12/29/2023 0 Comments Barotrauma steam charwtws![]() ![]() You can also connect Batteries to the power grid. You can also connect the first and last junction box to make sure that the power stays on for the further down junction boxes when one breaks part way down the line. If you are 'Daisy Chaining' (connecting the Junction Boxes in a loop), you will gain 3 slots per Junction Box instead of 4, with the last in the chain being 4 slots. Engine, Oxygen Generator, Pumps) to that Junction Box, or additional Junction Boxes, to increase the capacity of the Power Grid you are making.īy wiring (connecting) a Junction Box to a new Junction Box, you gain 4 more wire (connection) slots per Junction Box added. Note: Power flows in BOTH directions through a Junction Box. Each node has a max capacity of 5 (wire) connections. ![]() They have 1 power node and 4 signal nodes that wires can connect to. ⦁ Junction Boxes are the main power conduit in the Sub's Power Grid. If the Reactor overheats for too long, it will 'Meltdown' (explode). ⦁ If the Reactor is producing more power (Output) than the power grid needs (Load), it will Overheat. If you try to operate an Item, you will see a prompt: "Insufficient Power". ⦁ If the Reactor is producing less power (Output) than the power grid needs (Load), Items connected to the grid will not function, due to Undervoltage. It generates heat from Fuel Rods, then converts that heat to power. ⦁ The Reactor is the power generator of the game. This typically leads to Overvoltage, where the Junction Boxes are rapidly damaged and/or burst into flames. Power (Output) from the Reactor flows in parallel, meaning each wire (output) from the Reactor will have the same amount of power (Output) flowing through it.įor example, if the Reactor's output is 3000 and there are 2 wires connected to the Output, the power grid will receive 6000 output (3000+3000). Why?: Reactor Output does NOT split across the number of wires. Connect the output from the Reactor to 1 Junction Box only. Start with wiring (connecting) the ‘power out’ node from the Reactor to the ‘power’ node in a Junction Box. I plan on adding a range finder and anemometer eventually, after which time I will work on making it more compact and creating cad files to make a 3d printed housing.These are the Wiring basics for powering your Sub. ![]() In the next couple of days I will work on mounting the display to the left of the scope for easy viewing. I plan on having a graph displaying acceleration changes so you can track your shots (and also if you were to pull them as well, since the accelerometer is sensitive enough to pick up jerking of the trigger or rifle). Still have a good bit to do, such as implement ballistics calculator (currently runs off manually inputted hold table). Entire setup mounts to rifle via mlok and is specially made to absorb shock from recoil to protect electronics. Also has a waterproof port for microcontroller programming. Runs off of a 3700 mAh LiPo battery that can recharge via waterproof port. Also connects to my phone to display data via Bluetooth. ![]() Has a built in accelerometer to get roll and barrel pitch for staying perfectly upright and for calculating bullet drop compensation. Currently reads surrounding conditions such as temperature, humidity, pressure and altitude. Made this using an ESP-32 microcontroller and some sensors. ![]()
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