When plugged in... This caveat is so enormous it should almost be legislated. If your computer use is at all portable, a computer that scales down to 20 - 40% of GPU power when unplugged is an enormously significant factor. So far as I'm aware (could be wrong about arm devices?) there's no non-apple laptop that operates at 100% speed on the road.
No, but they did beat 14nm like a dead horse for almost a decade. So you're not that far off.
The real question is whether all these Intel Windows laptops spin their fans at full speed when doing absolutely nothing. That’s something I can never go back to. I do some light gaming on my M2 Pro MBP and it gets hot when trying to push 120 fps. But my Lenovo Legion (that’s now collecting the dust) is so loud I could hear it through headphones.
I'm still traumatized by my windows laptop randomly turning on in my backpack, heating itself up and draining the battery because of windows.
Aside from that I'm now used to MacOS for my daily needs aside from gaming so windows laptop have to do a lot of work convincing me of getting back to them.
Hold up, in what metric/benchmark? Feel personally like we life in an age where, no matter the SOC vendor, something high performant and efficient is offered, so seeing a claim that any vendor, be it Intel, AMD, Qualcomm or Apple, is consistently outperforming another, I'd like to get more context on that.
Intel were x86, Apple Silicon is ARM-based. ARM-based chips are more power-efficient.
Also, it's built on a much smaller process. 3nm, if I'm not mistaken, older Intel was something bigger than 10nm. Heck, if you take a really old Intel Mac, you have something like 65nm process, which is much less efficient than 3nm.
Here's a random benchmark I found on the internet (literally the first thing on Google, you can find more if you want) https://www.cpu-monkey.com/en/compare_cpu-intel_core_i7_1065...
Of course you can beat the entry level MacBook Neo by comparing it to larger, more powerful, more expensive laptops.
The M5 is an entire family with a range of performance. Intel/AMD have done a lot to improve performance but they’re not beating the high end M5 chips on performance or battery life yet.
It's also not hard to find a Windows laptop that beats the M5 on battery life. Single-thread performance is the only remaining measure where the M5 is king.
This is admittedly the measure that most correlates with perceived responsiveness and quality of user experience
This shows the Neo winning on benchmarks, except for file transfer speed.
The Dell laptop wins on file transfer speed and got 14 hours of battery time versus the Neo's 13 hours.
I don't understand how you read that article and concluded that the Neo got beat on "every conceivable measure"
Can you count how many (out of 9) measurements the windows laptop beat the Neo in that article?
Intel had to reduce the frequency of their processors when running AVX2 instructions and the AVX2 frequency of the processors were non-disclosable to anyone.
Also, benchmarking Intel processors and publishing these numbers were forbidden in some cases. I don't know whether this ban is still in effect.
x86 processors can't keep up with the ARM processors TDP and thermal profile wise. So they slow down a ton when running on battery. See Jeff Geerling's last video on Apple Neo vs. some Intel laptop. It's as "efficient", but slow as a newborn tortoise learning to walk when unplugged and trying to get the most endurance out of the battery.
My M1 Mac gets almost 2 days of low-intensity use after ~6 years of use, and it got warm once or twice because something ran away in the background for tens of minutes.
But talking this authoritatively on something without doing the reading, that's grating: https://chipsandcheese.com/p/arm-or-x86-isa-doesnt-matter
Thanks for your prejudice on me without knowing anything about me. In short, I'm a HPC sysadmin and programmer who works in a HPC center, separated from the actual hardware by a couple of floors.
We can discuss how transistors' heat generation doesn't discern about ISAs or being in a DAC or a cutting edge microprocessor, and we can even discuss how implementation of some functional blocks generate heat regardless of the ISA being involved. If you want we can discuss how saturating memory controllers affect pipeline saturation in processors even...
But talking this authoritatively on something with that amount of prejudice, that's grating.
Pointing me to C&C is a nice touch though. Not only I read the site and very article you sent me before, I used to consume Anandtech before that.
As a mere mortal, I can make mistakes and gladly accept them, but I can't accept rude replies. Pardon my French, but being called a low-key liar or smoke blower gets me a little upset.
All I'll say is, that's worse then. Presuming you had not read up before promoting a long disproven myth, that was an assumption by me, I'll admit that and maybe I should not have done that, my mistake. But it was a gracious mistake, it was done in your favour, it was giving you credit.