Feel free to roast me if this is idiotic. Thank you!

  • AA5B@lemmy.world
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    9 months ago

    While I understand this may not be useful reply to you … if you used Power Over Ethernet, the cable is low voltage so it wouldn’t matter where you put it (should still be outdoor rated)

    • Pogbom@lemmy.world
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      9 months ago

      Thanks for this! According to the product page, the default cables are ‘12 V DC ±25%, Max. 5.32W’. A quick googling tells me PoE can be anywhere from 12-70V. Would I be correct in assuming that this cable is also fairly low-risk? I know it’s not outdoor rated however.

      • AA5B@lemmy.world
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        9 months ago

        Oh, ok. I can’t speak to electrical code on that, but if it were me, I wouldn’t worry about safety

        If it’s not outdoor rated, you need to watch out for UV from sunlight and getting wet. If that keeps it out of the rain and sun, it still might have a shorter life

        I personally would go for it, given that cameras are pretty cheap and what we see of the install is easy. I don’t think anyone could put a number on life expectancy so it’s a gamble vs cost of replacing or impact if it dies. I don’t know whether it’s good advice though

  • Huxleywaswrite@lemmy.world
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    9 months ago

    There’s a lot more we really need to know before saying if that’s safe or not. We can only see a small section in your picture.

    The first things I would ask are what it’s for, how long/often does it run, and is that wiring rated to be outdoors while unprotected?

    • Pogbom@lemmy.world
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      9 months ago

      Ah good questions! It’s powering a security camera that would be constantly running and uses ‘12 V DC ±25%, Max. 5.32W’ according to the specs.

      It’s this guy for what it’s worth:

      https://www.defendercameras.ca/products/guard-pro-2k-wifi-plug-in-power-security-camera

      It says on the page that “The power supplies are not water-resistant and should not be used outdoors”, so I’m not sure if that just means they shouldn’t be exposed to water (which they wouldn’t be here). Defender also has this installation video in which they specifically say it can be plugged in outside, but isn’t recommended only for water concerns (2m 24s):

      https://m.youtube.com/watch?v=6rt3H97-g-w

      All that to say I think it’s inherently safe to be outside and covered, but I just have no idea if making contact with an aluminum soffit is dangerous at all :)

      • Huxleywaswrite@lemmy.world
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        9 months ago

        As long as the whole wire run is that neat, the soffit probably isn’t anything to be concerned about, but personally i would run a cable support on the frame and put the wire in that, instead of how you have it here.

        Water doesn’t just mean submerged. Water comes from humidity, condensation and dew daily. If it’s not rated for that then it will likely fail after some time. It’s being used in a way it wasn’t designed to be, that has an effect on the lifespan of a device. To mitigate that you could put it inside of some type of conduit.

        I typed all of this out, and then decided to check your link for better pictures. That camera comes with ethernet waterproof cable shielding. I’m guessing that is exactly enough to go from the camera to the mounting bracket. So no, none of this cable is rated to be outdoors, this is not a safe way to install it. You either need to run conduit or penetrate the wall behind the mounting hardware and feed it through there.

        • Pogbom@lemmy.world
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          9 months ago

          Damn, this makes a lot of sense. Is there any kind of conduit you would recommend then? I think I’ve seen that anything PVC is ideal for outdoor cables. Would that also help with the condensation risks?

          • Huxleywaswrite@lemmy.world
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            9 months ago

            No, pvc is not water tight at all. I’d grab some sealtight flexible conduit, nonmetallic would be fine. Just grab some one hole straps and support the conduit every 6-8 feet. It’s under your deck and you’re a homeowner, not a professional; theres no reason to try and make it straight or neat.

            You will need some sort of an enclosure to run the sealtight to. Any outdoor rated junction box should be fine, mount it as close as you can because your going to be using that ethernet watertight protector to go from the junction box to the camera itself. I’d probably just mount the camera to the enclosure cover itself and make it easy.

            • Pogbom@lemmy.world
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              9 months ago

              My god I have so much to learn. That makes a lot of sense. Thanks so much for all your help. I’ll get cracking on this in the coming days you might get a few DMs in the near future haha.

                • Pogbom@lemmy.world
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                  9 months ago

                  I was gonna DM you but I figured I might as well keep it here in case it can help someone else :)

                  It looks like the first few inches of cable coming out of the camera (the segment with the power/ethernet splitter) is outdoor rated. It’s just the thin extension cable and power block cable that are meant for indoors it seems.

                  So what if I bought something like this?

                  Being sure that it’s compatible, I could run this outdoor rated cable all the way to a junction box right beside the outlet, instead of installing conduit the whole way. Is that a crazy idea?

      • SzethFriendOfNimi@lemmy.world
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        9 months ago

        Not an electrician but 12V dc is relatively low current.

        I don’t think that’s any kind of electrocution/shock hazard (assuming there’s some kind of drip loop where water can’t flow down the plug to a socket)

        That being said what about the equipment? Is it expensive enough that a short frying it out would be a huge problem?

        • sploosh@lemmy.world
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          9 months ago

          In this case there would not be much current, which we know from OP sharing that the device in question uses 5.3 watts at the most. At 12 volts 5.3 watts is .44 amps.

          Watts are power, which in electrical terms is Volts (electric difference) times Amps (current). If electricity were water, volts would be the water pressure and amps would be the size of the pipe with watts being the volume of water per period of time. You can have a huge pipe with very low pressure and pull 1 gallon per minute out of it, or you could have a much smaller pipe under more pressure and get that same gallon per minute.

          12v circuits can carry however much current is pulled up to however much can be supplied by the power source, so long as the conductor doesn’t overheat and burn. The device in question pulls less than half an amp from its power supply while a 12v car battery can supply over 100a when the starter is cranking the engine.