AMD Ryzen AI Embedded P132 vs Intel Core 9 273PE Comparison

AMD
AMD

AMD Ryzen AI Embedded P132

CORE STATE Gorgon Point
CORE SPECS 6 Cores / 12 Threads
CLOCK SPEED 2 Base / 4.5 GHz Turbo
CACHE 4 MB
MAX TDP 28W
ARCHITECTURE Gorgon Point
nm
PROCESS 4 nm
LAUNCH DATE 2026
VS
Intel
INTEL

Core 9 273PE

CORE STATE Bartlett Lake
CORE SPECS 12 Cores / 24 Threads
CLOCK SPEED 2.3 Base / 5.7 GHz Turbo
CACHE 36 MB (shared)
MAX TDP 65W
ARCHITECTURE Bartlett Lake
nm
PROCESS 10 nm
LAUNCH DATE 2026

PERFORMANCE BENCHMARKS

passmark_data_compression
230,437
405,885
passmark_data_encryption
11,444
22,719
passmark_extended_instructions
16,520
24,630
passmark_find_prime_numbers
57
203
passmark_floating_point_math
42,248
107,884
passmark_integer_math
62,249
139,410
passmark_multithread
19,262
36,810
passmark_physics
1,022
3,120
passmark_random_string_sorting
25,181
45,098
passmark_single_thread
3,713
3,650
passmark_singlethread
3,713
3,650
cinebench_cinebench_r15_multicore
N/A
3,153
cinebench_cinebench_r15_singlecore
N/A
445
cinebench_cinebench_r20_multicore
N/A
13,140
cinebench_cinebench_r20_singlecore
N/A
1,855
cinebench_cinebench_r23_multicore
N/A
31,288
cinebench_cinebench_r23_singlecore
N/A
4,417

Analysis: AMD Ryzen AI Embedded P132 vs Intel Core 9 273PE

AMD Ryzen AI Embedded P132 vs Intel Core 9 273PE

The database comparison between the AMD Ryzen AI Embedded P132 and the Intel Core 9 273PE shows a clear performance hierarchy, with the Intel part winning 9 of 11 head-to-head benchmark tests. The AMD processor takes 2 wins, both in single-threaded workloads, but the Intel chip dominates in every multi-threaded and compute-intensive test by substantial margins. The Intel Core 9 273PE also holds a higher overall position, sitting at the 90th percentile of all CPUs, while the AMD Ryzen AI Embedded P132 ranks at the 86th percentile.

Head-to-Head Benchmarks

The Intel Core 9 273PE delivers its largest margin in prime number finding, scoring 203 against the AMD's 57, a delta of 71.9 percent. This test often reflects raw integer throughput and cache efficiency, and the Intel part's advantage here is decisive. Floating point math shows a similar pattern, with Intel scoring 107884 versus AMD's 42248, a 60.8 percent gap. Integer math follows at 139410 versus 62249, a 55.3 percent difference. These three results indicate the Intel processor sustains a much higher compute throughput across both integer and floating-point instruction streams.

The physics test also favors Intel heavily, 3120 versus 1022, a 67.2 percent lead. This workload typically exercises multi-threaded simulation code, and the Intel chip's 12 cores and 24 threads provide a structural advantage over the AMD's 6 cores and 12 threads. Multithreaded PassMark scores confirm this, with Intel at 36810 and AMD at 19262, a 47.7 percent difference. Data compression shows Intel ahead at 405885 versus 230437, a 43.2 percent gap, while random string sorting gives Intel a 44.2 percent edge, 45098 versus 25181.

Data encryption is another Intel win, 22719 versus 11444, a 49.6 percent margin, and extended instructions follow with Intel at 24630 versus AMD's 16520, a 32.9 percent lead. These results collectively show the Intel Core 9 273PE outperforming the AMD Ryzen AI Embedded P132 by roughly one-third to nearly three-quarters across compute-heavy and multi-threaded tasks.

The AMD processor's only wins come in the single-threaded PassMark tests, where it scores 3713 against Intel's 3650, a 1.7 percent advantage. This is a narrow margin, but it is consistent across both recorded single-thread entries. The AMD chip's higher boost clock of 4.50 GHz compared to Intel's 5.70 GHz might suggest otherwise, but the measured data shows AMD ahead in this specific metric. The Intel chip's larger L3 cache, 36 MB shared versus 4 MB on AMD, likely offsets the clock speed difference in most other workloads.

The Verdict

The data clearly positions the Intel Core 9 273PE as the higher-performing processor for multi-threaded and compute-intensive tasks. It wins 9 of 11 benchmarks and holds a 90th percentile ranking versus AMD's 86th. The Intel chip's average benchmark score of 49845 sits 31.8 percent above AMD's 37804, and its nearest rivals include the AMD Ryzen AI Max+ 388 at 49796 and the Intel Core i5-14600KF at 49394, both within 1 percent. The AMD Ryzen AI Embedded P132, by contrast, sits within 0.3 percent of the Intel Core 5 211E and the AMD Ryzen AI 5 PRO 435, placing it in a different performance class.

For users who prioritize single-threaded responsiveness, the AMD chip offers a modest but measurable edge, 1.7 percent in the PassMark single-thread test. However, that small lead does not compensate for the Intel chip's dominance in every other category, particularly when the Intel part delivers more than double the score in floating point math, integer math, and physics tests. The Intel Core 9 273PE is also a desktop part with 12 cores and 24 threads, while the AMD Ryzen AI Embedded P132 is a mobile processor with 6 cores and 12 threads, which explains the multi-threaded gap.

From the recorded data, the Intel Core 9 273PE is the stronger all-around processor for workloads that scale across cores, while the AMD Ryzen AI Embedded P132 only wins in narrow single-thread scenarios.

Where Each One Wins

The Intel Core 9 273PE wins in all multi-threaded and throughput-oriented categories, including data compression, data encryption, extended instructions, prime number finding, floating point math, integer math, multithread, physics, and random string sorting. These are workloads that benefit from the Intel chip's 12 cores, 24 threads, and 36 MB of shared L3 cache. The Intel part also uses PCIe Gen 5 with 16 lanes, which provides faster interconnect bandwidth for expansion devices, though the benchmark data does not directly measure PCIe performance.

The AMD Ryzen AI Embedded P132 wins only in the PassMark single-thread tests, scoring 3713 versus Intel's 3650. This indicates the AMD processor has a slight advantage in workloads that rely on a single core, such as lightly threaded applications or certain legacy software. The AMD chip's 4 nm process node from TSMC and its Radeon 840M integrated graphics may offer advantages in power efficiency and graphics output, but the benchmark data does not quantify those factors.

For use-case selection, the Intel Core 9 273PE suits compute-heavy tasks like physics simulation, data encryption, and large-scale integer math. The AMD Ryzen AI Embedded P132 suits single-threaded applications where its 1.7 percent edge matters, and its 28 W TDP versus Intel's 65 W suggests lower power draw, though the database does not list power consumption measurements.

FAQ

Q: Which processor has the higher single-thread score?

A: The AMD Ryzen AI Embedded P132 scores 3713 in the PassMark single-thread test, while the Intel Core 9 273PE scores 3650, giving AMD a 1.7 percent lead.

Q: How large is the Intel chip's advantage in multithreaded performance?

A: The Intel Core 9 273PE scores 36810 in the PassMark multithread test versus 19262 for the AMD, a 47.7 percent difference.

Q: What is the biggest performance gap between the two processors?

A: The largest delta is in the find prime numbers test, where the Intel Core 9 273PE scores 203 against AMD's 57, a 71.9 percent margin.

Q: Which processor has more cores and threads?

A: The Intel Core 9 273PE has 12 cores and 24 threads, while the AMD Ryzen AI Embedded P132 has 6 cores and 12 threads.

Q: What are the average benchmark scores for each processor?

A: The Intel Core 9 273PE has an average benchmark score of 49845, and the AMD Ryzen AI Embedded P132 has an average score of 37804.

Q: How do the two processors rank compared to all CPUs?

A: The Intel Core 9 273PE is at the 90th percentile, while the AMD Ryzen AI Embedded P132 is at the 86th percentile.

Architecture Differences

The two processors differ fundamentally in core count, cache structure, process node, and platform support. The AMD Ryzen AI Embedded P132 uses 6 cores and 12 threads based on the Gorgon Point codename, with a Zen 5 / Zen 5c generation architecture. It is built on a 4 nm process at TSMC, while the Intel Core 9 273PE uses the Bartlett Lake codename with a 10 nm process at Intel. The AMD chip has an L1 cache of 80 KB per core, an L2 cache of 1 MB per core, and 4 MB of L3 cache. The Intel chip also has 80 KB of L1 per core but doubles the L2 to 2 MB per core and provides 36 MB of shared L3 cache, a significant difference for workloads that rely on large working sets.

Memory support also differs. The AMD processor supports DDR5 and LPDDR5X memory, while the Intel chip supports DDR4 and DDR5. Both use a dual-channel memory bus and both list a memory bandwidth of 89.6 GB/s, and both support ECC memory. The AMD chip uses PCIe Gen 4 with 14 lanes (CPU only), while the Intel chip uses PCIe Gen 5 with 16 lanes (CPU only), giving Intel a newer and wider interconnect for high-speed devices.

The market segments also differ: the AMD Ryzen AI Embedded P132 is a mobile processor on AMD Socket FP8, while the Intel Core 9 273PE is a desktop processor on Intel Socket 1700. The AMD chip has a base clock of 2.00 GHz and a boost clock of 4.50 GHz, while the Intel chip has a base clock of 2.30 GHz and a boost clock of 5.70 GHz. The AMD chip's TDP is 28 W, and the Intel chip's TDP is 65 W. Integrated graphics differ as well, with AMD using Radeon 840M and Intel using UHD Graphics 730. Neither processor has an unlocked multiplier, and both are listed as active in production. The Intel Core 9 273PE has a launch MSRP of $549, while the AMD part has no listed launch MSRP. Both processors share the same release date of 2026-03-08.

DETAILED SPECIFICATIONS

SPECIFICATION
AI Embedded P132
9 273PE
Core Specs
Cores
6
12 +100.0%
Threads
12
24 +100.0%
Base Clock (GHz)
2
2.3 +15.0%
Boost Clock (GHz)
4.5
5.7 +26.7%
Frequency (GHz)
2
2.3 +15.0%
Turbo Clock (GHz)
4.5
5.7 +26.7%
Multiplier
20
23 +15.0%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
80 KB (per core)
80 KB (per core)
L2 Cache
1 MB (per core)
2 MB (per core)
L3 Cache
4 MB
36 MB (shared)
Power
TDP (W)
28
65 +132.1%
PL1
65 W
PL2
219 W
Configurable TDP
15-54 W
Architecture
Codename
Gorgon Point
Bartlett Lake
Generation
Ryzen AI Embedded (Zen 5 / Zen 5c)
Core 9 (Bartlett Lake)
Process Size
4 nm
10 nm
Foundry
TSMC
Intel
Memory
Memory Support
DDR5, LPDDR5X
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
Memory Bandwidth
89.6 GB/s
89.6 GB/s
ECC Memory
Yes
Yes
DDR4 Speed
3200 MT/s
Platform
Socket
AMD Socket FP8
Intel Socket 1700
Chipsets
W680, R680E, Q670e, Q670, H610E, H610
PCIe
Gen 4, 14 Lanes(CPU only)
Gen 5, 16 Lanes(CPU only)
Intel Hybrid
Hybrid Cores
2 + 4
E-Core Frequency
2000 MHz up to 3.4 GHz
P-Core Turbo
5.4 GHz
AI/NPU
NPU
Yes / 50 TOPS
Graphics
Integrated Graphics
Radeon 840M
UHD Graphics 730
Other
Market
Mobile
Desktop
Production Status
Active
Active
Launch Price
$549
Part Number
unknown
SA4QD
Package
FP8
FC-LGA16A
Tj Max
105°C
100°C
View Ryzen AI Embedded P132 Details View Core 9 273PE Details