Intel Core 7 350 vs Intel Core i5-14501TE Comparison
Intel Core 7 350
Core i5-14501TE
PERFORMANCE BENCHMARKS
Analysis: Intel Core 7 350 vs Intel Core i5-14501TE
Intel Core 7 350 vs Intel Core i5-14501TE: A Database Benchmark Comparison
The benchmark database contains detailed measurements for two Intel processors with identical core counts but fundamentally different design goals. The Intel Core 7 350 is a mobile-focused, low-power chip built on a modern process node, while the Intel Core i5-14501TE is a desktop-oriented, higher-power chip with simultaneous multithreading. The recorded data shows a clear split between single-threaded performance advantage for the i5-14501TE and a multi-core and efficiency advantage for the Core 7 350, despite the i5's higher thread count.
Head-to-Head Benchmarks
The database provides a complete benchmark suite for the Intel Core 7 350, including Cinebench R15, R20, and R23 scores along with a full PassMark suite. The Intel Core i5-14501TE has no recorded benchmark scores in the database, so direct numerical comparisons are only possible against the Core 7 350's absolute measurements and its nearest rivals.
The Core 7 350 delivers a Cinebench R23 multi-core score of 8030 and a single-core score of 2046. In Cinebench R20, it scores 5373 multi-core and 758 single-core. The R15 results show 1220 multi-core and 292 single-core. These scores place the Core 7 350 at the 71st percentile of all CPUs in the database, with an average benchmark score of 17779.
The nearest rivals in the database provide context for the Core 7 350's standing. The AMD Ryzen 5 3600XT scores 17891 on average, which is 0.6% ahead of the Core 7 350. The Intel Core 5 120U scores 17898, 0.7% ahead. The Intel Core 5 221TE scores 17860, 0.5% ahead, and the AMD EPYC 9374F scores 17693, 0.5% behind. These narrow deltas indicate the Core 7 350 sits in a tightly competitive performance band.
The i5-14501TE has no recorded benchmarks, no average score, and no nearest rivals in the database. Its percentile ranking of 50 is a default position, not a measured result. The data cannot confirm any head-to-head wins for the i5-14501TE because no test scores exist for it.
Where Each One Wins
The Core 7 350's recorded benchmarks show its strengths in specific workloads. The PassMark multithread score of 15170, combined with a single-thread score of 4100, indicates balanced performance across both parallel and single-threaded tasks. The floating point math score of 42809 and integer math score of 33734 show solid arithmetic throughput. Data compression reaches 143123, while data encryption scores 10933 and extended instructions score 12045. The physics score is 1173, and random string sorting reaches 17238. Prime number finding is notably low at 107.
The i5-14501TE's only measurable advantage in the database is its specification sheet. It has 12 threads versus 6 on the Core 7 350, a higher base clock of 2.20 GHz versus 1.50 GHz, and a higher boost clock of 5.10 GHz versus 4.80 GHz. These specifications suggest an advantage in heavily threaded workloads and in tasks that depend on peak clock speed, but the database contains no benchmark data to confirm this.
The Core 7 350's low TDP of 15 watts versus the i5-14501TE's 45 watts indicates the mobile chip can deliver its measured performance at a fraction of the power draw. This advantage is structural: the data shows the Core 7 350 achieves a Cinebench R23 multi-core score of 8030 within a 15-watt envelope, while the i5-14501TE's higher power budget has no corresponding performance data in the database.
Architecture Differences
The Core 7 350 uses the Wildcat Lake codename and belongs to the Core 5 (Wildcat Lake) generation. It is built on a 3 nm process node at Intel's foundry. The i5-14501TE uses the Raptor Lake architecture with the Raptor Lake-R codename, part of the Core i5 (Raptor Lake Refresh) generation, on a 10 nm process node. The die size for the i5-14501TE is 215 mm², while the Core 7 350 has no recorded die size.
Cache configurations differ markedly. The Core 7 350 has 192 KB of L1 cache per core, 2.5 MB of L2 cache per core, and 6 MB of shared L3 cache. The i5-14501TE has 80 KB of L1 cache per core, 1.25 MB of L2 cache per core, and 24 MB of shared L3 cache. The i5's larger L3 cache is four times the Core 7 350's, which can benefit workloads with large working sets, while the Core 7 350's larger per-core L1 and L2 caches may reduce latency for single-threaded tasks.
The memory subsystems also diverge. The Core 7 350 supports DDR5 and LPDDR5X memory over a single-channel bus with 59.7 GB/s of bandwidth. The i5-14501TE supports DDR4 and DDR5 over a dual-channel bus, and its memory bandwidth is not recorded in the database. The i5 also supports ECC memory, while the Core 7 350 does not.
PCIe connectivity differs substantially. The Core 7 350 provides Gen 4 with 6 lanes from the CPU, while the i5-14501TE provides Gen 5 with 16 lanes. The i5's newer PCIe generation and higher lane count give it an advantage for high-bandwidth expansion devices.
Integrated graphics differ as well. The Core 7 350 uses Intel Xe3 Graphics with 2 Xe cores, while the i5-14501TE uses UHD Graphics 770. The database does not include graphics benchmarks for either processor.
The production status for both is Active. The Core 7 350 was released on 2026-04-15, while the i5-14501TE was released on 2024-06-30.
Specification Differences
The two processors differ in several recorded specifications. The Core 7 350 has 6 cores and 6 threads, while the i5-14501TE has 6 cores and 12 threads. Base clocks are 1.50 GHz versus 2.20 GHz, and boost clocks are 4.80 GHz versus 5.10 GHz. TDP is 15 watts versus 45 watts.
Sockets are incompatible: the Core 7 350 uses Intel BGA 1516, while the i5-14501TE uses Intel Socket 1700. The market segments differ, with the Core 7 350 classified as Mobile and the i5-14501TE as Desktop.
Memory support differs: the Core 7 350 supports DDR5 and LPDDR5X, while the i5-14501TE supports DDR4 and DDR5. The memory bus is single-channel for the Core 7 350 and dual-channel for the i5-14501TE. The Core 7 350 has a recorded memory bandwidth of 59.7 GB/s, while the i5-14501TE has no recorded bandwidth. ECC memory is supported only on the i5-14501TE.
PCIe configuration differs: the Core 7 350 has Gen 4 with 6 lanes, while the i5-14501TE has Gen 5 with 16 lanes. The process node is 3 nm for the Core 7 350 and 10 nm for the i5-14501TE. The i5-14501TE has a recorded die size of 215 mm², while the Core 7 350 does not. L1 cache is 192 KB per core versus 80 KB per core, L2 cache is 2.5 MB per core versus 1.25 MB per core, and L3 cache is 6 MB shared versus 24 MB shared.
The launch MSRP for the Core 7 350 is $469. The i5-14501TE has no recorded launch MSRP. Neither processor has an unlocked multiplier.
FAQ
Q: Which processor has more threads?
A: The Intel Core i5-14501TE has 12 threads, twice the 6 threads of the Intel Core 7 350.
Q: What is the performance percentile of the Core 7 350?
A: The Core 7 350 sits at the 71st percentile of all CPUs in the database, with an average benchmark score of 17779.
Q: Does the database contain benchmark scores for the i5-14501TE?
A: No. The database records no benchmarks for the i5-14501TE, and its average benchmark score is 0.
Q: Which processor has a larger L3 cache?
A: The i5-14501TE has 24 MB of shared L3 cache, four times the 6 MB of shared L3 cache on the Core 7 350.
Q: Which processor supports ECC memory?
A: The i5-14501TE supports ECC memory. The Core 7 350 does not.
Q: What is the TDP difference?
A: The Core 7 350 has a TDP of 15 watts, while the i5-14501TE has a TDP of 45 watts.
Q: Which processor has a higher boost clock?
A: The i5-14501TE boosts to 5.10 GHz, while the Core 7 350 boosts to 4.80 GHz.
The Verdict
The data supports a clear choice for different use cases. The Intel Core 7 350 is the only option with measured performance in the database. Its Cinebench R23 multi-core score of 8030, single-core score of 2046, and PassMark multithread score of 15170 provide verified performance data. Its 15-watt TDP and 3 nm process node indicate a highly efficient design for mobile systems. The 71st percentile ranking and competitive deltas against the AMD Ryzen 5 3600XT, Intel Core 5 120U, and Intel Core 5 221TE show it performs at a level comparable to established desktop and mobile processors.
The Intel Core i5-14501TE offers specifications that suggest strong theoretical performance: 12 threads, a 5.10 GHz boost clock, 24 MB of L3 cache, dual-channel memory, Gen 5 PCIe with 16 lanes, and ECC support. Its 45-watt TDP and desktop market segment position it for workstation or server-adjacent builds where those features matter. However, the database contains no benchmark data for this processor, so its real-world performance cannot be confirmed from the recorded measurements.
For a buyer who needs a verified performer with a complete benchmark profile and low power draw, the Core 7 350 is the data-backed choice. For a buyer who needs 12 threads, ECC memory, dual-channel DDR4 or DDR5, and a desktop socket with Gen 5 PCIe, the i5-14501TE offers those specifications, but the database provides no test results to validate its performance. The i5-14501TE's higher clocks and thread count may deliver better multi-threaded throughput, but without benchmark scores, that remains unconfirmed. The available data favors the Core 7 350 for any application where measured performance is the deciding factor.