AMD Ryzen AI Embedded P132i vs Intel Core 7 150U Comparison
AMD Ryzen AI Embedded P132i
Core 7 150U
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen AI Embedded P132i vs Intel Core 7 150U
Where Each One Wins
The benchmark data draws a clear line between these two mobile processors. The Intel Core 7 150U holds every recorded benchmark win in the database, while the AMD Ryzen AI Embedded P132i has no recorded benchmark scores to compare. This is not a case of a close split across workloads; it is a one-sided comparison based on available measurements.
The Intel Core 7 150U dominates across all tested categories. In Cinebench R23, the multicore score reaches 8883, while the single-core score lands at 1875.5. Cinebench R20 results show 5248 in multicore and 740 in single-core. The older Cinebench R15 test records 1505.5 in multicore and 254 in single-core. Geekbench results follow the same pattern: 6234 in multicore and 1857 in single-core.
PassMark tests reveal where the Intel part concentrates its strength. The multithread score of 14700 and single-thread score of 3508 indicate balanced performance across both thread counts. Integer math reaches 51057, floating-point math hits 34405, and extended instructions score 8748. Data compression posts 158622, data encryption scores 10025, random string sorting reaches 18269, physics runs at 1012, and find prime numbers completes at 58.
The AMD part has no benchmark entries in the database, meaning the wins column shows zero for the Ryzen AI Embedded P132i. The percentile ranking tells a similar story: the AMD processor sits at the 50th percentile among all CPUs, while the Intel Core 7 150U holds the 71st percentile. The Intel part also carries an average benchmark score of 17395, while the AMD part records an average score of zero in the database.
For users choosing between these two, the Intel Core 7 150U delivers verified performance across every measured workload. The AMD Ryzen AI Embedded P132i cannot be evaluated through recorded benchmarks, so any performance assessment must remain qualitative rather than data-driven.
Architecture Differences
The two processors come from fundamentally different design families. The AMD Ryzen AI Embedded P132i uses the Gorgon Point codename and belongs to the Ryzen AI Embedded generation built on Zen 5 and Zen 5c cores. The Intel Core 7 150U uses the Raptor Lake architecture with the Raptor Lake-U codename.
Process technology separates them sharply. AMD fabricates the P132i on a 4 nm node at TSMC. Intel builds the Core 7 150U on a 10 nm node at its own foundry. This process gap typically influences power efficiency and transistor density, though the recorded data does not include transistor counts or die sizes for either chip.
Core configurations differ in structure. The AMD part uses 6 cores and 12 threads. The Intel part uses 10 cores and 12 threads. Both expose 12 threads to the operating system, but Intel achieves this with more physical cores, likely through a hybrid arrangement of performance and efficiency cores typical of Raptor Lake designs. The AMD part relies on 6 cores with simultaneous multithreading to reach 12 threads.
Cache hierarchies are not identical. Both parts use 80 KB of L1 cache per core. The L2 cache differs: AMD provides 1 MB per core, while Intel provides 1.25 MB per core. The L3 cache shows a larger gap. AMD offers only 4 MB total, while Intel provides 12 MB shared. This difference can affect workloads that rely on frequent cache hits across many threads.
Memory support diverges. AMD supports DDR5 and LPDDR5X with dual-channel configuration and a recorded bandwidth of 89.6 GB/s. Intel supports DDR4 and DDR5 in dual-channel mode, but the database does not list a bandwidth figure. AMD also enables ECC memory support, while Intel does not include ECC capability.
PCI Express lanes differ in count and generation. Both use Gen 4, but AMD provides 14 lanes from the CPU, while Intel provides 8 lanes. This affects how many high-speed devices can attach directly to the processor.
Integrated graphics also differ. AMD pairs the P132i with the Radeon 840M. Intel equips the Core 7 150U with Iris Xe Graphics with 96 execution units. No graphics benchmarks are recorded for either part in the database.
Clock speeds show a trade-off. The AMD part runs a base clock of 2.00 GHz and boosts to 4.50 GHz. The Intel part runs a lower base of 1.80 GHz but boosts higher to 5.40 GHz. Thermal design power also differs: AMD specifies 28 watts, while Intel specifies 15 watts. The Intel part carries a lower TDP despite its higher boost clock and larger core count, which points to different power management strategies.
Release dates separate them by more than two years. Intel launched the Core 7 150U on January 7, 2024. AMD released the Ryzen AI Embedded P132i on March 8, 2026. Sockets are incompatible: AMD uses AMD Socket FP8, while Intel uses Intel BGA 1744. Neither processor has an unlocked multiplier.
FAQ
Q: Which processor has more cores?
A: The Intel Core 7 150U has 10 cores, while the AMD Ryzen AI Embedded P132i has 6 cores. Both parts present 12 threads to the system.
Q: What is the performance percentile for each processor?
A: The AMD Ryzen AI Embedded P132i sits at the 50th percentile among all CPUs. The Intel Core 7 150U ranks higher at the 71st percentile.
Q: Which processor supports ECC memory?
A: The AMD Ryzen AI Embedded P132i supports ECC memory. The Intel Core 7 150U does not list ECC support in the database.
Q: How do the boost clocks compare?
A: The Intel Core 7 150U boosts to 5.40 GHz, which is higher than the AMD Ryzen AI Embedded P132i boost of 4.50 GHz. The AMD part has a higher base clock at 2.00 GHz versus 1.80 GHz for Intel.
Q: What is the L3 cache difference?
A: The Intel Core 7 150U has 12 MB of shared L3 cache. The AMD Ryzen AI Embedded P132i has only 4 MB of L3 cache.
Q: Which processor has a lower thermal design power?
A: The Intel Core 7 150U has a TDP of 15 watts, which is lower than the AMD Ryzen AI Embedded P132i TDP of 28 watts.
Specification Differences
The recorded data shows the two processors differ in nearly every major specification category.
| Specification | AMD Ryzen AI Embedded P132i | Intel Core 7 150U |
|---|---|---|
| Cores | 6 | 10 |
| Threads | 12 | 12 |
| Base clock | 2.00 GHz | 1.80 GHz |
| Boost clock | 4.50 GHz | 5.40 GHz |
| TDP | 28 W | 15 W |
| Socket | AMD Socket FP8 | Intel BGA 1744 |
| Codename | Gorgon Point | Raptor Lake-U |
| Generation | Ryzen AI Embedded (Zen 5 / Zen 5c) | Core 7 (Raptor Lake-U) |
| Process node | 4 nm | 10 nm |
| Foundry | TSMC | Intel |
| L2 cache | 1 MB (per core) | 1.25 MB (per core) |
| L3 cache | 4 MB | 12 MB (shared) |
| Memory support | DDR5, LPDDR5X | DDR4, DDR5 |
| Memory bandwidth | 89.6 GB/s | Not listed |
| ECC memory | Yes | No |
| PCIe | Gen 4, 14 lanes | Gen 4, 8 lanes |
| Integrated graphics | Radeon 840M | Iris Xe Graphics 96EU |
| Release date | March 8, 2026 | January 7, 2024 |
| Part number | unknown | SRMYP |
Both processors use dual-channel memory, share the same L1 cache size of 80 KB per core, target the mobile market segment, hold active production status, and lack an unlocked multiplier. Neither has a recorded launch MSRP in the database.
Head-to-Head Benchmarks
The database contains no head-to-head benchmark entries pairing these two processors directly. All recorded benchmark scores belong to the Intel Core 7 150U. The AMD Ryzen AI Embedded P132i has an empty benchmarks array, so no direct numerical comparison is possible from the data.
The Intel part shows strong and consistent results across rendering and general compute workloads. In Cinebench R23, the multicore score of 8883 and single-core score of 1875.5 represent the highest recorded Cinebench values for this processor. Cinebench R20 shows 5248 in multicore and 740 in single-core, while Cinebench R15 records 1505.5 in multicore and 254 in single-core. These numbers indicate scaling across the 10-core configuration, with single-core performance holding steady across the three Cinebench versions.
Geekbench results reinforce the pattern. The multicore score of 6234 and single-core score of 1857 place the Intel part comfortably in the mid-range of mobile processors. The single-core figure is notable because it trails the Cinebench R23 single-core result proportionally, suggesting consistent per-thread performance.
PassMark results break down compute capability by workload type. The multithread score of 14700 shows strong parallel throughput. Integer math at 51057 and floating-point math at 34405 indicate solid arithmetic processing. Extended instructions score 8748, which reflects SIMD and specialized instruction efficiency. Data compression at 158622 is the highest single PassMark subtest score, while data encryption at 10025 and random string sorting at 18269 show mid-range results. Physics at 1012 and find prime numbers at 58 round out the lower-intensity tests.
The nearest rivals for the Intel Core 7 150U provide context for its average benchmark score. The AMD Ryzen 5 4500 posts an average score of 17333, which is 0.4 percent lower than the Intel part. The AMD Ryzen 3 210 also scores 17321, again 0.4 percent lower. On the other side, the AMD Ryzen 3 PRO 5355GE scores 17482, which is 0.5 percent higher than the Intel part. The AMD Ryzen 5 4600G scores 17507, 0.6 percent higher. These deltas are small, placing the Intel Core 7 150U within a tight competitive cluster.
The AMD Ryzen AI Embedded P132i has no rival entries and no average benchmark score in the database. Its percentile rank of 50 places it exactly at the median of all CPUs, but without measured scores, this rank cannot be tied to specific workload performance. The Intel Core 7 150U, by contrast, has a percentile rank of 71, indicating it outperforms roughly seven out of ten CPUs in the database.
The recorded data supports a straightforward conclusion: the Intel Core 7 150U is the only one of the two with verified performance measurements, and those measurements show competitive results against nearby AMD parts. The AMD Ryzen AI Embedded P132i remains an unmeasured quantity in the database, with no benchmark scores to confirm or deny its capabilities.