AMD Ryzen AI 7 445 vs Intel Core i9-14901TE Comparison
AMD Ryzen AI 7 445
Core i9-14901TE
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen AI 7 445 vs Intel Core i9-14901TE
# AMD Ryzen AI 7 445 vs Intel Core i9-14901TE
The AMD Ryzen AI 7 445 and Intel Core i9-14901TE occupy different corners of the processor market. The AMD part is a 6-core, 12-thread mobile chip built on Zen 5 architecture with a 28 W TDP, while the Intel part is an 8-core, 16-thread desktop processor based on Raptor Lake with a 45 W TDP. Benchmark data for the Intel chip is absent from the database, so the comparison relies primarily on architectural specifications, cache layouts, and the recorded performance profile of the AMD processor. The database places the AMD Ryzen AI 7 445 at the 79th percentile among all CPUs, with an average benchmark score of 26936, while the Intel Core i9-14901TE sits at the 50th percentile with no recorded average score.
FAQ
Q: What are the core and thread counts for each processor?
A: The AMD Ryzen AI 7 445 has 6 cores and 12 threads. The Intel Core i9-14901TE has 8 cores and 16 threads.
Q: Which processor has a higher boost clock speed?
A: The Intel Core i9-14901TE boosts up to 5.50 GHz, while the AMD Ryzen AI 7 445 reaches 4.60 GHz.
Q: How much L3 cache does each chip provide?
A: The AMD Ryzen AI 7 445 has 4 MB of L3 cache. The Intel Core i9-14901TE has 36 MB of shared L3 cache.
Q: What process node is used for each processor?
A: The AMD Ryzen AI 7 445 uses a 4 nm process from TSMC. The Intel Core i9-14901TE uses a 10 nm process from Intel.
Q: What integrated graphics are included?
A: The AMD Ryzen AI 7 445 includes Radeon 840M graphics. The Intel Core i9-14901TE includes UHD Graphics 770.
Q: Which processor supports PCIe Gen 5?
A: The Intel Core i9-14901TE supports PCIe Gen 5 with 16 lanes. The AMD Ryzen AI 7 445 supports PCIe Gen 4 with 14 lanes.
Architecture Differences
The AMD Ryzen AI 7 445 is built on the Zen 5 architecture under the Gorgon Point codename, part of the Ryzen AI 400 generation that combines Zen 5 and Zen 5c cores. The process node is 4 nm, fabricated by TSMC. The chip uses an AMD Socket FP8, indicating a mobile-oriented design. The base clock is 2.00 GHz with a boost clock of 4.60 GHz. The TDP is 28 W, which aligns with thin-and-light laptops or compact mobile workstations. The cache hierarchy is structured as 80 KB of L1 per core, 1 MB of L2 per core, and 4 MB of L3 cache. Memory support includes both DDR5 and LPDDR5X, running on a dual-channel bus with a recorded bandwidth of 89.6 GB/s. ECC memory is supported. PCIe connectivity is Gen 4 with 14 lanes from the CPU. Integrated graphics come in the form of Radeon 840M. The multiplier is locked, and the part number is 100-000001935.
The Intel Core i9-14901TE is based on the Raptor Lake architecture, specifically the Raptor Lake-R codename, and belongs to the Core 14th Gen series. The process node is 10 nm from Intel. The socket is Intel Socket 1700, which is a desktop platform. The base clock is 2.30 GHz with a boost clock of 5.50 GHz. The TDP is 45 W, higher than the AMD part, reflecting a desktop-oriented power envelope. The cache layout is 80 KB of L1 per core, 2 MB of L2 per core, and 36 MB of shared L3 cache. Memory support spans both DDR4 and DDR5, with a dual-channel memory bus. ECC memory is supported. PCIe connectivity is Gen 5 with 16 lanes from the CPU. Integrated graphics are UHD Graphics 770. The multiplier is locked, and the part number is Q49CSRNJJ.
The architectural divergence is substantial. The AMD chip uses a newer, smaller process node (4 nm versus 10 nm) and a mobile socket, while the Intel chip uses a larger process node and a desktop socket. The L3 cache disparity is significant: 36 MB on the Intel part versus 4 MB on the AMD part. The Intel chip also provides double the L2 cache per core (2 MB versus 1 MB). The AMD chip offers a higher memory bandwidth figure at 89.6 GB/s, while the Intel chip's memory bandwidth is not recorded in the database. Both chips support ECC memory, which is notable for workstation use cases.
Where Each One Wins
The AMD Ryzen AI 7 445 wins in scenarios where power efficiency and mobile form factors are priorities. The 28 W TDP is substantially lower than the Intel chip's 45 W TDP, making the AMD part suitable for laptops or compact devices where thermal and power constraints are tight. The support for LPDDR5X memory indicates a design aimed at integrated, low-power memory configurations common in premium ultraportables. The Radeon 840M integrated graphics provide a baseline for display output and light graphical tasks without a discrete GPU. The 4 nm process node suggests improved transistor density and potentially lower leakage compared to the 10 nm process on the Intel side.
The Intel Core i9-14901TE wins in scenarios that demand higher thread counts and larger cache pools. With 8 cores and 16 threads, the Intel chip offers 33% more cores and 33% more threads than the AMD part. The 36 MB of shared L3 cache is 9 times larger than the AMD chip's 4 MB, which can benefit workloads with large working sets or frequent data reuse. The boost clock of 5.50 GHz is 0.90 GHz higher than the AMD chip's 4.60 GHz, which may translate to stronger single-thread performance in lightly threaded tasks. The PCIe Gen 5 support with 16 lanes provides higher bandwidth for expansion cards and NVMe storage compared to the AMD chip's PCIe Gen 4 with 14 lanes.
The AMD chip also has a recorded benchmark profile that places it at the 79th percentile among all CPUs, with an average score of 26936. The Intel chip has no recorded benchmarks, and its percentile of 50 is a default placeholder rather than a measured result. The absence of benchmark data for the Intel chip means that direct performance comparisons cannot be made from recorded measurements.
Specification Differences
The two processors differ across nearly every major specification field. Core count: 6 for AMD versus 8 for Intel. Thread count: 12 for AMD versus 16 for Intel. Base clock: 2.00 GHz for AMD versus 2.30 GHz for Intel. Boost clock: 4.60 GHz for AMD versus 5.50 GHz for Intel. TDP: 28 W for AMD versus 45 W for Intel. Socket: AMD Socket FP8 versus Intel Socket 1700. Architecture: Zen 5 versus Raptor Lake. Process node: 4 nm from TSMC versus 10 nm from Intel. L2 cache per core: 1 MB for AMD versus 2 MB for Intel. L3 cache: 4 MB for AMD versus 36 MB shared for Intel. Memory support: DDR5 and LPDDR5X for AMD versus DDR4 and DDR5 for Intel. Memory bandwidth: 89.6 GB/s for AMD versus not recorded for Intel. PCIe version and lanes: Gen 4 with 14 lanes for AMD versus Gen 5 with 16 lanes for Intel. Integrated graphics: Radeon 840M versus UHD Graphics 770. Market segment: Mobile for AMD versus Desktop for Intel. Release date: 2026 for AMD versus 2024 for Intel. Die size: not recorded for AMD versus 257 mm² for Intel.
The production status for both is Active. Both have locked multipliers. Both support ECC memory. Both use dual-channel memory buses. The generation names differ: Ryzen AI 400 for AMD versus Core 14th Gen for Intel. The Intel chip has a series designation of Core 14th Gen, while the AMD chip has no series field recorded.
Head-to-Head Benchmarks
The head-to-head benchmark table in the database is empty. The Intel Core i9-14901TE has no recorded benchmark scores in any test. The AMD Ryzen AI 7 445 has a full benchmark suite, but without corresponding Intel scores, no direct deltas can be calculated. The wins counter shows 0 for both processors.
For the AMD chip alone, the recorded scores are as follows: Cinebench R15 multicore at 1723 and singlecore at 254. Cinebench R23 multicore at 10590 and singlecore at 1806. PassMark data compression at 215812, data encryption at 10519, extended instructions at 15826, find prime numbers at 56, floating point math at 39362, integer math at 58332, multithread at 18115, physics at 976, random string sorting at 23488, and single thread at 3591. The average benchmark score is 26936.
The nearest rivals for the AMD chip provide context for its performance tier. The Intel Core i7-1370P has an average score of 26900, which is 0.1% behind the AMD chip. The AMD Ryzen 5 7545U has an average score of 26849, which is 0.3% behind. The AMD Ryzen 7 5700G has an average score of 27051, which is 0.4% ahead. The Intel Core i9-9900K has an average score of 27097, which is 0.6% ahead. These deltas are small, indicating that the AMD Ryzen AI 7 445 sits in a tight performance cluster with these four rivals.
Without Intel benchmark data for the Core i9-14901TE, the specification differences become the primary basis for comparison. The Intel chip's higher core count, larger L3 cache, and higher boost clock suggest it may outperform the AMD chip in multi-threaded and cache-sensitive workloads, but this is an inference from specifications rather than a measured result.
The Verdict
The selection between these two processors depends entirely on the intended use case, and the recorded data supports a clear split. For mobile computing, where power draw and socket compatibility matter, the AMD Ryzen AI 7 445 is the only viable choice. The 28 W TDP and AMD Socket FP8 are designed for laptops. The support for LPDDR5X memory and the 89.6 GB/s memory bandwidth point to a system built around integrated memory. The Radeon 840M graphics handle display output. The AMD chip has a measured performance profile that places it at the 79th percentile among all CPUs, with an average score of 26936. This is a functional processor for everyday tasks and moderately demanding workloads.
For desktop computing, the Intel Core i9-14901TE offers a different set of capabilities. The Intel Socket 1700 is a desktop platform, and the 45 W TDP is higher but still within range of a typical desktop cooler. The 8 cores and 16 threads provide more parallel execution resources. The 36 MB of shared L3 cache is a substantial advantage for workloads that benefit from large caches, such as compilation, scientific computing, or data processing. The PCIe Gen 5 support with 16 lanes enables high-bandwidth expansion. The boost clock of 5.50 GHz is among the highest in the database for this comparison.
The absence of benchmark data for the Intel chip means that the database cannot confirm the performance advantages implied by its specifications. A buyer who values measured performance should note that the AMD chip has a verified benchmark record, while the Intel chip does not. A buyer who values raw specification headroom, particularly in core count, cache size, and clock speed, may favor the Intel chip on paper.
The percentile difference is stark: 79 for the AMD chip versus 50 for the Intel chip, but the Intel value is a placeholder due to missing benchmark data. The AMD chip's nearest rivals all have average scores within 0.6% of its own, which indicates that it competes with older high-end parts like the Intel Core i9-9900K and the AMD Ryzen 7 5700G. The Intel Core i9-14901TE, by contrast, has no rival data to contextualize its expected performance.
In practical terms, the AMD Ryzen AI 7 445 serves users who need a capable mobile processor with integrated graphics and low power consumption. The Intel Core i9-14901TE serves users who need a desktop processor with high core counts, large cache, and modern PCIe connectivity. The database does not support a direct performance comparison because the Intel chip lacks recorded scores. The decision rests on form factor, power envelope, and whether the user prioritizes measured performance data over specification-based expectations.