AMD Ryzen 9 7900X3D vs Intel Core i7-13700KF Comparison

AMD
AMD

AMD Ryzen 9 7900X3D

CORE STATE Raphael
CORE SPECS 12 Cores / 24 Threads
CLOCK SPEED 4.4 Base / 5.6 GHz Turbo
CACHE 128 MB (shared)
MAX TDP 120W
ARCHITECTURE Zen 4
nm
PROCESS 5 nm
LAUNCH DATE 2023
VS
Intel
INTEL

Core i7-13700KF

CORE STATE Raptor Lake-S
CORE SPECS 16 Cores / 24 Threads
CLOCK SPEED 3.4 Base / 5.4 GHz Turbo
CACHE 30 MB (shared)
MAX TDP 125W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2022

PERFORMANCE BENCHMARKS

3dmark_16_threads
10,144
10,749
3dmark_2_threads
2,071
2,263
3dmark_4_threads
4,041
4,474
3dmark_8_threads
7,315
8,230
3dmark_max_threads
11,480
12,462
3dmark_single_thread
1,049
1,137
cinebench_cinebench_r15_multicore
4,310
3,901
cinebench_cinebench_r15_singlecore
608
550
cinebench_cinebench_r20_multicore
17,962
16,255
cinebench_cinebench_r20_singlecore
2,535
2,294
cinebench_cinebench_r23_multicore
42,767
38,704
cinebench_cinebench_r23_singlecore
6,037
5,464
geekbench_multicore
18,808
18,258
geekbench_singlecore
2,456
2,435
passmark_data_compression
593,838
596,493
passmark_data_encryption
35,293
33,314
passmark_extended_instructions
44,567
36,700
passmark_find_prime_numbers
445
186
passmark_floating_point_math
97,246
114,997
passmark_integer_math
160,779
154,507
passmark_multithread
50,317
45,817
passmark_physics
4,728
2,650
passmark_random_string_sorting
70,662
62,726
passmark_single_thread
4,126
4,336
passmark_singlethread
4,126
4,336

Analysis: AMD Ryzen 9 7900X3D vs Intel Core i7-13700KF

The AMD Ryzen 9 7900X3D and Intel Core i7-13700KF are two very different desktop processors that target overlapping performance tiers but achieve their results through distinct strategies. The benchmark data shows a clear split: AMD wins 15 of the 25 head-to-head tests, while Intel wins 10, but the margins tell a more nuanced story than the win count alone. The Ryzen 9 7900X3D holds a 1.2% lead in average benchmark score (47908 vs 47330) and sits at the 90th percentile compared to Intel's 89th, placing both firmly in the top tier of available CPUs.

Head-to-Head Benchmarks

The most striking result in the entire comparison is in the PassMark find prime numbers test, where the AMD Ryzen 9 7900X3D scores 445 against Intel's 186. That is a 139.2% advantage, the largest delta in either direction across all benchmarks. This is a massive win for AMD and indicates a significant strength in this specific integer workload. Similarly, the PassMark physics test shows AMD at 4728 versus Intel's 2650, a 78.4% lead, suggesting AMD's architecture handles physics calculations far more efficiently.

The AMD processor also dominates the Cinebench suite with remarkable consistency. Across R15, R20, and R23, in both multi-core and single-core tests, AMD wins every single one by exactly 10.5%. For example, in Cinebench R23 multi-core, AMD scores 42767 while Intel manages 38704. The single-core R23 result shows AMD at 6037 versus Intel's 5464. This uniformity suggests a fundamental architectural advantage in how these workloads are executed rather than a difference that scales with thread count.

Beyond Cinebench, AMD wins PassMark extended instructions by 21.4% (44567 vs 36700), random string sorting by 12.7% (70662 vs 62726), and multithread by 9.8% (50317 vs 45817). The data encryption test also goes to AMD with a 5.9% margin (35293 vs 33314), and integer math shows AMD ahead by 4.1% (160779 vs 154507). Geekbench multi-core and single-core both favor AMD by 3% and 0.9% respectively, with scores of 18808 vs 18258 and 2456 vs 2435.

Intel's wins are concentrated in the 3DMark suite and a few specific PassMark tests. The 3DMark results show Intel ahead in every thread count from 2 to max threads. The largest Intel margin is 11.1% in the 8-thread test (8230 vs 7315), followed by 9.7% in 4-thread (4474 vs 4041), 8.5% in 2-thread (2263 vs 2071), 7.9% in max-thread (12462 vs 11480), and 5.6% in 16-thread (10749 vs 10144). Single-thread 3DMark also goes to Intel by 7.7% (1137 vs 1049). In PassMark, Intel wins floating point math by a substantial 15.4% (114997 vs 97246), data compression by a slim 0.4% (596493 vs 593838), and single-thread by 4.8% (4336 vs 4126).

Where Each One Wins

The AMD Ryzen 9 7900X3D is the clear choice for rendering and content creation workloads. The Cinebench results, which simulate professional 3D rendering, show AMD ahead by a consistent 10.5% across every version of the test. This is not a marginal difference; it represents a meaningful reduction in render times for users working with 3D scenes. The physics test result, with AMD at 4728 versus Intel's 2650, also points to advantages in simulation and physics-heavy applications.

For general productivity and mixed workloads, AMD again holds the edge. The Geekbench multi-core and single-core wins, combined with the PassMark multithread and integer math victories, suggest that the Ryzen 9 7900X3D handles a broader range of everyday tasks with more efficiency. The extended instructions win by 21.4% is particularly relevant for users running AVX-heavy applications such as scientific computing or video encoding that leverage modern instruction sets.

The Intel Core i7-13700KF is the winner in gaming-related and graphics-adjacent workloads, as evidenced by its sweep of all six 3DMark tests. These benchmarks simulate gaming scenarios with different thread counts, and Intel's consistent 5.6% to 11.1% advantage suggests better frame pacing and responsiveness in game physics and rendering. The floating point math win by 15.4% also indicates strength in workloads that rely heavily on floating-point calculations, such as certain types of scientific simulations or financial modeling.

For single-threaded performance in non-Cinebench tests, Intel takes the PassMark single-thread test by 4.8%, and the 3DMark single-thread test by 7.7%. This makes Intel slightly better for legacy applications that only use one core or for tasks where the primary thread is the bottleneck. However, AMD's single-core wins in Cinebench and Geekbench complicate this picture, suggesting that the advantage is workload-specific rather than universal.

Architecture Differences

The fundamental architectural split between these two processors is stark. The AMD Ryzen 9 7900X3D is built on a 5 nm process at TSMC using the Zen 4 architecture with the Raphael codename, while the Intel Core i7-13700KF uses a 10 nm process at Intel's own foundry with the Raptor Lake architecture and the Raptor Lake-S codename. This process node difference is significant, as the smaller 5 nm node typically allows for better power efficiency and higher transistor density.

The transistor counts and die sizes tell a dramatic story. AMD's chip has 17,840 million transistors spread across two 71 mm² dies, while Intel's has no listed transistor count but uses a much larger 257 mm² monolithic die. This means AMD is using a chiplet design with two separate compute dies, whereas Intel is using a single larger die. The cache configurations also differ substantially: AMD provides 64 KB of L1 cache and 1 MB of L2 cache per core, with 128 MB of shared L3 cache that includes a dedicated 1x 64MB 3D V-Cache slice. Intel provides 80 KB of L1 and 2 MB of L2 per core, but only 30 MB of shared L3 cache.

The 3D V-Cache is the defining feature of the AMD processor. This extra 64MB slice of L3 cache is designed to reduce memory latency and improve performance in cache-sensitive workloads. The massive 128 MB total L3 cache compared to Intel's 30 MB is likely the primary reason for AMD's dominance in the find prime numbers and physics tests, which often benefit from larger caches. Intel's larger L1 and L2 per-core caches help in some single-threaded scenarios but cannot compensate for the massive L3 deficit.

Specification Differences

The core configurations differ significantly. The AMD Ryzen 9 7900X3D has 12 cores and 24 threads, while the Intel Core i7-13700KF has 16 cores and 24 threads. Intel has more physical cores but the same thread count, which suggests Intel uses a hybrid architecture with different core types, though this is not detailed in the specifications. AMD's base clock is 4.40 GHz with a boost clock of 5.60 GHz, while Intel's base clock is lower at 3.40 GHz with a boost of 5.40 GHz.

The TDP is nearly identical, with AMD rated at 120W and Intel at 125W. Both use dual-channel memory, but AMD supports only DDR5 while Intel supports both DDR4 and DDR5, giving Intel platform flexibility that AMD lacks. Memory bandwidth is listed for AMD at 83.2 GB/s but not provided for Intel. Both support ECC memory. PCIe lanes differ, with AMD offering Gen 5 with 24 lanes (CPU only) versus Intel's Gen 5 with 20 lanes.

The AMD processor includes integrated Radeon Graphics, while Intel's has no integrated graphics, meaning the Intel chip requires a discrete GPU for any display output. Both have unlocked multipliers for overclocking. The release dates show Intel launched on 2022-09-26, while AMD followed on 2023-01-03. AMD lists a launch MSRP of $599, and Intel lists $384. The sockets are different: AMD uses AM5 while Intel uses LGA 1700.

FAQ

Q: Which processor has more cores?

A: The Intel Core i7-13700KF has 16 cores, while the AMD Ryzen 9 7900X3D has 12 cores. Both have 24 threads.

Q: How much larger is the AMD processor's L3 cache?

A: The AMD Ryzen 9 7900X3D has 128 MB of shared L3 cache, which is 4.27 times larger than the Intel Core i7-13700KF's 30 MB of shared L3 cache.

Q: Which processor wins in Cinebench R23 multi-core?

A: The AMD Ryzen 9 7900X3D wins with a score of 42767 compared to Intel's 38704, a 10.5% advantage.

Q: Does the Intel Core i7-13700KF have integrated graphics?

A: No, the Intel Core i7-13700KF does not have integrated graphics, while the AMD Ryzen 9 7900X3D includes Radeon Graphics.

Q: What is the largest benchmark margin between these two CPUs?

A: The largest margin is in the PassMark find prime numbers test, where the AMD Ryzen 9 7900X3D scores 445 versus Intel's 186, a 139.2% difference.

Q: Which processor supports DDR4 memory?

A: The Intel Core i7-13700KF supports both DDR4 and DDR5, while the AMD Ryzen 9 7900X3D supports only DDR5.

The Verdict

The data clearly separates these two processors by workload type. For users focused on rendering, content creation, physics simulation, or any task that benefits from large caches and efficient multi-threading, the AMD Ryzen 9 7900X3D is the stronger choice. Its 10.5% lead across all Cinebench tests, 78.4% lead in PassMark physics, and 139.2% lead in find prime numbers are decisive. The 128 MB L3 cache with the 3D V-Cache slice appears to be the key differentiator, providing an advantage that Intel's higher core count cannot overcome.

For gamers or users running graphics-heavy applications, the Intel Core i7-13700KF is better suited. Its sweep of the 3DMark tests, with margins ranging from 5.6% to 11.1%, indicates a consistent advantage in gaming-related workloads. The 15.4% lead in floating point math also makes it a better choice for applications that rely heavily on FPU performance. The lower 125W TDP, support for both DDR4 and DDR5 memory, and lower launch MSRP of $384 compared to AMD's $599 are additional practical considerations for builders on a specific platform budget.

The overall benchmark average favors AMD by only 1.2%, and the percentile ranking is nearly identical (90th vs 89th). This means neither processor is categorically superior; they are optimized for different use cases. The AMD Ryzen 9 7900X3D is the specialist for cache-hungry productivity tasks, while the Intel Core i7-13700KF is the specialist for gaming and floating-point workloads. Choose based on your primary applications, not on overall scores, because the data shows that each processor excels in a distinct domain where the other cannot match it.

DETAILED SPECIFICATIONS

SPECIFICATION
9 7900X3D
i7-13700KF
Core Specs
Cores
12
16 +33.3%
Threads
24
24 0.0%
Base Clock (GHz)
4.4
3.4 -22.7%
Boost Clock (GHz)
5.6
5.4 -3.6%
Frequency (GHz)
4.4
3.4 -22.7%
Turbo Clock (GHz)
5.6
5.4 -3.6%
Multiplier
44
34 -22.7%
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
128 MB (shared)
30 MB (shared)
3D V-Cache
1x 64MB Slice
—
Power
TDP (W)
120
125 +4.2%
PL1
—
253 W
PL2
—
253 W
PPT
162 W
—
Architecture
Architecture
Zen 4
Raptor Lake
Codename
Raphael
Raptor Lake-S
Generation
Ryzen 9 (Zen 4 (Raphael))
Core i7 (Raptor Lake)
Process Size
5 nm
10 nm
Transistors
17,840 million
—
Die Size
2x 71 mm²
257 mm²
Foundry
TSMC
Intel
Memory
Memory Support
DDR5
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
Memory Bandwidth
83.2 GB/s
—
ECC Memory
Yes
Yes
DDR4 Speed
—
3200 MT/s
DDR5 Speed
—
5600 MT/s
Platform
Socket
AMD Socket AM5
Intel Socket 1700
Chipsets
X670E, X670, B650E, B650, A620
H610, B660, H670, Q670, Z690, W680, B760, H770, Z790
PCIe
Gen 5, 24 Lanes(CPU only)
Gen 5, 20 Lanes(CPU only)
Intel Hybrid
Hybrid Cores
—
P-Cores: 8 E-Cores: 8
E-Core Frequency
—
2.5 GHz up to 4.2 GHz
P-Core Turbo
—
5.3 GHz
AMD Multi-Die
IO Process Size
6 nm
—
Graphics
Integrated Graphics
Radeon Graphics
—
Other
Market
Desktop
Desktop
Production Status
Active
Active
Launch Price
$599
$384
Part Number
100-000000909
SRMB9
Package
FC-LGA1718
FC-LGA16A
Tj Max
89°C
100°C
Bundled Cooler
None
—
View Ryzen 9 7900X3D Details View Core i7-13700KF Details