
A12-9700P

Core i5-10400F
A12-9700P vs Core i5-10400F Performance Spectrum
About PassMark
PassMark CPU Mark evaluates processor speed through complex mathematical computations. It provides a reliable metric to compare multi-core performance, where higher scores indicate faster processing for multitasking, gaming, and heavy workloads.
A12-9700P vs Core i5-10400F FPS Benchmarks
Predicted gaming performance across popular games. Tested paired with GeForce RTX 5090 to isolate CPU performance.
Search any supported game below to compare 1080p FPS for both components.

Path of Exile 2

Counter-Strike 2

League of Legends

Valorant

Among Us

Apex Legends

ARC Raiders

Baldur's Gate 3

Call of Duty: Black Ops 6
A12-9700P vs Core i5-10400F: Pros, Cons & Final Verdict
See where each CPU makes more sense in practice: gaming, heavier work, platform cost, power draw, and upgrade path.
A12-9700P
2016Why buy it
- ✅Draws 2W instead of 65W, a 63W reduction.
- ✅Integrated graphics onboard with Radeon R7, while Core i5-10400F needs a discrete GPU.
Trade-offs
- ❌Worse for gaming: lower average FPS than Core i5-10400F across 50 shared CPU benchmark tests.
- ❌Lower PassMark (2,415 vs 13,029).
- ❌No boxed cooler included, unlike Core i5-10400F.
Core i5-10400F
2020Why buy it
- ✅Better for gaming: +213.1% higher average FPS across 50 shared CPU benchmark tests.
- ✅100% more PCIe lanes (16 vs 8) for storage and expansion-heavy builds.
- ✅Includes a boxed cooler (Yes), unlike A12-9700P.
Trade-offs
- ❌Launch MSRP is still $160 MSRP, while A12-9700P mostly shows up through inconsistent older-market listings.
- ❌3150% higher power demand at 65W vs 2W.
- ❌No integrated graphics, while A12-9700P can still boot and troubleshoot without a discrete GPU.
Quick Answers
So, is Core i5-10400F better than A12-9700P?
Which one is better for gaming?
Which one is better for streaming, content creation, and heavy multitasking?
Which one is the smarter buy today, not just the cheaper CPU?
Which one is more future-proof for 2026 and beyond?
A12-9700P vs Core i5-10400F Technical Specifications
Side-by-side specs, architecture details, clocks, memory, power, and platform differences.

A12-9700P
The A12-9700P is manufactured by AMD. It was released in 2014-01-01. It is based on the Bristol Ridge (2016−2019) architecture. It features 4 cores and 4 threads. Base frequency is 2.5 GHz, with boost up to 3.4 GHz. L2 cache: 2048 kB. Built on 28 nm process technology. Socket: FP4. Thermal design power (TDP): 2 MB. Memory support: DDR3, DDR4. Passmark benchmark score: 2,415 points. Launch price was $130.

Core i5-10400F
The Core i5-10400F is manufactured by Intel. It was released in 30 April 2020 (5 years ago). It is based on the Comet Lake (2020−2025) architecture. It features 6 cores and 12 threads. Base frequency is 2.9 GHz, with boost up to 4.3 GHz. L3 cache: 12 MB (total). L2 cache: 256K (per core). Built on 14 nm process technology. Socket: LGA1200. Thermal design power (TDP): 65 Watt. Memory support: DDR4. Passmark benchmark score: 13,029 points. Launch price was $155.
Processing Power
The A12-9700P packs 4 cores / 4 threads, while the Core i5-10400F offers 6 cores / 12 threads — the Core i5-10400F has 2 more cores. Boost clocks reach 3.4 GHz on the A12-9700P versus 4.3 GHz on the Core i5-10400F — a 23.4% clock advantage for the Core i5-10400F (base: 2.5 GHz vs 2.9 GHz). The A12-9700P uses the Bristol Ridge (2016−2019) architecture (28 nm), while the Core i5-10400F uses Comet Lake (2020−2025) (14 nm). In PassMark, the A12-9700P scores 2,415 against the Core i5-10400F's 13,029 — a 137.5% lead for the Core i5-10400F. Geekbench 6 single-core — the metric most relevant to gaming — records 481 vs 1,454, a 100.6% lead for the Core i5-10400F that directly translates to higher frame rates.
| Feature | A12-9700P | Core i5-10400F |
|---|---|---|
| Cores / Threads | 4 / 4 | 6 / 12+50% |
| Boost Clock | 3.4 GHz | 4.3 GHz+26% |
| Base Clock | 2.5 GHz | 2.9 GHz+16% |
| L3 Cache | — | 12 MB (total) |
| L2 Cache | 2048 kB+700% | 256K (per core) |
| Process | 28 nm | 14 nm-50% |
| Architecture | Bristol Ridge (2016−2019) | Comet Lake (2020−2025) |
| PassMark | 2,415 | 13,029+440% |
| Cinebench R23 Multi | — | 8,191 |
| Geekbench 6 Single | 481 | 1,454+202% |
| Geekbench 6 Multi | — | 5,783 |
Memory & Platform
The A12-9700P uses the FP4 socket (PCIe 3.0), while the Core i5-10400F uses LGA1200 (PCIe 3.0) — making them incompatible on the same motherboard. Maximum memory speed reaches DDR4-1866 on the A12-9700P versus DDR4-2666 on the Core i5-10400F — the Core i5-10400F supports 42.9% faster memory, which can translate to measurable gains in memory-sensitive workloads. The Core i5-10400F supports up to 128 GB of RAM compared to 16 GB — 700% more capacity for professional workloads. Both feature 2-channel memory with ECC support. PCIe lanes: 8 (A12-9700P) vs 16 (Core i5-10400F) — the Core i5-10400F offers 8 more lanes for additional GPUs or NVMe drives.
| Feature | A12-9700P | Core i5-10400F |
|---|---|---|
| Socket | FP4 | LGA1200 |
| PCIe Generation | PCIe 3.0 | PCIe 3.0 |
| Max RAM Speed | DDR4-1866 | DDR4-2666+43% |
| Max RAM Capacity | 16 GB | 128 GB+700% |
| RAM Channels | 2 | 2 |
| ECC Support | No | No |
| PCIe Lanes | 8 | 16+100% |
Advanced Features
Neither processor supports overclocking. Virtualization support: AMD-V (A12-9700P) vs VT-x, VT-d (Core i5-10400F). The A12-9700P includes integrated graphics (Radeon R7), while the Core i5-10400F requires a dedicated GPU. Primary use case: A12-9700P targets Laptop, Core i5-10400F targets Gaming. Direct competitor: A12-9700P rivals Core i5-6200U; Core i5-10400F rivals Ryzen 5 3600.
| Feature | A12-9700P | Core i5-10400F |
|---|---|---|
| Integrated GPU | Yes | No |
| IGPU Model | Radeon R7 | — |
| Unlocked | No | No |
| AVX-512 | No | No |
| Virtualization | AMD-V | VT-x, VT-d |
| Target Use | Laptop | Gaming |
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