Home Comparison Apple M1 Max vs Intel Core i5 13500H

Apple M1 Max vs Intel Core i5 13500H

We compared two laptop CPUs: Apple M1 Max with 10 cores 2.0GHz and Intel Core i5 13500H with 12 cores 2.6GHz . You will find out which processor performs better in benchmark tests, key specifications, power consumption and more.

Main Differences

Apple M1 Max 's Advantages
Better graphics card performance
Larger memory bandwidth (409.6GB/s vs 76.8GB/s)
More modern manufacturing process (5nm vs 10nm)
Lower TDP (30W vs 45W)
Intel Core i5 13500H 's Advantages
Released 8 months late
Higher specification of memory (6400 vs 6400)
Higher base frequency (2.6GHz vs 2.0GHz)

Score

Benchmark

Cinebench R23 Single Core
Apple M1 Max
1545
Intel Core i5 13500H +12%
1738
Cinebench R23 Multi Core
Apple M1 Max
12440
Intel Core i5 13500H +18%
14722
Geekbench 6 Single Core
Apple M1 Max
2410
Intel Core i5 13500H +1%
2452
Geekbench 6 Multi Core
Apple M1 Max +10%
12480
Intel Core i5 13500H
11254
Cinebench 2024 Single Core
Apple M1 Max +10%
114
Intel Core i5 13500H
103
Cinebench 2024 Multi Core
Apple M1 Max
793
Intel Core i5 13500H +3%
818
Blender
Apple M1 Max +13%
212
Intel Core i5 13500H
187
Geekbench 5 Single Core
Apple M1 Max +4%
1783
Intel Core i5 13500H
1714
Geekbench 5 Multi Core
Apple M1 Max +14%
12511
Intel Core i5 13500H
10973
Passmark CPU Single Core
Apple M1 Max +7%
3833
Intel Core i5 13500H
3573
Passmark CPU Multi Core
Apple M1 Max
22121
Intel Core i5 13500H +3%
22985

General Parameters

May 2022
Release Date
Jan 2023
Apple
Manufacturer
Intel
Laptop
Type
Laptop
ARMv8
Instruction Set
x86-64
-
Core Architecture
Raptor Lake
-
Processor Number
i5-13500H
Apple M-Socket
Socket
BGA-1744
Apple M1 Max GPU (32-core)
Integrated Graphics
Iris Xe Graphics (80EU)

Package

57 billions
Transistor Count
-
5 nm
Manufacturing Process
10 nm
30 W
Power Consumption
35-45 W
-
Max Turbo Power Consumption
95 W
-
Peak Operating Temperature
100°C

CPU Performance

10
Performance Cores
4
10
Performance Core Threads
8
2.0 GHz
Performance Core Base Frequency
2.6 GHz
3.2 GHz
Performance Core Turbo Frequency
4.7 GHz
-
Efficiency Cores
8
-
Efficiency Core Threads
8
-
Efficiency Core Base Frequency
1.9 GHz
-
Efficiency Core Turbo Frequency
3.5 GHz
10
Total Core Count
12
10
Total Thread Count
16
-
Bus Frequency
100 MHz
-
Multiplier
26x
192 K per core
L1 Cache
80 K per core
24 MB shared
L2 Cache
2 MB per core
-
L3 Cache
18 MB shared
No
Unlocked Multiplier
No

Memory Parameters

LPDDR5-6400
Memory Types
DDR5-5200, DDR4-3200, LPDDR5-6400, LPDDR5x-6400, LPDDR4x-4267
64 GB
Max Memory Size
96 GB
8
Max Memory Channels
2
409.6 GB/s
Max Memory Bandwidth
76.8 GB/s
No
ECC Memory Support
No

Graphics Card Parameters

true
Integrated Graphics
true
450 MHz
GPU Base Frequency
300 MHz
1296 MHz
GPU Max Dynamic Frequency
1450 MHz
4096
Shader Units
640
256
Texture Units
40
128
Raster Operation Units
20
-
Execution Units
80
60 W
Power Consumption
15 W
6016x3384 - 60 Hz
Max Resolution
-
10.4 TFLOPS
Graphics Performance
1.41 TFLOPS

Miscellaneous

-
Official Website
-
PCIe Version
5.0
-
PCIe Lanes
28
© 2025 - TopCPU.net