AMD Ryzen Embedded 9900X vs Intel Core i7-14701TE Comparison
AMD Ryzen Embedded 9900X
Core i7-14701TE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen Embedded 9900X vs Intel Core i7-14701TE
FAQ
Q: How do the core counts compare between the AMD Ryzen Embedded 9900X and the Intel Core i7-14701TE?
A: The AMD Ryzen Embedded 9900X has 12 cores and 24 threads, while the Intel Core i7-14701TE has 8 cores and 16 threads. This gives the AMD part a 50% advantage in core count and a 50% advantage in thread count.
Q: What are the clock speed differences between the two processors?
A: The AMD Ryzen Embedded 9900X has a base clock of 4.40 GHz and a boost clock of 5.60 GHz. The Intel Core i7-14701TE has a base clock of 2.10 GHz and a boost clock of 5.20 GHz. The AMD part starts with a much higher base clock and also boosts higher.
Q: Which processor supports faster memory technologies?
A: The AMD Ryzen Embedded 9900X supports only DDR5 memory with dual-channel configuration and a memory bandwidth of 89.6 GB/s. The Intel Core i7-14701TE supports both DDR4 and DDR5 memory in dual-channel mode, but the database does not record a memory bandwidth figure for it.
Q: What is the TDP difference between these two CPUs?
A: The AMD Ryzen Embedded 9900X has a TDP of 120 watts, while the Intel Core i7-14701TE has a TDP of 45 watts. The Intel part draws substantially less power, which makes it more suitable for thermally constrained systems.
Q: Do both processors include integrated graphics?
A: Yes, both include integrated graphics. The AMD Ryzen Embedded 9900X uses Radeon Graphics, while the Intel Core i7-14701TE uses UHD Graphics 770.
Q: Which processor has a higher percentile ranking among all CPUs?
A: The Intel Core i7-14701TE has a percentile of 78, meaning it outperforms 78% of all CPUs in the database. The AMD Ryzen Embedded 9900X has a percentile of 50, which puts it in the median range. The Intel part holds a higher overall standing in the recorded data.
Architecture Differences
The AMD Ryzen Embedded 9900X belongs to the Ryzen Embedded line based on the Zen 5 (Granite Ridge) architecture, manufactured by TSMC on a 4 nm process node. The chip uses a chiplet design with a die size of 2x 70.6 mm² and contains 16,630 million transistors. The Intel Core i7-14701TE belongs to the Core 14th Gen family, built on the Raptor Lake Refresh architecture with a monolithic 257 mm² die on Intel's 10 nm process. The foundry for the Intel part is Intel itself, while AMD outsources to TSMC.
Cache hierarchies differ significantly. The AMD part provides 80 KB of L1 cache per core, 1 MB of L2 cache per core, and a large 64 MB shared L3 cache. The Intel part offers the same 80 KB L1 per core but doubles L2 to 2 MB per core, while its L3 cache is 33 MB shared. The AMD L3 is nearly double the Intel L3, which can benefit workloads with large working sets.
Memory support diverges as well. The AMD processor supports only DDR5 memory, whereas the Intel processor supports both DDR4 and DDR5. Both use dual-channel memory buses, but the AMD part records a memory bandwidth of 89.6 GB/s while the Intel part has no recorded bandwidth figure. Both CPUs support ECC memory.
PCI Express connectivity differs in lane count. The AMD Ryzen Embedded 9900X provides 24 PCIe Gen 5 lanes from the CPU, while the Intel Core i7-14701TE provides 16 PCIe Gen 5 lanes. This gives the AMD part more headroom for expansion devices.
The multiplier on the AMD processor is unlocked, while the Intel processor has a locked multiplier. Socket compatibility also differs: AMD uses Socket AM5, Intel uses Socket 1700. The production status for both is Active, and the AMD part was released on October 6, 2025, while the Intel part was released on June 30, 2024.
Where Each One Wins
The AMD Ryzen Embedded 9900X wins in situations that demand raw multi-threaded throughput. With 12 cores versus 8 cores, a higher boost clock of 5.60 GHz, and a larger 64 MB L3 cache, it is positioned for compute-heavy tasks such as rendering, scientific simulation, and server-style workloads. Its higher base clock of 4.40 GHz also gives it a strong starting point for sustained performance. The 24 PCIe Gen 5 lanes make it a better fit for systems with multiple high-bandwidth peripherals.
The Intel Core i7-14701TE wins in power-sensitive deployments. Its 45 watt TDP is less than half of the AMD part's 120 watt TDP, making it suitable for compact systems, fanless designs, or environments with strict thermal budgets. The support for both DDR4 and DDR5 gives system integrators flexibility in memory selection. The higher percentile ranking of 78 versus 50 indicates that, despite fewer cores, the Intel part has a better overall standing among all CPUs in the database.
The benchmark data for the Intel part shows strong scores across both single-thread and multi-thread tests. Its Cinebench R23 multicore score of 17035 and single-core score of 2405 demonstrate balanced performance. The AMD part has no recorded benchmark scores in the database, so its wins are inferred from architectural advantages rather than measured results.
Specification Differences
The two processors differ in every major specification category.
Core configuration: AMD has 12 cores and 24 threads; Intel has 8 cores and 16 threads.
Clock speeds: AMD base clock is 4.40 GHz and boost is 5.60 GHz. Intel base clock is 2.10 GHz and boost is 5.20 GHz.
Power: AMD TDP is 120 watts. Intel TDP is 45 watts.
Socket: AMD uses Socket AM5. Intel uses Socket 1700.
Process node: AMD uses 4 nm from TSMC. Intel uses 10 nm from Intel.
Die size: AMD uses 2x 70.6 mm². Intel uses a single 257 mm² die.
Transistors: AMD has 16,630 million. Intel has no recorded transistor count.
L2 cache: AMD has 1 MB per core. Intel has 2 MB per core.
L3 cache: AMD has 64 MB. Intel has 33 MB.
Memory support: AMD supports DDR5 only. Intel supports DDR4 and DDR5.
Memory bandwidth: AMD records 89.6 GB/s. Intel records none.
PCIe lanes: AMD has 24 CPU lanes at Gen 5. Intel has 16 CPU lanes at Gen 5.
Integrated graphics: AMD uses Radeon Graphics. Intel uses UHD Graphics 770.
Multiplier: AMD is unlocked. Intel is locked.
Release date: AMD released October 6, 2025. Intel released June 30, 2024.
Part numbers: AMD is 100-000000662E. Intel is Q49GSRNJL.
Percentile: AMD is 50. Intel is 78.
Average benchmark score: AMD has 0 recorded. Intel has 26013.
Head-to-Head Benchmarks
The database contains no head-to-head benchmark entries that directly compare the two processors. However, the Intel Core i7-14701TE has a full set of recorded benchmark scores, while the AMD Ryzen Embedded 9900X has no benchmark entries at all.
The Intel part's Cinebench R15 multicore score is 1716, and its single-core score is 242. In Cinebench R20, it scores 7154 multicore and 1010 single-core. The Cinebench R23 results show 17035 multicore and 2405 single-core. These numbers place the Intel part in a strong position for both threaded and lightly threaded workloads.
PassMark results for the Intel processor show a multithread score of 20042 and a single-thread score of 2637. The data compression score is 220520, data encryption is 11699, and extended instructions score is 14354. Integer math reaches 65792, while floating point math reaches 50219. Prime number finding scores 143, physics scores 1860, and random string sorting scores 22760.
The nearest rivals for the Intel part are all AMD processors. The AMD Ryzen AI 5 340 scores 25981, which is 0.1% higher than the Intel part's 26013 average. The AMD Ryzen 5 8640HS scores 26106, which is 0.4% lower. The AMD Ryzen 5 PRO 5655GE scores 25880, which is 0.5% higher. The AMD Ryzen 5 8540U scores 26187, which is 0.7% lower. These deltas are all within a single percentage point, indicating that the Intel part sits in a tightly competitive performance band.
Because the AMD Ryzen Embedded 9900X has no benchmark scores, no direct numerical comparison can be made from the recorded data. The architectural differences, such as core count, cache size, and clock speeds, provide the basis for expected performance, but the database does not offer measured confirmation.
The Verdict
The Intel Core i7-14701TE is the better choice for users who prioritize efficiency and a proven benchmark profile. The recorded data shows a percentile of 78, an average benchmark score of 26013, and a full set of Cinebench and PassMark results. Its 45 watt TDP makes it suitable for systems where power draw and heat output are primary constraints. The support for both DDR4 and DDR5 memory adds flexibility for existing memory inventories.
The AMD Ryzen Embedded 9900X is the better choice for users who need maximum core count, the highest boost clock, and the largest cache. With 12 cores, 24 threads, a 5.60 GHz boost clock, and 64 MB of L3 cache, it is architecturally positioned for heavy multi-threaded workloads. The 24 PCIe Gen 5 lanes also provide more expansion capability than the Intel part's 16 lanes.
The absence of benchmark data for the AMD part makes a definitive performance comparison impossible from the database alone. The Intel part has a clear measured advantage in overall percentile, but the AMD part's hardware specifications indicate a different performance envelope. The Intel processor suits power-conscious deployments and has verified scores, while the AMD processor suits high-throughput designs and offers architectural headroom.
Neither processor has a launch MSRP recorded in the database, so price considerations cannot factor into the analysis. The data indicates that the Intel Core i7-14701TE delivers competitive performance within a low power envelope, while the AMD Ryzen Embedded 9900X offers a wider core count and faster clocks for those who can accommodate its higher TDP.