Intel Core 9 273PE vs Intel Core i7-14700T Comparison
Intel Core 9 273PE
Core i7-14700T
PERFORMANCE BENCHMARKS
Analysis: Intel Core 9 273PE vs Intel Core i7-14700T
Intel Core 9 273PE vs Intel Core i7-14700T
Head-to-Head Benchmarks
The recorded data shows a decisive pattern: the Intel Core 9 273PE wins 15 of the 17 head-to-head benchmark comparisons, while the Intel Core i7-14700T wins only 2. The magnitude of the Core 9 273PE’s victories varies widely, from a modest 6.8% edge in data encryption to a commanding 60.3% lead in physics calculations. The single-core PassMark tests are the lone exceptions, where the Core i7-14700T takes a 6.5% advantage.
In the Cinebench suite, the Core 9 273PE consistently outperforms the Core i7-14700T by roughly 20% across every iteration. Cinebench R15 multicore shows a 20.4% delta (3153 vs 2618), R15 singlecore a 20.6% delta (445 vs 369), R20 multicore a 20.4% delta (13140 vs 10911), and R20 singlecore a 20.5% delta (1855 vs 1540). The R23 results mirror this pattern: multicore scores 31288 vs 25980 for a 20.4% lead, and singlecore scores 4417 vs 3667 for a 20.5% lead. This uniformity suggests a consistent architectural advantage rather than a workload-specific quirk.
The PassMark tests reveal where the Core 9 273PE’s strengths are most pronounced. Floating point math shows a 36.5% advantage (107884 vs 79042), physics a 60.3% advantage (3120 vs 1946), and prime number finding a 40% advantage (203 vs 145). Integer math delivers a 22.4% lead (139410 vs 113854), extended instructions a 22.8% lead (24630 vs 20052), and multithread a 20.4% lead (36810 vs 30571). Data compression shows a 14.6% edge (405885 vs 354216), while random string sorting carries a 17% advantage (45098 vs 38546). Data encryption is the closest contest, with only a 6.8% gap (22719 vs 21277).
The Core i7-14700T’s two wins come from the PassMark single-thread and singlethread tests, which are identical measurements both scoring 3905 vs 3650. This 6.5% advantage in single-threaded PassMark performance stands in contrast to the Cinebench singlecore results, where the Core 9 273PE leads by 20.5%. The discrepancy likely stems from different workload characteristics within each benchmark’s single-threaded sections.
Looking at average scores, the Core 9 273PE posts an average benchmark score of 49845, placing it in the 90th percentile of all CPUs. The Core i7-14700T averages 41914, sitting in the 88th percentile. The nearest rivals for the Core 9 273PE include the AMD Ryzen AI Max+ 388 at 49796 (0.1% behind), the Intel Core i5-14600KF at 49394 (0.9% behind), the Intel Core i9-13980HX at 50398 (1.1% ahead), and the AMD Ryzen AI 9 HX PRO 370 at 50448 (1.2% ahead). For the Core i7-14700T, the AMD Ryzen 9 PRO 8945HS at 41963 sits 0.1% ahead, the Intel Core i7-12850HX at 41779 is 0.3% behind, the AMD Ryzen 5 7400 at 42055 is 0.3% ahead, and the Intel Core 7 251TE at 41650 is 0.6% behind.
The Verdict
The data indicates that the Intel Core 9 273PE is the stronger performer in nearly every measurable category. Its 20.4% lead in Cinebench R23 multicore (31288 vs 25980) and 20.5% lead in R23 singlecore (4417 vs 3667) establish a clear overall advantage. The 60.3% delta in PassMark physics and 40% delta in prime number finding show particularly large gaps in computation-heavy workloads.
The Core i7-14700T does hold a single meaningful advantage: a 6.5% higher PassMark single-thread score (3905 vs 3650). This indicates that for applications relying on that specific PassMark single-threaded workload, the Core i7-14700T may respond slightly faster. However, the Cinebench R15, R20, and R23 singlecore tests all contradict this, favoring the Core 9 273PE by about 20.5% each time.
The average benchmark scores reinforce the overall picture. The Core 9 273PE’s 49845 average exceeds the Core i7-14700T’s 41914 by roughly 19%. The percentile rankings place the Core 9 273PE at 90 vs 88 for the Core i7-14700T, a modest but consistent gap. Users prioritizing maximum throughput across Cinebench and most PassMark tests should select the Core 9 273PE. Users who specifically value the PassMark single-thread metric might find the Core i7-14700T marginally better in that isolated test, but the broader benchmark evidence favors the Core 9 273PE.
Architecture Differences
The two processors share the same Intel Socket 1700, the same 10 nm process node, and the same Intel foundry. Both support DDR4 and DDR5 memory on a dual-channel bus, both have ECC memory enabled, and both provide PCIe Gen 5 with 16 lanes from the CPU. The integrated graphics differ: the Core 9 273PE uses UHD Graphics 730, while the Core i7-14700T uses UHD Graphics 770.
The core configurations differ substantially. The Core 9 273PE has 12 cores and 24 threads, while the Core i7-14700T has 20 cores and 28 threads. Despite having fewer cores and threads, the Core 9 273PE achieves higher benchmark scores. Its base clock is 2.30 GHz and boost clock is 5.70 GHz, compared to 1.30 GHz base and 5.20 GHz boost for the Core i7-14700T. The Core 9 273PE draws 65 W TDP versus 35 W for the Core i7-14700T.
Cache hierarchies are similar in structure but differ in capacity. Both have 80 KB L1 per core and 2 MB L2 per core. The L3 cache is 36 MB shared on the Core 9 273PE versus 33 MB shared on the Core i7-14700T. The Core i7-14700T has a documented die size of 257 mm², though no die size is recorded for the Core 9 273PE. The Core 9 273PE is codenamed Bartlett Lake and belongs to the Core 9 generation, while the Core i7-14700T is codenamed Raptor Lake-R and belongs to the Core 14th Gen series. The Core 9 273PE has a memory bandwidth of 89.6 GB/s; no memory bandwidth figure is recorded for the Core i7-14700T.
The release dates place the Core 9 273PE in 2026-03-08 and the Core i7-14700T in 2024-01-07. Both are active production parts with locked multipliers. The Core 9 273PE’s launch MSRP is $549, and the Core i7-14700T’s launch MSRP is $384.
FAQ
Q: Which processor has more cores and threads?
A: The Intel Core i7-14700T has 20 cores and 28 threads, while the Intel Core 9 273PE has 12 cores and 24 threads.
Q: Why does the Core 9 273PE win most benchmarks despite having fewer cores?
A: The Core 9 273PE has a higher base clock (2.30 GHz vs 1.30 GHz), a higher boost clock (5.70 GHz vs 5.20 GHz), and a larger L3 cache (36 MB vs 33 MB). Its benchmark scores show a 20.4% lead in Cinebench R23 multicore and a 20.5% lead in R23 singlecore.
Q: What is the single test where the Core i7-14700T wins?
A: The Core i7-14700T wins the PassMark single-thread and singlethread tests, scoring 3905 compared to 3650 for the Core 9 273PE, a 6.5% advantage.
Q: How do the integrated graphics compare?
A: The Core 9 273PE uses UHD Graphics 730, while the Core i7-14700T uses UHD Graphics 770.
Q: Do both processors support the same memory and PCIe?
A: Yes, both support DDR4 and DDR5 on a dual-channel bus, both have ECC memory enabled, and both provide PCIe Gen 5 with 16 lanes from the CPU.
Q: What is the TDP difference between the two?
A: The Core 9 273PE has a TDP of 65 W, while the Core i7-14700T has a TDP of 35 W.
Where Each One Wins
The Core 9 273PE wins in all Cinebench workloads. The R15 multicore score of 3153 beats 2618, R15 singlecore of 445 beats 369, R20 multicore of 13140 beats 10911, R20 singlecore of 1855 beats 1540, R23 multicore of 31288 beats 25980, and R23 singlecore of 4417 beats 3667. This indicates a broad advantage in rendering and general multi-threaded compute tasks.
The Core 9 273PE also dominates the PassMark suite with the exception of single-thread. Its physics score of 3120 exceeds 1946 by 60.3%, making it the largest single delta in the dataset. Floating point math shows a 36.5% advantage (107884 vs 79042), prime number finding a 40% advantage (203 vs 145), and integer math a 22.4% advantage (139410 vs 113854). Extended instructions, multithread, data compression, random string sorting, and data encryption all favor the Core 9 273PE by margins ranging from 6.8% to 22.8%.
The Core i7-14700T wins only the PassMark single-thread and singlethread tests, scoring 3905 vs 3650 for a 6.5% advantage. This suggests that in the specific single-threaded workload measured by PassMark, the Core i7-14700T may complete tasks slightly faster. The Core i7-14700T also operates at a lower TDP of 35 W versus 65 W, which may be relevant for thermal-constrained systems, though the benchmark data does not include power efficiency measurements.
For workloads aligned with Cinebench rendering, physics simulation, floating point math, or prime number computation, the Core 9 273PE is clearly superior based on the recorded scores. For workloads that closely match PassMark’s single-thread test, the Core i7-14700T holds a modest edge. The overall average benchmark score of 49845 for the Core 9 273PE versus 41914 for the Core i7-14700T confirms that the Core 9 273PE delivers higher performance across the majority of tested scenarios.
Specification Differences
| Specification | Intel Core 9 273PE | Intel Core i7-14700T |
|---|---|---|
| Series | null | Core 14th Gen |
| Cores | 12 | 20 |
| Threads | 24 | 28 |
| Base Clock | 2.30 GHz | 1.30 GHz |
| Boost Clock | 5.70 GHz | 5.20 GHz |
| TDP | 65 W | 35 W |
| Codename | Bartlett Lake | Raptor Lake-R |
| Generation | Core 9 (Bartlett Lake) | Core i7 (Raptor Lake Refresh) |
| Die Size | null | 257 mm² |
| L3 Cache | 36 MB (shared) | 33 MB (shared) |
| Memory Bandwidth | 89.6 GB/s | null |
| Integrated Graphics | UHD Graphics 730 | UHD Graphics 770 |
| Release Date | 2026-03-08 | 2024-01-07 |
| Launch MSRP | $549 | $384 |
| Part Number | SA4QD | SRN41 |
The two processors share the same socket, process node, foundry, L1 and L2 cache sizes per core, memory support types, memory bus width, ECC support, PCIe configuration, market segment, production status, and locked multiplier status. The Core 9 273PE has a larger L3 cache, higher clocks, higher TDP, and higher launch MSRP. The Core i7-14700T has more cores and threads, a smaller die size, and a lower launch MSRP.