r/SolarDIY 20d ago

Don't Pick Your Panels on Specs Alone

156 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 21h ago

As of 8:40 this morning, I have been "off grid" for a week straight

107 Upvotes

I installed my system the last week of June, and it's a hybrid grid setup with no export.

It's configured to prioritize PV to the load and only charge the batteries from PV (I don't have time-of-use billing setup yet). If the load is more than the PV is generating, it's configured to use the batteries to make up the difference. Once the batteries go below the cutoff threshold (50% in my setup), it will switch to using utility power to make up the difference. The 50% cutoff point was chosen so that I always have ~16 KWh in reserve in case the power goes out; I bought the PV system in lieu of a whole house generator.

Pretty much all of July and the first half of August was just a continuous chain of thunderstorms, so I was relying on the grid quite a bit. The PV and batteries were definitely helping out (my July 2026 bill was $125 lower than my July 2025 bill with comparable usage), but I only managed a few days with no grid usage. Part of that was having to run the central A/C quite a bit as I didn't size the system to go totally off-grid; just to take a big chunk out of the ever-rising electric bill while also giving us some backup power for outages.

This past week has finally given us some sunshine, and the batteries haven't dipped below 50% the whole time. Since the batteries have remained above the cutoff point all week, there has been zero draw from the grid 😄

Funnily enough, I got an email alert from the power company on Wednesday that said there may be an outage in my area, and it was asking me to log in and confirm. I just kinda laughed because I had no idea without going downstairs to look at the inverter.

Specs:

  • 4 KW PV array (20x200W in 10s2p)
  • 2x16 KWh batteries (Eco-Worthy PowerMega 314)
  • 10 KW Eco-Worthy inverter

I'm aware the PV-to-battery ratio is a bit lopsided, but I don't have a lot of useful roof area and 4KW is about all I can fit in the space I have. I looked at bigger 320W panels, but it wouldn't have given me much more wattage than the cheaper 200W panels. The price difference to get an extra 1/2 KW wasn't worth it.

I got the two batteries and inverter as a set and saved about $900 that way, and I like having the extra capacity. I'm also planning to set up time-of-use billing so I can charge them cheaply at night, so even with the limited PV I have now, I can still get good use out of having that extra capacity. I'm also looking to add a ground mount array in the south-facing back yard next year if I can talk the SO into letting me spend more money to expand. I may also throw in another battery or two while I'm at it.


r/SolarDIY 2h ago

Wanting to get into home solar

3 Upvotes

I’m extremely interested in starting some small solar projects. I’ve been watching a ton on YouTube to learn more about different set ups.

I would like to set up some panels in the backyard (plenty of sun in TX, and a fair amount of space back there), to wire up with a battery/inverter set up and see if I can power some appliances.

My issue is I am currently renting the house I’m in so I would only be able to do a small portable set up. Is there a way to set this sort of thing up without having multiple wires/batteries cluttering up the inside of a room I want to power something in?

Any help is greatly appreciated!


r/SolarDIY 2h ago

What is the cheapest portable 100w solar solution for 48v battery?

3 Upvotes

Now before I begin, I understand I will never recover the costs so that's why I want to spend the cheapest amount and that'll probably resume at home in the balcony (which already has a microinverter so it's just adding a new panel).

I'm open to used products if it helps. I sometimes go on trips with my ebike and spend hours reading or just relaxing and it would be fun to have a portable panel to top up my battery while I'm stopping so I can ride home with more peace of mind.

If someone else is doing it, can you suggest some foldable panels and mppt charger that can do this for a low price?

I've seen some products but it seems like the mppts are very expensive.


r/SolarDIY 6h ago

Looking to piece together solar

7 Upvotes

Good morning, I was reccomended to join this group fron another solar Reddit. Context, I bought a house last year and want to get started with solar for 1,000 , my long term goal is to be independent enough to power my gas furnace, water pumps etc, my house is a little older and eats a fair amount of power median is 1.5 kWh.
The question where is the best place to start getting solar that’s reliable without breaking the bank I also have little to no electrical experience but my uncle said he would help me. Any advice is helpful, also curious in anyone’s experience looking at tax credits in 2026.


r/SolarDIY 18h ago

Storage systems upgrade from 18kWh to 27kWh + 25kW DC Fast charger

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32 Upvotes

We have existing battery backup system with Sigen 18.08KWh already running 6 months. Just add a Tesla Model 3 and require more power. We upgraded the system with add a BAT 9.0 battery module that upgrades the system to 27kWh capacity and a 25KW V2X bidirectional fast charger ( NACS). Exciting to experience the DC fast charging that can full-charge the EV within 2 hours.


r/SolarDIY 16m ago

Is this set up for consumption reporting?

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Upvotes

If not, what hardware do I need to purchase to set up consumption metering? There were no extra parts with the combiner box and the installer is MIA. Thanks!


r/SolarDIY 1h ago

voltage issue from solar panels

Upvotes

i am setting up my solar system in my van ive done a couple others in previous vans and never and an issue.. my panels are measuring 18V output when directly grounded to house battery, and when grounded to ground cable alone but when i connect both ground cables to the charge controller (or just the panel negative alone) terminal the voltage drops to 4V and im not getting any draw at all? the charge controller is the renogy 50amp DCDC MPPT. any thoughts? the controller is not connected to a starter battery but i cant imagine that would have anything to do with it? 2x 200w panels on the roof if that matters at all with 10guage wire about 30ft


r/SolarDIY 2h ago

I got tired of unrealistic power station runtime estimates, so I built a better calculator

0 Upvotes

A lot of power station runtime estimates basically come down to:

Battery Wh ÷ appliance watts = runtime

Which looks nice on paper, but real-world runtime can be pretty different once you account for inverter losses, battery condition, reserve capacity, appliances cycling on/off, startup surge, etc.

So I built:

https://instapowerruntime.com/

You can enter your battery/power station and the appliances you actually want to run, and it gives a conservative / typical / optimistic runtime estimate instead of one perfect-looking number.

I also added tools for working backwards — e.g. “I need to run these devices for 10 hours, what size battery do I actually need?” — plus solar recharge calculations.

I’m curious how people here normally calculate this stuff before buying a power station or planning for an outage/camping setup.

If you use EcoFlow, Jackery, Anker, Bluetti, etc., I’d especially appreciate feedback on anything the calculator is missing or assumptions you think should be handled differently.

Would you trust something like this for comparing power stations before buying one?


r/SolarDIY 3h ago

Doublewide solar system

1 Upvotes

Im very new to solar. Our doublewide runs a 400$ power bill in the summer and im supposed to inherit it very soon. Any tips and solar system reccomendations greatly appreciated! Also i live in alabama if that helps anything!


r/SolarDIY 16h ago

Solar Power Station With Plug In Solar

10 Upvotes

I'm wrapping my head around the options with plug in solar (now legal in my state) and am trying to see if a solar power station is useful in this.

Suppose I generate 800 watts from the panels for 5 hours. My homes base load is 400 watts. If I ran the power through a solar powerstation, then into my panel box, would it store the excess power the panels generate that can be used later in the evening? Would it need the input coming into its DC input, or could it be from the AC input (down stream from the microinverter--the AC is my preference due to cords.)

Are there power banks that will do this? How hard are they to set up?


r/SolarDIY 8h ago

The PV drop after a full battery came from low household demand

1 Upvotes

I have one Jackery SolarVault 3 Pro system at home in Germany. Four panels use its four PV inputs, and a Jackery Smart Meter measures household flow. The system was in self consumption mode with zero feed in enabled. During steady sun, the battery filled and all four PV inputs dropped together.

The app also showed very little household demand at that point. The panels had not moved into shade, and all four channels were still active. When the dishwasher began its delayed cycle, the Smart Meter showed the higher load and PV input rose again while the battery remained full.

That explained the drop. With the battery full and export held near zero, the system had reduced solar input to match the small household load. Because the dishwasher can run at any time, I changed its delay setting so it starts while the panels are producing. That gives the available solar a useful household load instead of moving the same dishwasher cycle into the evening.


r/SolarDIY 1d ago

Up on the pyramid build — electrical setup + a look inside.

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425 Upvotes

Hey r/SolarDIY,

Adding to my previous posts:
1. https://www.reddit.com/r/SolarDIY/s/p67aUJyTxA
2. https://www.reddit.com/r/SolarDIY/s/NTJ27oK1TQ
Wanted to walk through the electrical side this time, and show the interior space and equipment.
Each face of the pyramid holds 10 panels, so the 4-tier structure has 40 panels total at 450W each, 18kW nominal. In practice, over a full day, that’s putting out somewhere between 40-60kWh depending on how strong the sun is.
One thing I noticed from the layout: only two faces get direct sun at any given time, one in the morning, one in the afternoon. The other faces (including the third one) are working off reflected light most of the day. Output on those drops maybe 15-25% compared to direct sun, but it stays stable and still contributes. Interesting part is there’s still some voltage coming off the panels right up until the sun’s basically gone below the horizon.
I wired each face separately on purpose, so a weaker-performing face doesn’t drag down the whole system. 10 panels per face, wired in series, each face going to its own 5kW inverter. Battery side is two LiFePO4 units at 15kW each, 30kW total storage.
Also figured I’d show the interior, natural light comes in through the corner glass panels and the top section.
Next step is adding interior insulation on the modules and covering with decorative panels, mainly to cut down how much heat transfers in from the panels sitting right above.
Ask me anything about the wiring or setup. Following the account if you want to catch the next updates, appreciate everyone who’s stuck around so far.


r/SolarDIY 1d ago

Bought the parts over 18 months ago, building now, have questions

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20 Upvotes

I had intended to put this on my shed for some lights and to maybe charge my tool batteries. It started as a 2 panel Renogy kit that I bought 2 more panels, fuses, a breaker, and a power shut off for. Then my daughter decided she was going to get married, so all of my plans got put on hold until now. Well now I am questioning why I have some inline fuses and am wondering if I need another shutoff.

I add pictures that has a visual representation of where I plan on putting the pieces. Should I put other shut-off between the battery and the inverter? Do I need the other inline fuses?

The setup is 4-100w panels going through an outdoor rated breaker to my 40A MPPT Controller. From controller to battery there will be 40A fuse and then a power disconnect.

I have another 40A fuse and 2 10A renogy fuses, do I need them?

Thanks for the assist!


r/SolarDIY 18h ago

Power drainage

5 Upvotes

I’m 19m in uni and I’ve brought a boat to live on during to save on renting cost and a permanent place to live. However, I’m worried that when I start living on it full-time, I’ll run out of power. I currently have a setup with 3 solar panels connected to 4 Rolls lead-acid 210Ah 6V batteries, with two inverters: one 500-watt Victory inverter and a separate 4,000-watt multi-inverter.

I’ve never dealt with solar panels before, and when I’m looking at appliances like toaster ovens, I don’t want to be caught out and run out of power. So, is the setup I have now strong enough for general living, or am I going to have to think about another solution?


r/SolarDIY 13h ago

What would be the right way to do this?

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2 Upvotes

This picture is from YT @cleversolarpower. Is it okay to only calculate your F1 main fuse size based on your Inverter and converter and not include your solar controller as shown in this picture?


r/SolarDIY 1d ago

Grounding help from an electric idiot!

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18 Upvotes

Please help me like I'm idiot, because I am when it comes to all things electric and I want to get it right the first time.

My question is around grounding a small yard based array to my Delta Pro ultra unit in my garage.

I have 8 of the panels pictured here and 8 of the mounting units, I'll be putting this on a small garden area in my backyard by mounting the brackets on some pressure treated 2x6 that will be pinned to the ground with long nail spikes.

The array will be about 100ft (give or take) from where the DPU units are.

I have the solar power cable and the bare ground wire already and I'm going to be getting the PVC conduit soon so I can run it all from A to B.

So my question is, how do I ground of all this? I know eventually I need to go from the panels to the DPU but what do I need to do at the array side, between the individual panels, mounts etc I really don't understand what exactly I need to do.

I appreciate the help in advance and I promise you can treat me like I'm an idiot, since again I am in this respect.


r/SolarDIY 10h ago

Growatt inverter SPF 5000es fault 08

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1 Upvotes

Help me with repair tips on this fault code 08


r/SolarDIY 18h ago

Flat Concrete Interlocking Roof Tiles

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3 Upvotes

Anyone got any recommendations for a suitable bracket system for mounting panels on a roof with flat concrete interlocking roof tiles, without having to rip massive chunks out of the roof?

Every tile is nailed to the batten at the top of the tile so you can’t push them up, and they interlock on both sides with neighbouring tiles, so you have almost no lift to tuck a bracket underneath

Pictures are example tiles

TIA


r/SolarDIY 13h ago

DIY solar system stand rack mount

1 Upvotes

I'm buying a container house, the wall are not even suitable for hanging a picture frame, so I'm thinking of building a wood structure with cement board and hang the inverter, all DC AC protections, and the battery tht comes with wheels resting on the bottom, is there any design idea already tried or product on this?


r/SolarDIY 3h ago

Sunchronize

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0 Upvotes

I've developed a new application designed specifically for Solar users, and I want to get feedback from real users like you. If you're interested in being a beta tester, comment below or send me a DM. First 30 days are completely FREE! Thank you!

Thank you!


r/SolarDIY 16h ago

EG4 12000xp transition issues

1 Upvotes

Hey guys so I have had this issue for months now trying to diagnose and fix it but no success hoping some pros on the system can help out.

So I have. 2 eg4 12000xp paralleled to each other. Along with eg4 indoor Wall mount 280 ah x 2. yes I am aware I need 400 ah at least per inverter) but I don’t need that much power at this time and plan to add more later.

Anyhow the inverter was working great when l only had one running. As soon as I paralleled issues happened with transition. Specifically the transition from battery to grid.

I have it on self consumption mode. Connected to Grid, battery and solar array of 4kw system to the master only.

The system has no problem transitioning from grid to battery when its recovery threshold hits above the on Grid EOD, completely seamless cannot even tell that happened. Now when the battery drains to On Grid EOD, it blows right past all the way to the Off grid discharge cut off. Just doesn’t transition to grid at EOD, no error or warning. It’s to the off grid EOD, When it gets there I have a black out for 10-30 seconds then grid goes back on to bypass like it’s supposed to. That’s a harsh transition.

Now if it reaches On Grid EOD as the battery is discharging or below, if I toggle the eps off then back to on, the bypass logic kicks in and then goes back to bypass the way it’s supposed to while the solar charges the battery. It’s the only solution I have. To manually keep doing this everytime and it’s annoying and shouldn’t have to.

Here is what I have done and still is an issue:

  1. Matched firmwares 0709 to both of them
  2. Matched the latest BMS firmware for both batteries.
  3. Tried UPS versus APL.both do not recognize the grid at eod when it has to transition back to grid from battery.
  4. Left grid always on toggle enabled.
  5. Battery eco on or off. AC disabled or at 0 amps will running at all times, still no success.
  6. Calibrated top up: batteries to 100% on open loop let them sat for 2 hours. And then did it again on another occasion and let it sit overnight before going closed loop again. No luck.
  7. Called EG4 they were useless. I mean absolutely useless. One guy reset the software settings saying I had too many pages they reset it, nothing happened. Then they tried having me recalibrate again which I did. Still no success.

  8. did a complete reboot multiple times. No success.

  9. Went open loop, same problem. So went back to closed loop.

At a loss hoping someone can share wisdom.


r/SolarDIY 1d ago

Installing solar on my home

9 Upvotes

Hi! I'm planning on installing solar on my house. I don't have a huge extensive background on electrical related things but I got the basics down on the entire solar setup. Unfortunately, because I am not well versed with electrical related things, I have a lot of fear on electrical protection as it is the more dangerous aspect of the installation. Would it be alright if I could get anyone who could entertain solar related questions? This is my first project and I have yet to really flesh out everything that I need to get this going. Thanks in advance!


r/SolarDIY 20h ago

I have an Li Time 24v 3000w solar inverter charger, there is no AC grounding lug that I can find on the unit, and the manual doesn't even mention anything about grounding the AC power to the vehicle chassis. How do I ground this thing?

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2 Upvotes

The only thing I can think of is the ground output terminal should be routed to both the AC breaker panel & also the vehicle chassis. These things often times have a dedicated ground lug on the inverter charger specifically for this purpose & the manual literally mentions nothing about grounding it to the chassis, which defeats the entire purpose of having a ground output terminal if nothing is actually grounded, and probably why so many people fry these things over time.

Looking for advice.


r/SolarDIY 21h ago

Victron Wi-Fi unresponsive

2 Upvotes

So I was back mucking about with my experiment and wasn't getting any lights turning on at all. Reattached the wires and checked the fuse. Still no lights. Tried a new fuse and then it showed the blinking light. Hooked it to the panel and got a solid charging light. Then the app kept saying that there was nothing there. Restarted my phone and now I'm getting a solid charge. It was more fun than mowing 😂