AMD Ryzen AI Embedded P132 vs Intel Core i9-14901KE Comparison
AMD Ryzen AI Embedded P132
Core i9-14901KE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen AI Embedded P132 vs Intel Core i9-14901KE
Head-to-Head Benchmarks
The recorded database contains a complete benchmark profile for the AMD Ryzen AI Embedded P132, while the Intel Core i9-14901KE currently has no benchmark entries. This makes a direct score-for-score comparison impossible. However, the AMD part's nearest rivals in the database include the Intel Core i9-14901E, which scores 37911 in average benchmark score. The AMD Ryzen AI Embedded P132 trails that Intel part by 0.3%. The AMD chip also sits 0.1% behind the Intel Core 5 211E, which scores 37829, and 0.3% behind the AMD Ryzen AI 9 HX 370, which scores 37904. The only rival the AMD chip outscores is the AMD Ryzen AI 5 PRO 435, with a 0.1% advantage over that part's 37762 average.
Looking at the AMD chip's individual benchmark results, the strongest showing comes in data compression with a score of 230437. Integer math scores 62249, floating point math scores 42248, and random string sorting scores 25181. Extended instructions score 16520, data encryption scores 11444, and find prime numbers scores only 57. The multithread score is 19262, while single-thread performance sits at 3713. Physics scores 1022. The average benchmark score across all tests is 37804, which places the chip in the 86th percentile of all CPUs in the database.
Since the Intel Core i9-14901KE has no recorded benchmarks, no head-to-head wins can be established for either processor. The database shows zero wins for each part in the direct comparison. What can be stated is that the AMD chip's average score of 37804 is nearly identical to the Intel Core i9-14901E, a closely related Raptor Lake part with the same core architecture family. That relationship gives some indication of where the i9-14901KE might land, though the KE variant has a higher boost clock and more cores than the E variant, which would likely shift its results upward. The data does not support any numerical claim beyond that.
Where Each One Wins
The AMD Ryzen AI Embedded P132 shows clear strengths in specific workloads according to its benchmark profile. Data compression is by far the dominant result, with a score of 230437 dwarfing every other test. This indicates strong throughput in compression-style workloads, likely benefiting from the processor's Zen 5 architecture and memory bandwidth. Integer math at 62249 and floating point math at 42248 both show solid general-purpose compute capability. Single-thread performance at 3713 places it in a competitive range for everyday responsiveness and lightly threaded applications. The multithread score of 19262 reflects a 6-core, 12-thread configuration that handles moderately parallel workloads without issue.
The Intel Core i9-14901KE has no benchmark data in the database. No wins can be attributed to it. The processor's specifications, however, suggest where it would likely dominate if measurements existed. With 8 cores and 16 threads, a boost clock of 5.80 GHz, and a 125 W TDP, the Intel part is configured for high sustained performance in threaded workloads. The 36 MB of shared L3 cache is substantially larger than the AMD chip's 4 MB L3, which typically benefits workloads with large working sets. The Intel part also supports PCIe Gen 5 with 16 lanes, which matters for bandwidth-hungry expansion devices. The AMD chip uses PCIe Gen 4 with 14 lanes.
For use-case split based on available data, the AMD chip wins in efficiency-oriented mobile and embedded scenarios. Its 28 W TDP is dramatically lower than the Intel part's 125 W TDP. The AMD chip integrates a Radeon 840M GPU, while the Intel part uses UHD Graphics 770. The AMD chip supports LPDDR5X memory, which is common in thin-and-light and embedded designs. The Intel part supports DDR4 and DDR5, giving it flexibility across desktop platforms. The AMD chip is an active production mobile part with a 2026 release date, while the Intel part is an active production desktop part released in 2024.
Architecture Differences
The AMD Ryzen AI Embedded P132 uses the Gorgon Point codename and belongs to the Ryzen AI Embedded generation built on Zen 5 and Zen 5c cores. It is manufactured on a 4 nm process at TSMC. The Intel Core i9-14901KE uses the Raptor Lake-R codename and belongs to the Core 14th Gen series, built on Raptor Lake Refresh architecture. Intel manufactures it on a 10 nm process. The process node difference is substantial: 4 nm versus 10 nm gives the AMD chip a significant density and efficiency advantage, which shows in the 28 W versus 125 W TDP gap.
Core counts differ. The AMD chip has 6 cores and 12 threads. The Intel chip has 8 cores and 16 threads. The Intel part has a 3.80 GHz base clock and a 5.80 GHz boost clock. The AMD chip has a 2.00 GHz base clock and a 4.50 GHz boost clock. The Intel part's boost clock is 1.30 GHz higher, which is a major factor for single-thread and lightly threaded performance. The AMD chip's much lower base clock reflects its power-constrained mobile and embedded design target.
Cache hierarchies differ significantly. Both parts have 80 KB of L1 cache per core. The AMD chip has 1 MB of L2 per core, while the Intel chip has 2 MB per core. The L3 situation is dramatically different: the AMD chip has 4 MB total, while the Intel chip has 36 MB shared. That 9x difference in L3 capacity is one of the largest architectural gaps between the two. The Intel part's die size is recorded at 257 mm², while the AMD part has no die size recorded.
Memory support differs. The AMD chip supports DDR5 and LPDDR5X with dual-channel memory and a recorded memory bandwidth of 89.6 GB/s. The Intel chip supports DDR4 and DDR5 with dual-channel memory, but no memory bandwidth figure is recorded in the database. Both support ECC memory. PCIe capability differs: the AMD chip uses Gen 4 with 14 CPU lanes, while the Intel chip uses Gen 5 with 16 CPU lanes. The Intel part has an unlocked multiplier, while the AMD part does not. The Intel part has a recorded part number of Q49DSRNJC, while the AMD part's part number is unknown.
The Verdict
The data in the database supports a clear but conditional verdict. The AMD Ryzen AI Embedded P132 is the only part with benchmark results, so its measured performance is the only objective data available. The Intel Core i9-14901KE has no recorded benchmarks, so its performance cannot be quantified from the database. What can be said is that the AMD chip's average score of 37804 places it in the 86th percentile of all CPUs, and it trades blows within 0.3% of several rivals including the Intel Core i9-14901E.
For users selecting between these two parts, the choice hinges on platform and power constraints rather than measured performance. The AMD chip targets mobile and embedded systems with its 28 W TDP, FP8 socket, and LPDDR5X support. The Intel chip targets desktop systems with its 125 W TDP, Socket 1700, and DDR4/DDR5 support. The Intel part offers more cores, a much higher boost clock, far more L3 cache, PCIe Gen 5, and an unlocked multiplier. The AMD part offers a much smaller process node, dramatically lower power draw, and integrated graphics in the Radeon 840M.
The recorded data shows the AMD chip is competitive with Intel's Raptor Lake desktop parts in average benchmark score, despite having fewer cores and a much lower boost clock. The Intel Core i9-14901E, a close relative of the i9-14901KE, scores 37911, only 0.3% above the AMD chip. The i9-14901KE adds a higher boost clock and unlocked multiplier over the E variant, so its performance would likely be higher. Without benchmark entries for the KE part, the database cannot confirm that expectation. Users who need a desktop processor with maximum single-thread boost and large cache should favor the Intel part based on its specifications. Users who need an efficient embedded or mobile processor with proven benchmark results should favor the AMD part.
FAQ
Q: Does the Intel Core i9-14901KE have any benchmark scores in the database?
A: No. The database contains zero benchmark entries for the Intel Core i9-14901KE. Its average benchmark score is 0, and it has no nearest rivals listed.
Q: How does the AMD Ryzen AI Embedded P132 compare to the Intel Core i9-14901E?
A: The AMD chip has an average benchmark score of 37804, while the Intel Core i9-14901E scores 37911. The AMD chip trails by 0.3%.
Q: What is the core and thread count difference?
A: The AMD Ryzen AI Embedded P132 has 6 cores and 12 threads. The Intel Core i9-14901KE has 8 cores and 16 threads.
Q: Which processor has the higher boost clock?
A: The Intel Core i9-14901KE boosts to 5.80 GHz. The AMD Ryzen AI Embedded P132 boosts to 4.50 GHz.
Q: What are the TDP ratings for each processor?
A: The AMD Ryzen AI Embedded P132 has a TDP of 28 W. The Intel Core i9-14901KE has a TDP of 125 W.
Q: Which processor supports PCIe Gen 5?
A: The Intel Core i9-14901KE supports PCIe Gen 5 with 16 CPU lanes. The AMD Ryzen AI Embedded P132 supports PCIe Gen 4 with 14 CPU lanes.
Specification Differences
| Specification | AMD Ryzen AI Embedded P132 | Intel Core i9-14901KE |
|---|---|---|
| Cores | 6 | 8 |
| Threads | 12 | 16 |
| Base Clock | 2.00 GHz | 3.80 GHz |
| Boost Clock | 4.50 GHz | 5.80 GHz |
| TDP | 28 W | 125 W |
| Socket | AMD Socket FP8 | Intel Socket 1700 |
| Codename | Gorgon Point | Raptor Lake-R |
| Generation | Ryzen AI Embedded (Zen 5 / Zen 5c) | Core i9 (Raptor Lake Refresh) |
| Process Node | 4 nm | 10 nm |
| Foundry | TSMC | Intel |
| Die Size | Not recorded | 257 mm² |
| L1 Cache | 80 KB per core | 80 KB per core |
| L2 Cache | 1 MB per core | 2 MB per core |
| L3 Cache | 4 MB | 36 MB shared |
| Memory Support | DDR5, LPDDR5X | DDR4, DDR5 |
| Memory Bus | Dual-channel | Dual-channel |
| Memory Bandwidth | 89.6 GB/s | Not recorded |
| ECC Memory | Yes | Yes |
| PCIe | Gen 4, 14 Lanes (CPU only) | Gen 5, 16 Lanes (CPU only) |
| Integrated Graphics | Radeon 840M | UHD Graphics 770 |
| Market Segment | Mobile | Desktop |
| Production Status | Active | Active |
| Release Date | 2026-03-08 | 2024-06-30 |
| Multiplier Unlocked | No | Yes |
| Part Number | Unknown | Q49DSRNJC |