AMD Ryzen 7 8700G vs Intel Core i7-14701E Comparison
AMD Ryzen 7 8700G
Core i7-14701E
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen 7 8700G vs Intel Core i7-14701E
The Intel Core i7-14701E and AMD Ryzen 7 8700G are both 8-core, 16-thread desktop processors that land in the same performance tier, yet they achieve their results through fundamentally different design philosophies. The data shows the Intel part holds a decisive edge in single-threaded and legacy multi-threaded workloads, while the AMD chip dominates modern multi-threaded and data-processing tasks. Both CPUs sit at the 83rd percentile among all CPUs, with the Intel averaging a benchmark score of 33,206 against the AMD's 33,089, a negligible 0.4% gap that places them as near-exact equals in overall compute capability.
Head-to-Head Benchmarks
The most dramatic divergence appears in Cinebench R23 multi-core, where the Intel Core i7-14701E scores 22,195 against the AMD Ryzen 7 8700G's 17,128, a 29.6% advantage. This is the single largest win for Intel in the entire comparison. The gap narrows substantially in the older Cinebench R15 multi-core test, where the AMD chip actually wins decisively: the 8700G posts 2,693 versus Intel's 2,237, a 16.9% margin. This reversal suggests the two architectures scale very differently across benchmark generations, with Intel's newer test optimizations favoring its design.
Single-core performance is a clear Intel stronghold. In Cinebench R23 single-core, the i7-14701E scores 3,133 versus 1,817 for the 8700G, an enormous 72.4% lead. The R15 single-core test shows a smaller but still significant Intel advantage at 315 versus 286, a 10.1% gap. PassMark single-thread results confirm the trend, with Intel ahead 4,305 to 3,928, a 9.6% margin. These numbers indicate that for lightly-threaded workloads, the Intel part is simply in a different class.
The AMD Ryzen 7 8700G fights back hard in data-centric PassMark tests. Data compression shows AMD winning 386,811 to 282,939, a 26.9% lead. Data encryption goes to AMD at 22,842 versus 14,862, a 34.9% advantage. Extended instructions favor AMD even more strongly, 29,067 to 18,528, a 36.3% margin. Random string sorting is another AMD rout at 46,025 versus 29,158, a 36.6% gap. These are not small margins; they represent substantial real-world differences for workloads that stress memory bandwidth and instruction-level parallelism.
Integer math performance also favors AMD, with the 8700G scoring 103,107 against Intel's 81,325, a 21.1% lead. Floating-point math is nearly a tie, with AMD ahead by just 3% (63,815 vs 61,873). PassMark multithread overall shows AMD winning 31,690 to 26,112, a 17.6% margin. However, Intel wins two specialized tests: find prime numbers (176 vs 103, a 70.9% lead) and physics (2,399 vs 1,647, a 45.7% advantage). The final tally is close: AMD takes 8 wins, Intel takes 7.
Architecture Differences
The two CPUs could not be more different under the hood. The Intel Core i7-14701E uses the Raptor Lake architecture on a 10 nm process node fabricated by Intel, with a die size of 257 mm². The AMD Ryzen 7 8700G uses the Zen 4 architecture on a 4 nm process node from TSMC, packing 25,000 million transistors into a smaller 178 mm² die. The process node difference alone explains much of the efficiency and clock behavior, though the Intel part compensates with a higher boost clock of 5.40 GHz versus AMD's 5.10 GHz. The base clocks tell a different story: AMD starts at 4.20 GHz while Intel idles at 2.60 GHz.
Cache configurations diverge sharply. The Intel processor carries 80 KB of L1 cache per core, 2 MB of L2 per core, and a large 33 MB shared L3 cache. The AMD chip has smaller per-core allocations: 64 KB L1, 1 MB L2, and only 16 MB of shared L3. Despite having less than half the L3 cache, the AMD part still wins many memory-sensitive benchmarks, suggesting its memory controller and prefetch logic are more efficient. Intel supports both DDR4 and DDR5 memory, while AMD is DDR5-only, but AMD explicitly lists a memory bandwidth of 83.2 GB/s whereas Intel's bandwidth figure is not specified.
The integrated graphics are a major differentiator. Intel includes UHD Graphics 770, a competent basic iGPU. AMD includes the Radeon 780M, which is a far more capable integrated solution, likely explaining AMD's wins in certain physics and multithreaded workloads that may leverage GPU compute. PCIe connectivity also differs: Intel offers Gen 5 with 16 CPU lanes, while AMD provides Gen 4 with 20 CPU lanes. AMD's socket is AM5, which pairs with its unlocked multiplier (the 8700G is overclockable), whereas Intel uses Socket 1700 with a locked multiplier. The AMD part also has a launch MSRP of $329, while Intel's launch MSRP is not provided.
FAQ
Q: Which processor has the higher single-core performance?
A: The Intel Core i7-14701E wins all single-thread benchmarks. It leads by 72.4% in Cinebench R23 single-core (3,133 vs 1,817), by 10.1% in Cinebench R15 single-core (315 vs 286), and by 9.6% in PassMark single-thread (4,305 vs 3,928).
Q: How do the two compare in multi-threaded workloads?
A: The results are mixed. The Intel chip wins Cinebench R23 multi-core by 29.6% (22,195 vs 17,128), but the AMD chip wins Cinebench R15 multi-core by 16.9% (2,693 vs 2,237) and PassMark multithread by 17.6% (31,690 vs 26,112).
Q: Which CPU has better cache and memory support?
A: The Intel Core i7-14701E has a larger L3 cache at 33 MB shared versus AMD's 16 MB shared, and it supports both DDR4 and DDR5 memory. The AMD Ryzen 7 8700G only supports DDR5 but lists a memory bandwidth of 83.2 GB/s, which Intel does not specify.
Q: Are these processors comparable in overall performance?
A: Yes. The Intel part averages 33,206 across all benchmarks versus 33,089 for the AMD part, a difference of just 0.4%. Both sit at the 83rd percentile of all CPUs, and their nearest rivals include the same chips (AMD Ryzen 7 7745HX and Intel Core i7-13650HX).
Q: What are the key architectural differences?
A: Intel uses Raptor Lake on a 10 nm process with a 257 mm² die, while AMD uses Zen 4 on a 4 nm process with a 178 mm² die and 25,000 million transistors. The Intel chip boosts to 5.40 GHz, while AMD boosts to 5.10 GHz but has a much higher base clock of 4.20 GHz.
Q: Which processor has better integrated graphics?
A: The AMD Ryzen 7 8700G includes the Radeon 780M, while the Intel Core i7-14701E includes UHD Graphics 770. The AMD solution is generally more capable for graphics tasks, which may contribute to its wins in certain benchmarks.
Specification Differences
| Specification | Intel Core i7-14701E | AMD Ryzen 7 8700G |
|---|---|---|
| Architecture | Raptor Lake | Zen 4 |
| Codename | Raptor Lake-R | Phoenix |
| Process Node | 10 nm (Intel) | 4 nm (TSMC) |
| Transistors | Not specified | 25,000 million |
| Die Size | 257 mm² | 178 mm² |
| Base Clock | 2.60 GHz | 4.20 GHz |
| Boost Clock | 5.40 GHz | 5.10 GHz |
| L1 Cache | 80 KB per core | 64 KB per core |
| L2 Cache | 2 MB per core | 1 MB per core |
| L3 Cache | 33 MB shared | 16 MB shared |
| Memory Support | DDR4, DDR5 | DDR5 only |
| Memory Bandwidth | Not specified | 83.2 GB/s |
| ECC Memory | Yes | No |
| PCIe | Gen 5, 16 Lanes | Gen 4, 20 Lanes |
| Integrated Graphics | UHD Graphics 770 | Radeon 780M |
| Socket | Intel Socket 1700 | AMD Socket AM5 |
| Multiplier Unlocked | No | Yes |
| Launch MSRP | Not provided | $329 |
| Release Date | 2024-06-30 | 2024-01-07 |
Where Each One Wins
The Intel Core i7-14701E is the clear choice for single-threaded performance and workloads that rely on high clock speeds. Its 72.4% lead in Cinebench R23 single-core and 70.9% lead in prime number finding make it ideal for legacy applications, spreadsheet calculations, and any software that is poorly optimized for multi-threading. The physics benchmark win (45.7%) further suggests strength in simulation and scientific workloads that depend on sequential processing. The 29.6% win in Cinebench R23 multi-core also indicates that some modern rendering workloads heavily favor Intel's design, despite the older R15 test showing AMD ahead. Users running current-generation 3D rendering or video encoding that uses the latest instruction sets will find the Intel part significantly faster.
The AMD Ryzen 7 8700G excels in data-intensive and memory-heavy workloads. Its wins in data compression (26.9%), encryption (34.9%), extended instructions (36.3%), and random string sorting (36.6%) point to superior memory bandwidth utilization and instruction-level parallelism. The 17.6% win in PassMark multithread and 21.1% win in integer math make it the better choice for database operations, file compression, and general productivity suites that leverage parallel data paths. The Radeon 780M integrated graphics also give it an edge for lightweight gaming or GPU-accelerated compute tasks without a discrete card. For users who frequently work with large datasets, archives, or encryption-heavy workflows, the AMD part delivers measurable performance gains.
The overall score difference between the two is negligible at 0.4%, so the decision comes down to workload profile. Intel wins where raw clock speed and single-thread efficiency matter; AMD wins where memory bandwidth and parallel data processing dominate. Both are active products at the 83rd percentile, and either will serve as a capable desktop workhorse, but the specific benchmark deltas above show that the "best" choice depends entirely on what software you run most often.