to the weather as listed in Table 19 and marked for sunlight resistance. Although not listed in Table 19, type RWU conductors shall also be permitted, provided that it is marked for sunlight resistance and the installation satisfies all conditions listed in Rule -018(4); Conductors approved as part of an approved panel assembly, as per Rule -018(3); and PV wire or cable approved to UL standard UL 4703, with all conditions listed in Rule -018(4) are satisfied The permission for using PV cables approved to UL standards will expire on January 1st, Starting January 1st, 2013, all wiring used for Photovoltaic system installations are required to be approved to Canadian Standards. (b) Combiner box The Appendix B note to Rule -002 shows the diagram of a typical solar photovoltaic system and a device referenced as a combiner box. ESA SPEC 004 defines a combiner box as A box used in solar installations to combine the multiple photovoltaic arrays to produce one circuit. It often contains generator overcurrent devices. The combiner box is permitted to be installed on the roof and it is preferred to be as close as possible to the PV modules forming an array. The purpose of the combiner box is to group the wiring from the array into one cable run to the inverter, which reflects the logic to have the combiner box as close as possible to the array (on the roof), as per the Photo B1. Direction 1 Wiring methods specified above (subject (3)(a) of this bulletin) are acceptable for interconnecting PV modules within an array. If the combiner box is located outside of a building or a structure and within 1 m from the physical edge of the PV modules, acceptable wiring methods permitted within array are allowed to be extended to the combiner box, provided that they are mechanically protected from damage. Where a combiner box is not located within 1 m of PV modules or where conductors are run inside the building or a structure, wiring methods specified in Section 12 are required. Page 2 of 5
3 -4-0 Photo B1 Combiner box (c) Cable support Cables and conduit shall be kept clear of sharp metals, be properly supported and shall not lie loosely on the roofing material. Notwithstanding Rule requirements for open wiring support, acceptable supporting means are considered to be straps or other devices located within 300 mm of every box or fitting and at intervals of not more than 1.5 m throughout the run. This requirement is similar to supporting requirements for non-metallicsheathed cable as defined by Rule (1). Conductors are also required to be kept clear of sharp metal edges. Photo B2 is an example of unacceptable cable support. Photo B2 Unacceptable cable support (d) Attachment plugs As per Rule -020, the plug-in connectors used to connect cables between PV modules are required to be of the locking type and be rated for the voltage and current of the circuit in which they are installed. Photo B3 shows an example of a connector that meets Rule -020(d) requirement. Page 3 of 5
4 -4-0 Ontario Electrical Safety Code - Bulletins Photo B3 Example of a PV wire connector Attachment plugs may not be rated for interrupting the current and be marked with a warning indicating that disconnection under no load is necessary. In this case, the modules must be disabled before disconnecting the connectors. Also, Attachment plugs and connectors are required to be of a type that requires a tool to open, when: Readily accessible; and Used in circuits operating at over 30 V (e) Wiring method within an array for ungrounded PV systems PV solar systems are permitted to be ungrounded as per Rule Rule -026(2) refers to requirements in Section 64 (Rule ) for ungrounded systems. Rule (1)(b) requires source and supply conductors to consist of either metal-sheathed (jacketed) multiconductor cables in accordance with Rule 4-008(1) or have conductors installed in metallic raceways. Notwithstanding the above requirements, for the interconnection of PV modules, wiring methods permitted within an array as per Rule -018 (subject (3)(a) of this bulletin) are allowed for ungrounded systems provided that a transition junction box is provided within 1 meter from the edge of PV modules to change the wiring method used for PV modules interconnection to metal sheathed cable or conductors in a metallic raceway. Note If the combiner box is within 1 m of the edge of the PV modules, no additional transition junction box is required as it is permitted to extend the same wiring method used within the array (see Direction 1 of this bulletin). The requirement in the Rule (1)(b) above will be applied from the transition box or the combiner box to the inverter input. (4) Accessibility to public & guarding of ground-mounted PV installations With the restrictions on some of the wiring methods within an array described in Rule -018, and attachment plugs (which do not need a tool to open) to be inaccessible to public, the following direction has been developed based on the clarification in Appendix B note to Rule Page 4 of 5
5 -4-0 Direction 2 The wiring for a solar PV installation is deemed inaccessible to public and not readily accessible if it satisfies one of the following conditions: (1) It runs in a raceway; (2) By the usage of physical barrier such as wire screening or guarding; (3) Isolated by elevation, such that no open wiring below 2.5 m (from finished grade)*; or (4) Enclosing the ground mount PV installation inside a fence**. (*) On sun tracker units the 2.5 m shall be measured when the array is oriented in its lowest plane. (**) Fences complying with Rules , and are deemed acceptable to enclose ground mounted PV installation. No barb wire is required. Photo B4 example of non-compliant installation Photo B5 example of using physical barrier around wiring Page 5 of 5
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