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Intel Core i7-1270P vs AMD A10-7400P vs AMD A8 Pro-7150B

Intel Core i7-1270P

► remove from comparison Intel i7-1270P

The Intel Core i7-1270P is a higher-end Alder Lake-P family CPU, an expensive 28 W part meant for use in ultra-light, ultra-thin (yet actively cooled) laptops. This CPU was announced in early 2022 and it has 4 performance cores as opposed to the 6 cores of the top-of-the-line 1280P (P-cores, Golden Cove architecture) mated to 8 efficient cores (E-cores, Gracemont architecture). The P-cores are Hyper-Threading-enabled for a total of 16 threads when combined with the E-cores. The clock speeds range from 2.2 GHz to 4.8 GHz for the performance cluster and 1.6 GHz to 3.5 GHz for the efficient cluster. Full vPro feature set is supported by this Core i7 ("Enterprise" tier, allowing for remote device management). Its shortcomings as compared with the mighty i7-1280P include the smaller L3 cache, lower core count, lower clock speeds; the performance is slated to be significantly lower as a result.

A brief look at the specifications instantly reveals this i7 series chip to be very similar to the Core i5-12600H, a more power-hungry processor targeted at gaming laptops.

Architecture

The i7 is a continuation of Intel's efforts to use the ARM-developed big.LITTLE technology for its own benefit. A single "little" Alder Lake core is supposed to be as fast as a Skylake core (as found in the venerable Core i7-6700HQ among other options) which is six years old at this point. All of an Intel Core i7-1270P's CPU cores enjoy access to 18 MB of L3 cache. The integrated memory controller supports various memory types up to LPDDR5-5200, DDR5-4800, LPDDR4x-4267 or DDR4-3200. Intel suggests using no more than 64 GB, for reference. Just like the other 12th Gen Intel Core processors, Core i7-1270P comes with Thread Director which is a new functionality designed to help Windows 11 decide which cores to use for what workload for best performance and efficiency possible. Hardware acceleration of AI algorithms is supported via GNA 3.0 and DL Boost (via AVX2). PCI-Express 5.0 support has not found its way into Alder Lake P processors, so users will have to be content with PCI-Express 4.0 for the time being. Four PCI-Express 4 lanes allow for a read/write rate of up to 7.9 GB/s, provided a suitably fast NVMe SSD is used.

Please note this is not a user-replaceable CPU. It gets soldered permanently on to the motherboard (BGA1744 socket interface).

Performance

The 12 CPU cores are not just able to outshine any outgoing quad-core Tiger Lake part, the i7-1195G7 included. The average 1270P in our database directly competes with the Ryzen 7 5825U, the Ryzen 7 7730U and the Ryzen 7 7735U, meaning this little Core i7 is fast enough to make most consumers happy as of mid 2023.

The fairly high processing power comes at a cost. A single Golden Cove core can consume more than 20 W when under heavy load. Your mileage may thus vary depending on how high the Power Limits are and how competent the cooling solution of your laptop is.

Graphics

The built-in graphics adapter in the form of the 96 EU Iris Xe running at up to 1.40 GHz has seen no change from what was built into the 11th Gen Tiger Lake-UP3 processors, like an i7-1165G7, which is hardly a downside as this iGPU is loaded with modern features such as AV1 video decoding capability and SUHD 4320p monitor support. Up to 4 monitors can be used simultaneously with this iGPU. We expect the gaming performance to be reasonably close to that of NVIDIA's MX350.

In other words, the Xe is good enough for most games at 1080p resolution / Medium settings, provided the Power Limits are high enough and the cooling solution is competent enough. Fast RAM is a prerequisite for decent performance as well (the Xe has to make do with no dedicated video memory).

Last but not the least, we discovered that the GPU utilization when playing YouTube UHD 2160p60 videos is higher than it was with Tiger Lake chips.

Power consumption

The i7's base power consumption (also known as the default TDP or Power Limit 1) is 28 W, with 64 W being its maximum Turbo power consumption (also known as the PL2). As for the "Minimum Assured" power consumption, Intel's guidelines mention 20 W. All in all, an active cooling solution is a must for such a chip.

The CPU is built with Intel's fourth-gen 10 nm process marketed as Intel 7 for decent, as of late 2022, energy efficiency. It's still a rather power-hungry CPU; a single P-core will happily consume more than 20 W when under heavy load. A couple of the higher-end 7 nm U-class AMD Ryzen 5000 chips are not nearly as power-hungry while delivering similar or higher performance levels.

AMD A10-7400P

► remove from comparison AMD A10-7400P

The quad-core AMD A10-7400P is a mid-range processor based on the Kaveri architecture. It was revealed in June 2014 for notebooks and is manufactured by GlobalFoundries using a 28 nm SHP process. In addition to having two CPU modules for a total of four integer cores clocked at 2.5 - 3.4 GHz, the AMD chip also integrates a Radeon R6 GPU clocked at up to 654 MHz with 384 GCN shaders and a dual-channel DDR3-1866 memory controller.

Architecture 

Kaveri is the successor to the 2013 Richland architecture (e.g. A10-5750M). The revised CPU cores, codenamed Steamroller, represent the third generation of the module-based Bulldozer design. A number of major changes include modified decoders (now one per integer core), optimized branch prediction, and increased L1 I-cache from 64 KB to 96 KB per module. These revisions boost the performance per clock slightly over a similarly clocked Richland APU. For more details about the AMD Kaveri architecture, see our detailed analysis here:

Analysis of the AMD Kaveri Notebook Platform

Performance 

According to the clock rates, the A10-7400P should offer a CPU performance level similar to the Sandy Bridge-based Intel Core i3-2330M or 2350M. Overall, the A10-7400P will be sufficient for multitasking daily workloads (Office, Internet browsing, multimedia) as well as more demanding programs.

Graphics

The Radeon R6 (Kaveri) GPU of the A10-7400P features a core clock of up to 654 MHz and 384 shader units. Since the GPU is based on AMD's GCN 1.1 architecture, both DirectX 11.2 "Tier 2" and Mantle are supported. Furthermore, the GPU can be used for general purpose computing in various applications, such as Adobe Photoshop via the OpenCL API. 

In terms of 3D performance, the GPU benefits from its high raw computational power and memory support up to DDR3-1866. Thus, the Radeon R6 is just slightly behind a dedicated GeForce GT 730M and can handle many current games at low or medium settings at WXGA resolution.

Power Consumption

The power consumption of the entire APU is rated at 35 Watts, which is similar to other competing mid-range models. As a result, the A10-7400P is best suited for 14-inch notebooks or larger.

AMD A8 Pro-7150B

► remove from comparison AMD A8 Pro-7150B

The AMD A8 Pro-7150B is a power efficient ULV (Ultra Low Voltage) quad-core processor based on the Kaveri architecture. It was revealed in June 2014 for notebooks and is manufactured by GlobalFoundries using a 28 nm SHP process. In addition to having two CPU modules for a total of four integer cores clocked at 1.9 - 3.2 GHz, the AMD chip also integrates a Radeon R5 GPU clocked at up to 533 MHz with 384 GCN shaders and a dual-channel DDR3-1600 memory controller.

Technically, the 7150B is almost identical with the consumer model A10-7300. However, AMD guarantees an especially high stability and durability for the business-oriented Pro-Series.

Architecture 

Kaveri is the successor to the 2013 Richland architecture (e.g. A10-5750M). The revised CPU cores, codenamed Steamroller, represent the third generation of the module-based Bulldozer design. A number of major changes include modified decoders (now one per integer core), optimized branch prediction, and increased L1 I-cache from 64 KB to 96 KB per module. These revisions boost the performance per clock slightly over a similarly clocked Richland APU. For more details about the AMD Kaveri architecture, see our detailed analysis here:

Analysis of the AMD Kaveri Notebook Platform

Performance 

According to the clock rates, the A8 Pro-7150B should offer a CPU performance level similar to the Haswell-based Intel Core i3-4010U. Overall, the 7150B will be sufficient for all daily workloads (Office, Internet browsing, multimedia) as well as light multitasking. Detailed benchmark can be found on the cpu page of the A10-7300 APU.

Graphics

The Radeon R5 (Kaveri) GPU of the A8 Pro-7150B features a core clock of up to 533 MHz and 384 shader units. Since the GPU is based on AMD's GCN 1.1 architecture, both DirectX 11.2 "Tier 2" and Mantle are supported. Furthermore, the GPU can be used for general purpose computing in various applications, such as Adobe Photoshop via the OpenCL API. 

In terms of 3D performance, the GPU should be roughly as fast as a dedicated GeForce GT 720M and can handle many current games at low or medium settings at (W)XGA resolution.

Power Consumption

The power consumption of the entire APU is rated at 19 Watts, which is somewhat above the Haswell ULV CPUs from Intel (15 W including chipset). Nevertheless, the A8 Pro-7150B is suited for 12 - 13-inch notebooks or larger.

ModelIntel Core i7-1270PAMD A10-7400PAMD A8 Pro-7150B
CodenameAlder Lake-PKaveriKaveri
SeriesIntel Alder Lake-PAMD KaveriAMD Kaveri
Series: Kaveri Kaveri
Intel Core i7-1280P1.3 - 4.8 GHz14 / 20 cores24 MB L3
Intel Core i7-1270P « 1.6 - 4.8 GHz12 / 16 cores18 MB L3
Intel Core i7-1260P1.5 - 4.7 GHz12 / 16 cores18 MB L3
Intel Core i5-1250P1.2 - 4.4 GHz12 / 16 cores12 MB L3
Intel Core i5-1240P1.2 - 4.4 GHz12 / 16 cores12 MB L3
Intel Core i3-1220P1.1 - 4.4 GHz10 / 12 cores12 MB L3
AMD FX-7600P2.7 - 3.6 GHz4 / 4 cores
AMD A10-7400P « 2.5 - 3.4 GHz4 / 4 cores
AMD A8-7200P2.4 - 3.3 GHz4 / 4 cores
AMD FX-75002.1 - 3.3 GHz4 / 4 cores
AMD A10 Pro-7350B2.1 - 3.3 GHz4 / 4 cores
AMD A10-73001.9 - 3.2 GHz4 / 4 cores
AMD A8 Pro-7150B1.9 - 3.2 GHz4 / 4 cores
AMD A8-71001.8 - 3 GHz4 / 4 cores
AMD A6 Pro-7050B2.2 - 3 GHz2 / 2 cores
AMD A6-70002.2 - 3 GHz2 / 2 cores
AMD FX-7600P2.7 - 3.6 GHz4 / 4 cores
AMD A10-7400P2.5 - 3.4 GHz4 / 4 cores
AMD A8-7200P2.4 - 3.3 GHz4 / 4 cores
AMD FX-75002.1 - 3.3 GHz4 / 4 cores
AMD A10 Pro-7350B2.1 - 3.3 GHz4 / 4 cores
AMD A10-73001.9 - 3.2 GHz4 / 4 cores
AMD A8 Pro-7150B « 1.9 - 3.2 GHz4 / 4 cores
AMD A8-71001.8 - 3 GHz4 / 4 cores
AMD A6 Pro-7050B2.2 - 3 GHz2 / 2 cores
AMD A6-70002.2 - 3 GHz2 / 2 cores
Clock1600 - 4800 MHz2500 - 3400 MHz1900 - 3200 MHz
L1 Cache1.1 MB
L2 Cache10 MB4 MB4 MB
L3 Cache18 MB
Cores / Threads12 / 164 / 44 / 4
TDP28 Watt35 Watt19 Watt
Technology10 nm28 nm28 nm
max. Temp.100 °C102 °C
SocketBGA1744BGA (FP3)
FeaturesDDR4-3200/LPDDR4x-4266/DDR5-4800/LPDDR5-5200 RAM, PCIe 4, Thr. Director, DL Boost, GNA, Rem. Platf. Erase, MMX, SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, AVX, AVX2, BMI2, ABM, FMA, ADX, SMEP, SMAP, EIST, TM1, TM2, HT, Turbo, SST, AES-NI, RDRAND, RDSEED, SHASSE (1, 2, 3, 3S, 4.1, 4.2, 4A), x86-64, AES, AVX, FMA, DDR3-1866 ControllerSSE (1, 2, 3, 3S, 4.1, 4.2, 4A), x86-64, AES, AVX, FMA, DDR3-1600 Controller
iGPUIntel Iris Xe Graphics G7 96EUs ( - 1400 MHz)AMD Radeon R6 (Kaveri) (576 - 654 MHz)AMD Radeon R5 (Kaveri) (? - 533 MHz)
Architecturex86x86x86
Announced
Manufacturerark.intel.comwww.amd.comwww.amd.com
Transistors2410 Million2410 Million
Die Size245 mm2245 mm2

Benchmarks

Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - i7-1270P
34.6 pt (58%)
Restrict / Search: Model: Max. age: years
Cinebench R23 - Cinebench R23 Multi Core
min: 8426     avg: 9718     median: 9718 (9%)     max: 11010 Points
Cinebench R23 - Cinebench R23 Single Core
min: 1552     avg: 1620     median: 1620 (68%)     max: 1688 Points
Cinebench R20 - Cinebench R20 CPU (Single Core)
min: 595     avg: 611     median: 611 (67%)     max: 627 Points
Cinebench R20 - Cinebench R20 CPU (Multi Core)
min: 3167     avg: 3536     median: 3536 (9%)     max: 3905 Points
Cinebench R15 - Cinebench R15 CPU Multi 64 Bit
min: 1695     avg: 1739     median: 1739 (11%)     max: 1783 Points
Cinebench R15 - Cinebench R15 CPU Single 64 Bit
min: 226     avg: 229.5     median: 229.5 (64%)     max: 233 Points
Cinebench R11.5 - Cinebench R11.5 CPU Multi 64 Bit
19.9 Points (26%)
Cinebench R11.5 - Cinebench R11.5 CPU Single 64 Bit
2.7 Points (65%)
Cinebench R10 - Cinebench R10 Rend. Single (32bit)
7886 Points (48%)
Cinebench R10 - Cinebench R10 Rend. Multi (32bit)
36271 Points (26%)
wPrime 2.10 - wPrime 2.0 1024m *
344.6 s (4%)
wPrime 2.10 - wPrime 2.0 32m *
9.8 s (2%)
WinRAR - WinRAR 4.0
16497 Points (26%)
7-Zip 18.03 - 7-Zip 18.03 Multi Thread 4 runs
min: 38099     avg: 38274     median: 38274 (22%)     max: 38449 MIPS
7-Zip 18.03 - 7-Zip 18.03 Single Thread 4 runs
min: 4874     avg: 5279     median: 5279 (62%)     max: 5684 MIPS
HWBOT x265 Benchmark v2.2 - HWBOT x265 4k Preset
min: 9.56     avg: 10.4     median: 10.4 (18%)     max: 11.3 fps
TrueCrypt - TrueCrypt Serpent
0.8 GB/s (25%)
TrueCrypt - TrueCrypt Twofish
1.1 GB/s (19%)
TrueCrypt - TrueCrypt AES
5.8 GB/s (15%)
Blender - Blender 3.3 Classroom CPU *
714 Seconds (9%)
Blender - Blender 2.79 BMW27 CPU *
min: 372     avg: 373.5     median: 373.5 (3%)     max: 375 Seconds
R Benchmark 2.5 - R Benchmark 2.5 *
min: 0.4926     avg: 0.5     median: 0.5 (12%)     max: 0.575 sec
Super Pi mod 1.5 XS 1M - Super Pi mod 1.5 XS 1M *
7.6 s (2%)
Super Pi Mod 1.5 XS 32M - Super Pi mod 1.5 XS 32M *
436.4 s (2%)
3DMark 11 - 3DM11 Performance Physics
min: 10981     avg: 12323     median: 12323 (30%)     max: 13665 Points
3DMark - 3DMark Cloud Gate Physics
min: 9451     avg: 9958     median: 9958 (25%)     max: 10465 Points
3DMark - 3DMark Fire Strike Standard Physics
min: 18221     avg: 18284     median: 18283.5 (33%)     max: 18346 Points
3DMark - 3DMark Time Spy CPU
min: 5316     avg: 6022     median: 6021.5 (25%)     max: 6727 Points
Geekbench 6.5 - Geekbench 6.5 Single-Core
2304 Points (56%)
Geekbench 6.5 - Geekbench 6.5 Multi-Core
9978 Points (39%)
Geekbench 5.5 - Geekbench 5.1 - 5.5 64 Bit Single-Core
min: 1564     avg: 1644     median: 1644 (62%)     max: 1724 Points
Geekbench 5.5 - Geekbench 5.1 - 5.5 64 Bit Multi-Core
min: 8610     avg: 8660     median: 8660 (16%)     max: 8710 Points
Geekbench 5.0 - Geekbench 5.0 64 Bit Single-Core
1683 Points (7%)
Geekbench 5.0 - Geekbench 5.0 64 Bit Multi-Core
8537 Points (27%)
Mozilla Kraken 1.1 - Kraken 1.1 Total Score *
min: 537     avg: 541     median: 540.5 (1%)     max: 544 ms
Octane V2 - Octane V2 Total Score
78273 Points (57%)
WebXPRT 4 - WebXPRT 4 Score
251 Points (69%)
WebXPRT 3 - WebXPRT 3 Score
min: 279     avg: 285     median: 285 (51%)     max: 291 Points
CrossMark - CrossMark Overall
min: 1585     avg: 1649     median: 1648.5 (62%)     max: 1712 Points
Power Consumption - Prime95 Power Consumption - external Monitor *
min: 47.3     avg: 53.2     median: 53.2 (9%)     max: 59.1 Watt
Power Consumption - Cinebench R15 Multi Power Consumption - external Monitor *
min: 61.3     avg: 63.1     median: 63.1 (12%)     max: 64.9 Watt
Power Consumption - Idle Power Consumption - external Monitor *
4 Watt (3%)
Power Consumption - Idle Power Consumption 150cd 1min *
4.6 Watt (6%)
Power Consumption - Power Efficiency - Cinebench R15 Multi external Monitor
min: 27.5     avg: 27.6     median: 27.6 (21%)     max: 27.7 Points per Watt

Average Benchmarks Intel Core i7-1270P → 0% n=0

- Range of benchmark values for this graphics card
red legend - Average benchmark values for this graphics card
* Smaller numbers mean a higher performance
1 This benchmark is not used for the average calculation

v1.34
log 02. 13:30:08

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#8 getting avg benchmarks for device 14062 +0.004s ... 0.014s

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#15 min, max, avg, median took s +0.02s ... 0.043s

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Redaktion, 2017-09- 8 (Update: 2023-07- 1)