AMD (include new mobile Zen3):
+:
Best perfomance in multi-thread applications
-:
1. No USB4.0 (aka TB4.0/3.0).
2. No pci-e 4.0
3. No AV1 decoder
5. Bad H265/Vp9 decoder (hybrid, not 100% hardware) in 2.5k+ especially. It have always drop V-sync for video in 50-60fps and huge cpu load.
4. No HDMI 2.1 (4k/120Гц 30-36bits 4:4:4 output) and Display Port 2.0 (8k/60Hz/30-36 bits monitors).
5. Bad memory performance - very huge memory latency vs Intel. Typical drop ~ -30% in atomic operations.
6. No neuroDSP.
7. Lower single-thread performance vs Intel for same year production.
8. No AVX512
9. x8 pci-e 3.0 dGPU link in H series.
Intel:
+:
1. USB4.0 (aka TB4.0/3.0). 2x2 scheme (2 left side, 2 right-side). With Ice Lake.
2. AV1 decoder.
3. HDMI 2.1 (by official presentation).
4. pci-e 4.0 (x16 link to dGPU, AMD
5. Better single-threaded performance.
6. Best memory performance by latency - up to x1.5 vs AMD.
7. NeuroDSP (V1.0 in Ice Lake, V2.0 in Tiger Lake+).
8. AVX512
9. x16 pci-e 4.0 link to dGPU in H series.
10. Much better H265/VP9 decoders. Low cpu usage. Stable framerate.
-:
1. USB4.0(TB4.0/3.0) ports for many cheap laptops deliberately and despicably not installed for marketing idiotic reasons. Because of this, laptops with Intel instantly lose their key advantage, for which Intel hardware buyers are forced to pay anyway, but the ugly marketers do not allow them to use ... Although the TB3.0 output costs a penny in terms of the cost of wiring on motherboards, i.e. to. all logic is already in SoC
2. DP2.0 is 100% fake (and 8k monitors) in Tiger Lake.
3. Very bad multi-threaded performance (and specially for one $ and one watt). Which leads to the need to overstate the consumption and leads to increased noise from the cooling system.