Intel Core i5 1235U

Intel Core i5 1235U
  • Cores: 10
  • L3 cache: 12MB (shared)
  • TDP: 12-15 W (max. boost up to 55 W)
  • Transistor size: 10 nm
Core i5 1235U - laptop processor produced by Intel for socket BGA-1744 that has 10 cores and 12 threads. The base clock frequency of the CPU is 1300 MHz, but due to Turbo Boost technology, it can perform up to 4400 MHz. The size of the L3 cache is 12 MB. Please note that this chip has integrated graphics Intel Iris Xe Graphics (80EU).

Review

Single-Core Performance
59
Multi-Core Performance
19
Power Efficiency
55
Integrated Graphics
40
NanoReview Final Score
43
Compare Intel Core i5 1235U with other CPUs

Test in Benchmarks

Performance test of Intel Core i5 1235U in benchmarks

Cinebench

Reputable cross-platform benchmark for high-performance processors
Cinebench 2024 (Single)
98
Cinebench 2024 (Multi)
368
Cinebench 2026 (Single) 400
Cinebench 2026 (Multi) 1046

GeekBench v6

The new version of this benchmark emulates common operations often used in real-world apps
Geekbench 6 (Single-Core)
2089
Geekbench 6 (Multi-Core)
6362
File compression 448.4 MB/sec
Clang compilation 24.1 Klines/sec
HTML 5 Browser 156 pages/sec
PDF Renderer 128.9 Mpixels/sec
Text processing 206.3 pages/sec
Background blur 34.7 images/sec
Photo processing 54.1 images/sec
Ray tracing 10.5 Mpixels/sec
Sources: GeekBench [1] – 545 samples

PassMark

Synthetic test that focuses on raw computational performance for low-level functions
Passmark CPU (Single-Core)
3051
Passmark CPU (Multi-Core)
12449
Integer math 47.4 GOps/sec
Floating point math 37.4 GOps/sec
Find prime numbers 534M Primes/sec
Random string sorting 16.6M Strings/sec
Data encryption 9 GBytes/sec
Data compression 143.4 MBytes/sec
Physics 649 Frames/sec
Extended instructions 7.9B Matrices/sec
Sources: PassMark [3] – 8323 samples

Blender

3D rendering test that measures CPU performance in 3D modeling tasks (uses all cores)
Blender CPU
80.33

Performance Per Watt

Shows the score you get per each watt of PL1 TDP
Cinebench 2024 / Watt 24.5 PPW
Geekbench 6 Multi / Watt 424.1 PPW
Passmark CPU Mark / Watt 829.9 PPW
Blender / Watt 5.36 PPW
These are rough calculations, as most CPUs surpass PL1 TDP wattage even in multicore workloads.

Recent User Tests

The latest benchmark tests that have been submitted by users
DateBenchmarkResult
πŸ“˜ 2026-08-15 (zoetje)Cinebench 2026400 / 1046
πŸ“˜ 2026-08-09 (Jubayer)Cinebench 202486 / 393
πŸ“˜ 2026-05-06 (TASIN AMIR)GeekBench2191 / 7204
πŸ“˜ 2026-03-08 -> samueltailsGeekBench2147 / 6050
πŸ“˜ 2025-01-13 (sauron269)Cinebench 202498 / 368

Specifications

Core i5 1235U technical specifications

General

Vendor Intel
Released February 23, 2022
Type Laptop
Instruction Set x86-64
Codename Alder Lake
Model number i5-1235U
Integrated GPU Iris Xe Graphics (80EU)
Successor - Intel Core Ultra 5 225U
Intel CPU rating - 199th place

CPU

Performance Cores
P-Cores 2
P-Threads 4
Base Frequency (P) 1.3 GHz
Turbo Boost Frequency (P) 4.4 GHz
Efficient Cores
E-Cores 8
E-Threads 8
Base Frequency (E) 0.9 GHz
Turbo Boost Frequency (E) 3.3 GHz
Total
Total Cores 10
Total Threads 12
Bus Frequency 100 MHz
Multiplier 13x
L1 Cache 80K (per core)
L2 Cache 1280K (per core)
L3 Cache 12MB (shared)
Unlocked Multiplier No

Package

Fabrication Process 10 nm
TDP (PL1) 12-15 W (configurable)
Max. Boost TDP (PL2) 55 W
Socket BGA-1744
Peak Temperature 100Β°C

iGPU

Integrated Graphics Intel Iris Xe Graphics (80EU)
GPU Base Clock 300 MHz
GPU Boost Clock 1200 MHz
Shading Units 640
TMUs 40
ROPs 20
Execution Units 80
TGP 15 W
iGPU FLOPS
1.5 TFLOPS
See also: Intel Iris Xe Graphics G7 (80EU) – integrated graphics of Intel Core i5 1235U

Memory Support

Memory Types - DDR5-4800
- DDR4-3200
- LPDDR5-5200
- LPDDR4x-4267
Max. Memory Size 64 GB
Memory Channels 2
ECC Support No

Misc

Official Site Intel Core i5 1235U official page
PCI Express Version 4.0
PCI Express Lanes 20
Technologies
- Compute: ABM, ADX, BMI1, BMI2, CLMUL, F16C, SHA
- Performance: EIST, TBT 2.0, TSX
- Virtualization: VT-d, VT-x
- Security: RDRAND, TXT, XD bit

Comments

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Illinois User November 28, 2023 at 09:10 PM
At least in my experience so far on a low powered hybrid 12 gen Intel CPU. I do not notice any real benefit to this complex chip using a Thread Director over just the more traditional multi core variable performance cores. This is one of those times where the gains are not significant enough to warrant the added complexity of these hybrid CPU's. At least not in the low power segment where I don't see performance or energy efficiency gains to justify any of this.
+9 Reply
Avatar
John November 15, 2023 at 08:04 PM
The 1235U, like any U series, prioritizes efficiency over performance. In my opinion, it handles daily tasks rather well, yet I'm skeptical that the hybrid (Big/Little) core architecture is achieving anything impressive, other than attempting to increase efficiency through the dispatch of more efficient cores to tasks that don't require significant performance. Important to note, however, is that you're limited to two performance cores - so, in my mind, it's essentially just a dual-core with a collection of helper cores. Is this approach leading to similar results more efficiently? The jury is still out on that one. In my opinion, you need an operating system, drivers, and applications that can support this hybrid model for it to work properly. Even gamers have encountered performance hurdles, with some even disabling E cores. For my daily workloads, the 1235U gets the job done just fine. Its performance is nothing extraordinary, similar to a good 11th-gen U chip, but it's not considerably worse either. It might actually be the more energy-efficient choice, even if it doesn't significantly augment performance.
+21 Reply