CPU Comparison
Intel Core 7 350
Core i3-14100T
PERFORMANCE BENCHMARKS
Analysis: Intel Core 7 350 vs Intel Core i3-14100T
The Intel Core 7 350 and Intel Core i3-14100T are two very different processors that land at the same performance tier. Both sit at the 71st percentile among all CPUs, with average benchmark scores of 17779 and 17648, respectively. The Core 7 350 is a 6-core, 6-thread mobile part built on Intel's 3 nm process, while the i3-14100T is a 4-core, 8-thread desktop chip on a 10 nm node. Despite the architectural gulf, the head-to-head benchmark data shows a clear split: the Core 7 350 wins 14 of 17 tests, but the i3-14100T takes the most important multi-core workload by a wide margin.
Head-to-Head Benchmarks
The most striking result in the entire comparison is Cinebench R23 multi-core, where the Core i3-14100T wins by 30.8%. The i3-14100T scores 11612, while the Core 7 350 manages only 8030. This is a massive reversal from the other Cinebench multi-core tests, where the Core 7 350 leads by 4.3% in R15 (1220 vs 1170) and by 10.2% in R20 (5373 vs 4877). The R23 result suggests the i3-14100T's 8 threads and 12 MB of shared L3 cache provide a sustained multi-threaded advantage that the Core 7 350's 6 threads and 6 MB of L3 cannot overcome in longer render workloads.
Single-core performance is a different story entirely. The Core 7 350 dominates every single-threaded test. In Cinebench R15 single-core, it leads by a staggering 77% (292 vs 165). The R20 single-core gap narrows to 10.2% (758 vs 688), and R23 single-core shows a 24.8% advantage (2046 vs 1639). PassMark single-thread confirms the trend, with the Core 7 350 scoring 4100 versus 3498 for the i3-14100T, a 17.2% lead. The Core 7 350's 4.80 GHz boost clock, compared to the i3-14100T's 4.40 GHz, helps explain this consistent advantage.
The Core 7 350 also wins heavily in mathematical and encryption workloads. PassMark find prime numbers shows a 91.1% lead (107 vs 56), the largest single-test gap in either direction. Floating point math goes to the Core 7 350 by 36.4% (42809 vs 31379), and data encryption by 38.7% (10933 vs 7881). Extended instructions follow the same pattern, with a 15.7% win (12045 vs 10414). These results indicate the Core 7 350's newer Wildcat Lake architecture has significantly stronger per-core execution units, even at a lower 15 W TDP.
The i3-14100T's other wins are narrower. It takes PassMark integer math by 16.3% (40292 vs 33734) and data compression by 6.2% (152636 vs 143123). These are the only two PassMark tests where the desktop chip outperforms, suggesting that its 8 threads help in integer-heavy and compression workloads that scale well with thread count. The Core 7 350 still wins PassMark multithread overall by 11% (15170 vs 13662) and physics by 20.6% (1173 vs 973), which shows that the mobile chip's thread efficiency compensates for its lower thread count in most scenarios.
Architecture Differences
The two processors come from entirely different design philosophies. The Core 7 350 uses the Wildcat Lake codename on a 3 nm process, fabricated by Intel. It is a mobile-focused chip with a 15 W TDP and an Intel BGA 1516 socket. Its cache configuration is unusual: 192 KB of L1 per core, 2.5 MB of L2 per core, and only 6 MB of shared L3. The per-core L2 is double the i3-14100T's 1.25 MB, which contributes to the Core 7 350's superior single-thread performance. The Core 7 350 supports DDR5 and LPDDR5X memory, but only through a single-channel memory bus with 59.7 GB/s of bandwidth.
The Core i3-14100T, by contrast, is a Raptor Lake-R desktop part on Intel's 10 nm process. It uses the Intel Socket 1700 and has a 35 W TDP, more than double the Core 7 350's power envelope. The die size is 163 mm², compared to no listed die size for the Core 7 350. The i3-14100T has 80 KB of L1 per core and 1.25 MB of L2 per core, but its L3 is 12 MB shared, exactly double the Core 7 350's cache. It supports both DDR4 and DDR5 memory through a dual-channel bus, which provides a memory bandwidth advantage that is not quantified in the data but is architecturally apparent.
The Core 7 350 features Intel Xe3 Graphics with 2 Xe cores, while the i3-14100T uses UHD Graphics 730. The Core 7 350's PCIe implementation is Gen 4 with 6 CPU lanes, whereas the i3-14100T offers Gen 5 with 16 CPU lanes, a significant difference for expandability. The i3-14100T also supports ECC memory, which the Core 7 350 does not. Neither chip has an unlocked multiplier. The Core 7 350 was released on 2026-04-15, while the i3-14100T arrived on 2024-01-07.
Where Each One Wins
The Core 7 350 is the clear winner for single-threaded and latency-sensitive tasks. Its 77% lead in Cinebench R15 single-core and 24.8% lead in R23 single-core make it the obvious choice for applications that rely on responsiveness per core. The 91.1% advantage in prime number finding and 36.4% lead in floating point math point to workloads like scientific computing, financial modeling, and any simulation that is not perfectly parallel. Data encryption, with a 38.7% lead, also favors the Core 7 350, making it suitable for VPN, secure communications, and database encryption tasks.
The i3-14100T's wins are narrower but meaningful. The 30.8% lead in Cinebench R23 multi-core is the single most important benchmark for content creators and renderers. The 16.3% win in integer math and 6.2% win in data compression suggest the i3-14100T handles compilers, archiving tools, and integer-heavy processing better. Its 8 threads, combined with the larger 12 MB L3 cache, allow it to sustain workloads that exceed the Core 7 350's cache capacity.
For general multi-threaded productivity, the Core 7 350 still holds the edge. It wins PassMark multithread by 11% and random string sorting by 10.6%, indicating that its 6 cores are more efficient than the i3-14100T's 4 cores with hyper-threading. The physics test shows a 20.6% lead, which could translate to better performance in physics simulation and some gaming workloads that are not heavily multi-threaded.
The Verdict
Choose the Intel Core 7 350 if you prioritize single-core speed, mathematical throughput, and encryption. The data shows it is faster in 14 of 17 head-to-head tests, with particularly large margins in prime number finding, floating point math, and data encryption. Its 3 nm process and 15 W TDP make it a more power-efficient choice for mobile or compact systems. The 4.80 GHz boost clock and larger per-core L2 cache deliver a 17.2% single-thread advantage that will be noticeable in everyday responsive tasks and lightly-threaded applications.
Choose the Intel Core i3-14100T if your work involves sustained multi-core rendering or integer-heavy processing. The 30.8% lead in Cinebench R23 multi-core is decisive for video rendering, 3D modeling, and similar workloads that run for extended periods. The 12 MB L3 cache and 8 threads give it a structural advantage in these scenarios. Its dual-channel memory support and ECC capability make it a more flexible desktop platform, despite the lower single-core performance. The i3-14100T also offers Gen 5 PCIe with 16 lanes, which is a major upgrade for users needing high-speed storage or discrete GPUs.
Both processors sit at the 71st percentile and have nearly identical average benchmark scores, so the choice comes down to workload profile rather than overall capability. The Core 7 350 is the more balanced performer with a wider range of wins, while the i3-14100T is a specialist that excels in the one workload that matters most for many professional users.
FAQ
Q: Which processor has the higher single-core score in Cinebench R23?
A: The Intel Core 7 350 scores 2046, which is 24.8% higher than the Intel Core i3-14100T's 1639.
Q: How large is the multi-core performance gap in Cinebench R23?
A: The Intel Core i3-14100T wins by 30.8%, scoring 11612 compared to the Core 7 350's 8030.
Q: What is the difference in thread count between the two CPUs?
A: The Core 7 350 has 6 cores and 6 threads, while the i3-14100T has 4 cores and 8 threads.
Q: Do both processors support ECC memory?
A: No. The Intel Core i3-14100T supports ECC memory, while the Intel Core 7 350 does not.
Q: Which chip has a larger L3 cache?
A: The Intel Core i3-14100T has 12 MB of shared L3 cache, double the Core 7 350's 6 MB.
Q: What is the single-thread PassMark score difference?
A: The Core 7 350 scores 4100, which is 17.2% higher than the i3-14100T's 3498.