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Thoughts on my project

alha

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Twin Cities, MN
After reading the thread electrical advice needed, I thought I'd toss out my plan for my workshed and see what thoughts I receive about it. I am in the process of getting my service to my house upgraded from 200 to 400 amp, which is happening in conjunction with my solar array install. Once this is all inspected, approved and completed, and everyone's gone, I am planning on dropping a 120A circuit to a new sub-panel in my basement, about 20ish feet from the main.

From that, I am considering feeding thru the wall, to an outdoor 60 amp hot tub GFIC box on the other side. I'd then plan on trenching about 110 feet of 1 1/2" grey plastic conduit down to the workshed. I planned on using THHN 6 gauge copper wire 3 X 120' each of red, white and black + 120' THHN 10 AWG green for the ground. Would it not be advisable to drive in a ground rod out there? This would not be going thru the normal "approval channels" you might say, and it would only be live when the shed was being used.

I figure that if this hot tub panel can protect someones tush sitting in a big tub of water, it should easily protect me down there. I plan on having 3 circuits taking up all 6 spots in the subpanel box, 2 240v 20 amp and 2 120v 20 amp. It may have a Mr Slim type A/C unit, 15 or 20 amp 240v to cool it, and a wood burning stove to heat it in the winter. I plan on wiring it all in Greenfield, that's pretty much all I use. Anyone see anything out of line with what the possible plan may be?
 
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wyliesdiesels

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What equipment do u plan on running in there?

U need ground rods for a detached structure.... And u cant use the hot tub GFCI to feed the garage.
 
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alha

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What equipment do u plan on running in there?
Not exactly sure, drills, maybe saws, battery charger, blower for the wood stove, lights, 120v heater for lead casting, nothing terribly exciting now, but like to future proof when practical.
U need ground rods for a detached structure....
I asked because I thought I remembered that you weren't supposed to with a GFI, it would cause issues, but it's been a while and is pretty foggy at this point

And u cant use the hot tub GFCI to feed the garage.
Why not? I mean practically, not "officially". And technically, its a shed, not a garage. 12'x14', 2 levels. Thanks for any thoughts.
 

wyliesdiesels

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Not exactly sure, drills, maybe saws, battery charger, blower for the wood stove, lights, 120v heater for lead casting, nothing terribly exciting now, but like to future proof when practical.
I asked because I thought I remembered that you weren't supposed to with a GFI, it would cause issues, but it's been a while and is pretty foggy at this point

Why not? I mean practically, not "officially". And technically, its a shed, not a garage. 12'x14', 2 levels. Thanks for any thoughts.

GFCIs and ground rods are 2 different things. Not sure where u heard u cant have one with the other. Plenty of houses have GFCIs and ground rods with NO issues. Not sure where u heard that.

And as far as the GFCI feeding the tub and shed. U can do whatever u want...
 

2ManyProjects

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After reading the thread electrical advice needed, I thought I'd toss out my plan for my workshed and see what thoughts I receive about it. I am in the process of getting my service to my house upgraded from 200 to 400 amp, which is happening in conjunction with my solar array install. Once this is all inspected, approved and completed, and everyone's gone, I am planning on dropping a 120A circuit to a new sub-panel in my basement, about 20ish feet from the main.

From that, I am considering feeding thru the wall, to an outdoor 60 amp hot tub GFIC box on the other side. I'd then plan on trenching about 110 feet of 1 1/2" grey plastic conduit down to the workshed. I planned on using THHN 6 gauge copper wire 3 X 120' each of red, white and black + 120' THHN 10 AWG green for the ground.

I might be misunderstanding you; but as it stands, I don't see why you're bothering with the basement sub-panel. Given your imminent/ongoing 200A --> 400A upgrade, your main service panel(s) should have MORE than enough capacity (in terms of both load and available breaker slots) to accommodate both the hot tub and the feeder to the work shed directly. Once you get out to the shed, you'll presumably need a sub-panel located there; but that is another matter.

Furthermore, does your hot tub REALLY require only 120V? If so, its current requirements must be substantial indeed! Besides, the hot tub circuit will presumably already be taken care of as part of the service/panel upgrade. So why mess with it?

Would it not be advisable to drive in a ground rod out there?

Yes.

This would not be going thru the normal "approval channels" you might say, and it would only be live when the shed was being used.

Doesn't matter. You need the ground rods (yes, "rodS", two of them, six feet apart and connected by one continuous run of AWG 6 or larger wire from the shed's subpanel all the way through both ground rods) for the detached structure.

And as for the "no inspection" idea... Don't be so foolish as to set yourself up for a fall. Lack of inspection is not an excuse for questionable shortcuts or shoddy work. While you MIGHT get away with it now, sooner or later (such as when you go to sell the house) it WILL come back to bite you in the a$$. So even if you don't plan to get the DIY work inspected, DO be sure that, at minimum, it is all up to code.

I figure that if this hot tub panel can protect someones tush sitting in a big tub of water, it should easily protect me down there.

That's faulty logic. First, those are two different situations. Second, the sub-panel you proposed would do NOTHING to "protect" either the hot tub (and/or its occupants) or the workshed. It is only the GFCI in the dedicated hot-tub disconnect which provides any meaningful sort of "protection" to humans.

I plan on having 3 circuits taking up all 6 spots in the subpanel box, 2 240v 20 amp and 2 120v 20 amp.

Ummm... That's four circuits. :lol_hitti

But beyond the arithmetic, this implies that you plan to run multiple circuits from that (basement-installed) sub-panel down to the work shed. That is a no-no, in and of itself. Any given structure (including an outbuilding) may have only ONE power source feeding it. Hence the presumed need for a sub-panel IN the workshed.

It may have a Mr Slim type A/C unit, 15 or 20 amp 240v to cool it, and a wood burning stove to heat it in the winter. I plan on wiring it all in Greenfield, that's pretty much all I use. Anyone see anything out of line with what the possible plan may be?

Plenty. See above.

Plus, if you're planning on a 240V A/C unit in the shed, then your original premise of "dropping a 120A circuit to a new sub-panel in my basement" is unworkable for that reason (in addition to all the other reasons).

What equipment do u plan on running in there?
Not exactly sure, drills, maybe saws, battery charger, blower for the wood stove, lights, 120v heater for lead casting, nothing terribly exciting now, but like to future proof when practical.

With all that (and maybe more, given the "future-proof" goal, which I agree with), you really ought to run AT LEAST a proper 50-60A @ 240V service down to that shed; and I wouldn't argue if someone suggested 90A (tho' admittedly, that would be quite a lot for a 168 ft.^2 work space). Given that, plus the 120-foot distance, AWG 6 isn't going to be nearly enough. Aluminum 2-2-2-4 MHF is rated for up to 90A; and at 120 feet (one-way) will be (just) adequate from a voltage-drop standpoint. This is likely to be your most cost-effective solution.

And u cant use the hot tub GFCI to feed the garage.

Why not? I mean practically, not "officially". And technically, its a shed, not a garage. 12'x14', 2 levels.

Again, that distinction doesn't matter. The hot tub GFCI & disconnect can be properly used ONLY for the hot tub, period.

And as far as the GFCI feeding the tub and shed. U can do whatever u want...

Sarcasm often gets lost online.

"Can" and "should" are two VERY different things.

I presume that you did not really mean to imply it would be even remotely close to "OK" for him to kludge the shed feeder off the hot tub circuit.

 
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alha

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Thanks for the reply. Sorry, the hot tub GFIC is 240v, not sure if I clarified that initially. I intentionally chose the GFIC specifically because I thought it would provide a bit of safety for the entire structure. I could always just have used a normal 50a disconnect, but thought this would be better. It is not feeding a hot tub (don't have one), but it was designed for a hot tub, it is only feeding the shed. I bought this new just for this purpose. Whenever I do electrical work, I Always do it above and beyond "code". Like running 10awg to 20a outlets for example. I don't do hack work, never have. That isn't my style. If you saw the electrical setup in the workshop I built, you'd probably be surprised. 400a service, 200a single & 200a 3 phase. Impressive # of outlets, and Def future proof. But I digress..

As for the sub panel, it is because it's much easier to run new circuits from there to the rest of that side of the house than to try and drag connections thru where they enter the house right now. 1 piece of 1 1/2" greenfield vs who knows how many 1/2 or 3/4". Not lazy, just would rather work smarter than harder, and to enlarge that would be much too much work ATM.

Yep, I mistyped, 4 not 3 circuits in the little panel down there. I seem to have left out some vital info, sorry it was late and I was exhausted from working up on the roof all day. Bummer not to be 25 any more, things slow down a bit.. :eek:

Let me re-phrase the plan to make it clear. New 400a service in 2 panels. One of those feeding a 120a sub in the basement. That one is going to be feeding out the back thru the wall to a box mounted on it with the 50a 240v GFIC connected. This then proceeds down to shed, (using above mentioned copper wires) which has a little 6 place panel in it, which is going to have 4 circuits, 2 20a 240's and 2 20a 120's.

Please help me with understanding the ground rod situation. I thought that all grounding had to be done thru the panel/breaker, because if there was a ground path other than the GFIC, it would eliminate the protection? Again, not an electrician, and am fairly new to GFIC's, haven't used them, there were too many issues with them initially, and haven't had to install any yet other than in the garage for one outlet when the panel was upgraded 13 years ago to 200a. I presume they have gotten better, but still wreck havoc on appliances, especially gas ranges/cooktops. That is a no-no, but ppl don't know that and wonder why their cooktops don't light properly. That takes me back to a different life though, so back on task here.

Thinking about it, I needed to take a look at what I bought again, because I know that 6awg copper wire was more than sufficient per my calculations at the time I bought it. After checking, I see that I have a 50a not 60a breaker, it's a "Square D QO Spa Pack 50 Amp GFCIGFI breaker with enclosure", so for 50a, there should be minimal voltage drop, at least per this calculator that I used http://www.paigewire.com/pumpWireCalc.aspx. Also, 50a is more than sufficient to feed the shed, even with the AC running, which is 15a 240v, I seriously doubt I will pull anywhere near the rating of the circuit. It looks like if I did have a 60a circuit, I would have needed to run 4AWG wire.

One other question, I noticed someone in another post mentioning against buying wire on Ebay, why is that? I have bought a number of rolls of it from there with no issues to date. Like to know what the issue might be so I can avoid it if possible.

Again, sorry about not giving the complete picture of the project when I made the initial post, it would have helped clarify things for everyone. And thanks for the responses. Oh, and welcome to the end of Daylight savings time! Yippee. :sad: Dark at around 5 again.

*edit* 2ManyProjects - I Love your handle. It describes my life Perfectly. Not enough time, way, way too much to do.
 
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wyliesdiesels

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Thanks for the reply. Sorry, the hot tub GFIC is 240v, not sure if I clarified that initially. I intentionally chose the GFIC specifically because I thought it would provide a bit of safety for the entire structure. I could always just have used a normal 50a disconnect, but thought this would be better. It is not feeding a hot tub (don't have one), but it was designed for a hot tub, it is only feeding the shed. I bought this new just for this purpose. Whenever I do electrical work, I Always do it above and beyond "code". Like running 10awg to 20a outlets for example. I don't do hack work, never have. That isn't my style. If you saw the electrical setup in the workshop I built, you'd probably be surprised. 400a service, 200a single & 200a 3 phase. Impressive # of outlets, and Def future proof. But I digress..

Everytime u have a ground fault, you will have to go back to the GFCI mounted on the house and reset it. If its nighttime, then you will be in the dark. It would be much better to have individual GFCI breakers or GFCI outlets in the shed. Plus, 240v GFCI breakers are EXPENSIVE!

Earlier, i thought u had a hot tub and u were going to feed off its breaker to also supply the shed...

What type of service do u have in the workshop? Delta or wye? IMHO, putting all the effort into wiring a panel with only 2 of 3 available phase legs was wasted effort and lost potentially added value when u could have ran an additional conductor to the panel and had 3 phase available.

Please help me with understanding the ground rod situation. I thought that all grounding had to be done thru the panel/breaker, because if there was a ground path other than the GFIC, it would eliminate the protection? Again, not an electrician, and am fairly new to GFIC's, haven't used them, there were too many issues with them initially, and haven't had to install any yet other than in the garage for one outlet when the panel was upgraded 13 years ago to 200a. I presume they have gotten better, but still wreck havoc on appliances, especially gas ranges/cooktops. That is a no-no, but ppl don't know that and wonder why their cooktops don't light properly. That takes me back to a different life though, so back on task here.

You are mixing up different things. A grounding electrode system(ground rods, plates, UFER) has NOTHING to do with GFCIs or EGCs(ground wires) for that matter. Ground rods are for grounding out lightning strikes. GFCIs on the other hand detect grouding faults and open the circuit before someone gets shocked or electrocuted. They do this by measuring the current flowing on the hot wire(or wires for 240v) and compare it with the return current flowing on the neutral wire. If theres a difference of more than 5ma, then the circuitry in the breaker opens the breaker. EGCs on the otherhand provide a fault current path so that breakers can trip when there is a ground fault. 3 different things all sharing a common name- GROUND. The protection of a GFCI can only be eliminated if the GFCI is faulty or its wired incorrectly. Having ground rods doesnt have ANY effect on a GFCIs functionality OR protection.

Thinking about it, I needed to take a look at what I bought again, because I know that 6awg copper wire was more than sufficient per my calculations at the time I bought it. After checking, I see that I have a 50a not 60a breaker, it's a "Square D QO Spa Pack 50 Amp GFCI breaker with enclosure", so for 50a, there should be minimal voltage drop, at least per this calculator that I used http://www.paigewire.com/pumpWireCalc.aspx. Also, 50a is more than sufficient to feed the shed, even with the AC running, which is 15a 240v, I seriously doubt I will pull anywhere near the rating of the circuit. It looks like if I did have a 60a circuit, I would have needed to run 4AWG wire.

#6 THHN is actually good for 65a. (google: NEC 310.15(b)(16) ) #4 THHN is good upto 85a... You may be thinking of NM-b(Romex) ampacities which are
limited to the 60* deg column(#6 Romex is limited to 55a). As far as voltage drop goes, #6 will be more than adequate @ 120' and 50a.
 
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2ManyProjects

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Thanks for the reply. Sorry, the hot tub GFIC is 240v, not sure if I clarified that initially. I intentionally chose the GFIC specifically because I thought it would provide a bit of safety for the entire structure.

OK. that makes a bit more sense. However, as Wylie pointed out, you're putting that GFCI in the wrong place; GFCIs are not designed to protect "structures"; their purpose is solely to protect PEOPLE. And while we're on the subject... It's "GFCI" (for "Ground Fault Circuit Interrupter"), not "GFIC", as you consistently mis-type it.

I could always just have used a normal 50a disconnect, but thought this would be better. It is not feeding a hot tub (don't have one), but it was designed for a hot tub, it is only feeding the shed. I bought this new just for this purpose.

Is it already installed? And if so, where?

The proper place for such a disconnect is in/at/on the detached structure (i.e., the shed) itself, not 100+ feet away on another building. Part of its raison d'etre is so that, in the event that you suddenly have a "problem" in that detached structure, you can quickly remove all power to the building with a single handle throw. It is (reasonably) presumed that for you to notice such a "problem" in time for disconnecting power to do you any good, you'd already be in/near said building. And besides which, as always, the primary goal of any safety device is to protect people, not "things". So again, that's the place to put the control.

Whenever I do electrical work, I Always do it above and beyond "code". Like running 10awg to 20a outlets for example. I don't do hack work, never have. That isn't my style. If you saw the electrical setup in the workshop I built, you'd probably be surprised. 400a service, 200a single & 200a 3 phase. Impressive # of outlets, and Def future proof. But I digress..

Ummm... OK. That wasn't exactly clear from your initial post; but I'll take it at face value for now. In any event, that's all the more reason to NOT spoil your track record with this project.

As for the sub panel, it is because it's much easier to run new circuits from there to the rest of that side of the house than to try and drag connections thru where they enter the house right now. 1 piece of 1 1/2" greenfield vs who knows how many 1/2 or 3/4". Not lazy, just would rather work smarter than harder, and to enlarge that would be much too much work ATM.

What other circuits besides the one going to the shed were you planning on running from that sub-panel? ISTM that any existing circuits in the house would by definition already be run to the vicinity of the main panel(s). Are you planning a lot of additional new work not related to the shed? If not, then there is simply no reason for the sub-panel. And even if so, I have a hard time envisioning how that last 20 feet of wire pull could be so much of a PITA as to justify cobbling up what I presume would be a nice new 400A/twin-panel service installation.

Yep, I mistyped, 4 not 3 circuits in the little panel down there. I seem to have left out some vital info, sorry it was late and I was exhausted from working up on the roof all day. Bummer not to be 25 any more, things slow down a bit.. :eek:

Understood -- and I'm in the same boat (I'll be 39 for the 24th time on my next birthday :rolleyes2 ).

Let me re-phrase the plan to make it clear. New 400a service in 2 panels. One of those feeding a 120a sub in the basement. That one is going to be feeding out the back thru the wall to a box mounted on it with the 50a 240v GFIC connected.

As alluded to above, unless that sub-panel is ALSO feeding (a goodly number of) additional branch circuits in the house itself, it has no reason to exist. And if it IS feeding several other circuits, why did you not just move one of the new "Main" panels over to that spot, if the wiring runs would be so much easier from there?

Secondly, there is simply no good reason to go through that exterior-mounted box/breaker/GFCI; and doing so is just asking for trouble (more splices/connections, more opportunity for corrosion, etc.). Once the feeder cable leaves the main panel, it can (and should) go DIRECTLY to the shed.

This then proceeds down to shed, (using above mentioned copper wires) which has a little 6 place panel in it, which is going to have 4 circuits, 2 20a 240's and 2 20a 120's.

As long as we're discussing the shed's sub-panel... If I were you, I'd use a somewhat larger (as in, more branch-circuit slots, if not more load capacity) panel there. Do I really need to point out that installing a sub-panel which will be chock full the day you finish the project runs directly counter to your "future-proof" goal? Concomitantly, that larger panel can (and should) have a "Main" breaker in it to act as the local disconnect; hence you kill two birds with one stone.

Please help me with understanding the ground rod situation. I thought that all grounding had to be done thru the panel/breaker, because if there was a ground path other than the GFIC, it would eliminate the protection?

To further clarify (I hope) what Wylie said, the ground rods connect (indirectly) to the bare-copper (or sometimes green) "Equipment Grounding Conductor" found in pretty much every junction box you've got (at least presuming a reasonably modern electrical installation). They (and the EGCs themselves) are there strictly as a safety backup; and if all is right with the world, no current will EVER flow through them.

But in the context of a GFCI, "Ground" refers to (unintended) leakage currents (to ANYWHERE), which is what the GFCI is designed to detect. In a 120V circuit, it does this by comparing the current flow between the "Hot" (black) wire and the "Neutral" (white) wire; the "Ground" (EGC) wire has nothing whatsoever to do with it. If these two currents do not match VERY closely (within milliamps), the GFCI trips and causes the feed from the "Hot" wire to be broken (i.e., "Interrupted"). The point here is, since that "leakage" current COULD be going anywhere (the GFCI neither knows nor cares), one such possible route is through a person (such as one holding a defective power tool and standing in a puddle, for example) -- which, obviously, could be lethal.

A 240V GFCI works similarly, but compares the currents on the two "Hot" legs. This is yet another reason why you do NOT want that GFCI "upstream" of the shed's sub-panel. Any 120V loads run off that sub-panel will necessarily cause an imbalance between the two hot legs in the feeder, thus tripping the GFCI.

Thinking about it, I needed to take a look at what I bought again, because I know that 6awg copper wire was more than sufficient per my calculations at the time I bought it.

If you limit the feed to the shed to no more than 60 Amps, AWG 6 will suffice, provided that it is NOT type NM-B (which it surely would not be) and has insulation rated for at least 75°C (90°C would be better, but is not actually required).

After checking, I see that I have a 50a not 60a breaker, it's a "Square D QO Spa Pack 50 Amp GFCIGFI breaker with enclosure",

This implies that you have NOT as yet installed that stuff. Good. Don't.

Also, 50a is more than sufficient to feed the shed, even with the AC running, which is 15a 240v, I seriously doubt I will pull anywhere near the rating of the circuit. It looks like if I did have a 60a circuit, I would have needed to run 4AWG wire.

Not by my abacus. Granted, bigger is always better; but for 60 Amps @ 240V over a 240-foot (round trip) run, you'll need 25,800 circular mils to hold Voltage Drop to the recommended 3% limit. AWG 6 gives you 26,251 CM (cf. http://www.engineeringtoolbox.com/awg-wire-gauge-circular-mils-d_819.html, which is (just barely) enough.


[The BBS software is nattering at me that the message is too long. So I'm breaking it here. Continued in next message...]

 

2ManyProjects

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[...Continued from previous message.]

One other question, I noticed someone in another post mentioning against buying wire on Ebay, why is that? I have bought a number of rolls of it from there with no issues to date. Like to know what the issue might be so I can avoid it if possible.

Years (decades, really) ago, eBay started out filling essentially the same role that Craigslist does today -- an electronic "classifieds section", where folks could sell off unwanted items which presumably still had value to someone, but were for one reason or another (usually because the item was too specialized, or too low in value, or had a too small and/or too widely dispersed target market) impractical to sell via more traditional means (such as a newspaper classified ad or similar). As such, it provided a useful service. But, in part because of its relatively anonymous nature, it not surprisingly attracted more than its share of scam artists and generally unethical/unreliable people (on BOTH sides of the transaction). Despite repeatedly paying lip service to the issue (for example, http://www.nbcnews.com/id/3078736/), eBay's own policies over the years have done little or nothing to combat this problem; and it is not much of a stretch to conclude that their true over-arching (but unofficial) position is, "As long as we get our cut...". This sort of thing became a such a large problem that they have been formally investigated numerous times by such agencies as the New York State Attorney General's office and the FBI.

Over the years, eBay has steadily transmogrified from its original "online garage sale" roots to a semi-perverse sort of "online shopping portal". This transition has been quite deliberate on eBay's part, as they cater to so-called "professional eBay sellers" (an oxymoron in my view) in many ways (for example, the "Power Seller" program). The problem with this (well, ONE of the problems, anyway) is, the sort of vendor who would most find eBay useful and/or a good value (despite their very high per-transaction costs) is precisely the same sort of vendor you would be wise to think twice about patronizing: In short, they tend to be "fly by night" operations, who not only lack any sort of "brick & mortar" presence, they typically don't even have their own domains/websites, published business addresses, or any other viable means for customer recourse in the event of a problem.

Bottom Line: In this day and age, the "barriers to entry" for REAL online business (with properly traceable routes to the people behind the name) are SO low that, if a given vendor NEEDS the "shelter" of eBay, you really have to ask yourself WHY.

*edit* 2ManyProjects - I Love your handle. It describes my life Perfectly. Not enough time, way, way too much to do.

You don't know the half of it. :(

 
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alha

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Thanks for taking so much time to post such a clear explanation, and yea, was dyslexic using GFIC, sorry. You're right, it hasn't been installed yet, and the thought process of doing the way I planned was that one 50 GFCI (almost did it again!) is a bit less expensive then to buy 2 240 and 2 120 versions. I didn't understand then how they worked, so if as you say they measure between the legs, as soon as you run one side (120v) it will immediately pop because of the imbalance, which will do me no good. I didn't know this, is great info for future reference. I suppose I don't need one (or probably even want one) on the A/C circuit. I can re-purpose this part for my electric brewery I am in the process of gathering parts for, it too is going to be running on a 50a circuit, so that will work perfectly. That is one of the things I will be hitting that panel for, along with some 20 & 30a 120 & 240v's for a server farm I am finishing up. And who knows what else. The wire entrance to the basement from the garage is fairly confined and I don't want to have to knock any blocks out to feed multiple runs thru, and it is right in a corner where the garage meets the house, not an easy place to work in in the best of times, what with all the greenfield going thru there already. I'd like to follow the same path, I know I could run it outside and then in, but this is cleaner.

As I said I am usually all for future proofing, but I don't see where I would truly need more than the 4 breakers for the shed. Worst case I can always upgrade it down the road, but as this is just my little shed for storing my summer and winter stuff downstairs, and doing my lead work upstairs, (after my daughter outgrows it as a playhouse) this should really be fine. My actual workshop is 100 feet away, so I can easily do any serious work there.

As for ebay, I usually buy stuff kind of like you mentioned it used to be used for, and you have a very astute take on how it has changed over the years. The sellers are getting upset with many of the recent (1-2 or so years) changes, plus the fees! My gawd, the fees! I was considering reselling some fairly low valued items on it a year or so ago, but decided to do the math to see what I would actually make off it them. Turned out that even after getting them for a very good price from the supplier, after all the fees from Ebay and Paypal, I would basically be doing little better than breaking even. Complete waste of time, which I certainly don't have enough of.

So for the wire, if it's an extra roll or one that has 90% or whatever remaining, and it is less after shipping than the new cost as a percentage of what's remaining (500 ft roll, $95, so if 400 ft, better be under $70 to make it worthwhile) or ones with broken ends, if they have good feedback, I'm fine with it. Hey, it's a commodity at this point. And if they are shady, ebay has buyer protection. I've used it a couple times, and has worked out well each time for me. I am using THHN, which should be fine for this application. Would the 10 AWG ground be acceptable for this installation?

As for grounding, I am already planning on dropping 2 ground rods in to my new install, have them waiting for the electrician. I can pick up 2 more for the shed, because you can never have a good enough ground. Have a 3 rod ground field for my workshop, as well as it being clamped to the water pipe.

If there is no more than 6 circuits, am I correct in remembering that a main breaker is not needed? I already purchased the little panel for it, and at this point isn't returnable. I know a new slightly bigger one isn't that expensive, but it just keeps adding up. I don't want to kick myself later though..

I'd Love to be 39 again... just passed my 13th turn past it myself, and even though the mind feels like it's 20 something at times, the body protests loudly the next day when I act that way.

Thanks again for taking the time to post this, it is very helpful to me, and hopefully will help others down the road considering doing something similar.
 

FarmerPete

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If it was me, I'd run the shed subpanel off of your main panel. If you still wanted to have a sub in your basement, I would run that too (at a smaller size). Keeping your main panel as your main panel makes troubleshooting significantly faster/easier. Running two sets of cables shouldn't be significantly harder than running one. You could probably drop your basement sub down in size a tad as well and potentially use a smaller sized wire.
 
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alha

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Joined
Nov 2, 2013
Messages
8
Location
Twin Cities, MN
When you said running 2 sets instead of one, you meant running the cable thru the same 1 1/2" greenfield, as opposed to running it directly from the main panel in it's own conduit? Is that acceptable to run it into and straight out of a sub panel without connecting it to the panel itself, just using it as a junction box sort of thing? If it would run from the main panel in it's own conduit, it might be a bit messy back there, as I will have 2 meters, 3 conduits, and a paver sidewalk to cross. I'd prefer to keep it underground from where it exits the building, but that may be a problem in a fairly tight area.

If it is running thru the greenfield with the subpanel wires, what is the fill capacity of it? I am going to be already running four 1/0 lines to the subpanel, not sure if I can run the extra 4 6awg's in there with it. Do you know if that would be OK? I pulled up a raceway fill capacity calculator, and according to it's calculations, it takes it somewhat close to 60% fill capacity with all those wires. I think it recommended 40%, but not sure what the "official" recommendation is for it. I already have the panel and greenfield for the basement subpanel, just haven't' ran it yet. One more thing on the to do list. At least winter is coming soon so I have an excuse to do indoor work.

*edit* oh, and forgot to add to the calculations, if it is coming from the main panel, it would be an addl 20 feet (40' round trip) which might require me to upgrade to 4awg wire, which looks like it would be a squeeker to keep it to 60% capacity, just *barely* under 60% if I am reading it correctly. It would sure be a fun pull, I bet.
 
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2ManyProjects

Well-known member
Joined
Jul 18, 2013
Messages
757
When you said running 2 sets instead of one, you meant running the cable thru the same 1 1/2" greenfield, as opposed to running it directly from the main panel in it's own conduit?

I probably ought to let "FarmerPete" speak for himself; but in the meantime: No, I don't think that is what he meant.

First, there is no need to use flex tubing on wiring runs which are completely inside the building, and located where they are not especially subject to damage.

Second, these would be be two SEPARATE runs, to two separate sub-panels. One of these sub-panels would be located in your basement; but the other one would be located in the shed. Hence they could not share a conduit anyway.

Is that acceptable to run it into and straight out of a sub panel without connecting it to the panel itself, just using it as a junction box sort of thing?

I have no idea if that would be "legal" or not; but it would certainly be a sure sign of hack work. The feeder to the shed's sub-panel and the feeder to the basement-mounted sub-panel (if any; I still don't think you really NEED this) are two separate things. As such, there is NO reason to combine them.

If it would run from the main panel in it's own conduit, it might be a bit messy back there, as I will have 2 meters, 3 conduits, and a paver sidewalk to cross.

Huh?!?

The sidewalk I can understand; but you'd have to deal with that in any event. But what do you mean by "crossing" the meters, etc.?!?

I'd prefer to keep it underground from where it exits the building, but that may be a problem in a fairly tight area.

How so? Do you not have access to the foundation immediately outside the panel area? And how does this impact the question of whether or not to use an additional sub-panel in the basement? You'd have to deal with those "exterior" issues either way.

If it is running thru the greenfield with the subpanel wires, what is the fill capacity of it?

Forget the Greenfield. It is simply not appropriate for this job. It's also a PITA to pull through.

*edit* oh, and forgot to add to the calculations, if it is coming from the main panel, it would be an addl 20 feet (40' round trip) which might require me to upgrade to 4awg wire, which looks like it would be a squeeker to keep it to 60% capacity, just *barely* under 60% if I am reading it correctly. It would sure be a fun pull, I bet.

Whoa, Nellie!

You are apparently laboring under a serious misconception here. In the context of voltage-drop calculations, you'd need to include that 20 feet either way. Using your "pass through" kludge, the sub-panel is not even part of the circuit; it is LITERALLY a single run from the main panel to the shed. And using your original idea of a sub-panel in the basement feeding a second sub-panel in the shed, then EITHER the only load on that first sub-panel is the shed panel (so the feeder from the main is effectively part of the same run anyway), OR the feeder to that first sub-panel would need to be MUCH larger than the feeder to the shed (in order to accommodate the additional loads fed from that sub-panel) -- which brings us right back to being a PITA to pull.

 
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alha

Member
Joined
Nov 2, 2013
Messages
8
Location
Twin Cities, MN
Is it possible for a new member to post a couple pics here? They may be worth a couple K words. I can then reply to you 2manyprojects with few explanations. I'll make a quick reply on the last point for clarification. If I feed the sub panel from the basement, it would be fed off the 120a circuit, which is more than adequate to handle whatever load is coming from the workshop. As I mentioned, the feeder from the main to the sub in the basement is going to be sized for 120a either way, 1/0 awg, so that part should be covered. I'll take some pics today or tomorrow.

I was thinking while writing up this reply, would it be acceptable to feed them both thru the same feed into a breakout box above the sub in the basement, and drop the 1/0 into the panel, and continue the 4awg out thru the wall and into the conduit down to the sub in the workshop? It would be much more clean and professional that way. I can pre-load all the wire into the conduit (I prefer to have all wires in the house enclosed, hence the PITA greenfield. Not strictly necessary, but my preference) and then pull it thru. It will be a fairly straight run till where it passes thru the wall, and then only 3 feet to the panel.
 
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