Better PC cooling with Python and Grafana
calbryant.uk
Better PC cooling with Python and Grafana
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Re: Better PC cooling with Python and Grafana
#2Re: Better PC cooling with Python and Grafana
#3Re: Better PC cooling with Python and Grafana
#4Re: Better PC cooling with Python and Grafana
#5I got annoyed at my fan speeds so decided to experiment with controlling my fans with Python and measuring the results.
Re: Better PC cooling with Python and Grafana
#6Please do some measuring of core temperature response to load before and after re-pasting / upgrading the thermal compound. Something between a large grain of rice and a pea, and I like to clean the CPU and cooler cold plate completely, paste the CPU, then press and smear around the cooler onto the CPU before mounting it, to ensure full surface area coverage with a thin layer of compound.
Re: Better PC cooling with Python and Grafana
#7The chip comes to consumers overclocked by default with a TDP of 105W. I suspect this is the case so that it can beat Intel on benchmarks on "default" settings.
You can set it to "eco mode" and have it run at 65W or 45W TDP. Under load, this only results in like a 5% reduction in performance for a dramatic reduction in electricity consumption, fan speed, heat, etc.
Not sure if the 5500x series chips are overclocked but using eco mode could be a good approach.
Re: Better PC cooling with Python and Grafana
#8I got annoyed at my fan speeds so decided to experiment with controlling my fans with Python and measuring the results.
My only worry is that rapid changes in pump speed might cause extra mechanical stress or wear on the pump, but I have no data to back that up. I've just heard that water pumps sometimes behave in counter-intuitive ways - e.g: sometimes running at a higher speed is better for longevity than a lower one.
Re: Better PC cooling with Python and Grafana
#9Please do some measuring of core temperature response to load before and after re-pasting / upgrading the thermal compound. Something between a large grain of rice and a pea, and I like to clean the CPU and cooler cold plate completely, paste the CPU, then press and smear around the cooler onto the CPU before mounting it, to ensure full surface area coverage with a thin layer of compound.
Genuine question: I've known the law of "pea sized amount" for thermal paste for 20 years or so. Does it still hold true for modern (and larger) CPU dies? I haven't upgraded in a long time so genuinely don't know, but also wouldn't want to use outdated knowledge!
Most modern coolers will provide sufficient pressure to spread a pea sized amount of thermal paste to cover the whole cooler.
There are also thermal pads, both reusable and single use, that perfom well and don't require any guesswork.
If you want to paste, noctua has the best paste in terms of thermal resistance, but mx4 or mx5 both perform well, as does cryorig and a bunch of others.
Re: Better PC cooling with Python and Grafana
#10Please do some measuring of core temperature response to load before and after re-pasting / upgrading the thermal compound. Something between a large grain of rice and a pea, and I like to clean the CPU and cooler cold plate completely, paste the CPU, then press and smear around the cooler onto the CPU before mounting it, to ensure full surface area coverage with a thin layer of compound.
Genuine question: I've known the law of "pea sized amount" for thermal paste for 20 years or so. Does it still hold true for modern (and larger) CPU dies? I haven't upgraded in a long time so genuinely don't know, but also wouldn't want to use outdated knowledge!