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User Manual - All Eco Energy Ltd

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1. Fzonv 220cB6o 220w 3640V 820A 29 167 756A _s650 902 45 mm Fzonv 230cB6o 230w 37 00v 830A 29 767 7 74a _s650 902 45 mm Pzonvaaoenso 240W 37 76V Basa so 3av 792A _ 1650 992 aSlmm Fzony 250cBeo 250W 37 85v gaoa 3117v eosa _ 1650 992 45 mm zony 200Peo 200w 36 00V soaa 28 15V 7 12A 6509924 mm zonv 210P60 210w 36 30V SASA 28 40V 740A _ 1650 992 aSmm 14 ZDNY 220P60 36 80V B22A 1650 992 45 mm 20760 220w EET zonv zaoreo 230w 3720V 8s 29A 2928V 787a 1650 992 45lmm aaow 37 700 ass 30 20v 796 ZDNY 240P60 8 38A 1650 992 45 mm pa 5 E A Pm voc e vm 20nv 250072 2sow aaoov 796A 3430V Taak 1956989245 mm _ zony 260c72 260W 4410V BO7A ascov Zaaa 4956 992 45 mm _ ZDNV 270C72 270w aaa eea asasv 7 62A 1956 992 45 mm _ EE N 7294 1956 992 a5 mm _ 2onv 20072 290w 4449V saza 3665V 7921 1956 992 25 mm _ HAUAS 1956 992 45 mm Fzony 260cB72 2sow aa 10v BOTA as cov 744A Fzony 270cB72 270W 44asv aea sav 7 62A 1956 992 45 mm _ Fzony 250cB72 290w aaasv saza 3665V 792a 1956 992 45 mm _ Fzony 300cB72 aoow aacav asea 37 620 798A 1956 902 45 mm _ zony 2a0p72 240W 4300V 798a BAM 7 05A 1956 992 45 mm _ 20nv 250p72 2sow 4360V aoa 3420V 7 32A 4956 992 a5 mm _ _zonv 260p
2. large current Refer to NEC for details Module overcurrent protection rated for DC use Fuse ratings are as shown the enclosed tables of this Installation Guide The junction box is with a breather port The breather port must be mounted facing down and can not be exposed to rain Therefore the junction box must be on the higher side of the module when it is mounted Suntellite recommends that all work in commissioning and maintenance of a system must be performed by a qualified solar PV technician The recommended maximum series module configuration is 22 modules The recommended maximum parallel module configuration is 3 groups of serie module numbers The maximum series array is 22sets and parallel array is 3 sets while assemble the system experience conditions that produce more current and orvoltage than reported at standard test conditions Accordingly the valuesof ISC and VOC marked on this module should be multiplied by a factor of 1 25 when determining component voltage ratings conductor current ratings fuse sizes and size of controls connected to the PV output Testing and replacing bypass diodes Removing the bypass diodes should be done only by a competent PV technician and after the module has been disconnected from the system Place module face down on a soft lat surface Insert a 3mm lat screwdriver into the slot on the junction box cover The cover has a sign of screwdriver Gently pull up the four slots until the cove
3. grids vary from region to region consult a qualified system designer or integrator to design such a system Permits are normally required to install such a system and the utility must formally approve and inspect such a system before it can be connected to the grid 2 Grounding The module frame must be properly grounded refer to NEC clause 250 The grounding wire must be properly fastened to the module frame to assure good electrical contact Use the recommended type or an equivalent connector for this wire If the support frame is made of metal the surface of the frame must be electroplated and have excellent conductivity The diameter of the earthing pole is M4 M3 stainless steel bolt is used and the fixing moment is 5 1 5NM Put the M3 bolt into the earthling pole Peel off one end of the Model AWG12 of the cable and wind around M3 bolt screw down the slotted screw using stainless steel M3 screw and hardware as shown below Stainless steel 3nut 2 Stainless steel M3 spring washer Stainless steel M3 bolt Stainless steel M3 d 4 2 copper wire Stainless steel cut washer M3 plain washer Note please use 4mm diameter and 1mm thickness stainless steel washer while using Further buildup of hardware for mounting the grounding lug are the same except for the M3 screw an added lat washer is mounted directly under the M3 screw head The star washer is itted directly under the grounding lug and makes electrical contac
4. loads are anticipated for this installation additional mounting points are also used Refer to the drawing below Load calculations are left to the system designer or installer Mounting holes for normal installation Far high wind and snow loads these mounting holes must also be used Mounting holes for normal installation For high wind and snow loads these mounting holes must also be used di Stainless steel 6 nut R Stainless steel M6 spring washer Stainless steel M6 bolt Stainless steel M6 plain washer Mounting hole specification is 12 R3 5 7 When installation pls use M6 bolt Diameter 8mm and thickness 1 mm of the stainless steel washer tighten ways as above fixing moment 12Nm The support module mounting structure must be made of durable corrosion resistant and UV resistant material 3 Ground mount Select the height of the mounting system to prevent the lowest edge of the module from being covered by snow for a long time in winter in areas that experience heavy snowfalls In addition assure the lowest portion of the module is placed high enough so that it is not shaded by plants or trees or damaged by sand and stone driven by wind Electrical Installation 1 Grid connected electrical system The DC electrical energy generated by photovoltaic systems may also be converted to AC and connected to a utility grid system As local utilities policies on connecting renewable energy systems to their
5. the exposure to sunlight Incorrect orientation of modules installation will result in loss of power output Modules connected in series should be installed at same orientation and angle Different orientation or angle may cause loss of power output due to difference of amount of sunlight exposed to the modules In the Northern Hemisphere modules should face south and in the Southern Hemisphere 2 modules should face north Module tilt angle Modules produce the most power when they are pointed directly at the sun For installations where modules are mounted to a permanent structure modules should be titled for optimum winter performance As a rule if the PV system power production is adequate in the winter it will be satisfactory during the rest of the year The module tilt angel is measured between the modules and the ground Maintenances It is not uncommon for a remote site to be checked but once per year Under most conditions normal rainfall is sufficient to keep the module glass clean IF diet build up becomes excessive clean the glass with a soft cloth using mild detergent and water Modules that are mounted flat should be cleaned more often as they will not self clean as effectively as modules mounted at a 159 tilt or greater It is advisable to perform periodic inspection of the modules for damage to glass back skin frame and support structure Check electrical connections for loose connections and corrosion Chec
6. 72 260w 4400V s20a 3432V sea 1956 992 45 mm _ zowv 270p72 270w 4449V sar 3474v 7 78A 1956 992 4S mm _ zonv 280p72 280w 4425V SASA 3528V 79an 1956 992 45 mm _ zowv 29072 290w 4520V assa 35 75 Siza 1956 992 05 mm _
7. Fzony 210csa 210w 3328V 833A 2721V 7 72A 1482 992 45lmm Fzony 220csa 220w 3336V SAA 27 83v 791A 148270927a5 mm zony 230csa 230w aaasv s s6A 2836v saza 148279927a5 mm Fzonv 190cB54 190w 33 10V 8 12A 25 68v 741A 148270927a5 mm Pzonvzoocasa 200w 33 14v 820A 26 0V 7 53A 148279927a5 mm Pzonvazoeasa 210w 3328V Baan 27 21V 7 72A 1482 892as mm Fzonv 220cBsa 220w 3336V SAZA 27 83v 791A 148270927a5 mm Fzonv 230cB5a 230w 33 45V 856A 28 36V BA2A 148279927a5 mm zony 180psa 180w 32 40v sosa 25 700 7 02A 148279927a5 mm _ Fzony 1sopsa_ 190w 32 80v SAA 26 01V 7 32A 148279927a5 mm __ Fzony 200Psa_ 200w 3335V 8 20 26 100 7 68A _1482 892 45 mm __ zony 210Psa 210W 33 73v gaan 2652v 7 93A 1492 992 5 mm ZDNY 220P54 220W 34 06V 8 48A 27 10V 8 12A 1482 992 45 mm V gt J X b 49 OD za AAA pmax voc we vm m Re F ony 210ceo 210w 36 200 B10A 2846V 739A _ 1650 992 a5 mm zony 220ceo 220w 3640V 820A 29 167 7 56A _s650 902 45 mm ZDNY 230C6O 230w 37 000 Baoa 29 767 7 74a _s6s0 902 45 mm zony 2a0ceo 240W 37J6V sasa so 3av 792A s650 902 5 mm onv 250c60 2sow 37 85V saga 3117V soaa _ 1650 992 a5 mm FzoNY 210cB60 210w 36 200 810A 28 46V 739A _ 1650 992 aSmm
8. KL I Suntelljte User Manual General Installation Manual for ZDNY SERIES PV Solar Module Safety precaution for installing a solar photovoltaic system Solar modules produce electrical energy when light shines on their front surface The DC voltage may exceed 30v lf modules are connected in series the total voltage is equal to the sum of the individual module voltages lf modules are connected in parallel the total current is equal to the sum of individual module currents Keep children well away from the system while transporting and installing mechanical and electrical components The electrical characteristics are within 10 percent of the indicated values of Isc Voc and Pmax under standard test conditions irradiance of 100mW cm2 AM1 5 spectrums and a cell temperature of 25 C 7 F Under normal conditions a photovoltaic module is likely to experience conditions that produce more current and or coltage than reported at standard test conditions Accordingly the values of Isc and Voc marked on this module should be multiplied by a factor of 1 25 when determining component voltage ratings conductor current ratings fuse sizes and size of controls connect to the PV output Warning Please read this manual completely before installing ZDNY series solar modules This module produces electricity when exposed to light Follow all applicable electrical safety precautions Only qualified personnel should install or perform maintenance wo
9. es 195w 4488V 550a 36 94V 528A 1580 808 5 40 35 Cmm Zwane 200w aassv sesa 36 95V SAZA 1580 808 45 40 35 mm zwanscs 205w as 03v 573A 36 97V SssA 1580 808 45 40 35 mm pe a L M TT yonperg TOIT E RARR Pm vee we vm m RY zonv 230c_ 230w BRON sasa 4743V assa 158021060745 mm ZDNV 23SC 235W sosov s204 areev 493A 158071060745 mm ZDNV 240C 240W sosov s2aa 4820V 498A 158071060745 mm zowy 2asc_ __2a5w eooav 30a aai 502A 158071060745 mm pwv 2soc 2sow eosev sasa 4922V sona 158091060785 mm zowv 255C_ assw eosev saoa 4923V SABA 158091060785 mm zowv 2e0c_ 260W eosev ssia 4923V 529A 158091060785 mm zowvzs0cB 230w sooov sasa 4743V assa 158071060745 mm Czonv 235cB 235W sosov s20a areev 493A 158071060785 mm Czonv 2a0cB 240W 5950V s2aa 48207 498A 158071060785 mm Czonv 2a5cB 2asw eooav 50a aam 502A 158091060785 mm pnv 250cB_ __250w eos8v sasa 4922V sona 158091060785 mm 20nv 255cB 255W eosev saoa 4923V SABA 158091060785 mm zowasec 260w eosev ssia 4923V 529A 1580 1060 45 mm CO e u AAA Pm voc sc vm m D KT F ony 1s0csa 190w 33 10V BAR 25 68v Tata 1482 992 45 mm zony 200csa 200w 33 1av 820a 26 0V 7 53A 148279927a5 mm
10. k if mounting support structure and modules are loose Check connections of cables connectors and grounding Change modules must be the same kind and type if need Modules can operate effectively without ever being washed although removal of dirt from the front glass can increase output The glass can be washed with a wet sponge or cloth Wear rubber gloves for electrical insulation Mechanical Installation 1 Selecting the location Select a suitable location for installation of the module The module should be facing true south in northern latitudes and true north in southern latitudes for best power production For detailed information on the best elevation tilt angle for the installation refer to standard solar photovoltaic installation guides or a reputable solar installer or systems integrator The module should not be shaded at any time of the day Do not use module near equipment or in locacollected Selecting the proper support frame 2 Selecting the proper support frame Always observe the instructions and safety precautions included with the support frame to be used with the module No attempt must be made to drill holes in the glass surface of the module To do so will void the warranty Do not drill additional mounting holes in the frame of the module Doing so will void the warranty Modules must be securely attached to the mounting structure using four mounting points for normal installation If additional wind or snow
11. nted by implication or otherwise under any patent or patent rights The information in this manual is based on Suntellite s knowledge and experience and is believed to be reliable but such information including product specification without limitations and suggestions do not constitute a warranty expresses or implied Suntellite reserves the right to change the manual the PV produce the specifications or product information sheets without prior notice PV modules on the back VI 1 9 lit GP 7 AAA pmax voc we Fzony s0c3e_ sow 21977 asea apwv escas asw 221v m m J 1739 asia 120055045740735 mm _ 17 71v aza 12007550 45 40 35 mm 3739 asia 1200 sso esjao ss mm _ 17 71v 42a 200 550 45 40 35 mm ASA _4 97A 1200850 45 a0 35 mm ET Fzony s0c3e sow 2232V sasa ga 497A Fzony 80cB36 sow 2L97V aosa Fzony 8scB3e ssw 22av sara Fzony soce3e sow 2232V 5258 RARR Pm voe we vm m P RY zonvasse assw 4372V asoa saaav asoa 1580 808 45 40 35 mm zowv 160c_ 160w asse asea sarv asra 1580 808 45 40 35 mm zwvassc 188w aasov S37A 36 92V 509A 1580 808 45 40 35 mm zwvassc 189w SASOU sasa sesav 5 2 1580 808 45 40 35 mm zowasoes 190w sago sasa 3692v sasa 1580 808 45 40 35 mm Pzonvass
12. r been opened Insert the 3mm lat screwdriver into a hole alongside of diode and near one mounting hole of the diode pry the screwdriver in the opposite direction of diode and gently pull the diode up until the lead comes free Do the same in the other mounting hole of the diode and repeat until the diode is free S poIp 0601 0701 Note the orientations of the polarity markings on the diodes The bypass diode type is 12SQ045 rated current 12A Check the resistance of the diodes by using the digital multimeter s ohms scale Resistance should be low in one direction then when leads are reversed on the diode s terminals the resistance should be high as illustrated in the two pictures below If a diode has a low resistance in both directions it is probably shorted If it has high resistance in both directions it is probably 8 open In either case it should be replaced Disclaimer of Liability Because the use of this manual and the conditions or methods of installation operation use and maintenance of photovoltaic PV product are beyond Suntellite s control Suntellite does not accept responsibility and expressly disclaims liability for loss damage or expense arising out of or in any way connected with such installation operation use or maintenance No responsibility is assumed by Suntellite for any infringement of patents or other rights of third parties which may result from use of the PV product No license is gra
13. rk on this module Do not handle modules when they are wet Do not attempt to disassemble the modules and do not remove any attached nameplates or components from the modules Do not apply paint or adhesive to module top surface Do not use mirrors or other magnifiers to artificially concentrate sunlight on the modules Introductions ZDNY series PV Solar Modules come in various sizes to satisfy a full range of applications Each module is made of crystalline silicon cells To protect the cells from the most severe environmental conditions modules are made of high transmission rate and low iron tempered glass anti aging encapsulation material and high climate resistant and insulation back sheet by hot laminations with anodized Aluminum alloy frame and junction box Applications Modules are reliable virtually maintenance free power supply deigned to operate efficiently in 1 sunlight By modules the solar radiant energy is transformed into electrical energy for using Modules usually be used as one fittings of PV Solar System A set of basic PV solar system is consisted of PV solar module controller inverter and storage battery Modules can be used in roof PV solar systems PV stations building and other eletrical generation applications etc widely MECHANICAL INSTALLATIONS Mounting Site Modules can be used on land except for corrosive salt area and sulfurous area Excluded applications include but are not limited
14. t by penetrating the anodized coating of the aluminum frame The screw assembly is further itted with a lat washer then a split lock washer and inally a nut to secure the entire assembly as shown Recommended torgue of M3 screw assembly is 1 5NM 3 General installation Do not use modules of different configurations in the same system Several modules are connected in series and then in parallel to form a PV array especially for application with a high operation voltage If modules are connected in series the total voltage is equal to the sum of individual voltages For applications requiring high currents several photovoltaic modules can be connected in parallel the total current is equal to the sum of individual currents Module is supplied with Multicontact connectors PV GZX0601 1 to use for system electrical connections Use the National Electric Code to determine system wiring size refer to NEC clause 6 310 type and temperature rating of conductors to be connected to the module s connectors Wiring connected to the module s wiring should be 12 AWG minimum and must be temperature rated at 90 C minimum In Canada installation shall be in accordance with CSA C22 1 Safety Standard for Electrical Installations Canadian Electrical Code Part 1 The cross section area of cable and the capacity of connector must be selected to suit the maximum system short circuit current otherwise the cable and connector will be overheated under
15. to installations where modules are likely to come in contact with any salt water or where likely to become partially or wholly submerged in fresh or salt water examples of which include use on boats docks and buoys Don t install modules in a location where it would be immersed in water or continually exposed to water from a sprinkler or fountain etc Modules are designed for a maximum allowable design pressure of 50 pounds per square foot about 2400 Pa which may correspond to a nominal wind speed of approximately 130 km h in certain circumstances Actual maximum allowable wind speed may be influenced by module type mounting configuration location and other factors In no case should modules be exposed to pressures greater than 50 pounds per square foot of uniformly dis tribute wind snow or other loading Not install modules near naked flame of flammable materials When choosing a site avoid trees buildings or obstructions Modules should be mounted to maximize direct exposure to sunlight and to eliminate or minimize shadowing Even partial shadowing can substantially reduce module and system output Furthermore partial shadowing can elevate the shaded portions internal temperature which may lower output and shorten module life Orientation of installations Modules may be mounted at any angle from a vertical orientation to a horizontal one The appropriate fixed tilt angle and azimuth orientation should be used in order to maximize

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