Celeron G1620 vs E2-3000M

Intel

Celeron G1620

2 Cores2 Thrd55 WWMax: 2.7 GHz2012
Similar parts
·······
VS
AMD

E2-3000M

2 Cores2 Thrd35 WWMax: 2.4 GHz2011
Similar parts
·······

Celeron G1620 vs E2-3000M 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.

Celeron G1620 vs E2-3000M 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.

Celeron G1620 vs E2-3000M: Pros, Cons & Final Verdict

See where each CPU makes more sense in practice: gaming, heavier work, platform cost, power draw, and upgrade path.

Celeron G1620

2012

Why buy it

  • 100+% more PCIe lanes (16 vs 0) for storage and expansion-heavy builds.
  • Integrated graphics onboard with Intel HD Graphics (Ivy Bridge GT1), while E2-3000M needs a discrete GPU.
  • Includes a boxed cooler (Intel Stock), unlike E2-3000M.

Trade-offs

  • Lower PassMark (1,586 vs 1,597).
  • Launch MSRP is still $52 MSRP, while E2-3000M mostly shows up through inconsistent older-market listings.
  • 57.1% higher power demand at 55W vs 35W.

E2-3000M

2011

Why buy it

  • +0.7% higher PassMark.
  • Draws 35W instead of 55W, a 20W reduction.

Trade-offs

  • No integrated graphics, while Celeron G1620 can still boot and troubleshoot without a discrete GPU.
  • No boxed cooler included, unlike Celeron G1620.

Quick Answers

So, is Celeron G1620 better than E2-3000M?
It depends on what you want from the system. For gaming, Celeron G1620 is ahead with a 1.8% average FPS lead across 50 shared CPU game tests in our data. For rendering, compiling, streaming, and heavier multitasking, E2-3000M pulls ahead with 0.7% better PassMark.
Which one is better for streaming, content creation, and heavy multitasking?
For streaming, content creation, and heavier multitasking, E2-3000M is the stronger fit. You are getting 0.7% better PassMark, backed by 2 cores and 2 threads.
Which one is the smarter buy today, not just the cheaper CPU?
Celeron G1620 is the better buy right now. Celeron G1620 comes in at an unclear MSRP at $52 MSRP versus unclear MSRP, and it still gives you a 1.8% average FPS lead across 50 shared CPU game tests in our data. The compromise is that E2-3000M is still stronger for heavier multi-core work with 0.7% better PassMark. It is also 100.0% better value on MSRP (30.5 vs 0.0 PassMark/$), so you are getting the faster CPU without taking a value hit on paper.
Which one is more future-proof for 2026 and beyond?
Celeron G1620 makes more sense long term for 2026 and beyond. You are getting a newer CPU generation (2012 vs 2011). That makes it the safer long-term bet.

Celeron G1620 vs E2-3000M Technical Specifications

Side-by-side specs, architecture details, clocks, memory, power, and platform differences.

Intel

Celeron G1620

The Celeron G1620 is manufactured by Intel. It was released in 3 December 2012 (13 years ago). It is based on the Ivy Bridge (2012−2013) architecture. It features 2 cores and 2 threads. Base frequency is 2.7 GHz, with boost up to 2.7 GHz. L3 cache: 2 MB (total). L2 cache: 256 kB (per core). Built on 22 nm process technology. Socket: LGA1155. Thermal design power (TDP): 55 Watt. Memory support: DDR3. Passmark benchmark score: 1,586 points. Launch price was $208.

AMD

E2-3000M

The E2-3000M is manufactured by AMD. It was released in 2014-01-01. It is based on the Llano (2011−2012) architecture. It features 2 cores and 2 threads. Base frequency is 1.8 GHz, with boost up to 2.4 GHz. L3 cache: 0 kB. L2 cache: 512K (per core). Built on 32 nm process technology. Socket: FS1. Thermal design power (TDP): 35 Watt. Memory support: DDR3. Passmark benchmark score: 1,597 points. Launch price was $50.

Processing Power

Both the Celeron G1620 and E2-3000M share an identical 2-core/2-thread configuration. Boost clocks reach 2.7 GHz on the Celeron G1620 versus 2.4 GHz on the E2-3000M — a 11.8% clock advantage for the Celeron G1620 (base: 2.7 GHz vs 1.8 GHz). The Celeron G1620 uses the Ivy Bridge (2012−2013) architecture (22 nm), while the E2-3000M uses Llano (2011−2012) (32 nm). In PassMark, the Celeron G1620 scores 1,586 against the E2-3000M's 1,597 — a 0.7% lead for the E2-3000M. L3 cache: 2 MB (total) on the Celeron G1620 vs 0 kB on the E2-3000M.

FeatureCeleron G1620E2-3000M
Cores / Threads
2 / 2
2 / 2
Boost Clock
2.7 GHz+13%
2.4 GHz
Base Clock
2.7 GHz+50%
1.8 GHz
L3 Cache
2 MB (total)
0 kB
L2 Cache
256 kB (per core)
512K (per core)+100%
Process
22 nm-31%
32 nm
Architecture
Ivy Bridge (2012−2013)
Llano (2011−2012)
PassMark
1,586
1,597
Geekbench 6 Single
441
Geekbench 6 Multi
760
🧠

Memory & Platform

The Celeron G1620 uses the LGA1155 socket (PCIe 3.0), while the E2-3000M uses FS1 (PCIe 2.0) — making them incompatible on the same motherboard.

FeatureCeleron G1620E2-3000M
Socket
LGA1155
FS1
PCIe Generation
PCIe 3.0+50%
PCIe 2.0
Max RAM Speed
DDR3-1333
Max RAM Capacity
32 GB
RAM Channels
2
ECC Support
Yes
PCIe Lanes
16
🔧

Advanced Features

Virtualization: VT-x, EPT (Celeron G1620) / not specified (E2-3000M). The Celeron G1620 includes integrated graphics (Intel HD Graphics (Ivy Bridge GT1)), while the E2-3000M requires a dedicated GPU. Primary use case: Celeron G1620 targets Desktop. Direct competitor: Celeron G1620 rivals Pentium G2030.

FeatureCeleron G1620E2-3000M
Integrated GPU
Yes
IGPU Model
Intel HD Graphics (Ivy Bridge GT1)
Unlocked
No
AVX-512
No
Virtualization
VT-x, EPT
Target Use
Desktop