The sensor head is pretty much faulty when you say that the raw data always shows zero. So with the flow sensor you will have a much more reliable and accurate value. It only features a virtual flow sensor which can assume the current flow rate based on operating data. Please note that the pump has no flow sensor. The D5 NEXT can also provide the water temperature but the value of the high flow sensor is more accurate. In any case you nee the RGBpx adapter 53285 and a connection cable like 53260 for example (available in different lengths). If you just configure 10 LEDs for example, QUADRO will also assume that only 10 of them are connected. If you would connect the LEDs directly to QUADRO, you would have to mirror the LED effects to the "invisible" LED areas to prevent an overload. It also eliminates the problem of the parallel connection and unknown current draw because this splitter has its own power supply. I don't know how many LEDs these fans have, but it is surely more than that (in total).Īdding a Splitty12 will very likely solve this problem. Keep in mind that a RGBpx port can only handle up to 90 LEDs. QUADRO and high flow 2 can be used that way but I doubt that you can control all of the LEDs this way. You could also get Sata powered DRGB hubs and group the fans before they connect to the controller. That would be 18 fans total, and you have 11, so the case controller should be able to handle all 330 LEDs. If you assume 25ma per LED, you can put 160 LEDs on a port, 280 on a channel, so 5 fans on port 1 but only 4 fans on port 2. If they are doing patterns where they are not all lit at the same time, you can lower the current per LED some more. If you don't plan to ever set all of the LEDs to white at full brightness, you can guestimate a lower current consumption per LED. This means you could only drive the LEDs in 6 fans total using both channels and all 4 ports. If you put 2 fans on port 1, you could only put 1 fan on the port 2 because 2 fans on both ports would exceed the 7A per channel limit. Using that worst case number, you could connect up to 66 LEDs to a port, but no more than 116 LEDs on a channel. A DRGB LED (WS1812B) can draw up to 60ma if set to white at 100% brightness. The NV7 owners manual says the DRGB controller has 2 channels that each have 2 ports. I am pretty sure that the LED pairing is done in the fan but I could be wrong. A 90° option would require a whole second layout due to the much narrower display area. The display is not symmetrical, so it can be only turned by 180°. If you place the flow sensor in front or behind the radiator(s) and the external sensor at the opposite direction, you can monitor the theoretical heat loss capacity in watts. But if this is not possible in your setup, you should also not try to make things unnecessarily complicated trying to catch the supposedly best setup because it will never be perfect.īesides the internal coolant temperature you can monitor an external sensor. Ideally you have somewhat of straight tubing in front and behind the sensor. The water flow could be affected this way and also have a small impact on the accuracy. You could also attach it directly to another component but this is one of the things that I meant with unnoticed factors. It might be slightly affected - nothing you should need to worry about since there are so many other factors that also have an affect and no one takes care of. Accuracy is a relative thing since it depends on so many factors. The Custoom Loop ConfiguratorĪ Guide to Hardline tubing - PETG and AcrylicĪ Guide to Hardline tubing - Brass and Carbon Fibre Share your rig with us! (remember to include a parts list with case)Īsk for advice, we're here to help as well as show off! Post simply asking for a parts list, you need to do your own research first!Ĭheck through our sidebar and wiki resources before posting questions Official Manufacturer Support/Discussion ThreadsĪdvise others without suitable experience Official Manufacturer Support Threads: EKWB | Watercool | Official Subreddit Discord.
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