AMD Ryzen 3 5305GE vs Intel Core i5-14401TE Comparison
AMD Ryzen 3 5305GE
Core i5-14401TE
Analysis: AMD Ryzen 3 5305GE vs Intel Core i5-14401TE
Head-to-Head Benchmarks
The recorded data shows no head-to-head benchmark entries for the AMD Ryzen 3 5305GE versus the Intel Core i5-14401TE. The database contains zero direct comparison scores, zero wins for either processor, and no average benchmark scores for either part. Both CPUs hold an identical 50th percentile ranking against all CPUs in the database, indicating that neither part has a measured performance advantage over the other in direct testing.
Because the head-to-head benchmark array is empty, there are no exact deltas, score differences, or percentage gaps to report. The absence of measured results means that any statement about which processor is faster in a specific workload would fall outside the recorded data. The database simply has not yet captured comparative scores for this pairing.
The AMD Ryzen 3 5305GE shows an average benchmark score of zero, and the Intel Core i5-14401TE also shows an average benchmark score of zero. With both values identical and no individual benchmark records present, the only quantitative comparison available is the percentile field, which ties both at 50. This percentile reflects their standing relative to all CPUs in the database, not a direct comparison against each other.
Where Each One Wins
Without head-to-head benchmark data, wins cannot be assigned to either processor. The winsA and winsB fields are both zero, meaning the database records no workload category where one part outperforms the other. The analysis must rely on the specification differences to infer potential strengths, but the hard rule stands: no benchmark win can be claimed without measured scores.
The AMD Ryzen 3 5305GE uses a higher base clock of 3.60 GHz compared to the Intel part's 2.00 GHz. Higher base clocks typically indicate stronger sustained all-core performance in lightly threaded or frequency-sensitive tasks, but this is an inference from specifications, not a recorded benchmark result. The Intel Core i5-14401TE counters with a higher boost clock of 4.50 GHz versus 4.20 GHz on the AMD, which could favor bursty single-thread workloads, again without direct measurement.
The Intel part offers more cores and threads: 6 cores and 12 threads versus 4 cores and 8 threads on the AMD. In multi-threaded workloads such as compilation, rendering, or virtual machine hosting, the additional threads provide a structural advantage, but the database does not quantify this with a benchmark score. The AMD part consumes less power at 35 W TDP versus 45 W TDP, which could influence thermal and power-constrained scenarios, but no efficiency metric is recorded.
The database does not contain any use-case split based on benchmark wins, because no wins exist. The only honest statement is that the recorded data provides no basis for declaring a winner in any category. Future benchmark entries would be required to populate the wins fields.
FAQ
Q: Which processor has a higher boost clock?
A: The Intel Core i5-14401TE boosts to 4.50 GHz, while the AMD Ryzen 3 5305GE boosts to 4.20 GHz. The Intel part holds a 0.30 GHz advantage in maximum boost frequency.
Q: How many cores and threads does each processor have?
A: The AMD Ryzen 3 5305GE has 4 cores and 8 threads. The Intel Core i5-14401TE has 6 cores and 12 threads, giving it 2 more cores and 4 more threads.
Q: What is the TDP of each processor?
A: The AMD Ryzen 3 5305GE has a TDP of 35 W. The Intel Core i5-14401TE has a TDP of 45 W, which is 10 W higher.
Q: Which processor supports ECC memory?
A: The Intel Core i5-14401TE supports ECC memory. The AMD Ryzen 3 5305GE does not list ECC memory support in the database.
Q: Do both processors have integrated graphics?
A: Yes. The AMD Ryzen 3 5305GE includes Radeon Vega 6 graphics. The Intel Core i5-14401TE includes UHD Graphics 730.
Q: Which socket does each processor use?
A: The AMD Ryzen 3 5305GE uses AMD Socket AM4. The Intel Core i5-14401TE uses Intel Socket 1700.
Specification Differences
The two processors differ across multiple specification fields. The AMD Ryzen 3 5305GE belongs to the 5000 series, while the Intel Core i5-14401TE belongs to the Core 14th Gen series. The AMD part has 4 cores and 8 threads, whereas the Intel part has 6 cores and 12 threads. Base clocks differ substantially: 3.60 GHz for AMD versus 2.00 GHz for Intel. Boost clocks also differ, with Intel at 4.50 GHz and AMD at 4.20 GHz.
TDP values are 35 W for the AMD and 45 W for the Intel. Sockets are incompatible: AMD Socket AM4 versus Intel Socket 1700. The process node differs, with AMD using 7 nm from TSMC and Intel using 10 nm from Intel's own foundry. Die size is 180 mm² for AMD and 215 mm² for Intel. Transistor count is listed only for AMD at 10,700 million; the Intel field is null.
Cache configurations differ. The AMD L1 cache is 64 KB per core, while Intel's is 80 KB per core. L2 cache is 512 KB per core for AMD and 1.25 MB per core for Intel. L3 cache is 8 MB for AMD and 20 MB shared for Intel. Memory support differs: AMD supports only DDR4, while Intel supports both DDR4 and DDR5. Memory bandwidth is 51.2 GB/s for AMD, while the Intel field is null. ECC memory support is false for AMD and true for Intel.
PCIe support differs: AMD uses Gen 3 with 16 lanes (CPU only), while Intel uses Gen 5 with 16 lanes (CPU only). Integrated graphics differ as well, with Radeon Vega 6 on AMD and UHD Graphics 730 on Intel. The multiplier is unlocked on the AMD part, while the Intel part is locked. Release dates differ: AMD released on 2025-02-23, Intel on 2024-06-30. Part numbers also differ: 100-000001805 for AMD and Q4T4SRNJP for Intel.
Architecture Differences
The AMD Ryzen 3 5305GE is built on the Zen 3 architecture with the codename Cezanne, representing the Ryzen 3 generation. The Intel Core i5-14401TE uses the Raptor Lake architecture with the codename Raptor Lake-R, part of the Core i5 generation with Raptor Lake Refresh. These are fundamentally different microarchitectures from different manufacturers.
The process node shows a notable split: AMD uses a 7 nm process from TSMC, while Intel uses a 10 nm process from its own foundry. Die size differs at 180 mm² for AMD and 215 mm² for Intel, with the larger Intel die reflecting more cores and a larger shared L3 cache. Transistor count is recorded only for AMD at 10,700 million; the Intel transistor count is absent from the database.
Cache architecture differs in both hierarchy and capacity. AMD uses per-core L1 at 64 KB and per-core L2 at 512 KB, with a single 8 MB L3 pool. Intel uses larger per-core L1 at 80 KB and per-core L2 at 1.25 MB, with a 20 MB shared L3. The Intel cache structure provides more total cache, particularly in L3, which is 2.5 times larger than the AMD L3.
Memory architecture differs in support and bandwidth. AMD supports only DDR4 and lists a memory bandwidth of 51.2 GB/s. Intel supports both DDR4 and DDR5, with no bandwidth figure recorded. ECC memory is supported only on the Intel part, which is relevant for error-correcting workloads. Both use dual-channel memory buses.
PCIe capabilities differ by generation: AMD provides Gen 3, while Intel provides Gen 5, both with 16 CPU lanes. The integrated graphics also reflect different designs, with Radeon Vega 6 on the AMD side and UHD Graphics 730 on the Intel side. The AMD multiplier is unlocked, enabling overclocking, whereas the Intel multiplier is locked. The production status for both parts is Active, meaning both remain in production.