AMD Ryzen 3 PRO 5355GE vs Intel Core 7 350 Comparison
AMD Ryzen 3 PRO 5355GE
Core 7 350
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 3 PRO 5355GE vs Intel Core 7 350
Head-to-Head Benchmarks
The head-to-head results show a clear split between the Intel Core 7 350 and the AMD Ryzen 3 PRO 5355GE, with the Intel part winning 13 of 17 recorded tests. The largest Intel margin comes in prime number finding, where it scores 107 versus 31, a 245.2% advantage. Physics simulation also strongly favors Intel: 1173 versus 552, a 112.5% lead.
Single-thread performance is consistently an Intel strength. In Cinebench R15 single-core, Intel posts 292 against AMD's 154, a 89.6% gap. The R23 single-core result shows Intel at 2046 versus 1531, a 33.6% edge. PassMark single-thread confirms the pattern, with Intel at 4100 versus 3089, a 32.7% advantage. The R20 single-core test has Intel ahead by 17.9%, scoring 758 versus 643.
Floating-point math also favors Intel substantially: 42809 versus 24115, a 77.5% lead. Extended instruction performance gives Intel another win, 12045 versus 10368, a 16.2% margin. Data encryption shows Intel at 10933 against 9564, a 14.3% edge. In the R15 multi-core test, Intel wins with 1220 versus 1093, an 11.6% advantage, and in R20 multi-core Intel leads 5373 versus 4555, an 18% gap. PassMark multithread also goes to Intel, 15170 versus 12761, an 18.9% difference.
The AMD processor takes four wins, and its largest is in Cinebench R23 multi-core. AMD scores 10846 against Intel's 8030, a 26% advantage in Intel's favor (recorded as a negative delta for Intel). Integer math also goes to AMD: 44665 versus 33734, a 24.5% lead. Data compression favors AMD by a smaller margin, 152885 versus 143123, a 6.4% difference. Random string sorting is nearly identical, with AMD at 17255 and Intel at 17238, a 0.1% edge.
Overall average benchmark scores place Intel at 17779 and AMD at 17482. Both processors sit at the 71st percentile among all CPUs in the database. Intel's nearest rivals include the Core 5 221TE at 17860 (0.5% higher), the Ryzen 5 3600XT at 17891 (0.6% higher), and the Core 5 120U at 17898 (0.7% higher). AMD's nearest rivals include the Ryzen 5 4600G at 17507 (0.1% higher), the Ryzen 3 8300GE at 17614 (0.8% higher), and the Ryzen 5 4500 at 17333 (0.9% lower).
Where Each One Wins
The Intel Core 7 350 is the processor for latency-sensitive single-thread workloads and math-heavy tasks. Its wins in Cinebench R15, R20, and R23 single-core, plus PassMark single-thread, indicate strong per-core execution. Physics simulation, floating-point math, and prime number finding all reward that same kind of raw compute throughput. For users running simulation code, encryption workloads, or extended instruction sets, the data consistently points to Intel.
The AMD Ryzen 3 PRO 5355GE wins where thread count and memory bandwidth matter more. Cinebench R23 multi-core is the standout, with AMD leading by 26%, likely reflecting its 8 threads against Intel's 6. Integer math also favors AMD by 24.5%, a workload that scales with parallel integer units. Data compression is another AMD win, at 6.4% ahead, and random string sorting is essentially a tie, with AMD just 0.1% ahead.
For desktop productivity where multi-threaded rendering or compression jobs are common, AMD's R23 multi-core result is the strongest argument. For general responsiveness, single-thread scores, and scientific or financial math, Intel's benchmark record is more convincing.
Architecture Differences
The two processors come from different design philosophies. Intel's Core 7 350 uses Wildcat Lake, built on a 3 nm process at Intel's own foundry. It has 6 cores and 6 threads, with a base clock of 1.50 GHz and a boost clock of 4.80 GHz. The AMD Ryzen 3 PRO 5355GE is a Zen 3 part, codenamed Cezanne, manufactured on a 7 nm process at TSMC. It has 4 cores and 8 threads, with a base clock of 3.60 GHz and a boost clock of 4.20 GHz.
The Intel part carries a 15 W TDP, while AMD lists a 35 W TDP. Intel uses a BGA 1516 socket and targets the mobile segment. AMD uses Socket AM4 and targets desktop. Intel supports DDR5 and LPDDR5X memory on a single-channel bus, with 59.7 GB/s bandwidth. AMD supports DDR4 on a dual-channel bus, with 51.2 GB/s bandwidth.
Cache layouts differ sharply. Intel provides 192 KB of L1 per core, 2.5 MB of L2 per core, and 6 MB of shared L3. AMD provides 64 KB of L1 per core, 512 KB of L2 per core, and 8 MB of L3. With only 4 cores, AMD's L3 is larger per core: 2 MB per core versus 1 MB per core for Intel.
AMD's integrated graphics are Radeon Vega 6. Intel uses Xe3 Graphics with 2 Xe cores. PCIe support also differs: Intel offers Gen 4 with 6 CPU lanes, while AMD offers Gen 3 with 16 CPU lanes. AMD supports ECC memory, Intel does not. AMD has a larger transistor count at 10,700 million and a die size of 180 mm², while Intel does not report these figures.
The Verdict
Choose the Intel Core 7 350 if the workload is single-thread dominant or math intensive. Its single-core Cinebench R23 score is 33.6% higher, and its floating-point math is 77.5% higher. Prime number finding is more than triple AMD's result. For physics simulation, encryption, or extended instruction workloads, Intel is the clear pick from the recorded data.
Choose the AMD Ryzen 3 PRO 5355GE if multi-threaded rendering or integer-heavy parallel work is the priority. Its Cinebench R23 multi-core score is 26% higher, and its integer math is 24.5% higher. Data compression also favors AMD. For a desktop system with dual-channel DDR4 and 16 PCIe Gen 3 lanes, AMD offers more expansion and memory bandwidth options.
The Intel part is mobile-oriented with a lower TDP of 15 W, while AMD's 35 W TDP reflects a desktop design. If power efficiency matters, Intel's lower TDP is notable. If ECC memory support is required, AMD is the only option of the two. Both sit at the 71st percentile, so neither is a outlier in overall performance. The data supports Intel for most tasks, but AMD's multi-core Cinebench and integer wins give it a specific niche.
FAQ
Q: Which processor has the higher single-thread score in Cinebench R23?
A: The Intel Core 7 350 scores 2046, which is 33.6% higher than the AMD Ryzen 3 PRO 5355GE's 1531.
Q: Where does the AMD processor beat Intel by the largest margin?
A: In Cinebench R23 multi-core, AMD scores 10846 versus Intel's 8030, a 26% advantage.
Q: Do both processors have the same overall performance percentile?
A: Yes, both are at the 71st percentile among all CPUs in the database.
Q: Which processor supports ECC memory?
A: Only the AMD Ryzen 3 PRO 5355GE supports ECC memory; the Intel Core 7 350 does not.
Q: How do the core and thread counts compare?
A: Intel has 6 cores and 6 threads, while AMD has 4 cores and 8 threads.
Q: Which processor has the higher boost clock?
A: Intel's boost clock is 4.80 GHz, while AMD's is 4.20 GHz.
Specification Differences
| Field | Intel Core 7 350 | AMD Ryzen 3 PRO 5355GE |
|---|---|---|
| Cores | 6 | 4 |
| Threads | 6 | 8 |
| Base Clock | 1.50 GHz | 3.60 GHz |
| Boost Clock | 4.80 GHz | 4.20 GHz |
| TDP | 15 W | 35 W |
| Socket | Intel BGA 1516 | AMD Socket AM4 |
| Codename | Wildcat Lake | Cezanne |
| Architecture | Not listed | Zen 3 |
| Process Node | 3 nm | 7 nm |
| Foundry | Intel | TSMC |
| Transistors | Not listed | 10,700 million |
| Die Size | Not listed | 180 mm² |
| L1 Cache | 192 KB (per core) | 64 KB (per core) |
| L2 Cache | 2.5 MB (per core) | 512 KB (per core) |
| L3 Cache | 6 MB (shared) | 8 MB |
| Memory Support | DDR5, LPDDR5X | DDR4 |
| Memory Bus | Single-channel | Dual-channel |
| Memory Bandwidth | 59.7 GB/s | 51.2 GB/s |
| ECC Memory | No | Yes |
| PCIe | Gen 4, 6 Lanes (CPU only) | Gen 3, 16 Lanes (CPU only) |
| Integrated Graphics | Intel Xe3 Graphics (2 Xe) | Radeon Vega 6 |
| Market Segment | Mobile | Desktop |
| Release Date | 2026-04-15 | 2024-09-04 |
| Launch MSRP | $469 | Not listed |