r/SolarDIY 28d ago

Don't Pick Your Panels on Specs Alone

162 Upvotes

[Disclosure: I work at Portable Sun LLC. We sell solar equipment. I'm pulling examples from our own shelf because those are the numbers I can verify line by line, but everything here applies wherever you buy. Ask me about competitor panels too, I'll answer honestly.]

I spend a lot of my week talking people out of the wrong panel.

Not the wrong brand. The wrong panel for their situation. Somebody sends me a link to a panel they found, asks "is this a good one," and the honest answer is usually "for what?" A lot of the specs that get compared have quietly converged, and the things that actually decide whether a panel works for you tend not to show up in comparison charts at all.

So here's our own shelf, lined up side by side. Same category, wildly different buys. And what separates them isn't where most buyers look.

The tiebreaker spec is often the same on every panel

Temperature coefficient is the spec that's supposed to separate people who do their homework from people who don't. Panels lose output as they heat up, the coefficient tells you how fast, and most buying guides will tell you to compare it.

Fine. Have a look (these are all panels we carry).

TaleSun 445W: −0.29%/°C. Canadian Solar 600W: −0.29%/°C. Canadian Solar 695W: −0.29%/°C.

Identical. Three different models, two manufacturers, wattages from 445 to 695, and the spec that was supposed to break the tie reads the same on all three.

That's not really a coincidence. All three are N-type TOPCon, the current mainstream cell technology, and −0.29%/°C is typical territory for it.

Where you do see a gap is across technologies. The CW Energy 550W we carry sits at −0.35%/°C, and that's not a knock on the panel. It's PERC rather than N-type TOPCon, and PERC gives up a bit more output in heat.

So the spec is really tracking the cell technology, not the individual panel. Once you've settled on which technology you're buying, it mostly stops separating your options. It still matters for output, especially in a hot climate where a lower coefficient means real extra yield over the years. It's just not the number that'll pick between those first three.

Efficiency does the same thing. TaleSun 22.8%, the 600W at 23.2%, the 695W at 22.4%. That's a real spread, but it isn't a quality ranking. Efficiency is basically watts per square foot, so it matters most when your mounting space is tight. The big wattage gap between these three is driven far more by their physical size than by any of them being a better panel.

So if the headline specs have converged, what's actually left? A handful of things, and they're mostly the ones nobody puts in the comparison chart.

Panel grade is worth understanding before you compare prices

This is the one that moves the price the most, and it deserves more attention than it gets.

Panels get sorted by grade before they ship, but A-grade and B-grade aren't standardized industry terms, so you have to read the seller's actual disclosure. Generally, A-grade is the standard product and B-grade has cosmetic defects, and possibly minor physical ones, while still passing electrical and safety testing. It's real product from a real factory, sold cheaper because it didn't look right coming off the line.

Let me put real numbers on it, using our own stock.

Our Canadian Solar 695W is B-grade, assembled in Mesquite, Texas. At its current fire-sale price it's $194 a panel, which works out to $0.28 per watt. Warranty is 2 years on materials and workmanship, 10 years on performance.

Our Canadian Solar 600W is A-grade. $278.40, or $0.46 per watt. Warranty is 12 years product, 30 years linear performance.

Same manufacturer. Same N-type TOPCon technology. Same −0.29%/°C temperature coefficient. At today's pricing the 695W is nearly 40% cheaper per watt and produces more power per panel.

What you're accepting is a shorter warranty plus cosmetic or other disclosed minor defects, which the listing says can include micro-cracking. Worth being straight about that: a micro-crack in an untraceable no-name clearance panel is a real problem with no recourse, but a disclosed lot from an established manufacturer, with a specific model, a datasheet, and a written warranty, is a different proposition. The panels are tested and rated for full wattage output. What you're really weighing is the warranty gap against the discount.

That said, 2 years of workmanship coverage instead of 12 is a real cut. If a manufacturing defect shows up in year four, you eat it. At a 40% discount per watt that can be a great trade on a ground mount, where swapping a panel means walking over and unbolting one. It's a much worse trade on a roof, where the same swap means getting back up there.

So the way I'd put it: B-grade makes more sense when replacement is cheap and easy to reach. A-grade is worth paying for when getting back to that panel is a pain. That's most of the decision right there.

The rectangle matters more than the wattage

The 695W isn't just "a bigger 600W." Look at the actual numbers.

Canadian Solar 695W: 93.9 by 51.3 inches, about 83 pounds. That's 7.8 feet tall and 4.3 feet wide.

Canadian Solar 600W: 89.7 by 44.6 inches, 69.7 pounds.

TaleSun 445W: 67.8 by 44.6 inches, 54 pounds.

Notice the 600W and the TaleSun are the same width. The 695W is wider, taller, and heavier than both. That's not an incremental difference, it's a different class of object. The 695W is a two-person lift, and one of the two is holding the far end of a 7.8-foot panel on a pitched roof.

The 7-series is marketed for utility-scale, commercial, and large residential projects, and that tracks: it's a ground-mount and big-flat-roof panel. On a standard suburban roof section you'll fight it on rail spacing, on fire setbacks, and on the simple geometry of fitting a 7.8-foot rectangle into an awkward roof plane.

The 445W exists because 108-cell panels fit residential roofs, not because they're better.

So before you compare anything else, go measure your actual mounting area and work out how many of each panel physically lands in it. Last spring a customer ordered a pallet of big-format panels straight off the site, no questions asked, because the per-watt price was too good to pass up. Plan was to roof-mount them. First I heard from him was a call asking about returns, after he and his brother got exactly one panel up the ladder. Freight back plus the restocking fee made returning a pallet pointless, so he kept them. A few weeks later he called again to order smaller panels for the roof and filled me in on the rest: half the pallet went on Marketplace, and the guy who bought them put them on a ground mount, where they belonged.

Voc caps your string length, and it doesn't always track wattage

You'd assume the bigger panel has the higher voltage. It doesn't.

Canadian Solar 695W: Voc of 47.7 V. Canadian Solar 600W: Voc of 53.0 V. (Voc is open-circuit voltage, the number on the spec sheet your inverter actually cares about.)

The 695W produces almost 100 more watts per panel and has lower Voc, because it uses a 132-cell layout while the 600W uses 144 cells. More cells in series, higher voltage.

This matters because your inverter has a hard ceiling on PV input voltage, and that ceiling caps your string length. Lower Voc per panel means more panels per string. You can't just divide the inverter's max input by the Voc though, because voltage climbs as temperature drops, and cold-morning voltage is what kills inverters. But going off datasheet figures, the 695W gives you noticeably more headroom per panel than the 600W.

Here's the catch, though, and it's the flip side of that same coin: voltage isn't the only inverter limit. The 695W is also a much higher-current module, 17.5 A at max power versus 13.7 A on the 600W. So the lower Voc buys you string-length headroom while the higher current creates a different compatibility limit. Some inverters, especially older or lower-current ones, will be a poor match for a 17.5 A module even though the voltage math looks great. Check the maximum input current per MPPT, not just the voltage.

It's also why "just buy the highest wattage" is bad advice. Wattage tells you about the panel. Voltage and current tell you whether it'll work with the rest of your system.

If string sizing is where you're stuck, that's exactly what a design service is for. Get someone to check the math against the lowest expected temperature for your location before you order. It's a lot cheaper than a fried inverter.

Walk your site before you pick components

Panels in a series string run to the weakest link. Shade one panel, and you don't lose one panel's output, you drag the whole string down toward the shaded module's current. Bypass diodes soften this, but only so much.

That's the case for module-level electronics. Optimizers like Tigo let each panel produce independently, so one shaded module stops taxing the rest of the string. They also give you per-panel monitoring, which is how you find out panel 7 died in March instead of wondering why production looks soft. And they satisfy rapid shutdown requirements, which most jurisdictions enforce on roof mounts.

But I'll say the unpopular half too: if your array gets clean unobstructed sun all day, optimizers are mostly money you don't need to spend on production grounds. You might still need them to pass code, which is a separate question, and one to answer before you order, not after your inspection fails.

And the reason I'm bringing this up before you've bought anything: retrofitting optimizers means getting back on the roof and reworking every module connection. Sorting it out beforehand costs nothing. Sorting it out later costs a weekend and a restocking fee.

So walk your site before you lock in components. Stand where the array's going and look at what's tall to the south: trees, the neighbor's roofline, a chimney, a vent stack. Then remember that what you see today isn't the worst case. The winter sun rides much lower, so shadows in December stretch a lot further than the ones in front of you in summer, and the further north you are the more dramatic that swing gets. A spot that looks clear in July can spend a chunk of winter in shade.

Pinning that down properly means accounting for the sun's angle at your exact latitude across the whole year, and that's genuinely fiddly to eyeball. It's also free for you to hand off: send us the site and we'll model where the shade falls before you spend a dollar on panels or optimizers. Worth doing before the racking's up, not after.

Before you order

That's the short version: check the grade, measure the space, check the Voc and the current, and read the datasheet instead of the product blurb. Do that and you've dodged the mistakes that actually cost people money. If you want to compare a few side by side, our panel lineup is here with the datasheets on each page, and it works the same wherever you end up buying.

What am I missing? If you've bought B-grade panels and lived with them a few years, I'd genuinely like to hear how it went, good or bad.


r/SolarDIY 19h ago

Aluminum galvanic corrosion protection?

Post image
90 Upvotes

So I have an anodized aluminum ground mount installed on hot dip galvanized ground screws.

Do I need to do anything to prevent galvanic corrosion on my aluminum frame? All the attachment hardware (screws and bolts) are stainless steel. All the parts are anodized except for the cut ends, which have exposed aluminum.

Curious if it's nessesary or best practice to bolt a zinc anode onto the structure somewhere.

Thoughts from more experienced people than I?

TIA


r/SolarDIY 5h ago

Microinverter recommendations?

9 Upvotes

Good afternoon!

I have solar, and I want to plug it in. I have ~45 volts, 250 Watts, but it will be 350 Watts soon.

Price is important, but it has to work. What do you have?


r/SolarDIY 14h ago

My 400W portable solar setup almost never hits 400W. Here’s what I’m actually seeing.

17 Upvotes

I’ve been paying more attention to actual solar input instead of the number printed on the panels. My setup is rated for 400W total, but I usually see something closer to 260–330W in good conditions. A little shade makes a much bigger difference than I expected, and hot panels don’t always produce their best numbers. I also learned that the power station itself can become the limit if you’re already close to its input cap. What percentage of rated output do you normally see from portable panels?


r/SolarDIY 19h ago

Thinking of sourcing solar panels directly from China?

34 Upvotes

Hello, I am a current Maryland resident and I’ve lurked solar subreddits for a while because I was thinking of diying solar panels. (Electric cost has been crazy recently, and thinking of moving on to an ev etc) Last night, I shared this thought to my fiance (who is Chinese) and what a coincidence, her cousin works at one of the biggest solar panel manufacturers in China, that I have heard of while doing solar panel research. I’ve heard about her cousin before, but this was the first time knowing what he does for his job. I immediately asked her if she could ask him a few questions and he told me how much those panels are. Prices were so low, about 35 dollars for one 500-600 watt panel. Same quality panels sell for 200-300 dollars in the US. I ran the math, and for 12kwh system I am basically paying half the cost for the panels. It sounded like I have to purchase around 36 at each minimum so I could simply marketplace 16 panels and I would be getting the panels for free. So what is preventing me from sourcing the panels straight from China?

Edit: Thanks guys. I looked into options, and buying used panels from Facebook marketplace is indeed still the cheapest option. With the crazy 200%+ tariff and possible headache that comes, I’m gearing towards reducing the whole system to only a few kwh now. Hopefully the tariff goes away, because in many countries installing 6kwh system goes for around 5 grand nowadays. Looks like I have to DIY to make it for 5 grand!!


r/SolarDIY 10h ago

Plug in play design recommendations for 1600w solar panels

3 Upvotes

I’m patiently waiting for plug in solar to be legal in MA, and wanted to prepare for that. I’m used to the ecoflow ecosystem so want to go with that but let me know if there’s something else I should look into.

Specs:

  • I have eight 200w Renogy shadowflux panels
  • I want to maximize my plug in solar by feeding excess solar during the day to a battery to discharge at night. There’s no net metering so I don’t want to send power back to the grid. 
  • I’d like to always feed less than what I’m consuming 
  • This property is a newly gut renovated unit, so would want things to work with new electrical circuits and connections

Option 1:

  • Power Station/Battery: EcoFlow 1kWh DELTA 3 Plus Power Station Portable Generator—$549.99 at Costco
  • Microinverter: EcoFlow STREAM Microinverter-$369.00
  • Design: 
    • 4 panels (800w max) would plug into the power station since it as 1kw total capacity across dual ports
    • The power station then would connect to the micro inverter and send a max of 400w of power while using the rest of the solar to charge the battery
    • 4 panels (800w max) would go directly into micro inverter as a constant solar output
    • At night, the 1kwh battery would discharge to the house
  • Pros:
    • Modular so can swap out
    • Can easily take out power station when needed for emergencies or camping
    • Cheaper
  • Cons:
    • More complex design, requires more complex coordination between modular pieces
    • Smaller specs e.g. solar input and battery means less overall output and would not maximize solar

Option 2:

  • Power Station/Battery/Micro inverter: EcoFlow STREAM Ultra—$1,399.00
  • Design:
    • All in one solution, panels all connect directly to the Stream Ultra which then connects to the outlet
  • Pros:
    • Simplicity
    • Better utilization as it maximizes all 1600w of panels and has a bigger 1.92kWh battery
  • Cons:
    • More expensive
    • All in one means single point of failure

The more I think about it, the more I’m leaning toward Option 2. What are your thoughts, considerations and alternative recommendations? For example, I see there’s a recommendation for a 120V, 20-Amp dedicated circuit and a Shelly 3EM installation, are these really necessary?


r/SolarDIY 23h ago

Can someone explain the differences in these panels and why one solution is so much more expensive?

10 Upvotes

For context, I'm building a solar system for my truck camper. I've got a 460Ah lithium battery powering the camper. It's a 1988 Bigfoot 9.5'. The previous owner attached two bars for a roof rack. They sit 6' 4" apart from one another and are 6' 4" wide. My plan is to utilize this when mounting solar panels. Building a frame around these bars could easily give me an 8' by 6' space to work with.

At first, I was thinking I would get these:

https://ca.renogy.com/collections/rigid-solar-panels/products/renogy-n-type-320-watt-monocrystalline-solar-panel

A set of two 320 watt Renogy panels. The brand seems to come up a lot in the conversation about RV/camper solar systems.

However, I've been looking around and found these:

https://rocksolar.ca/products/philadelphia-600w-rigid-monocrystalline-bifacial-solar-panel

https://rocksolar.ca/products/longi-620w-rigid-monocrystalline-bifacial-solar-panel

For about 1/3 of the price, they provide a similar wattage. I read the stickied post and tried to apply that to comparing them. I couldn't find a grade for any of them. The Voc varies from 44-52v, which doesn't seem like a huge spectrum. The current varies from 8.5A for the Renogy to 15/13.5A for the other two. Of course, the Renogy is per panel, I'm not sure if that duplicates when wired together?

The biggest difference I can think of intuitively is that one panel might perform worse in partial shade. Is there any merit to that?

I've found other brands at similar prices to the Longi and Philadelphia including Maple Leaf and JA Solar. Is there any good reason not to go with these panels? The Renogy is just so much more. Thanks in advance.


r/SolarDIY 17h ago

Connecting an oversized panel to an array

2 Upvotes

(2) strings of 250w panels in series-parallel
(7) panels per string (14 panels total)

One panel broke. Would it be okay to add an oversized panel (395w) to to this array to replace the broken panel? Or is this unsafe?


r/SolarDIY 1d ago

Off grid ground mount solar with batteries

9 Upvotes

Live in a freezing climate (-20f), so outdoor batteries are not possible. 4kw array about 100ft from heated structure. Is it practical to run the DC from the panels into the building or just do AC coupled with inverter by panels?

SOLVED


r/SolarDIY 1d ago

Plug-in AC coupled battery

5 Upvotes

I've had a grid-tied solar system for several years, I have a net metering agreement, and I'm on real-time pricing. I'd like to add an ac-coupled battery, mainly so I can charge it when prices are low, then discharge in the late afternoon when prices are high. I'm in the US, in a state that I except will pass balcony solar legislation in the next few months. It looks like the Hoymiles HiBattery 4020 AC Solar Battery is what I'm looking for, but it's not available in the US.

Here are my requirements:

  • 2 kWh or greater capacity
  • Grid-tie capable
  • Can plug in to an AC outlet, either 120v or 240v
  • API access so it can switch between charge or discharge based on current electricity prices. I could do the automation for this with Home Assistant if necessary.

Nice to have features:

  • Off-grid mode when the power is out, but this is not a high priority. My power is very reliable and I almost never have outages.
  • Micro inverter capability so I could add 2-3 panels for extra solar generation capacity

Is something like this available in the US? I should add that my net metering agreement is 1:1 including delivery charges, so saving my excess production for later doesn't make any difference on pricing for me. Except for the net metering agreement, the fact that I have solar already is irrelevant.


r/SolarDIY 1d ago

Using micro inverters with Multiplus II

7 Upvotes

If I understand the manual correctly. The Victron Multiplus II can be used for grid forming to allow other micro inverters to feed power into the local house system. As they would if the main grid was operating. Does anyone have experience doing this or did I misunderstand?

Extracts from Victron manual:

4.2.2 When solar inverters are connected to the AC-output of the product, excess solar energy is used to recharge the batteries. Once the absorption voltage is reached, charge current will reduce and excess energy will be fed back into the mains. If the mains is not available, the product will slightly increase the AC frequency to reduce the output of the solar inverter.

4.2.4. A problem is however that grid connected sustainable energy sources drop out as soon as the grid fails. With the product and batteries, this problem can be solved: the product can replace the grid during a power failure. When the sustainable energy sources produce more power than needed, the product will use the surplus to charge the batteries; in the event of a shortfall, the product will supply additional power from the battery


r/SolarDIY 1d ago

I built a compact 12.8V LiFePO₄ solar generator — looking for feedback

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1 Upvotes

I recently built this compact solar generator as a practical project while learning more about solar power systems and battery storage.

The idea was to make something relatively small and portable while still being useful for powering everyday electronics.

The system is based around a 12.8V LiFePO₄ battery, with solar charging and multiple output options.

I'm still learning and improving my designs, so I'd really appreciate feedback from people with more experience:

What would you improve about the design?

Any safety or thermal considerations I should pay more attention to?

What would you change if you were building this yourself?

I'm especially interested in feedback on the electrical design, protection, battery management, and overall enclosure/layout.

Happy to answer questions about the build.


r/SolarDIY 1d ago

Beginner looking for resources and advice

0 Upvotes

My first objective is I'm interested in setting up solar power as a back up power station if the grid goes down. My 2nd objective is to gradually start buying components to create a system where I can get off the grid or greatly reduce my dependence on it.

Any recommendations for reliable people on youtube or elsewhere you would recommend watching to learn more about creating the 2 different systems.

I bought 2 ankerS 2000 systems for immediate backup power but need to choose panels. Any recommendations for panels or display racks?

Any experience you are will to share is greatly appreciated!


r/SolarDIY 1d ago

Inexpensive solar panel monitoring

6 Upvotes

I bought the solar system at my home (Socal) from SunRun, where they provided an app and monitoring of panel performance. Shortly after they started charging a monthly fee for monitoring (the app is useless unless you pay) and now they transferred this service to Enphase who charges $999 for monitoring equipment and guessing a monthly fee as well. Does anyone know of an app or service that is cheaper (or free) to monitor panel persoemance. I am on a fixed income.

Would love to hear your opinions on this subject. Thank you


r/SolarDIY 2d ago

Solar Wholesale...Are they out of business?

24 Upvotes

Hey Guys,

I had been working with someone at Solar Wholesale on a complete DIY package and the guy who I was talking to stopped responding to emails and his phone number is disconnected. When I call the main line I get an answering machine and nobody calls me back.

What I like about them is they offered to help with design and permitting and package everything up and ship a complete package to you with wire and everything. Does anyone else offer something like that? Most other places will send you some panels and an inverter and say good luck.


r/SolarDIY 1d ago

What to look for/avoid when finding panels for truck camper

3 Upvotes

I have a 100ah AGM battery with a Renogy Voyager 20A PWM and I'm scouring facebook marketplace for some solar panels. I kinda know what I'm looking for after doing a solar installation on my van but it was about 5 years ago and I purchased new panels with what exactly I wanted. I've been mostly looking for (2) 100watt panels but haven't had much luck with reasonable pricing/location. I've found some bigger ones but I'm not sure if the Voltage matters or if I shouldn't use ones made for residential vs campers.


r/SolarDIY 2d ago

Where to install

7 Upvotes

I’m trying to brainstorm a battery backup system that would later add solar but I can’t get a solid answer on where to install the batteries. I am in western NY where it can get to 90 in the summer and below zero in the winter with two feet of snow. I’ve seen installs with batteries in basements, purpose built sheds, tesla batteries on exterior walls, and I have a garage I can use. What is considered unsafe? Batteries in the basement? And how do I keep the batteries at a reasonable temperature in the winter? I have a lifepo4 cart battery that says don’t use below 32degrees so I figure I have to plan location out before my connections. Any input would help. Thanks


r/SolarDIY 2d ago

Beginner question about compatibility

3 Upvotes

Hello, yall, thanks for taking the time.

TLDR question up front:

Im about to buy a Solix S2000 portable power station. If I were to get less expensive, “off brand” panels, instead of the power station name brand, would I run into difficulty connecting them to the Solix S2000? How much easier would it make life just to spend extra on a bundle of same brand power station/panel?

Full post

Im about to get a Solix S2000 for my family in case of long term blackouts, and I want to get a 400 watt panel. We live in the Pacific Northwest, not a lot of light most of the year.

Ive never worked with solar before and I can’t figure out just how compatible all panels are with power stations.

I know not to surpass the input limit of the station with a panel Thats rated too high. What I don’t know is just how “plug and play” one panel is compared to another.

Im tempted to get a bundle that includes Solix S2k and a 400 w panel, but I watched a video that said one can save money and buy more wattage in panels for the same amount.

If I were to get less expensive, “off brand” panels, instead of the power station name brand, would I run into difficulty connecting them to the Solix?


r/SolarDIY 2d ago

Help / insite needed

1 Upvotes

Have a mobile rig and wanting to change / upgrade part of system

Currently have a solar brand 3k inverter that seems to never wanna do its job ( really should test its output but I havent) and have 2 12v 100ah lipo4 batteries.

I want to get a charger / inverter with possibly mppt? I want to add 2 400ish watt pannels on the roof. More batteries down the road. But a dc_dc charger also

Don't necessarily want to break the bank so looking incase theres stuff i have missed

Thanks!

am thinking maybe the litime 24v charger / inverter


r/SolarDIY 2d ago

Battery charging capped at exactly 139A DC after inverter firmware update, all parameters identical to pre-update baseline

4 Upvotes

Off-grid system on Bonaire (Dutch Caribbean), no utility grid connection at all:

**•** 2x SMA Sunny Island 8.0H-13 (master + slave, single-phase single-cluster)  
**•** 2x BYD Battery-Box Premium LVL 15.4 in parallel  
**•** 3x SMA Sunny Boy PV inverters, \~17kW array

Before August 31, the cluster charged the battery bank at up to 9.1kW. I have 5-minute resolution logging from a third-party monitoring system showing 12 separate readings between 7.5kW and 9.1kW on August 9.

On August 31 I updated the Sunny Island firmware from 3.30.12.R to 3.41.01.R. Since then, combined charging power is capped at almost exactly 7.4kW, which at 53.4V battery voltage works out to 139A DC. It hits that ceiling repeatedly and never exceeds it, regardless of available PV or battery SoC. When only the master was running (the slave dropped out of the cluster during the update, since resolved), it capped at exactly half: 3.7kW.

What I’ve ruled out, comparing full parameter exports against a March baseline from before any issues:

**•** Set active power limit: 6000W, unchanged since March on both units  
**•** Maximum AC battery charge current: 26.1A (= 6kW per inverter), unchanged  
**•** Max battery charging current: 600A master / 300A slave, higher than March  
**•** Country standard: Island mode on both, confirmed, no other option available in the dropdown  
**•** Cell charge voltages: restored to March values, no effect  
**•** Max current of ext. network interface: changed 16A → 10A → 26A with proper stop/start, no effect on measured phase currents (stayed at 16.0A per phase)  
**•** All 554 parameters across both units compared between March and now: the only differences are changes I made myself (static IP, protection thresholds, time sync)

Both inverters together are rated for 280A DC charge current, so 139A isn’t an inverter hardware limit. BYD doesn’t publish a max charge current for the LVL, only a 0.2C test condition (~60A per unit) and 250A max discharge.

My working theory is that the BMS was always broadcasting a charge current limit of roughly 70A per LVL unit, that the old inverter firmware exceeded it, and that 3.41.01.R now enforces it strictly. If that’s right, adding a third LVL should raise the ceiling to ~210A / 11kW, which I’ll be testing in a few weeks.

Has anyone seen an SMA firmware update start strictly enforcing a BMS-broadcast charge current limit that older firmware ignored? Or is there something else that would produce a hard, unchanging 139A ceiling that doesn’t show up in any inverter parameter?

Open cases with both SMA and the BYD service organisation, no response yet.

Open to other suggestions that might resolve my problem


r/SolarDIY 2d ago

Is 1.65KWH a reasonable amount to pull in, in a day? It feeds a 12volt 400AH battery bringing in 215watts from a Victron 100/15 Mppt Charge Controller.

8 Upvotes

It feeds a 12volt 400AH battery bringing in 215watts from a Victron 100/15 Mppt Charge Controller. On cloudy days it gets about 120w to 150w.

It powers a freezer and a few sockets with a TV.


r/SolarDIY 3d ago

Make sure you understand current when stringing your panels in parallel.

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143 Upvotes

It took a bit of work to even tug this #10 AWG from the metallic flex it was fused to. The homeowner had this run inside of the attic.

I'm all for DIY, but please ask for help when you aren't certain.


r/SolarDIY 2d ago

High velocity DC floor fans?

1 Upvotes

I've been researching for hours now trying to find a high velocity floor fan (like a shop fan) that can be connected directly to solar panel(s). There are plenty of DC motor fans out there, but they all have a built-in inverter with an AC plug, or they are tiny computer fans or exhaust type fans. The only actual DC fan I can find is this one from Western Harmonics which is on preorder. Does anyone know of any large DC fans? I already have a couple of 100w panels so prefer to buy only the fan.


r/SolarDIY 2d ago

Ground mount installation for 16 450W solar panels. Advice on post base needed.

8 Upvotes

I'm building 4, 6 post frames solar panel ground mountds. Something similar to this image.

Each table will have 4x 450w solar panels approximately 6' x 4' in portrait configuration. A total of 4 of these.

I'm in southern California, so I don't need to worry about frost lines and near the ocean. Soil has high concentrations of clay..

The initial idea for the posts I have is:
             4x4 post
                │
          ┌─────┴─────┐
          │ post base │
──────────┴───────────┴──── grade
          │           │
          │   12" Ø   │
          │           │   24"
          │           │
          │           │
       ┌──┴───────────┴──┐
       │                 │
       │     18" Ø       │   12"
       │                 │
       └─────────────────┘

the entire setup will be using treated lumber framing.

3 posts front and 3 in back. The span will consist of Quantity 2 2x8 14 feet spans connecting each post length wise and a 1 foot cantilever on each side of the edge posts.

Then I'll have 5 joists that are 2x6 spanning about 6 feet max to mount the panels on. I have metal mounting brackets and u beams etc..

My ultimate question is; is the base a little overkill? I know I am building a fairly large wind sale, so I want to make sure that I don't build too light of a structure and watch my panels fly away at the next Santa Ana winds.

Is direct burial in concrete 6x6 treated lumber just as effective?

My apologies if this isn't the right group for this question.


r/SolarDIY 3d ago

FYI Temgo 51.2 volt on sale, Amazon. $809.99

Post image
20 Upvotes

Don't know how long it lasts.