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CPU benchmarks

Compare performance, find your fit, and stay on budget.

Find my CPU

Showing 1–25 of 56 matching processors

Best estimated value
LGA2011-v3 · Q1 2015
Server
Single core
1,622
Multicore
4,469
Cores / threads
4C / 4T
Estimated price
$12.88
LGA2011-v3 · Q4 2014
Server
Single core
1,689
Multicore
7,741
Cores / threads
6C / 12T
Estimated price
$29
LGA2011-v3 · Q3 2021
Server
Single core
1,754
Multicore
8,447
Cores / threads
8C / 8T
Estimated price
$49.99
LGA2011-v3 · Q2 2016
Desktop
Single core
2,246
Multicore
10,689
Cores / threads
6C / 12T
Estimated price
$65.93
LGA2011-v3 · Q3 2014
Desktop
Single core
2,097
Multicore
13,593
Cores / threads
8C / 16T
Estimated price
$71.42
LGA2011-v3 · Q3 2014
Server
Single core
1,802
Multicore
12,996
Cores / threads
10C / 20T
Estimated price
$81.99
LGA2011-v3 · Q3 2014
Desktop
Single core
1,992
Multicore
9,831
Cores / threads
6C / 12T
Estimated price
$82.95
LGA2011-v3 · Q3 2015
Server
Single core
1,764
Multicore
14,666
Cores / threads
12C / 24T
Estimated price
$106.19
LGA2011-v3 · Q3 2014
Server
Single core
1,688
Multicore
13,463
Cores / threads
12C / 24T
Estimated price
$109.95
LGA2011-v3 · Q2 2016
Desktop
Single core
2,328
Multicore
17,525
Cores / threads
10C / 20T
Estimated price
$185.33
LGA2011-v3 · Q1 2015
Server
Single core
1,645
Multicore
14,693
Cores / threads
14C / 28T
Estimated price
$189.95
LGA2011-v3 · Q4 2014
Server
Single core
1,795
Multicore
14,766
Cores / threads
12C / 24T
Estimated price
$212.44
Server
Single core
1,929
Multicore
11,310
Cores / threads
8C / 16T
Estimated price
$191.53
Server
Single core
1,543
Multicore
8,625
Cores / threads
8C / 16T
Estimated price
$149.95
LGA2011-v3 · Q3 2014
Server
Single core
1,871
Multicore
10,987
Cores / threads
8C / 16T
Estimated price
$189.95
LGA2011-v3 · Q4 2014
Server
Single core
1,981
Multicore
12,581
Cores / threads
8C / 16T
Estimated price
$230.83
LGA2011-v3 · Q1 2015
Server
Single core
2,039
Multicore
10,228
Cores / threads
6C / 12T
Estimated price
$230.29
LGA2011-v3 · Q4 2014
Server
Single core
2,118
Multicore
10,352
Cores / threads
6C / 12T
Estimated price
$271.74
LGA2011-v3 · Q4 2014
Server
Single core
2,031
Multicore
7,212
Cores / threads
4C / 8T
Estimated price
$229.95
LGA2011-v3 · Q4 2014
Server
Single core
2,005
Multicore
12,378
Cores / threads
8C / 16T
Estimated price
$298.95
LGA2011-v3 · Q3 2014
Server
Single core
1,995
Multicore
6,953
Cores / threads
4C / 8T
Estimated price
$232.12
LGA2011-v3 · Q3 2014
Server
Single core
1,788
Multicore
16,546
Cores / threads
14C / 28T
Estimated price
$339.95
LGA2011-v3 · Q1 2015
Server
Single core
1,861
Multicore
6,632
Cores / threads
4C / 8T
Estimated price
$229.95
LGA2011-v3 · Q1 2015
Server
Single core
928
Multicore
3,773
Cores / threads
6C / 6T
Estimated price
$131.95
LGA2011-v3 · Q4 2014
Server
Single core
2,118
Multicore
7,415
Cores / threads
4C / 8T
Estimated price
$298.95

Single core: everyday speed and gaming. Multicore: demanding parallel work. Bars are relative to the highest score on this page.

Benchmark and specification data from PassMark CPU Benchmarks. “Release” means first seen on its charts.

Browse CPU lists

Ready-made rankings for the questions people ask most: budgets, workloads, form factors, and upgrade sockets.

How to choose the right CPU

Start with the work you do most, set a CPU-only budget, then check platform compatibility. A balanced choice usually matters more than buying the processor with the highest benchmark score.

Get a tailored CPU shortlist
  1. 01

    Match your workload

    Favor single-core speed for gaming and everyday responsiveness; favor multicore throughput for rendering, encoding, and large builds.

  2. 02

    Set the real budget

    Leave room for a compatible motherboard, memory, and cooling when a faster CPU requires a platform change.

  3. 03

    Confirm compatibility

    Check the socket, chipset, BIOS support, power requirements, and cooler before you buy an upgrade.

A short guide to choosing a processor

Four habits separate a processor choice that ages well from one that disappoints. None of them require reading a benchmark chart from the top.

Start from the work, not the ranking

The processor at the top of a benchmark chart is the right answer to a question most people are not asking. What decides whether a machine feels fast is which of its scores matches the software you actually run. Lightly threaded work — most games, web browsing, spreadsheets, the interactive parts of creative applications — tracks the single-core score. Batch work that can spread across every core, such as video encoding, 3D rendering, or compiling a large codebase, tracks the multicore score.

That is why both columns appear on every table on this site, and why the finder asks about your workload before anything else. A processor that leads one column can sit well down the other, and paying for throughput you never use is indistinguishable from overpaying.

Budget for the platform, not just the chip

A processor price is only the whole cost when the socket stays the same. Moving to a new socket usually means a motherboard, often a new generation of memory, and sometimes a cooler that fits the new mounting. A shortlist that looks affordable at the CPU level can quietly double once those are added.

The budget pages on this site cap the processor price only, in each supported currency, so it is worth deciding early whether your figure is for the chip or for the platform. If it is for the platform, work backwards: subtract the board, memory, and cooling you would need, then shop the remainder.

Check compatibility before you buy

Socket compatibility is necessary but not sufficient. A board with the right socket can still refuse a processor because its chipset was never validated for that part, or because it needs a BIOS version newer than the one it shipped with — and updating that BIOS may itself require a supported processor. The manufacturer's CPU support list for your exact board model is the only reliable check.

Power and cooling deserve the same treatment. A higher TDP part in a small case with a modest cooler will hit thermal limits and give back the performance you paid for, so confirm the cooler's rating and the case's airflow alongside the socket.

Read the numbers for what they are

Every score on this site comes from PassMark CPU Benchmarks, which is what makes the processors comparable with one another. They are synthetic workloads: they describe relative capability well and predict the frame rate of a specific game at a specific resolution poorly. No frame-rate claims are made anywhere on this site because no games are tested here.

Prices are estimates published with the benchmark data rather than live retailer offers, and each record carries the UTC time it was retrieved so you can judge how stale it might be. Where a figure matters to a decision, follow the source link on the CPU page and confirm it.

CPU finder questions

How the recommendations, benchmarks, compatibility guidance, and price estimates on Find Me a CPU should be interpreted.

How does Find Me a CPU choose recommendations?

The finder applies deterministic rules to benchmark performance, estimated price, typical power use, your workload, budget, and stated priority. For upgrades, it also considers the socket inferred from your current CPU when that information is available. Recommendations are not sponsored and do not use generative AI.

Which CPU benchmark matters most?

Single-core performance is especially relevant to gaming and lightly threaded everyday tasks. Multicore performance matters more for rendering, video encoding, compiling large projects, and other parallel workloads. The right balance depends on the software you use, not one score alone.

Does a new CPU need the same socket as my motherboard?

A CPU and motherboard must use a compatible socket, but a matching socket does not guarantee support. The motherboard chipset and BIOS version can also matter. Confirm the exact CPU on the motherboard manufacturer's support list before buying an upgrade.

Are the CPU prices live retailer prices?

No. Prices shown here are estimates from the source benchmark data, not live store offers or availability. Currency values are conversions from those USD estimates and can differ from the final price at a retailer in your region.

How many cores do I actually need?

Six to eight cores suit most gaming and everyday systems, because few games scale beyond that and the remaining budget buys more from a faster core than from extra ones. Sustained parallel work — video encoding, 3D rendering, large compiles, running several virtual machines — is where twelve, sixteen, or more cores repay their cost. Buying cores that stay idle is the most common way to overspend on a processor.

Is a higher clock speed always faster?

No. Clock speed only compares fairly within one processor generation and architecture. A newer core at 4.5 GHz routinely beats an older one at 5.0 GHz because it completes more work per cycle, and sustained clocks also depend on cooling and power limits. Benchmark scores already account for all of that, which is why the tables here rank by score rather than by gigahertz.

Should I upgrade my CPU or replace the whole platform?

Start with the socket. If a meaningfully faster processor exists for the socket you already have, that upgrade costs only the CPU and is almost always the better value. If it does not, the real price is the processor plus a motherboard, probably memory, and possibly a cooler — compare that total against what the complete system would be worth afterwards. The finder's upgrade mode filters to processors that fit your current socket for exactly this reason.

What does TDP tell me about power and heat?

TDP is the manufacturer's thermal design figure and a rough guide to the cooling a processor needs. It is not a measurement of the electricity a chip draws, and modern processors can exceed it in short boosts or when a motherboard raises the power limits. Treat it as a comparison proxy between parts, and size a cooler with headroom above it rather than exactly at it.

Why do two processors with the same score cost different amounts?

Price follows supply, platform age, and market position as much as performance. An older part on a mature socket can match a newer one on raw score while costing less to buy but more to run, or needing a platform that will not be upgraded again. Sorting by score and reading the price column beside it is usually more useful than either number on its own.

Can I use this data in an article or an AI answer?

Yes. Cite the individual CPU page for a processor-specific claim or the permanent head-to-head URL for a comparison, and include the visible data retrieval date shown on the page. Every page is also available as Markdown to clients that send an Accept: text/markdown request header, and /llms.txt describes the site for automated readers.

Data sources and recommendation methodology