Intel Core i7-12700H vs Intel Core i7-1370P Comparison
Intel Core i7-12700H
Core i7-1370P
PERFORMANCE BENCHMARKS
Analysis: Intel Core i7-12700H vs Intel Core i7-1370P
The Intel Core i7-1370P and Intel Core i7-12700H are both 14-core mobile processors, but benchmark results show they are not interchangeable. The 12700H dominates in raw multi-threaded throughput, winning 12 of 17 head-to-head comparisons, while the 1370P counters with a decisive single-core advantage in modern workloads. The data indicates that the 12700H is the superior choice for sustained, heavily threaded tasks, whereas the 1370P is better optimized for single-threaded responsiveness and efficiency-driven scenarios.
Head-to-Head Benchmarks
The most striking discrepancy appears in Cinebench R15 and R20 multi-core tests. In Cinebench R15 multi-core, the 12700H scores 2604.6 against the 1370P’s 1649, a 36.7% advantage. Similarly, in Cinebench R20 multi-core, the 12700H leads with 8921 versus 6873, a 23% gap. These are substantial margins that indicate the 12700H’s higher 45W TDP and 2.30 GHz base clock translate directly into sustained multi-core performance, outpacing the 1370P’s 28W TDP and 1.90 GHz base clock.
However, the story reverses in Cinebench R23. Here, the 1370P edges out the 12700H in multi-core with a score of 16365 versus 16307.5, a narrow 0.4% victory. More importantly, the 1370P wins the R23 single-core test decisively, scoring 2310 against the 12700H’s 1782, a 29.6% lead. This suggests that the 1370P’s 5.20 GHz boost clock, which is 500 MHz higher than the 12700H’s 4.70 GHz, provides a significant advantage in lightly threaded workloads that rely on a single core’s peak frequency.
PassMark results reinforce the 12700H’s multi-threaded dominance. In PassMark multi-thread, the 12700H scores 25615 versus 20303, a 20.7% advantage. The gap widens in data compression, where the 12700H scores 300594 against the 1370P’s 217676, a 27.6% lead. Data encryption shows a similar pattern, with the 12700H at 17575 versus 13067, a 25.7% difference. Extended instructions also favor the 12700H, scoring 17886 against 12822, a 28.3% margin. These results indicate that the 12700H’s architecture and power budget are better suited for compute-intensive, parallel workloads.
The 1370P does manage to win several single-threaded PassMark tests, though by much smaller margins. In PassMark single-thread, the 1370P scores 3557 versus 3535, a 0.6% lead, and it also wins find prime numbers with 97 versus 94, a 3.2% margin. These are narrow victories, but they confirm that the 1370P is not inferior in all scenarios. The 12700H wins floating point math (65075 versus 54105, a 16.9% lead) and integer math (90106 versus 78675, a 12.7% lead), further solidifying its position as the stronger all-around performer.
Where Each One Wins
The 12700H is the clear winner for users who prioritize multi-threaded performance. Its victories in Cinebench R15 and R20 multi-core, PassMark multi-thread, data compression, data encryption, extended instructions, floating point math, and integer math make it the better option for video rendering, 3D modeling, data analysis, and other heavily threaded applications. The 12700H also wins PassMark physics (1512 versus 1466, a 3% lead) and random string sorting (33449 versus 23580, a 29.5% lead), indicating broad superiority in both integer and floating-point heavy tasks.
The 1370P is the better choice for single-threaded workloads and applications that are sensitive to clock speed. Its 29.6% lead in Cinebench R23 single-core is the most significant advantage of either processor in any test. It also wins PassMark single-thread and find prime numbers, though by smaller margins. The 1370P’s 5.20 GHz boost clock gives it an edge in tasks like web browsing, office productivity, and legacy software that cannot utilize multiple cores effectively. Additionally, the 1370P’s lower 28W TDP suggests it may be more suitable for thin-and-light laptops where thermal headroom is limited, though the data does not measure power efficiency directly.
Architecture Differences
Both processors are built on Intel’s 10 nm process node and share the same 217 mm² die size, but they belong to different generations. The 1370P uses the Raptor Lake architecture (codename Raptor Lake-P), while the 12700H uses the Alder Lake architecture (codename Alder Lake-H). Both are mobile processors with 14 cores and 20 threads, but the core configurations differ in L2 cache. The 1370P has 2 MB of L2 cache per core, while the 12700H has 1.25 MB per core. Both share 24 MB of L3 cache, 80 KB of L1 cache per core, and support DDR4 and DDR5 memory in dual-channel configuration.
The higher L2 cache per core on the 1370P likely contributes to its strong single-core performance, as more cache reduces latency for frequently accessed data. The 12700H compensates with a higher base clock (2.30 GHz versus 1.90 GHz) and a higher TDP (45W versus 28W), which allows it to sustain higher clocks under load. Both processors feature Iris Xe Graphics 96EU, PCIe Gen 4 with 20 lanes (CPU only), and lack ECC memory support. The 1370P has a boost clock of 5.20 GHz, while the 12700H boosts to 4.70 GHz, a 500 MHz difference that is the primary driver of the 1370P’s single-core wins. Neither processor has an unlocked multiplier.
The Verdict
The data is unambiguous: the Intel Core i7-12700H is the superior processor for multi-threaded workloads. It wins 12 of 17 head-to-head comparisons, often by double-digit margins, and its 20.7% lead in PassMark multi-thread makes it the obvious choice for content creators, developers, and power users who run demanding parallel applications. The 12700H’s higher TDP and base clock are the likely reasons for its sustained performance advantage, as the architecture is otherwise similar.
The Intel Core i7-1370P is the better option for users who prioritize single-threaded performance. Its 29.6% lead in Cinebench R23 single-core is the largest margin in any test, and its 5.20 GHz boost clock is the highest of the two. The 1370P also wins the R23 multi-core test, albeit by a narrow 0.4%, and its lower TDP makes it a more plausible fit for compact laptops where cooling is a constraint. However, the 1370P’s overall average benchmark score is 26900, which is only 0.7% higher than the 12700H’s 26717, indicating that the two processors are closely matched on aggregate. Both sit at the 79th percentile of all CPUs, confirming that either is a capable mobile processor, but the 12700H’s multi-threaded dominance gives it the edge for most demanding use cases.
FAQ
Q: Which processor is faster in Cinebench R23 multi-core?
A: The Intel Core i7-1370P wins with a score of 16365, narrowly ahead of the 12700H’s 16307.5, a 0.4% difference.
Q: How large is the single-core performance gap in Cinebench R23?
A: The 1370P scores 2310, which is 29.6% higher than the 12700H’s 1782, making it the largest single-core advantage in the comparison.
Q: Which processor has a higher boost clock?
A: The 1370P has a boost clock of 5.20 GHz, while the 12700H boosts to 4.70 GHz.
Q: Do both processors have the same number of cores and threads?
A: Yes, both have 14 cores and 20 threads.
Q: What is the difference in TDP between the two?
A: The 12700H has a TDP of 45W, while the 1370P has a TDP of 28W.
Q: Which processor wins the PassMark multi-thread test?
A: The 12700H wins with a score of 25615, which is 20.7% higher than the 1370P’s 20303.
Specification Differences
| Specification | Intel Core i7-1370P | Intel Core i7-12700H |
|---|---|---|
| Architecture | Raptor Lake | Alder Lake |
| Base Clock | 1900.00 MHz | 2300.00 MHz |
| Boost Clock | 5200.00 MHz | 4700.00 MHz |
| TDP | 28W | 45W |
| L2 Cache | 2 MB (per core) | 1.25 MB (per core) |
| Release Date | 2023-01-03 | Not specified |
| Launch MSRP | $438 | Not specified |
| Part Number | SRMJ6 | SRLD1 |