AMD

AMD Ryzen 7 PRO 5755G

AMD processor specifications and benchmark scores

8
Cores
16
Threads
4.6
GHz Boost
65W
TDP
Integrated GPU

At a Glance

AMD
Cores / Threads 8C / 16T
Boost Clock 4.6 GHz
Base Clock 3.8 GHz
L3 Cache 16 MB
TDP 65W
Architecture Zen 3
Socket AMD Socket AM4
nm
Process 7 nm
Released Sep 2024

AMD Ryzen 7 PRO 5755G Specifications

Ryzen 7 PRO 5755G Core Configuration

Processing cores and threading

The AMD Ryzen 7 PRO 5755G features 8 physical cores and 16 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
8
Threads
16
SMP CPUs
1

7 PRO 5755G Clock Speeds

Base and boost frequencies

Clock speed is a critical factor in Ryzen 7 PRO 5755G 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 Ryzen 7 PRO 5755G by AMD can dynamically adjust its frequency based on workload and thermal headroom.

Base Clock
3.8 GHz
Boost Clock
4.6 GHz
Multiplier
38x

AMD's Ryzen 7 PRO 5755G Cache Hierarchy

L1, L2, L3 cache sizes

Cache memory is ultra-fast storage built directly into the 7 PRO 5755G 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 Ryzen 7 PRO 5755G'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
512 KB (per core)
L3 Cache
16 MB

Zen 3 Architecture & Process

Manufacturing and design details

The AMD Ryzen 7 PRO 5755G is built on AMD's 7 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 7 PRO 5755G incorporate advanced branch prediction and out-of-order execution for optimal performance.

Architecture
Zen 3
Codename
Cezanne
Process Node
7 nm
Foundry
TSMC
Transistors
10,700 million
Die Size
180 mm²
Generation
Ryzen 7 (Zen 3 (Cezanne))

Zen 3 Instruction Set Features

Supported CPU instructions and extensions

The Ryzen 7 PRO 5755G by AMD 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
SSE4A
SSE4.1
SSE4.2
AES
AVX
AVX2
BMI1
BMI2
SHA
F16C
FMA3
AMD64
AMD-V
SMAP
SMEP
SMT
Precision Boost 2
XFR 2

7 PRO 5755G Power & Thermal

TDP and power specifications

The AMD Ryzen 7 PRO 5755G has a TDP (Thermal Design Power) of 65W, 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
65W
PPT
88 W

AMD Socket AM4 Platform & Socket

Compatibility information

The Ryzen 7 PRO 5755G uses the AMD Socket AM4 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
AMD Socket AM4
PCIe
Gen 3, 16 Lanes(CPU only)
Package
µOPGA-1331
DDR5

AMD Socket AM4 Memory Support

RAM compatibility and speeds

Memory support specifications for the 7 PRO 5755G 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 Ryzen 7 PRO 5755G 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
51.2 GB/s

AMD's Ryzen 7 PRO 5755G Integrated Graphics

Built-in GPU specifications

The AMD Ryzen 7 PRO 5755G 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 7 PRO 5755G 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
Radeon Vega 8
Graphics Model
Radeon Vega 8

Ryzen 7 PRO 5755G Product Information

Release and pricing details

The AMD Ryzen 7 PRO 5755G is manufactured by AMD 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 Ryzen 7 PRO 5755G by AMD offers a specific balance of performance, features, and cost within AMD's product lineup.

Manufacturer
AMD
Release Date
Sep 2024
Market
Desktop
Status
Active
Part Number
100-000001748

Ryzen 7 PRO 5755G Benchmark Scores

passmark_data_compressionSource

Data compression measures how fast AMD Ryzen 7 PRO 5755G can compress and decompress files. This is important for archiving, backup software, and file transfer applications. Higher scores mean faster ZIP, RAR, and backup operations.

passmark_data_compression #364 of 689
295,730
5%
Max: 5,679,990
Compare with other CPUs

Top 5 Performers

#1 AMD EPYC 9965
5,679,990
#2 AMD EPYC 9845
4,680,013
#3 AMD EPYC 9755
4,517,407
#4 AMD EPYC 9745
3,929,890

passmark_data_encryptionSource

Data encryption tests how fast AMD Ryzen 7 PRO 5755G can encrypt information using AES and other algorithms. This is critical for security applications, VPNs, and secure communications.

passmark_data_encryption #299 of 689
19,450
6%
Max: 348,449
Compare with other CPUs

Top 5 Performers

#1 AMD EPYC 9965
348,449
#2 AMD EPYC 9845
296,808
#3 AMD EPYC 9755
284,927
#4 AMD EPYC 9754
231,891
#5 AMD EPYC 9745
229,447

passmark_extended_instructionsSource

Extended instructions tests AMD Ryzen 7 PRO 5755G performance using SSE and AVX instruction sets. These specialized instructions accelerate multimedia, scientific, and AI workloads. Video encoding and image processing heavily utilize SIMD capabilities.

passmark_extended_instructions #351 of 689
20,487
5%
Max: 383,298
Compare with other CPUs

passmark_find_prime_numbersSource

Find prime numbers tests AMD Ryzen 7 PRO 5755G ability to identify primes through intensive calculations. This is a pure computational benchmark that stresses CPU arithmetic units without memory bottlenecks. The test reveals raw mathematical processing capability. Higher scores indicate superior arithmetic throughput independent of memory subsystem performance.

passmark_find_prime_numbers #505 of 689
58
2%
Max: 2,422

passmark_floating_point_mathSource

Floating point math measures how AMD Ryzen 7 PRO 5755G handles decimal calculations critical for scientific computing and 3D rendering. This affects performance in CAD and physics simulations. Game physics engines also rely heavily on floating point operations.

passmark_floating_point_math #397 of 689
50,778
4%
Max: 1,153,453
Compare with other CPUs

Top 5 Performers

#1 AMD EPYC 9965
1,153,453
#2 AMD EPYC 9845
978,377
#3 AMD EPYC 9755
922,900
#4 AMD EPYC 9745
761,219

passmark_integer_mathSource

Integer math tests how fast AMD Ryzen 7 PRO 5755G processes whole number calculations essential for database operations and compression algorithms. This is fundamental to general computing performance.

passmark_integer_math #315 of 689
90,270
5%
Max: 1,926,069
Compare with other CPUs

Top 5 Performers

#1 AMD EPYC 9965
1,926,069
#2 AMD EPYC 9845
1,687,531
#3 AMD EPYC 9755
1,549,946
#4 AMD EPYC 9655P
1,225,251
#5 AMD EPYC 9745
1,224,315

passmark_multithreadSource

PassMark multi-thread tests AMD Ryzen 7 PRO 5755G across integer math, floating point, compression, and encryption using all cores. This provides an overall multi-threaded CPU performance score.

passmark_multithread #381 of 689
23,858
14%
Max: 171,200
Compare with other CPUs

passmark_physicsSource

Physics tests how AMD Ryzen 7 PRO 5755G handles physics simulations used in games and engineering software. This measures performance in calculating object interactions and movements. Games with complex physics benefit from higher scores.

passmark_physics #488 of 689
1,022
4%
Max: 27,806
Compare with other CPUs

passmark_random_string_sortingSource

Random string sorting measures how fast AMD Ryzen 7 PRO 5755G can organize text data. This is important for database operations, search indexing, and data processing applications. Applications that process large amounts of text benefit from higher scores.

passmark_random_string_sorting #372 of 689
32,771
5%
Max: 633,030
Compare with other CPUs

Top 5 Performers

#1 AMD EPYC 9965
633,030
#2 AMD EPYC 9755
571,185
#3 AMD EPYC 9845
538,060
#4 AMD EPYC 9745
468,975
#5 AMD EPYC 9655P
451,824

passmark_single_threadSource

PassMark single-thread measures per-core performance of AMD Ryzen 7 PRO 5755G across various computational tasks. This score is critical for gaming and single-threaded applications. Higher scores mean better system responsiveness in everyday use. Many legacy applications and games still depend heavily on single-thread speed.

passmark_single_thread #420 of 689
3,366
66%
Max: 5,087

passmark_singlethreadSource

PassMark single-thread measures per-core performance of AMD Ryzen 7 PRO 5755G across various computational tasks. This score is critical for gaming and single-threaded applications.

passmark_singlethread #420 of 689
3,366
66%
Max: 5,087

About AMD Ryzen 7 PRO 5755G

The AMD Ryzen 7 PRO 5755G is a desktop processor built on the Zen 3 architecture, utilizing the Cezanne codename on the AMD Socket AM4 platform. It is manufactured on TSMC’s 7 nm process, integrating 8 cores and 16 threads with a base clock of 3.80 GHz and a boost clock of 4.60 GHz. This processor sits in the desktop market segment with an active production status, and its benchmark data indicates a 50th percentile ranking among all CPUs, signifying a mid-pack position in overall performance distribution.

Benchmark Performance

The Ryzen 7 PRO 5755G presents a balanced profile, landing at the 50th percentile across all CPUs tested. This percentile placement is a direct reflection of its 8-core, 16-thread configuration, which offers a substantial parallel workload capability but does not push into the upper echelons of high-end desktop performance where higher core counts or specialized features dominate. The processor’s average benchmark score is recorded as 0, which, combined with an empty nearestRivals array, means there are no direct comparative percentage deltas available from the data. However, the architectural fundamentals provide interpretive context: with a base clock of 3.80 GHz and a boost clock of 4.60 GHz, the processor demonstrates a 21.05% frequency uplift from base to boost, which is a standard operating range for a mid-generation part.

Analyzing the cache hierarchy, the processor features 64 KB of L1 cache per core, 512 KB of L2 cache per core, and a shared 16 MB L3 cache. This yields a total L2 cache of 4 MB across all cores. The 16 MB L3 cache is a defining characteristic of the Cezanne die, and it directly impacts multi-threaded workloads by reducing memory latency for frequently accessed data. The absence of 3D V-Cache means the processor relies entirely on this standard cache topology. In single-threaded scenarios, the 4.60 GHz boost clock suggests strong responsiveness, but without rival scores, the data cannot confirm a specific lead. For multi-threaded tasks, the 8-core/16-thread count provides a baseline expectation of scalability, though the 50th percentile rank implies that a significant portion of the CPU population offers similar or superior throughput.

The memory subsystem uses dual-channel DDR4 with a theoretical bandwidth of 51.2 GB/s. This bandwidth figure is a hard ceiling for data transfer to and from the CPU, and it is notably lower than what newer DDR5 platforms offer, but it remains adequate for the Zen 3 architecture’s memory controller design. The processor does not support ECC memory, which narrows its appeal for certain error-sensitive workstation environments. The integrated Radeon Vega 8 graphics add a computational element that can offload basic display tasks, but the iGPU’s performance is not quantified in the benchmarks provided, so its impact on overall system scores is not directly measurable here.

Who Should Consider It

The Ryzen 7 PRO 5755G is suited for workloads that leverage its 16 threads without requiring extreme core counts. For office productivity, the 8-core configuration handles typical multitasking—spreadsheets, document editing, and numerous browser tabs—with ample headroom, as the 4.60 GHz boost clock ensures snappy single-threaded interactions. The processor’s 50th percentile standing indicates it will not be a bottleneck for such standard tasks, which rarely scale beyond 4-6 threads.

For content creation, the processor’s 16 threads are a tangible asset in video editing timelines or 3D rendering scenes that utilize multi-threading. The 16 MB L3 cache helps keep working sets local, which is beneficial for applications that repeatedly access similar data blocks. However, the lack of ECC support and the dual-channel DDR4 memory bandwidth of 51.2 GB/s may limit performance in large dataset manipulation where memory bandwidth is the primary constraint. The integrated Radeon Vega 8 graphics provide a fallback for GPU-accelerated tasks, but the data does not specify its compute capability, so it should be viewed as a supplementary feature rather than a primary rendering engine.

Gaming is a mixed scenario. The 4.60 GHz boost clock is favorable for game logic and physics, which often depend on single-core speed. Yet, the 50th percentile rank suggests that the processor is not at the top of gaming performance charts, where higher-clocked or more cache-rich parts might excel. The 65 W TDP class indicates a moderate power envelope, meaning it can fit into compact desktop builds without exotic cooling, but the benchmark data does not provide frame-rate metrics to confirm gaming viability at specific settings.

Power and Thermals

The processor has a TDP of 65 W, which defines its thermal design power for cooling solutions. This TDP class is considered mainstream for desktop CPUs, implying that a standard air cooler with a capable heat sink and fan is sufficient to maintain operational temperatures under sustained loads. The 7 nm process node from TSMC contributes to this efficiency, as smaller geometries generally reduce leakage current and improve power density management. The die size is 180 mm², housing 10,700 million transistors, which is a dense but manageable layout for the 65 W envelope.

Given the 65 W TDP, the cooling tier required is moderate. A low-profile cooler or a compact tower cooler can handle the heat output, but the data does not specify maximum temperature limits or power draw under boost conditions. The base clock of 3.80 GHz and boost clock of 4.60 GHz suggest a dynamic power range, where sustained all-core boosts may push power consumption above the TDP, but the absence of a measured power figure precludes a precise estimate. The processor is not multiplier-unlocked, which means overclocking headroom is limited, and users must rely on the stock boost algorithm to manage power and thermals. For small form factor systems, the 65 W TDP is a favorable attribute, as it reduces the thermal burden on the chassis and allows for quieter fan profiles.

How It Compares

The nearestRivals array is empty, so there are no direct rival comparisons with scores or deltaPct values to cite. This absence means the processor cannot be positioned against specific competitors such as Intel Core i5 or other Ryzen parts based on quantitative deltas. However, its architectural traits allow for a qualitative comparison. Against a hypothetical 6-core rival, the 5755G’s 8 cores would provide a 33.33% core-count advantage, which typically translates to better multi-threaded throughput, but the rival’s clock speeds could offset this in single-threaded tasks. Against a higher-clocked 8-core part with a similar cache size, the 5755G would be competitive in multi-threaded workloads but may lag in single-threaded responsiveness if the rival’s boost clock exceeds 4.60 GHz.

The 16 MB L3 cache is a middle-ground figure; some rivals might offer 32 MB or more, which would favor them in cache-sensitive applications like database queries or complex simulations. The dual-channel DDR4 support is a common denominator, but rivals on newer platforms with DDR5 could offer higher memory bandwidth, though the 5755G’s 51.2 GB/s is sufficient for its core count. The integrated Radeon Vega 8 graphics give it an edge over rivals without iGPUs in entry-level systems, but discrete GPU setups would negate this advantage. In the absence of score data, the processor’s position is best described as a dependable mid-tier option that does not lead any specific metric but offers balanced performance across the board.

FAQ

Q: What is the core and thread count of the AMD Ryzen 7 PRO 5755G?

A: The processor has 8 cores and 16 threads, based on the Zen 3 architecture.

Q: What is the boost clock speed, and what does it imply for single-threaded performance?

A: The boost clock is 4.60 GHz, which indicates the maximum frequency for single-core operations, suggesting strong responsiveness in lightly-threaded tasks.

Q: Does this processor support ECC memory?

A: No, ECC memory is not supported, which may be a consideration for error-sensitive workstation builds.

Q: What is the TDP, and what cooling solution is implied?

A: The TDP is 65 W, implying that a standard air cooler is adequate for thermal management under typical loads.

Q: What integrated graphics does the processor include?

A: It includes Radeon Vega 8 integrated graphics, which can handle basic display output without a discrete GPU.

Q: What is the memory type and bandwidth?

A: It supports dual-channel DDR4 memory with a theoretical bandwidth of 51.2 GB/s.

Q: Is the processor multiplier unlocked for overclocking?

A: No, the multiplier is locked, so overclocking is not supported via the standard multiplier adjustment.

The Intel Equivalent of Ryzen 7 PRO 5755G

Looking for a similar processor from Intel? The Intel Core i7-14701E offers comparable performance and features in the Intel lineup.

Intel Core i7-14701E

Intel • 8 Cores

View Specs Compare

Popular AMD Ryzen 7 PRO 5755G Comparisons

See how the Ryzen 7 PRO 5755G stacks up against similar processors from the same generation and competing brands.

Compare Ryzen 7 PRO 5755G with Other CPUs

Select another CPU to compare specifications and benchmarks side-by-side.

Browse CPUs