AMD Ryzen 9 8940HX vs Intel Core 7 253PE Comparison

AMD
AMD

AMD Ryzen 9 8940HX

CORE STATE Dragon Range
CORE SPECS 16 Cores / 32 Threads
CLOCK SPEED 2.4 Base / 5.3 GHz Turbo
CACHE 64 MB
MAX TDP 55W
ARCHITECTURE Zen 4
nm
PROCESS 5 nm
LAUNCH DATE 2025
VS
Intel
INTEL

Core 7 253PE

CORE STATE Bartlett Lake
CORE SPECS 10 Cores / 20 Threads
CLOCK SPEED 2.5 Base / 5.5 GHz Turbo
CACHE 33 MB (shared)
MAX TDP 65W
ARCHITECTURE Bartlett Lake
nm
PROCESS 10 nm
LAUNCH DATE 2026

PERFORMANCE BENCHMARKS

cinebench_cinebench_r15_multicore
5,355
2,507
cinebench_cinebench_r15_singlecore
292
354
cinebench_cinebench_r23_multicore
32,521
24,880
cinebench_cinebench_r23_singlecore
1,917
3,512
passmark_data_compression
650,984
339,133
passmark_data_encryption
39,318
18,385
passmark_extended_instructions
47,802
21,806
passmark_find_prime_numbers
251
138
passmark_floating_point_math
113,921
80,870
passmark_integer_math
189,221
114,158
passmark_multithread
49,731
29,271
passmark_physics
2,104
1,845
passmark_random_string_sorting
75,381
32,777
passmark_single_thread
3,874
3,955
passmark_singlethread
3,874
3,955
cinebench_cinebench_r20_multicore
N/A
10,449
cinebench_cinebench_r20_singlecore
N/A
1,475

Analysis: AMD Ryzen 9 8940HX vs Intel Core 7 253PE

The AMD Ryzen 9 8940HX and Intel Core 7 253PE present two distinctly different performance profiles. The AMD processor, a mobile part in the 8000 series, uses 16 cores and 32 threads to deliver massive throughput, while the Intel chip, a desktop part from the Bartlett Lake generation, counters with higher single-core clock speeds. The benchmark data shows the AMD Ryzen 9 8940HX wins 11 of the 15 recorded head-to-head tests, with the Intel Core 7 253PE taking the remaining 4. This split highlights a fundamental trade-off: the AMD chip excels in heavily threaded workloads, whereas the Intel chip demonstrates superiority in tasks that depend on single-thread responsiveness.

Where Each One Wins

The AMD Ryzen 9 8940HX dominates multi-threaded and compute-heavy scenarios. In Cinebench R23 multicore, the AMD part scores 32521 against 24880 for the Intel, a lead of 30.7%. The gap expands in Cinebench R15 multicore, where the AMD processor reaches 5355 points versus 2507, a 113.6% advantage. PassMark multithread results follow the same pattern, with the AMD chip scoring 49731 against 29271, a 69.9% difference. Workloads involving heavy data manipulation also favor the AMD processor. In PassMark data compression, the AMD chip scores 650984 versus 339133, a 92% edge, and in random string sorting it leads by 130%, scoring 75381 against 32777. Encryption and extended instruction tests show even larger margins: 113.9% and 119.2% respectively.

The Intel Core 7 253PE wins in single-core performance. The most pronounced victory comes in Cinebench R23 singlecore, where the Intel chip scores 3512 against 1917 for the AMD processor, a 45.4% advantage. Cinebench R15 singlecore shows a 17.5% lead for Intel, with scores of 354 versus 292. In PassMark single_thread, the Intel part scores 3955 against 3874, a slim 2% margin. These results indicate the Intel processor is better suited for lightly threaded applications and tasks where per-core speed is the limiting factor. The Intel chip also carries a higher base clock of 2.50 GHz and boost clock of 5.50 GHz, compared to 2.40 GHz and 5.30 GHz for the AMD part, which aligns with its single-core victories.

FAQ

Q: Which processor delivers higher multi-core performance?

A: The AMD Ryzen 9 8940HX. It wins the Cinebench R23 multicore test with a score of 32521 against 24880 for the Intel Core 7 253PE, a 30.7% advantage. The margin grows to 113.6% in Cinebench R15 multicore.

Q: Which processor has the higher single-core score?

A: The Intel Core 7 253PE. It scores 3512 in Cinebench R23 singlecore versus 1917 for the AMD Ryzen 9 8940HX, a 45.4% lead. It also wins PassMark single_thread by a smaller 2% margin, 3955 to 3874.

Q: How do the two processors compare in data encryption workloads?

A: The AMD Ryzen 9 8940HX is significantly faster. It scores 39318 in PassMark data encryption against 18385 for the Intel Core 7 253PE, a 113.9% difference.

Q: What are the core and thread counts for each processor?

A: The AMD Ryzen 9 8940HX has 16 cores and 32 threads. The Intel Core 7 253PE has 10 cores and 20 threads.

Q: Which processor supports ECC memory?

A: The Intel Core 7 253PE supports ECC memory, while the AMD Ryzen 9 8940HX does not.

Q: What is the market segment for each processor?

A: The AMD Ryzen 9 8940HX is a mobile processor, while the Intel Core 7 253PE is a desktop processor.

Head-to-Head Benchmarks

The largest win for the AMD Ryzen 9 8940HX occurs in PassMark random string sorting, where it scores 75381 against 32777, a 130% advantage. PassMark extended instructions also shows a massive gap, with the AMD chip at 47802 versus 21806, a 119.2% lead. Data encryption follows closely, with the AMD part scoring 39318 against 18385, a 113.9% difference. Cinebench R15 multicore delivers a 113.6% win for the AMD processor, with scores of 5355 and 2507. PassMark data compression shows a 92% advantage for the AMD chip, 650984 to 339133. These results confirm that the AMD processor holds a decisive edge in parallel workloads.

The Intel Core 7 253PE counters with its own notable wins. Cinebench R23 singlecore is its strongest result, where it scores 3512 against 1917 for the AMD processor, a 45.4% lead. Cinebench R15 singlecore shows a 17.5% advantage for Intel, with scores of 354 and 292. PassMark single_thread is the closest contest, with the Intel chip scoring 3955 against 3874, a 2% margin. These single-core wins are consistent across all three recorded single-thread tests, indicating a clear pattern.

The AMD processor also wins several mid-range tests. PassMark integer math shows a 65.8% advantage, with scores of 189221 and 114158. PassMark multithread delivers a 69.9% lead, 49731 to 29271. PassMark floating point math shows a 40.9% edge for the AMD chip, 113921 to 80870. PassMark find prime numbers has the AMD part at 251 versus 138, an 81.9% difference. PassMark physics is the narrowest AMD win, with a 14% margin, 2104 to 1845. The average benchmark score for the AMD Ryzen 9 8940HX is 81103, placing it in the 95th percentile of all CPUs, while the Intel Core 7 253PE averages 40557 and sits in the 87th percentile.

Specification Differences

The AMD Ryzen 9 8940HX uses 16 cores and 32 threads, while the Intel Core 7 253PE uses 10 cores and 20 threads. The Intel chip has a higher base clock at 2.50 GHz compared to 2.40 GHz for the AMD part, and a higher boost clock at 5.50 GHz versus 5.30 GHz. The AMD processor has a TDP of 55, while the Intel processor has a TDP of 65. The AMD chip uses AMD Socket FL1, whereas the Intel chip uses Intel Socket 1700. The AMD processor is unlocked, while the Intel processor is not. The AMD chip supports only DDR5 memory, while the Intel chip supports both DDR4 and DDR5. Memory bandwidth differs slightly, with the Intel chip rated at 89.6 GB/s and the AMD chip at 83.2 GB/s. The AMD processor does not support ECC memory, but the Intel processor does. PCIe lane counts also differ: the AMD chip provides 28 lanes, while the Intel chip provides 16 lanes. The integrated graphics differ as well, with the AMD chip using Radeon 610M and the Intel chip using UHD Graphics 730.

Architecture Differences

The AMD Ryzen 9 8940HX is built on Zen 4 architecture with the Dragon Range codename, while the Intel Core 7 253PE uses the Bartlett Lake codename. The AMD processor uses a 5 nm process node from TSMC, whereas the Intel processor uses a 10 nm node from Intel. The AMD chip has a transistor count of 13,140 million and a die size of 2x 71 mm², while the Intel chip has no recorded transistor or die size data. Cache configurations differ significantly. The AMD processor has 64 KB of L1 per core and 1 MB of L2 per core, with 64 MB of L3 cache. The Intel processor has 80 KB of L1 per core and 2 MB of L2 per core, with 33 MB of shared L3 cache. The AMD part belongs to the 8000 series and Ryzen 9 generation, while the Intel part is listed under Core 7. The AMD processor is an active mobile product released on 2025-04-22, while the Intel processor is an active desktop product released on 2026-03-08 with a launch MSRP of $384.

DETAILED SPECIFICATIONS

SPECIFICATION
9 8940HX
7 253PE
Core Specs
Cores
16
10 -37.5%
Threads
32
20 -37.5%
Base Clock (GHz)
2.4
2.5 +4.2%
Boost Clock (GHz)
5.3
5.5 +3.8%
Frequency (GHz)
2.4
2.5 +4.2%
Turbo Clock (GHz)
5.3
5.5 +3.8%
Multiplier
24
25 +4.2%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
64 KB (per core)
80 KB (per core)
L2 Cache
1 MB (per core)
2 MB (per core)
L3 Cache
64 MB
33 MB (shared)
Power
TDP (W)
55
65 +18.2%
PL1
65 W
PL2
219 W
Configurable TDP
45-75 W
Architecture
Architecture
Zen 4
Codename
Dragon Range
Bartlett Lake
Generation
Ryzen 9 (Zen 4 (Dragon Range))
Core 7 (Bartlett Lake)
Process Size
5 nm
10 nm
Transistors
13,140 million
Die Size
2x 71 mm²
Foundry
TSMC
Intel
Memory
Memory Support
DDR5
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
Memory Bandwidth
83.2 GB/s
89.6 GB/s
ECC Memory
No
Yes
DDR4 Speed
3200 MT/s
Platform
Socket
AMD Socket FL1
Intel Socket 1700
Chipsets
W680, R680E, Q670e, Q670, H610E, H610
PCIe
Gen 5, 28 Lanes(CPU only)
Gen 5, 16 Lanes(CPU only)
Intel Hybrid
P-Core Turbo
5.3 GHz
AMD Multi-Die
IO Process Size
6 nm
Graphics
Integrated Graphics
Radeon 610M
UHD Graphics 730
Other
Market
Mobile
Desktop
Production Status
Active
Active
Launch Price
$384
Part Number
100-000001849
SA4QE
Package
µFC-BGAFL1
FC-LGA16A
Tj Max
100°C
100°C
View Ryzen 9 8940HX Details View Core 7 253PE Details