AMD Ryzen 7 PRO 5755GE vs Intel Core 9 273PTE Comparison

AMD
AMD

AMD Ryzen 7 PRO 5755GE

CORE STATE Cezanne
CORE SPECS 8 Cores / 16 Threads
CLOCK SPEED 3.2 Base / 4.6 GHz Turbo
CACHE 16 MB
MAX TDP 35W
ARCHITECTURE Zen 3
nm
PROCESS 7 nm
LAUNCH DATE 2024
VS
Intel
INTEL

Core 9 273PTE

CORE STATE Bartlett Lake
CORE SPECS 12 Cores / 24 Threads
CLOCK SPEED 1.4 Base / 5.5 GHz Turbo
CACHE 36 MB (shared)
MAX TDP 45W
ARCHITECTURE Bartlett Lake
nm
PROCESS 10 nm
LAUNCH DATE 2026

PERFORMANCE BENCHMARKS

cinebench_cinebench_r15_multicore
1,789
2,060
cinebench_cinebench_r15_singlecore
252
290
cinebench_cinebench_r20_multicore
7,458
8,586
cinebench_cinebench_r20_singlecore
1,052
1,212
cinebench_cinebench_r23_multicore
17,759
20,445
cinebench_cinebench_r23_singlecore
2,507
2,886
passmark_data_compression
252,937
258,704
passmark_data_encryption
16,937
14,253
passmark_extended_instructions
17,029
15,952
passmark_find_prime_numbers
50
142
passmark_floating_point_math
46,589
60,673
passmark_integer_math
84,004
82,411
passmark_multithread
20,870
24,054
passmark_physics
841
1,917
passmark_random_string_sorting
27,373
28,973
passmark_single_thread
3,353
3,433
passmark_singlethread
3,353
3,433

Analysis: AMD Ryzen 7 PRO 5755GE vs Intel Core 9 273PTE

Head-to-Head Benchmarks

The benchmark data shows a clear overall victory for the Intel Core 9 273PTE, which wins 14 of the 17 recorded head-to-head comparisons. The AMD Ryzen 7 PRO 5755GE takes only 3 wins, but those wins are concentrated in specific workloads where the Zen 3 architecture holds a distinct advantage.

The most decisive Intel victories come in the PassMark physics and prime number tests. In the PassMark physics benchmark, the Intel Core 9 273PTE scores 1917 against the AMD part's 841, a delta of -56.1% from the AMD perspective, meaning the Intel chip is more than twice as fast. The PassMark find prime numbers test shows an even larger gap: Intel scores 142 versus AMD's 50, a -64.8% delta. These two tests point to the Intel processor's substantial advantage in workloads that rely on heavy integer computation and physics simulation.

Across the Cinebench suite, the Intel Core 9 273PTE is consistently about 13% ahead. In Cinebench R23 multicore, Intel scores 20445 versus AMD's 17759, a -13.1% delta. The single-core R23 result is 2886 versus 2507, also a -13.1% delta. This pattern repeats in R20 and R15: the multicore deltas are -13.1% and -13.2% respectively, while single-core deltas are -13.2% and -13.1%. The consistency suggests a uniform performance advantage across both lightly threaded and heavily threaded rendering workloads, rather than a niche strength.

The PassMark multithread test shows Intel ahead by 24054 to 20870, a -13.2% delta, matching the Cinebench multicore pattern. Floating point math also favors Intel, with a score of 60673 versus 46589, a -23.2% delta. Data compression is closer, with Intel at 258704 versus AMD's 252937, a -2.2% delta. Random string sorting gives Intel a 28973 to 27373 result, a -5.5% delta. Single-thread performance in PassMark is nearly identical: Intel scores 3433 and AMD scores 3353, a -2.3% delta.

The AMD Ryzen 7 PRO 5755GE's wins are notable for their specificity. The largest AMD win is in data encryption, where it scores 16937 versus Intel's 14253, a 18.8% delta in AMD's favor. Extended instructions also go to AMD, with 17029 versus 15952, a 6.8% delta. The third AMD win is in integer math, but the margin is slim: 84004 versus 82411, a 1.9% delta. These results indicate that the AMD processor retains a measurable edge in cryptographic workloads and certain SIMD-heavy instruction streams, while the Intel part dominates in most general compute tasks.

The average benchmark score in the database reflects the overall positioning: the Intel Core 9 273PTE averages 31143, placing it in the 82nd percentile of all CPUs, while the AMD Ryzen 7 PRO 5755GE averages 29656, in the 81st percentile. The nearest rivals for the Intel part include the Intel Core i7-12700F with an average score of 31081 and a 0.2% delta, the AMD Ryzen 9 8945HS at 31074 with a 0.2% delta, and the Intel Core i7-13700TE at 31028 with a 0.4% delta. The AMD Ryzen 7 PRO 5755GE's nearest rivals are the AMD Ryzen 5 9600X at 29713 with a -0.2% delta, the AMD Ryzen AI 7 345 at 29461 with a 0.7% delta, and the AMD Ryzen 7 3800X at 29447 with a 0.7% delta.

FAQ

Q: Which processor wins more head-to-head benchmark comparisons?

A: The Intel Core 9 273PTE wins 14 of the 17 recorded comparisons, while the AMD Ryzen 7 PRO 5755GE wins 3.

Q: How large is the Intel processor's lead in Cinebench R23 multicore performance?

A: The Intel Core 9 273PTE scores 20445 in Cinebench R23 multicore, while the AMD Ryzen 7 PRO 5755GE scores 17759, a delta of -13.1% from the AMD side.

Q: In which benchmark does the AMD processor have its largest winning margin?

A: The AMD Ryzen 7 PRO 5755GE leads by 18.8% in the PassMark data encryption test, scoring 16937 against the Intel Core 9 273PTE's 14253.

Q: What is the single-thread performance difference in PassMark?

A: The Intel Core 9 273PTE scores 3433 in PassMark single thread, and the AMD Ryzen 7 PRO 5755GE scores 3353, a -2.3% delta favoring Intel.

Q: How do the two processors compare in the PassMark physics test?

A: The Intel Core 9 273PTE scores 1917 in PassMark physics, versus the AMD Ryzen 7 PRO 5755GE's 841, a -56.1% delta that represents a more than twofold advantage for Intel.

Q: What are the average benchmark scores for each processor?

A: The Intel Core 9 273PTE has an average benchmark score of 31143, and the AMD Ryzen 7 PRO 5755GE has an average benchmark score of 29656.

Architecture Differences

The two processors come from different manufacturing and design lineages. The AMD Ryzen 7 PRO 5755GE uses the Zen 3 architecture, codenamed Cezanne, built on a 7 nm process at TSMC. The Intel Core 9 273PTE uses the Bartlett Lake codename, built on a 10 nm process at Intel's own foundry. The AMD part integrates 10,700 million transistors on a 180 mm² die, while the database records no transistor count or die size for the Intel part.

Core counts differ substantially. The AMD processor has 8 cores and 16 threads, while the Intel processor has 12 cores and 24 threads. Cache hierarchies also diverge. The AMD part has 64 KB of L1 per core, 512 KB of L2 per core, and 16 MB of L3 cache. The Intel part has 80 KB of L1 per core, 2 MB of L2 per core, and 36 MB of shared L3 cache.

Clock speeds show different design priorities. The AMD Ryzen 7 PRO 5755GE has a base clock of 3.20 GHz and a boost clock of 4.60 GHz. The Intel Core 9 273PTE has a much lower base clock of 1.40 GHz but a higher boost clock of 5.50 GHz. Thermal design power also differs: the AMD part is rated at 35 watts, while the Intel part is rated at 45 watts.

Memory support diverges as well. The AMD processor supports DDR4 memory in a dual-channel configuration with a memory bandwidth of 51.2 GB/s. The Intel processor supports both DDR4 and DDR5 memory, also dual-channel, with a memory bandwidth of 89.6 GB/s. The Intel part also supports ECC memory, while the AMD part does not.

PCIe connectivity differs by generation and lane count. The AMD processor uses PCIe Gen 3 with 16 lanes available from the CPU. The Intel processor uses PCIe Gen 5 with 16 lanes from the CPU. Integrated graphics are present on both: the AMD part uses Radeon Vega 8, and the Intel part uses UHD Graphics 730.

Sockets are incompatible. The AMD Ryzen 7 PRO 5755GE fits AMD Socket AM4, while the Intel Core 9 273PTE fits Intel Socket 1700. Release dates in the database are separated by roughly a year and a half, with the AMD part listed as released on 2024-09-04 and the Intel part on 2026-03-08. Neither processor has an unlocked multiplier.

The Verdict

The recorded data indicates that the Intel Core 9 273PTE is the stronger processor for the majority of compute workloads. Its 12-core, 24-thread configuration, combined with a 5.50 GHz boost clock and 36 MB of L3 cache, delivers consistent leads in rendering, physics simulation, prime number calculation, floating point math, and multithreaded tasks. The Cinebench results, with deltas clustered around -13% across all three versions, show a uniform advantage in both single-core and multicore rendering. The PassMark physics result, a -56.1% delta, is the most dramatic single-workload gap in the comparison.

The AMD Ryzen 7 PRO 5755GE is not without its strengths. The 18.8% lead in data encryption and the 6.8% lead in extended instructions show that the Zen 3 architecture remains competitive in security-related and SIMD-heavy workloads. The 1.9% margin in integer math is narrow, but it does represent a win. The AMD part also runs at a lower 35 watt TDP, compared to the Intel part's 45 watts, which points to lower power draw under sustained load.

The average benchmark scores place the Intel part in the 82nd percentile and the AMD part in the 81st percentile, a single percentile point of separation. The delta between their average scores is approximately 5% in favor of Intel (31143 versus 29656). Users prioritizing encryption performance or extended instruction throughput would find the AMD processor competitive, but for general compute, the Intel Core 9 273PTE holds the advantage across a wider range of tests.

Specification Differences

| Specification | AMD Ryzen 7 PRO 5755GE | Intel Core 9 273PTE |

|---|---|---|

| Cores | 8 | 12 |

| Threads | 16 | 24 |

| Base Clock | 3.20 GHz | 1.40 GHz |

| Boost Clock | 4.60 GHz | 5.50 GHz |

| TDP | 35 W | 45 W |

| Socket | AMD Socket AM4 | Intel Socket 1700 |

| Architecture | Zen 3 | Not specified |

| Codename | Cezanne | Bartlett Lake |

| Process Node | 7 nm | 10 nm |

| Foundry | TSMC | Intel |

| Transistors | 10,700 million | Not specified |

| Die Size | 180 mm² | Not specified |

| L1 Cache | 64 KB (per core) | 80 KB (per core) |

| L2 Cache | 512 KB (per core) | 2 MB (per core) |

| L3 Cache | 16 MB | 36 MB (shared) |

| Memory Support | DDR4 | DDR4, DDR5 |

| Memory Bandwidth | 51.2 GB/s | 89.6 GB/s |

| ECC Memory | No | Yes |

| PCIe | Gen 3, 16 Lanes (CPU only) | Gen 5, 16 Lanes (CPU only) |

| Integrated Graphics | Radeon Vega 8 | UHD Graphics 730 |

| Release Date | 2024-09-04 | 2026-03-08 |

| Launch MSRP | Not specified | $549 |

| Multiplier Unlocked | No | No |

DETAILED SPECIFICATIONS

SPECIFICATION
7 PRO 5755GE
9 273PTE
Core Specs
Cores
8
12 +50.0%
Threads
16
24 +50.0%
Base Clock (GHz)
3.2
1.4 -56.3%
Boost Clock (GHz)
4.6
5.5 +19.6%
Frequency (GHz)
3.2
1.4 -56.3%
Turbo Clock (GHz)
4.6
5.5 +19.6%
Multiplier
32
14 -56.3%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
64 KB (per core)
80 KB (per core)
L2 Cache
512 KB (per core)
2 MB (per core)
L3 Cache
16 MB
36 MB (shared)
Power
TDP (W)
35
45 +28.6%
PL1
—
45 W
PL2
—
219 W
PPT
47 W
—
Architecture
Architecture
Zen 3
—
Codename
Cezanne
Bartlett Lake
Generation
Ryzen 7 (Zen 3 (Cezanne))
Core 9 (Bartlett Lake)
Process Size
7 nm
10 nm
Transistors
10,700 million
—
Die Size
180 mm²
—
Foundry
TSMC
Intel
Memory
Memory Support
DDR4
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
Memory Bandwidth
51.2 GB/s
89.6 GB/s
ECC Memory
No
Yes
DDR4 Speed
—
3200 MT/s
Platform
Socket
AMD Socket AM4
Intel Socket 1700
Chipsets
—
W680, R680E, Q670e, Q670, H610E, H610
PCIe
Gen 3, 16 Lanes(CPU only)
Gen 5, 16 Lanes(CPU only)
Intel Hybrid
P-Core Turbo
—
5.3 GHz
Graphics
Integrated Graphics
Radeon Vega 8
UHD Graphics 730
Other
Market
Desktop
Desktop
Production Status
Active
Active
Launch Price
—
$549
Part Number
100-000001750
SA4QJ
Package
µOPGA-1331
FC-LGA16A
Tj Max
—
100°C
View Ryzen 7 PRO 5755GE Details View Core 9 273PTE Details