Too much Input Power for my Charge Controller?

jmbljb1
jmbljb1 Registered Users Posts: 20 ✭✭
My son has given me four JASolar PV panels. Each panel is rated at 325 W with a Vmp of 37.49 and a Voc  of 46.48.  I believe that makes them nominal 24V panels.  The four panels will be run in series.  I recently purchased an EPEVER 4210 charge controller and now I was wondering if it will be able to withstand the input of the four panels.  The Charge controller states that Max. PV open circuit voltage is 100V. But does that mean the panels input will make a total of 96v (24V times 4),  or will they input 149.96v (37.49Vmp times 4), or will they input 185.92v (46.48Voc times 4).  I'm not so much concerned about how much power I may be losing as I am concerned about burning down my shed from this off grid system.  I'm only going to connect it to a two 12v 200ah battery bank. In addition the Charge Controller also states that the Max. PV input power is 520W(12V) & 1040W(24V).  Does this mean 325W times 4 will be 1300W and too much for the controller?
Thanks for any help.  


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  • westbranch
    westbranch Solar Expert Posts: 5,183 ✭✭✭✭
    edited June 2018 #2
    When you series PV's you add the VMp so you would present about 150Volts to the Charge Controller.In series you do not add the Amperage... I believe you should be looking at something like a MidNite Solar Classic 200 as you do not want to run any Electronics above 75 - 80% if you want them to survive any length of time...
    you have not told us the battery voltage as it has an effect on the configuration of the PV's
     
    KID #51B  4s 140W to 24V 900Ah C&D AGM
    CL#29032 FW 2126/ 2073/ 2133 175A E-Panel WBjr, 3 x 4s 140W to 24V 900Ah C&D AGM 
    Cotek ST1500W 24V Inverter,OmniCharge 3024,
    2 x Cisco WRT54GL i/c DD-WRT Rtr & Bridge,
    Eu3/2/1000i Gens, 1680W & E-Panel/WBjr to come, CL #647 asleep
    West Chilcotin, BC, Canada
  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    It's not uncommon to have to go online to find manuals these days, here's yours. After popping the link open click next to it and you should get the option of saving it to your computer;

    http://www.epsolarpv.com/en/uploads/news/201710/1508812885787574.pdf
    jmbljb1 said:
    My son has given me four JASolar PV panels. Each panel is rated at 325 W with a Vmp of 37.49 and a Voc  of 46.48.  I believe that makes them nominal 24V panels. 
    Yes that is correct!
    jmbljb1 said:
    The four panels will be run in series.  I recently purchased an EPEVER 4210 charge controller...
    Best to look at the manual before deciding to run them in series! or before deciding on a charge controller as @westbranch pointed out.
    jmbljb1 said:
    I recently purchased an EPEVER 4210 charge controller and now I was wondering if it will be able to withstand the input of the four panels.  
    Yes, but not with 4 in series. Most quality charge controller can handle a bit of 'over paneling'. Epever has a handy chart in the manual;


    jmbljb1 said:
     The Charge controller states that Max. PV open circuit voltage is 100V. But does that mean the panels input will make a total of 96v (24V times 4),  or will they input 149.96v (37.49Vmp times 4), or will they input 185.92v (46.48Voc times 4). 
    The actual Max appears to be 92 volts VOC at STC (25degrees centigrade). 2 in series would be over the 92 volt max as I read your manual. So the panels would need to be 4 in parallel to work and not have a chance of damaging your charge controller. It might be worth asking them, but it looks like this is what they want from the manual.

    jmbljb1 said:
     I'm only going to connect it to a two 12v 200ah battery bank. 
    Will the batteries be in series for 24 volts or in parallel for 12 volts?
    jmbljb1 said:
    In addition the Charge Controller also states that the Max. PV input power is 520W(12V) & 1040W(24V).  Does this mean 325W times 4 will be 1300W and too much for the controller? 
    As the chart above states the charge controller can handle quite a bit above that amount. In general you should only expect about 75% of the name plate value when the batteries can accept the full amount of incoming current, while in 'bulk'.



    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    yo have not told us the battery voltage as it has an effect on the configuration of the PV's
    Thank you.. Your response is much appreciated.  The battery voltage will be 12v. I plan to run two 12v batteries in parallel.  Would it be better if I ran two strings of two panels each? That would double my amps but lower my Vmp by half......Other than lowering the life of my charge controller, (only 150 bucks), is there any chance of fire?
  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    Photowhit said:


    The actual Max appears to be 92 volts VOC at STC (25degrees centigrade). 2 in series would be over the 92 volt max as I read your manual. So the panels would need to be 4 in parallel to work and not have a chance of damaging your charge controller. It might be worth asking them, but it looks like this is what they want from the manual.




    Thank you so much for the manual.  I understand that I should consider running my four panels in parallel, but that would mean my maximum current (Imp) would be multiplied by 4.  That would give me 8.67amps times 4 equaling 34.68amps.  So you think that would be better for the health charge controller?  I am willing to run the panels in any manner since I purchased the charge controller a month ago and I have no idea where the sales receipt has ended up.  Thanks so much.
  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    Yes that should be fine, there are other things to be concerned with, how much wattage will be lost as voltage drop if yoou have to go very far from the array (panels, where I would combine them and run a single set of wires) to the charge controller (which should be near the batteries.)


    The charge controllers are rated on output current/amperage. The trick in this case is that MPPT type charge controller need a bit of 'head' room above the charging voltage. So the voltage may be too low to work well with the MPPT charge controller if you are running the batteries in series for 24 volts. If you are running them in  parallel, then you were always going to have too much  wattage coming in for the available 40 amp output. Even considering the 75% NOCT (Normal Operating Cell Temperature) value of about 1300/.75=925 watts 925/14 volts (charging voltage for 12 volts) = 66 amps.
    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    Photowhit said:
    Yes that should be fine, there are other things to be concerned with, how much wattage will be lost as voltage drop if yoou have to go very far from the array (panels, where I would combine them and run a single set of wires) to the charge controller (which should be near the batteries.)
    Well, I'm lucky there.  The panels are sitting right up against my shed and the wires will be run through the wall of the shed and right into the charge controller.  There is less than two feet of wire between the panels and the charge controller.  I am definitely going to run the panels in parallel even though now I will need to purchase some branch connectors.  Thanks for your help and everyone's help on this great discussion board.  I finally found some place where I can get answers without buying something first or taking a semester of classes.
  • littleharbor2
    littleharbor2 Solar Expert Posts: 2,036 ✭✭✭✭✭
    If using branch connectors for combining then you need these MC-4 fuse holders to fuse each panel BEFORE the branch connector.

    2.1 Kw Suntech 175 mono, Classic 200, Trace SW 4024 ( 15 years old  but brand new out of sealed factory box Jan. 2015), Bogart Tri-metric,  460 Ah. 24 volt LiFePo4 battery bank. Plenty of Baja Sea of Cortez sunshine.

  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    edited June 2018 #10
    If using branch connectors for combining then you need these MC-4 fuse holders to fuse each panel BEFORE the branch connector.

    Thanks for the info.  My panels are rated at 8.67 Imp and 9.14 Isc so I assume the 15 Amp fuse should be sufficient.  But now that we have mentioned branch connectors....I see that the four into one connectors are rated at a pretty low amperage. If I'm running four panels in parallel, shouldn't the branch connector be able to handle the 36 amps that will be traveling through it. Is there one on the market that can handle this?
  • littleharbor2
    littleharbor2 Solar Expert Posts: 2,036 ✭✭✭✭✭
    Probably. The fuse rating is usually on the data label on the panel.

    2.1 Kw Suntech 175 mono, Classic 200, Trace SW 4024 ( 15 years old  but brand new out of sealed factory box Jan. 2015), Bogart Tri-metric,  460 Ah. 24 volt LiFePo4 battery bank. Plenty of Baja Sea of Cortez sunshine.

  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    jmbljb1 said:
    If using branch connectors for combining then you need these MC-4 fuse holders to fuse each panel BEFORE the branch connector.

    Thanks for the info.  My panels are rated at 8.67 Imp and 9.14 Isc so I assume the 15 Amp fuse should be sufficient.  But now that we have mentioned branch connectors....I see that the four into one connectors are rated at a pretty low amperage. If I'm running four panels in parallel, shouldn't the branch connector be able to handle the 36 amps that will be traveling through it. Is there one on the market that can handle this?
    If each panel is fused there is no reason to fuse the incoming current. You might want to put a breaker on it, so you can switch off the array all at once. If it's inside you could buy a short piece of 'din rail' 

    https://www.solar-electric.com/dinrail-6-inches.html

    and a breaker from NAWS

    https://www.solar-electric.com/midnite-solar-mneac40-breaker.html

    Nice to have a breaker on the output side as well to isolate the charge controller.

    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    Photowhit said:
    jmbljb1 said:
    ...If I'm running four panels in parallel, shouldn't the branch connector be able to handle the 36 amps that will be traveling through it. Is there one on the market that can handle this?
    If each panel is fused there is no reason to fuse the incoming current. You might want to put a breaker on it, so you can switch off the array all at once. If it's inside you could buy a short piece of 'din rail' 

    https://www.solar-electric.com/dinrail-6-inches.html

    and a breaker from NAWS

    https://www.solar-electric.com/midnite-solar-mneac40-breaker.html

    Nice to have a breaker on the output side as well to isolate the charge controller.

    I have already purchased the breakers for the input and the output side of the charge controller and I'm going to order the fuses for the panels, but I'm more concerned about the low amperage of the branch connectors (4 into 1) that I have to connect my panels in parallel with.  Don't I need one rated at 40 amps?
  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    jmbljb1 said:


    I have already purchased the breakers for the input and the output side of the charge controller and I'm going to order the fuses for the panels, but I'm more concerned about the low amperage of the branch connectors (4 into 1) that I have to connect my panels in parallel with.  Don't I need one rated at 40 amps?
    The branch connectors will likely be 10 gauge, I believe 10 gauge should handle up to 30 amps. Rated at 8.5 amps, It would be rare for them to carry much more than 30 combined. MC4 connectors are designed for up to 8 gauge wire, so someone must make branch connectors in 8 gauge. Looks like WindyNation is doing some 8 gauge wires;

    https://www.ebay.com/itm/8-AWG-8-Gauge-One-Pair-Black-Red-Solar-Panel-Cable-Wire-MC4-Connector-/262589569814
    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    I hope you purchased some DC rated breakers, DC can sustain an arc much easier than AC so the design is different.
    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    Photowhit said:
    I hope you purchased some DC rated breakers, DC can sustain an arc much easier than AC so the design is different.
    They are DC inline breakers (Zookoto) rated at 40 Amps each.  I got them since the charge controller is 40 Amp.  I will be looking for some 4 into 1 branch connectors that uses 8 gauge wires. Thanks.
  • mike95490
    mike95490 Solar Expert Posts: 9,583 ✭✭✭✭✭
    Caution with using MC4 fuses and connectors,  you must shut down the charge controller, before opening a connector in the daytime.  The connectors are not rated to connect/disconnect under load, and if you do so, the DC arc will likely destroy the thin gold plate on the connector.
    Powerfab top of pole PV mount | Listeroid 6/1 w/st5 gen head | XW6048 inverter/chgr | Iota 48V/15A charger | Morningstar 60A MPPT | 48V, 800A NiFe Battery (in series)| 15, Evergreen 205w "12V" PV array on pole | Midnight ePanel | Grundfos 10 SO5-9 with 3 wire Franklin Electric motor (1/2hp 240V 1ph ) on a timer for 3 hr noontime run - Runs off PV ||
    || Midnight Classic 200 | 10, Evergreen 200w in a 160VOC array ||
    || VEC1093 12V Charger | Maha C401 aa/aaa Charger | SureSine | Sunsaver MPPT 15A

    solar: http://tinyurl.com/LMR-Solar
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  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    mike95490 said:
    Caution with using MC4 fuses and connectors,  you must shut down the charge controller, before opening a connector in the daytime.  The connectors are not rated to connect/disconnect under load, and if you do so, the DC arc will likely destroy the thin gold plate on the connector.
    Thanks for the info. I will be sure to do that.
  • westbranch
    westbranch Solar Expert Posts: 5,183 ✭✭✭✭
    edited June 2018 #19
    here is a sample of a 2 PV in parallel from Mid|Nite Solar for their 30 Amp charger.  Should help you visualize the parts you would need.  http://www.midnitesolar.com/pdfs/Kid_12V_2p_Par_REV_B.pdf

     
    KID #51B  4s 140W to 24V 900Ah C&D AGM
    CL#29032 FW 2126/ 2073/ 2133 175A E-Panel WBjr, 3 x 4s 140W to 24V 900Ah C&D AGM 
    Cotek ST1500W 24V Inverter,OmniCharge 3024,
    2 x Cisco WRT54GL i/c DD-WRT Rtr & Bridge,
    Eu3/2/1000i Gens, 1680W & E-Panel/WBjr to come, CL #647 asleep
    West Chilcotin, BC, Canada
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    here is a sample of a 2 PV in parallel from Mid|Nite Solar for their 30 Amp charger.  Should help you visualize the parts.

    Well I don't have half of these parts. 
  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    jmbljb1 said:
    here is a sample of a 2 PV in parallel from Mid|Nite Solar for their 30 Amp charger.  Should help you visualize the parts.

    Well I don't have half of these parts. 
    Well some isn't required or deceptive. 

    The in line fuses will be your 'combiner' 

    You don't have to have any lightning protection. That's the thing in the lower left hand corner, marked SPD 300. 
     If you are ground mounting these, I wouldn't worry and in fact if you are putting in your shed and there will be some space say a foot between the shed and panels, I'd 'float' the system rather than ground. This also throws out the Ground fault protection. There is some minor risk, I'd say very minor. and even some benefit, a near by lightning strike is less likely to damage your equipment.
     
    Your branch connectors are pretty much what the bus bars are...

    The top right thing is your charge controller, you have 40 amp breakers in front of and behind it
    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    Photowhit said:

    Your branch connectors are pretty much what the bus bars are...
    Well that's good news. Can my branch connectors be four (two into one) connectors instead of the two (four into one). Would this allow me to use the 30 amp branch connectors (that I can find) instead of the 40 amp connectors (that I can't find) ?  

  • littleharbor2
    littleharbor2 Solar Expert Posts: 2,036 ✭✭✭✭✭
    You would only need 3 pairs of branch connectors, then larger gauge wire from there, on.

    2.1 Kw Suntech 175 mono, Classic 200, Trace SW 4024 ( 15 years old  but brand new out of sealed factory box Jan. 2015), Bogart Tri-metric,  460 Ah. 24 volt LiFePo4 battery bank. Plenty of Baja Sea of Cortez sunshine.

  • Photowhit
    Photowhit Solar Expert Posts: 6,002 ✭✭✭✭✭
    jmbljb1 said:
    Photowhit said:

    Your branch connectors are pretty much what the bus bars are...
    Well that's good news. Can my branch connectors be four (two into one) connectors instead of the two (four into one). Would this allow me to use the 30 amp branch connectors (that I can find) instead of the 40 amp connectors (that I can't find) ?   
    I've never heard of them being described by amps? but guess you are referring to 10 gauge. You do have the potential to over load the wire ampacity, but I think it would be rare and only in cool temps (solar panels produce less in heat) Also thee additional current would be at the connector and the connector is rated for 8 gauge wire so I would hope the current capacity of 8 gauge. If you used the solid branch connectors and 8 gauge wire from the last connection to your breaker ahead of the charge controller. I think you would fine 'by Hoyle' or NEC. Though I think many of these Branch connectors have little to do with UL/NEC;


    Solid connector;
    Image result for mc4 branch connectors
    Wired;
    Image result for mc4 branch connectors
    If you can't find the wired in 8 gauge.

    I know they make the solid in 4 to 1, but I think it would be a huge pain if you had to disconnect them, particularly with fuses. I'm sure it would be tempting to have all the fuses in one place. I have no real experience with this, but know MC4 can be a pain to take apart even with the proper tools.
     
    Home system 4000 watt (Evergreen) array standing, with 2 Midnite Classic Lites,  Midnite E-panel, Magnum MS4024, Prosine 1800(now backup) and Exeltech 1100(former backup...lol), 660 ah 24v Forklift battery(now 10 years old). Off grid for 20 years (if I include 8 months on a bicycle).
    - Assorted other systems, pieces and to many panels in the closet to not do more projects.
  • mcgivor
    mcgivor Solar Expert Posts: 3,854 ✭✭✭✭✭✭
    Personally I'm of the opinion that all these branch connectors are a convince to not do the correct method, perhaps they have a use where voltages are high, 600V+, with low currents, however in circumstances where current is high, voltages low, there are better methods, such as a combiner, where positive terminations are possible.
    1500W, 6× Schutten 250W Poly panels , Schneider MPPT 60 150 CC, Schneider SW 2524 inverter, 400Ah LFP 24V nominal battery with Battery Bodyguard BMS 
    Second system 1890W  3 × 300W No name brand poly, 3×330 Sunsolar Poly panels, Morningstar TS 60 PWM controller, no name 2000W inverter 400Ah LFP 24V nominal battery with Daly BMS, used for water pumping and day time air conditioning.  
    5Kw Yanmar clone single cylinder air cooled diesel generator for rare emergency charging and welding.
  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    Well this is my solution.(I think it will work) I am going to connect 1 set of the panels in series (2 panels) and the other set of panels in series (2 panels). That will essentially give me two big panels of 74.98 V and 8.67 Amps.  Then I'm going to connect those two big panels in parallel.  That should give me 74.98 V and 17.34 A going into the charge controller.  Well under the 92V and 40 A the charge controller is rated at.  Is this correct? and will it work? Thanks for any advice.
  • littleharbor2
    littleharbor2 Solar Expert Posts: 2,036 ✭✭✭✭✭
    Now were back to square one. The VOC will be too high for that controller. You need a controller with a 150 volt max.

    2.1 Kw Suntech 175 mono, Classic 200, Trace SW 4024 ( 15 years old  but brand new out of sealed factory box Jan. 2015), Bogart Tri-metric,  460 Ah. 24 volt LiFePo4 battery bank. Plenty of Baja Sea of Cortez sunshine.

  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    The VOC will be too high for that controller. You need a controller with a 150 volt max.
    The voc for each panel is 46.48v so when added together will be 92.96 volts. That's between the 92vand 100v that the charger is rated for. So would this damage the controller? 
  • BB.
    BB. Super Moderators, Administrators Posts: 33,431 admin
    That temperature is for Standard Test Conditions of ~75F/20C... If your area has cold overnight temperatures (especially sub freezing), then the Voc/Vmp will rise.

    In a climate that gets really cold (below freezing), then very roughly Vmp-std-array~100 VDC (Voc-std-array~117 VDC) gives you Voc-cold>~140-150 VDC max.

    Many controller manufacturers will have a website that helps you calculate these values vs controller limits. Midnite Solar has a pretty easy to use tool and can be helpful even for non-Midnite controllers:


    If you are on a tropical island with ocean around your, frequently the temperature never drops much below 70F.

    -Bill

    Near San Francisco California: 3.5kWatt Grid Tied Solar power system+small backup genset
  • littleharbor2
    littleharbor2 Solar Expert Posts: 2,036 ✭✭✭✭✭
    edited June 2018 #30
    +1,  What Bill said.  B)

    2.1 Kw Suntech 175 mono, Classic 200, Trace SW 4024 ( 15 years old  but brand new out of sealed factory box Jan. 2015), Bogart Tri-metric,  460 Ah. 24 volt LiFePo4 battery bank. Plenty of Baja Sea of Cortez sunshine.

  • jmbljb1
    jmbljb1 Registered Users Posts: 20 ✭✭
    BB. said:
    Many controller manufacturers will have a website that helps you calculate these values vs controller limits. Midnite Solar has a pretty easy to use tool and can be helpful even for non-Midnite controllers:
    -Bill

    Thank you so much for this website. I went there and entered my values and it told me exactly what controller to use.  I like that.  Now I need to find a way to return this EPEVER controller. I appreciate everyone's time and hopefully I will be able to get back to you guys after I have purchased my new controller.  God bless.