Intel Core 5 223PTE vs Intel Core i7-14700 Comparison
Intel Core 5 223PTE
Core i7-14700
PERFORMANCE BENCHMARKS
Analysis: Intel Core 5 223PTE vs Intel Core i7-14700
FAQ
Q: What are the core and thread counts for the Intel Core 5 223PTE and the Intel Core i7-14700?
A: The Intel Core 5 223PTE has 8 cores and 16 threads, while the Intel Core i7-14700 has 20 cores and 28 threads.
Q: Do both processors use the same socket and memory type?
A: Yes, both use Intel Socket 1700 and support DDR4 and DDR5 memory in a dual-channel configuration.
Q: What is the boost clock speed for each processor?
A: Both processors have a boost clock of 5.40 GHz. The base clock for the Core 5 223PTE is 2.30 GHz, while the Core i7-14700 has a base clock of 2.10 GHz.
Q: Which processor has a larger L3 cache?
A: The Intel Core i7-14700 has a larger L3 cache at 33 MB shared, compared to the 24 MB shared on the Intel Core 5 223PTE.
Q: Do these processors include integrated graphics?
A: Yes, both integrate UHD Graphics 770.
Q: What is the production status and market segment for both chips?
A: Both are Active in production and are designed for the Desktop market segment.
Architecture Differences
The two processors represent different design approaches within Intel’s lineup. The Intel Core 5 223PTE is based on the Bartlett Lake codename, with a generation listed as Core 5 (Bartlett Lake). The Intel Core i7-14700 is based on the Raptor Lake architecture, specifically the Raptor Lake-R codename, and belongs to the Core 14th Gen series as part of the Raptor Lake Refresh.
Both chips are fabricated on Intel’s 10 nm process node and produced by Intel as the foundry. The Core i7-14700 has a reported die size of 257 mm², while the Core 5 223PTE does not have a recorded die size in the database. Transistor counts are not available for either model.
The core configuration differs substantially. The Core 5 223PTE uses 8 cores and 16 threads, which indicates a uniform core layout with simultaneous multithreading. The Core i7-14700 delivers 20 cores and 28 threads, a hybrid configuration that combines performance and efficiency cores. This structural difference explains the large gap in multithreaded workload capacity.
Cache organization is similar at the lower levels. Both processors feature 80 KB of L1 cache per core and 2 MB of L2 cache per core. The shared L3 cache differs: the Core 5 223PTE has 24 MB, while the Core i7-14700 has 33 MB. The additional L3 capacity on the Core i7-14700 helps with data-heavy workloads and improves performance in scenarios where shared data access is frequent.
Both processors support DDR4 and DDR5 memory with a dual-channel memory bus. The Core 5 223PTE has a recorded memory bandwidth of 89.6 GB/s, whereas the Core i7-14700 does not have a listed memory bandwidth figure. Both support ECC memory. PCIe capabilities are identical: Gen 5 with 16 lanes from the CPU only.
The integrated graphics solution is the same on both: UHD Graphics 770. The Core 5 223PTE has a lower thermal design power at 45 W compared to the Core i7-14700’s 65 W. Both processors have locked multipliers, meaning they are not unlocked for overclocking. The Core 5 223PTE has a release date of March 8, 2026, while the Core i7-14700 was released on January 7, 2024. The part numbers are SA4QL for the Core 5 223PTE and SRN40 for the Core i7-14700.
Head-to-Head Benchmarks
The database contains no direct head-to-head benchmark entries between the Intel Core 5 223PTE and the Intel Core i7-14700. The Core 5 223PTE has no recorded benchmark scores, no average benchmark score, and no percentile ranking beyond a 50th percentile position among all CPUs. The Core i7-14700, by contrast, has a full suite of benchmark results and an average benchmark score of 52301.
The Core i7-14700’s recorded data establishes a clear performance profile. In Cinebench R15, it scores 4061 in multicore and 299 in singlecore. Cinebench R20 results show 14388 in multicore and 2031 in singlecore. Cinebench R23 yields 28398 in multicore and 2080 in singlecore. Geekbench results are 17087 in multicore and 2409 in singlecore.
PassMark results for the Core i7-14700 cover a range of workload types. Data compression scores 498198, data encryption scores 29601, and extended instructions score 28388. Prime number finding scores 164, floating point math scores 106716, and integer math scores 154535. The multithread score is 40318, physics scores 2226, and random string sorting scores 54340. Single-thread performance is 4236.
The Core i7-14700 holds a 91st percentile ranking among all CPUs, placing it well above the Core 5 223PTE’s 50th percentile. The nearest rivals to the Core i7-14700 provide context for its standing. The Intel Xeon Gold 5320H scores 52431, which is 0.2% higher than the Core i7-14700. The AMD EPYC 8124P scores 52121, 0.3% lower. The Intel Core Ultra 5 235HX scores 52073, 0.4% lower. The AMD Ryzen 9 5950X scores 51947, 0.7% lower. These margins show the Core i7-14700 sits in a tightly contested performance band, with all four rivals within a 1% range.
Because the Core 5 223PTE lacks benchmark data, the head-to-head comparison rests on the architectural and specification differences. The Core i7-14700’s 20 cores and 28 threads provide a substantial advantage in any workload that scales with core count. The Core 5 223PTE’s 8 cores and 16 threads represent a more modest configuration. The Core i7-14700’s larger 33 MB L3 cache versus 24 MB also favors it in cache-sensitive applications.
Specification Differences
The two processors differ on several recorded specification fields. Core count is 8 for the Core 5 223PTE versus 20 for the Core i7-14700. Thread count is 16 versus 28. Base clock is 2.30 GHz for the Core 5 223PTE and 2.10 GHz for the Core i7-14700. Boost clock is identical at 5.40 GHz for both.
Thermal design power is 45 W for the Core 5 223PTE and 65 W for the Core i7-14700. The socket is the same, Intel Socket 1700. The architecture field is empty for the Core 5 223PTE and lists Raptor Lake for the Core i7-14700. Codename is Bartlett Lake versus Raptor Lake-R. Generation is Core 5 (Bartlett Lake) versus Core i7 (Raptor Lake Refresh).
Process node is 10 nm for both. The Core i7-14700 has a die size of 257 mm², while the Core 5 223PTE has no recorded die size. L1 cache is 80 KB per core for both. L2 cache is 2 MB per core for both. L3 cache is 24 MB shared for the Core 5 223PTE and 33 MB shared for the Core i7-14700.
Memory support is DDR4 and DDR5 for both, with a dual-channel bus. Memory bandwidth is 89.6 GB/s for the Core 5 223PTE and not recorded for the Core i7-14700. ECC memory support is present on both. PCIe is Gen 5 with 16 lanes from the CPU only on both. Integrated graphics is UHD Graphics 770 on both.
Market segment is Desktop for both. Production status is Active for both. Release date is March 8, 2026 for the Core 5 223PTE and January 7, 2024 for the Core i7-14700. Launch MSRP is $232 for the Core 5 223PTE and $384 for the Core i7-14700. Multiplier unlocked is false for both. Part number is SA4QL versus SRN40.
Where Each One Wins
The Intel Core i7-14700 wins on raw compute capacity. Its 20 cores and 28 threads double the core count and nearly double the thread count of the Core 5 223PTE. The larger 33 MB L3 cache provides more on-die storage for frequently accessed data. The recorded benchmark scores for the Core i7-14700 place it at the 91st percentile, with an average benchmark score of 52301. The Core 5 223PTE has no recorded scores and sits at the 50th percentile, which is a neutral midpoint rather than a demonstrated performance level.
The Core i7-14700 is suited for heavily threaded workloads such as rendering, video encoding, compilation, and scientific computing. The PassMark multithread score of 40318 and Cinebench R23 multicore score of 28398 indicate strong scaling across many cores. The data compression score of 498198 and integer math score of 154535 reinforce its capability in data-intensive tasks.
The Intel Core 5 223PTE wins on power efficiency. Its 45 W thermal design power is substantially lower than the 65 W of the Core i7-14700. This makes it a better fit for systems where thermal headroom or energy consumption is a priority. Its base clock of 2.30 GHz is higher than the Core i7-14700’s 2.10 GHz, which can help in lightly threaded scenarios that rely on base frequency rather than boost behavior. Both chips boost to 5.40 GHz, so single-thread peak performance is nominally equal.
The Core 5 223PTE also carries a lower launch MSRP of $232 compared to $384 for the Core i7-14700. The Core 5 223PTE’s memory bandwidth of 89.6 GB/s is a recorded advantage, since the Core i7-14700 has no listed bandwidth figure. For workloads that are sensitive to memory throughput, the Core 5 223PTE has a documented specification in its favor.
The Verdict
The data clearly separates these two processors by role. The Intel Core i7-14700 is the higher-performance part in almost every measurable category. It has more than double the core count, more threads, a larger L3 cache, and a full set of benchmark scores that place it at the 91st percentile among all CPUs. Its average benchmark score of 52301 puts it in direct competition with workstation-class chips like the Intel Xeon Gold 5320H and AMD EPYC 8124P, both within 0.3% of its score.
The Intel Core 5 223PTE is a lower-power alternative with a 45 W thermal design power and a higher base clock. It lacks recorded benchmark data, so its actual performance is unknown from the database. Its 50th percentile ranking is a midpoint value, not a measured result. The Core 5 223PTE does have a documented memory bandwidth of 89.6 GB/s and a lower launch MSRP of $232.
For users who need maximum throughput in multithreaded applications, the Core i7-14700 is the clear choice from the recorded data. The Core 5 223PTE suits builds where power draw and thermal output are the limiting factors, and where the higher base clock may benefit lightly threaded tasks. The Core i7-14700’s release date of January 7, 2024 also means it has been on the market longer, while the Core 5 223PTE is scheduled for March 8, 2026. The absence of benchmark data for the Core 5 223PTE means any performance comparison must rely on specifications alone, and those specifications favor the Core i7-14700 for compute-heavy workloads.