Intel Atom P5752
Intel processor specifications and benchmark scores
At a Glance
IntelIntel Atom P5752 Specifications
Atom P5752 Core Configuration
Processing cores and threading
The Intel Atom P5752 features 20 physical cores and 20 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.
Atom P5752 Clock Speeds
Base and boost frequencies
Clock speed is a critical factor in Atom P5752 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 Atom P5752 by Intel can dynamically adjust its frequency based on workload and thermal headroom.
Intel's Atom P5752 Cache Hierarchy
L1, L2, L3 cache sizes
Cache memory is ultra-fast storage built directly into the Atom P5752 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 Atom P5752's cache configuration is optimized for both gaming performance and productivity workloads, minimizing data fetch delays during intensive computations.
Intel Architecture & Process
Manufacturing and design details
The Intel Atom P5752 is built on Intel's 10 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 Atom P5752 incorporate advanced branch prediction and out-of-order execution for optimal performance.
Power & Thermal
TDP and power specifications
The Intel Atom P5752 has a TDP (Thermal Design Power) of 75W, 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.
Intel BGA 2106 Platform & Socket
Compatibility information
The Atom P5752 uses the Intel BGA 2106 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.
Intel BGA 2106 Memory Support
RAM compatibility and speeds
Memory support specifications for the Atom P5752 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 Atom P5752 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.
Product Information
Release and pricing details
The Intel Atom P5752 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 Atom P5752 by Intel offers a specific balance of performance, features, and cost within Intel's product lineup.
About Intel Atom P5752
Intel Atom P5752 is a 20-thread server processor built on Intel’s 10 nm process, targeting the Snow Ridge platform with a 75 W TDP. It sits in the 50th percentile of all CPUs in the database, indicating a squarely mid-pack position, though its benchmark scores and nearest rivals are not populated in the data.
Benchmark Performance
The available benchmark data for the Intel Atom P5752 is sparse, with no recorded average benchmark score and no entries in the nearestRivals list. This means there are no exact percentage deltas to cite against competing processors. The processor’s 50th percentile ranking against all CPUs, however, provides a meaningful anchor: it places the P5752 exactly at the median of the database’s population, outperforming half of all listed processors while trailing the other half.
Because the average benchmark score is listed as zero, the data does not support any claims about absolute performance in multi-threaded or single-threaded workloads. The absence of nearest rivals further prevents any direct comparison of scores or deltaPct values. The 20 cores and 20 threads indicate a design focused on parallel throughput rather than high per-thread speed, consistent with its Atom (Tremont) generation architecture. The base clock of 2.20 GHz, with no boost clock listed, suggests a fixed or conservatively capped operating frequency, which typically favors predictable power consumption over burst performance.
Without benchmark scores, the percentile field remains the only quantitative performance indicator. A 50th percentile placement implies the P5752 is neither a leader nor a laggard in the database’s CPU hierarchy. For workloads that scale well across many threads, the 20-thread count is a structural advantage, but the data offers no confirmation of how effectively those threads translate into actual benchmark results. The lack of an average score also means the percentile could be influenced by the distribution of other CPUs in the database rather than the P5752’s own measured output.
Power and Thermals
The Intel Atom P5752 carries a thermal design power (TDP) of 75 watts. This figure places it in a moderate power class for a server/workstation processor, especially when considering its 20-core configuration. A 75 W TDP is well below the envelope of high-end server chips that often exceed 200 W, indicating that the P5752 is engineered for density and efficiency rather than maximum performance per socket.
The 2.20 GHz base clock, with no boost clock specified, suggests the processor operates within a narrow frequency range. This design choice typically simplifies thermal management, as the power draw remains relatively constant under load. The 10 nm process node from Intel contributes to this efficiency profile, as smaller geometries generally reduce leakage current and improve power density. The absence of a boost clock also implies that the cooling solution does not need to accommodate sudden, large thermal spikes; a capable air cooler or a modest server heatsink would likely suffice for the 75 W envelope.
The P5752’s market segment is Server/Workstation, where thermal design often prioritizes rack density and airflow optimization. A 75 W TDP allows for compact chassis designs and lower fan speeds, which can reduce acoustic noise in data center environments. The ECC memory support, while not directly tied to thermals, indicates a reliability-focused platform where sustained operation under load is expected. The data does not include specific cooling recommendations, so any statement about a particular cooler size or type would be speculative beyond the TDP class.
How It Compares
The nearestRivals array in the data is empty, so there are no rival processors with names, scores, or deltaPct values to analyze. This absence precludes any direct percentage-based comparison to competing models. The P5752’s 50th percentile ranking against all CPUs provides the only comparative context, indicating that it performs better than half of the processors in the database and worse than the other half.
Without rival data, the P5752’s position must be inferred from its specifications. The 20-core, 20-thread configuration with a 2.20 GHz base clock is notable for its thread count, which is higher than typical desktop processors but lower than flagship server parts. The dual-channel DDR4 memory support with 46.9 GB/s bandwidth and PCIe Gen 3 with 16 lanes positions it as an entry-level server processor. The lack of integrated graphics further distinguishes it from client CPUs, reinforcing its server-oriented role.
The data does not include any competitor names, so no claims about being ahead or behind specific models are possible. The empty nearestRivals list means there are no deltaPct values to cite, and the benchmark scores are zero across the board. This makes any qualitative comparison to rivals impossible without violating the constraint to use only the provided facts.
FAQ
Q: What is the launch MSRP of the Intel Atom P5752?
A: The launch MSRP is $855.
Q: How many cores and threads does the P5752 have?
A: It has 20 cores and 20 threads, meaning it does not support simultaneous multithreading (SMT).
Q: What memory type and bandwidth does the processor support?
A: It supports dual-channel DDR4 memory with a peak bandwidth of 46.9 GB/s, and it includes ECC memory support.
Q: Does the P5752 have integrated graphics?
A: No, the integrated graphics field is listed as "N/A," so the processor requires a discrete GPU for display output.
Q: What socket does the P5752 use?
A: It uses the Intel BGA 2106 socket, which is a ball-grid array package typically soldered to the motherboard.
Q: What is the production status and release date?
A: The production status is Active, and the release date is June 5, 2022.
Q: What PCIe version and lane count does the processor offer?
A: It provides PCIe Gen 3 with 16 lanes, available from the CPU only.
Single-Thread vs Multi-Thread Behavior
The Intel Atom P5752’s architecture reveals a clear bias toward multi-threaded throughput. With 20 cores and 20 threads, the processor is designed to handle many concurrent tasks, a hallmark of server workloads such as virtualization, database queries, and containerized services. The absence of hyperthreading means each core handles exactly one thread, which can reduce contention for execution resources but limits the total thread count relative to comparable processors with SMT.
The base clock of 2.20 GHz is modest by modern standards, suggesting that single-thread performance is not the primary focus. Without a boost clock, the processor does not dynamically ramp to higher frequencies for lightly threaded tasks, which would cap single-thread responsiveness. This is typical for Atom-branded parts, which prioritize power efficiency and core count over raw clock speed. The 64 KB L1 cache per core and 4.5 MB L2 cache per module are relatively small, further indicating that the design favors predictable, parallel execution over large per-core data working sets.
In real-world terms, the P5752 would likely excel in environments where many modestly demanding threads run simultaneously, such as network appliances, edge servers, or storage controllers. Conversely, workloads that depend on a single fast core — like legacy application servers or lightly threaded gaming — would not benefit from the P5752’s architecture. The 50th percentile ranking suggests it is competitive in general database terms, but the lack of a boost clock and SMT points to a processor that trades peak single-thread speed for steady multi-thread operation.
Platform and Compatibility
The Intel Atom P5752 is built for the Intel BGA 2106 socket, a soldered package that precludes user upgrades. This socket is part of the Snow Ridge platform, which targets the server and workstation market segment. The processor is based on the Atom (Tremont) generation, manufactured on Intel’s 10 nm process node. The production status is Active, and the release date is June 5, 2022.
Memory support includes dual-channel DDR4 with a peak bandwidth of 46.9 GB/s. The inclusion of ECC memory support is a critical feature for server reliability, as it allows the detection and correction of memory errors that could otherwise corrupt data. The memory bus is dual-channel, which is narrower than the quad-channel or octa-channel configurations found in higher-end server platforms, but it aligns with the P5752’s mid-range positioning.
PCIe support is Gen 3 with 16 lanes available from the CPU only. This lane count is sufficient for a single high-bandwidth device, such as a network interface card or a storage controller, but it limits expansion options compared to processors with more lanes. The lack of integrated graphics means the platform requires a discrete GPU for any display output, though this is rarely a concern in server deployments where headless operation is standard. The multiplier is locked, so the processor cannot be overclocked, reinforcing its role as a fixed-function server part.
The platform’s upgrade path is constrained by the BGA socket, as the processor is not replaceable without motherboard replacement. This design is common in embedded and edge server applications where long-term stability and fixed configurations are preferred over flexibility. The memory support is limited to DDR4, without any indication of DDR5 compatibility, which ties the platform to the previous memory generation.
Who Should Consider It
The Intel Atom P5752 is best suited for server and workstation workloads that prioritize thread count and power efficiency over single-core speed. The 20-core, 20-thread configuration with a 75 W TDP is particularly well matched to applications like network appliances, edge computing nodes, and virtualized environments where many moderate tasks run concurrently. The ECC memory support adds a layer of data integrity that is essential for file servers, database caching, and other reliability-sensitive roles.
For gaming, the P5752 is a poor fit. The 2.20 GHz base clock and lack of a boost clock will struggle with the single-threaded performance that most games require, and the absence of integrated graphics means a discrete GPU is mandatory. The 50th percentile ranking suggests it is not a top performer even in multi-threaded tasks, so gamers seeking high frame rates would find better options elsewhere in the database.
For content creation, the picture is mixed. Video encoding and 3D rendering software can leverage 20 threads effectively, but the modest clock speed and small caches may limit performance compared to processors with higher boost clocks. The dual-channel memory bandwidth of 46.9 GB/s is a bottleneck for memory-intensive tasks like large photo editing or complex simulations. The processor’s server segment designation suggests it is not optimized for interactive creative work.
For office productivity, the P5752 is overkill in thread count but underpowered in single-thread speed. Spreadsheet calculations, document processing, and web browsing are largely single-threaded and would run better on a processor with a higher clock speed. However, the 75 W TDP and server-grade reliability features make it suitable for small business servers that host email, file sharing, or lightweight database applications, where the 20 threads can handle multiple users simultaneously without thermal strain.
Detailed benchmark scores and charts for the Intel Atom P5752 are below.
Benchmark Scores
No benchmark data available for this CPU.
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