INTEL

Intel Celeron G4900

Intel processor specifications and benchmark scores

2
Cores
2
Threads
GHz Boost
54W
TDP
Integrated GPU ECC Memory

At a Glance

Intel
Cores / Threads 2C / 2T
Base Clock 3.1 GHz
L3 Cache 2 MB (shared)
TDP 54W
Architecture Coffee Lake
Socket Intel Socket 1151
nm
Process 14 nm
Released Apr 2018

Intel Celeron G4900 Specifications

Celeron G4900 Core Configuration

Processing cores and threading

The Intel Celeron G4900 features 2 physical cores and 2 threads, which directly impacts multi-threaded performance in CPU benchmarks. More cores allow the processor to handle parallel workloads efficiently, improving performance in video editing, 3D rendering, and multitasking scenarios. Thread count determines how many simultaneous tasks the CPU can process, with higher thread counts benefiting productivity applications and content creation workflows.

Cores
2
Threads
2
SMP CPUs
1

Celeron G4900 Clock Speeds

Base and boost frequencies

Clock speed is a critical factor in Celeron G4900 benchmark performance, measured in GHz. The base clock represents the guaranteed operating frequency, while the boost clock indicates maximum single-core performance under optimal conditions. Higher clock speeds translate to faster single-threaded performance, which is essential for gaming and applications that don't fully utilize multiple cores. The Celeron G4900 by Intel can dynamically adjust its frequency based on workload and thermal headroom.

Base Clock
3.1 GHz
Boost Clock
N/A
Multiplier
31x

Intel's Celeron G4900 Cache Hierarchy

L1, L2, L3 cache sizes

Cache memory is ultra-fast storage built directly into the Celeron G4900 processor die. L1 cache provides the fastest access for frequently used data, while L2 and L3 caches offer progressively larger storage with slightly higher latency. Larger cache sizes significantly improve CPU benchmark scores by reducing memory access times. The Celeron G4900's cache configuration is optimized for both gaming performance and productivity workloads, minimizing data fetch delays during intensive computations.

L1 Cache
64 KB (per core)
L2 Cache
256 KB (per core)
L3 Cache
2 MB (shared)

Coffee Lake Architecture & Process

Manufacturing and design details

The Intel Celeron G4900 is built on Intel's 14 nm manufacturing process, which determines power efficiency and thermal characteristics. Smaller process nodes allow for more transistors in the same space, enabling higher performance per watt. The architecture defines how the processor handles instructions and manages data flow, directly impacting benchmark results across different workload types. Modern CPU architectures like the one in Celeron G4900 incorporate advanced branch prediction and out-of-order execution for optimal performance.

Architecture
Coffee Lake
Codename
Coffee Lake
Process Node
14 nm
Foundry
Intel
Die Size
126 mm²
Generation
Celeron (Coffee Lake)

Coffee Lake Instruction Set Features

Supported CPU instructions and extensions

The Celeron G4900 by Intel supports various instruction set extensions that enable optimized performance for specific workloads. SIMD instructions like SSE and AVX accelerate multimedia, scientific computing, and AI workloads by processing multiple data points simultaneously. Features like AES-NI provide hardware-accelerated encryption, while AVX-512 (if supported) enables advanced vector processing for data centers and high-performance computing. These instruction sets are critical for software compatibility and performance in modern applications.

MMX
SSE
SSE2
SSE3
SSSE3
SSE4.1
SSE4.2
AVX
AVX2
FMA3
AES-NI
F16C
BMI1
BMI2
Intel 64
VT-x
VT-d

Power & Thermal

TDP and power specifications

The Intel Celeron G4900 has a TDP (Thermal Design Power) of 54W, indicating the cooling solution required for sustained operation. TDP affects both system power consumption and the type of cooler needed. Lower TDP processors are ideal for compact builds and laptops, while higher TDP chips typically offer better sustained performance in demanding CPU benchmarks. Understanding power requirements helps ensure your system can deliver consistent performance without thermal throttling.

TDP
54W
Tj Max
100°C

Intel Socket 1151 Platform & Socket

Compatibility information

The Celeron G4900 uses the Intel Socket 1151 socket, which determines motherboard compatibility. Choosing the right platform is essential for building a system around this processor. The socket type also influences available features like PCIe lanes, memory support, and upgrade paths. When comparing CPU benchmarks, ensure you're looking at processors compatible with your existing or planned motherboard to make informed purchasing decisions.

Socket
Intel Socket 1151
PCIe
Gen 3, 16 Lanes(CPU only)
Package
FC-LGA14C
DDR5

Intel Socket 1151 Memory Support

RAM compatibility and speeds

Memory support specifications for the Celeron G4900 define which RAM types and speeds are compatible. Faster memory can significantly improve CPU benchmark performance, especially in memory-intensive applications and gaming. The memory controller integrated into the Celeron G4900 determines maximum supported speeds and channels. Dual-channel or quad-channel memory configurations can double or quadruple memory bandwidth, providing noticeable performance gains in content creation and scientific workloads.

Memory Type
DDR4
Memory Bus
Dual-channel
Memory Bandwidth
38.4 GB/s
ECC Memory
Supported

Intel's Celeron G4900 Integrated Graphics

Built-in GPU specifications

The Intel Celeron G4900 includes integrated graphics, eliminating the need for a dedicated GPU in basic computing scenarios. Integrated graphics are ideal for office productivity, video playback, and light gaming. While not designed for demanding GPU benchmarks, the iGPU in the Celeron G4900 provides hardware video encoding and decoding capabilities. This makes the processor suitable for compact builds, HTPCs, and systems where power efficiency is prioritized over gaming performance.

iGPU
UHD Graphics 610
Graphics Model
UHD Graphics 610

Product Information

Release and pricing details

The Intel Celeron G4900 is manufactured by Intel and represents their commitment to delivering competitive CPU performance. Understanding the release date and pricing helps contextualize benchmark comparisons with other processors from the same generation. Launch pricing provides a baseline for evaluating value, though street prices often differ. Whether you're building a new system or upgrading, the Celeron G4900 by Intel offers a specific balance of performance, features, and cost within Intel's product lineup.

Manufacturer
Intel
Release Date
Apr 2018
Launch Price
$42
Market
Desktop
Status
End-of-life
Part Number
SR3W4

About Intel Celeron G4900

The Intel Celeron G4900 is a dual-core desktop processor built on the Coffee Lake architecture, with a base clock of 3.10 GHz and a 54W TDP. Benchmark data places it at the 17th percentile of all CPUs tracked, with an average benchmark score of 691. This end-of-life part, launched in April 2018 with a launch MSRP of $42, occupies the entry-level tier of Intel's desktop lineup, and its performance profile reflects that positioning.

How It Compares

The G4900’s average benchmark score of 691 exactly matches that of the Intel Atom x7211RE, which also scores 691. The delta is 0%, meaning the two processors deliver statistically identical overall performance. This is notable because the Atom is a low-power embedded part, while the Celeron is a mainstream desktop chip; the data shows they land in the same performance bracket.

Against the Intel Core m7-6Y75, the G4900 holds a 0.1% advantage in average score (691 vs. 690). That margin is negligible, placing the two within measurement noise of each other. The m7-6Y75 is a mobile-oriented part, but the benchmark results indicate the desktop Celeron does not meaningfully outpace it in aggregate throughput.

The AMD Phenom II X4 840T also sits 0.1% behind the G4900, with an average score of 690. Despite the Phenom having four physical cores, the G4900’s higher clock speed and modern architecture yield a score that is essentially tied. The data shows the Celeron competes on even footing with a much older quad-core design.

The only rival that edges out the G4900 is the Intel Xeon E5440, which scores 692, giving the G4900 a -0.1% delta. That difference is also negligible, meaning the G4900 trails this server-class part by a fraction of a percent. Overall, the G4900 sits in a tight cluster of processors with average scores between 690 and 692, none of which offer a decisive performance gap.

Power and Thermals

The G4900 has a TDP of 54W, which is modest for a desktop processor. Built on Intel’s 14 nm process node, the chip’s thermal design is well within the reach of a basic air cooler; no exotic cooling solution is required. The die size is 126 mm², and the processor includes integrated UHD Graphics 610, which adds to the thermal envelope but remains manageable within the 54W specification. The low TDP also implies that the CPU can be used in compact systems where cooling is constrained. ECC memory support is present, a feature often associated with workstation or server platforms, but here it is included in a low-power desktop part. The combination of 54W TDP and 14 nm manufacturing suggests efficient operation, though the absolute performance is limited by the dual-core design.

Benchmark Performance

In Cinebench R15, the G4900 scores 202 points in the multi-core test. Moving to Cinebench R20, the multi-core score rises to 843, while the single-core score is 118. In the more recent Cinebench R23, the multi-core result is 2009 and the single-core result is 283. These numbers illustrate a clear pattern: the multi-core scores are several times higher than the single-core scores, which is expected given the two physical cores and two threads. However, the absolute values are low compared to mainstream desktop parts. The average benchmark score of 691, which aggregates multiple tests, places the G4900 at the 17th percentile of all CPUs. This means it outperforms only a small fraction of the database, confirming its entry-level status.

When compared to its nearest rivals, the G4900’s average score is effectively tied with the Atom x7211RE (691 vs. 691), the Core m7-6Y75 (691 vs. 690), and the Phenom II X4 840T (691 vs. 690). It trails the Xeon E5440 by just one point (691 vs. 692). These deltas are all within 0.1%, indicating that the G4900’s performance is indistinguishable from these other low-scoring processors. The benchmark data does not reveal any significant advantage or disadvantage for the G4900 within its immediate competitive set.

FAQ

Q: What socket does the Intel Celeron G4900 use?

A: It uses the Intel Socket 1151.

Q: Does the G4900 support ECC memory?

A: Yes, ECC memory support is listed in its specifications.

Q: What is the base clock speed of the G4900?

A: The base clock is 3.10 GHz.

Q: Is the multiplier unlocked?

A: No, the multiplier is locked.

Q: What memory bandwidth does the platform provide?

A: The dual-channel DDR4 memory bus offers a bandwidth of 38.4 GB/s.

Q: What integrated graphics does the G4900 include?

A: It includes UHD Graphics 610.

Platform and Compatibility

The G4900 is designed for the Intel Socket 1151, which is a mainstream desktop socket. It supports DDR4 memory in a dual-channel configuration, with a memory bandwidth of 38.4 GB/s. The CPU provides 16 PCIe Gen 3 lanes, which is typical for a desktop processor of this class. ECC memory support is available, a feature that may appeal to users who require data integrity in low-cost servers or workstations. The integrated UHD Graphics 610 allows for basic display output without a discrete graphics card. The processor is end-of-life, meaning it is no longer in production, but it remains compatible with Socket 1151 motherboards that support Coffee Lake CPUs. The part number is SR3W4, and it was released in April 2018. Since it is end-of-life, there is no forward upgrade path within the same platform beyond what the motherboard supports, but the socket itself is shared with other Coffee Lake processors.

Single-Thread vs Multi-Thread Behavior

The G4900’s benchmark scores reveal a large gap between single-thread and multi-thread performance. In Cinebench R23, the single-core score is 283, while the multi-core score is 2009. Similarly, in Cinebench R20, the single-core score is 118 and the multi-core score is 843. The multi-core results are roughly seven times higher than the single-core results, which reflects the presence of two physical cores. However, because the processor only has two threads, the scaling is limited compared to quad-core or higher parts. The single-thread performance is particularly low; a score of 283 in R23 places it in the bottom tier of the database. This means that workloads that rely heavily on single-threaded performance, such as many older games or lightly threaded applications, will see minimal performance. Conversely, workloads that can utilize both cores, such as basic video encoding or compilation tasks, will benefit from the multi-thread scores, though the absolute output remains modest. The data indicates that the G4900 is best suited for tasks that are not CPU-intensive or that can effectively use two threads.

Who Should Consider It

The G4900 is appropriate for basic office productivity, web browsing, and light document editing. Its low single-thread and multi-thread scores, combined with the integrated UHD Graphics 610, make it a functional choice for everyday computing where performance demands are minimal. The 54W TDP and modest cooling requirements allow for compact and quiet system builds. It is not well-suited for demanding creation workloads such as 4K video editing, 3D rendering, or modern gaming, as the benchmark results place it in the 17th percentile of all CPUs. Users who require occasional multi-threaded performance for simple tasks, such as spreadsheet calculations or lightweight batch processing, will find the G4900 adequate. However, for any workload that benefits from higher core counts or faster single-thread execution, the data clearly shows that other processors in the database—even those within 0.1% of its average score—offer no meaningful advantage, meaning the G4900 sits at the very bottom of the performance spectrum.

Detailed benchmark scores and charts for the Intel Celeron G4900 are below.

Benchmark Scores

cinebench_cinebench_r15_multicoreSource

Cinebench R15 multi-core renders a complex 3D scene using all CPU threads simultaneously. This test reveals how Intel Celeron G4900 performs in parallel rendering workloads like video production and 3D animation. The R15 version remains useful for comparing against older hardware benchmarks. Higher scores directly correlate with faster render times in Cinema 4D and similar 3D applications.

cinebench_cinebench_r15_multicore #1628 of 1967
203
1%
Max: 14,978

cinebench_cinebench_r20_multicoreSource

Cinebench R20 multi-core uses a scene requiring 4x more computational power than R15. This test better reflects modern CPU capabilities for professional rendering on Intel Celeron G4900. The more demanding workload provides better differentiation between current-generation processors.

cinebench_cinebench_r20_multicore #1447 of 1786
849
1%
Max: 62,412

cinebench_cinebench_r20_singlecoreSource

Cinebench R20 single-core tests one thread against a more demanding scene than R15. This reveals the true single-thread rendering capability of Intel Celeron G4900. The increased complexity provides more accurate performance differentiation between modern CPUs.

cinebench_cinebench_r20_singlecore #1444 of 1776
119
1%
Max: 8,811

cinebench_cinebench_r23_multicoreSource

Cinebench R23 multi-core is the current standard for CPU rendering benchmarks with a 10-minute minimum runtime. This extended test reveals sustained performance of Intel Celeron G4900 after thermal limits kick in. The longer duration exposes cooling limitations that shorter benchmarks miss.

cinebench_cinebench_r23_multicore #1592 of 1938
2,023
1%
Max: 148,601
Compare with other CPUs

cinebench_cinebench_r23_singlecoreSource

Cinebench R23 single-core measures sustained single-thread performance over 10 minutes. This reveals how Intel Celeron G4900 maintains boost clocks under continuous load. The extended runtime shows whether thermal throttling affects single-core performance.

cinebench_cinebench_r23_singlecore #1584 of 1923
285
1%
Max: 20,979

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