SYSTEM ANALYZER

Rate My PC: Intel Core i7-13700K + Intel Arc A770

Get a comprehensive performance analysis of your gaming rig with detailed benchmarks, bottleneck detection, and upgrade recommendations

96 / 100
ULTIMATE READY

Apex Performer

Top 4% of systems. Capable of 4K Ultra gaming and advanced rendering.

4K 60+ FPSVR ReadyRay Tracing

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
94%
VS
GPU
97%
PROCESSOR

Intel Core i7-13700K

46,881 Benchmark Score
Top 6% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc A770

68,809 Benchmark Score
Top 3% Market Ranking
View Full Specs →

Market Position

How your build compares to others
Budget
0-30
Mid-Range
30-60
High-End
60-85
Enthusiast
85-100
Your Build

Game Performance Benchmarks

Real-world 4K FPS in popular titles
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Performance Insights

Tips to maximize your system

Optimal Performance

Your system is in the top tier. You can run any modern game at maximum settings.

4K Gaming Ready

Consider a 4K 144Hz monitor to fully utilize your hardware capabilities.

Compatible Games See what you can play Compare CPUs Find upgrades Compare GPUs Find upgrades

Performance Tiers Explained

90-100

Ultimate

4K Ultra gaming, VR ready, ray tracing enabled, professional workloads

4K 60+ FPS VR Ready
70-89

High-End

1440p Ultra or 4K High settings, excellent for modern AAA titles

1440p Ultra 4K High
50-69

Mid-Range

1080p Ultra or 1440p Medium, great value for most gamers

1080p Ultra 1440p Med
30-49

Entry Level

1080p Medium settings, suitable for eSports and older titles

1080p Med eSports
0-29

Legacy

Basic gaming, older titles, consider upgrading for modern games

720p-1080p Low Older Games

# Intel Core i7-13700K + Intel Arc A770

This desktop pairing combines Intel's 16-core Raptor Lake flagship mainstream processor with the company's top-tier Alchemist discrete GPU, placing the combined system at the 90th percentile overall. The CPU alone ranks in the 89th percentile among all processors, while the GPU sits in the 90th percentile among all graphics cards, indicating a balanced high-end configuration. No measured frame-rate data exists for this exact combination, so all FPS figures presented in this analysis are estimates derived from the individual benchmark scores of each component.

CPU Analysis

The Intel Core i7-13700K is built on the Raptor Lake architecture using Intel's 10 nm process node, with a die size of 257 mm². It houses 16 cores and 24 threads, combining performance and efficiency cores in a hybrid design. The base clock runs at 3.40 GHz with a boost capability reaching 5.40 GHz, and the multiplier is unlocked for enthusiast overclocking. The processor carries a 125 W TDP and integrates UHD Graphics 770, though this build pairs it with a discrete GPU.

Cache topology consists of 80 KB L1 per core, 2 MB L2 per core, and 30 MB of shared L3 cache. This substantial cache hierarchy supports the processor's strong multi-threaded throughput. In 3DMark testing, the CPU scores 12,412 at maximum threads, 10,717 at 16 threads, 8,193 at 8 threads, 4,469 at 4 threads, and 2,262 at 2 threads. Single-thread performance registers at 1,136 in 3DMark, while Geekbench shows 2,529 single-core and 19,429 multi-core results.

Cinebench scores further illustrate the processor's capabilities. The R23 multi-core test yields 30,745, while single-core reaches 2,116. R20 shows 16,292 multi-core and 2,299 single-core, and R15 produces 4,507.5 multi-core with 303 single-core. These results place the i7-13700K within 0.2% of the AMD Ryzen 9 5900's average score of 46,971, and 0.3% behind the AMD Ryzen AI 9 HX PRO 375 at 47,022. It edges ahead of the AMD Ryzen 9 7845HX and Intel Xeon w3-2535 by 0.5%, both averaging 46,654 and 46,653 respectively.

PassMark workloads reveal strong integer and floating-point performance. Integer math scores 154,446, floating-point math reaches 114,867, and extended instructions hit 36,625. Data encryption processes at 33,249, while compression handles 595,292. Random string sorting completes at 62,670, and prime number finding scores 191. The overall PassMark multi-thread score is 45,887, with single-thread at 4,333. Physics simulation scores 2,716.

For real workloads, the 30,745 Cinebench R23 multi-core score indicates strong rendering capability for video editing and 3D applications. The 2,116 single-core score ensures responsive application behavior in everyday tasks. The processor's 89th percentile ranking among all CPUs confirms its position as a high-end desktop part capable of handling demanding productivity workloads without bottlenecking the paired GPU.

Upgrade Path and Platform

The i7-13700K uses Intel Socket 1700, supporting both DDR4 and DDR5 memory through a dual-channel memory bus. ECC memory support is included, which broadens the platform's appeal for workstation use. PCIe connectivity consists of Gen 5 with 20 lanes from the CPU, providing ample bandwidth for modern storage and expansion cards.

The Intel Arc A770 connects via PCIe 4.0 x16 and carries a 225 W TDP, with the manufacturer suggesting a 550 W power supply for the GPU alone. Combined with the CPU's 125 W TDP, the system's total power draw remains within the range of mainstream high-performance desktop power supplies. The GPU requires both a 6-pin and 8-pin power connector, so the chosen PSU must provide these connections.

Given the LGA 1700 socket, users looking to upgrade the CPU within the same platform have limited options beyond the 13th generation lineup, as the socket is not forward-compatible with newer Intel platforms. The more practical upgrade path involves the GPU, where the Arc A770's end-of-life production status suggests future replacement with Intel's Battlemage successor or competing offerings. The 16 GB VRAM capacity provides headroom for resolution scaling, making GPU replacement less urgent than it might be with smaller memory buffers.

Memory flexibility allows builders to choose between cost-effective DDR4 or higher-performance DDR5, depending on motherboard selection and budget constraints. The dual-channel configuration supports up to the memory bandwidth available on either standard, though the FACT PACK does not specify maximum frequencies. The CPU's integrated graphics also serve as a fallback display output if the discrete GPU is removed or fails.

Benchmark Performance

The Intel Core i7-13700K achieves an average benchmark score of 46,881, placing it in the 89th percentile among all CPUs. The Intel Arc A770 averages 68,809 in GPU benchmarks, ranking in the 90th percentile among all graphics cards. Together, this pairing reaches the 90th combined percentile.

The CPU's nearest rivals include the AMD Ryzen 9 5900 at 46,971 average score (0.2% ahead), the AMD Ryzen AI 9 HX PRO 375 at 47,022 (0.3% ahead), the AMD Ryzen 9 7845HX at 46,654 (0.5% behind), and the Intel Xeon w3-2535 at 46,653 (0.5% behind). This clustering shows the i7-13700K sits squarely in a competitive performance tier where differences between top parts are minimal.

The GPU's nearest rivals are the NVIDIA CMP 90HX at 69,000 average score (0.3% ahead), the AMD Radeon Instinct MI25 at 68,562 (0.4% behind), the AMD Radeon Pro WX 8200 at 69,870 (1.5% ahead), and the NVIDIA Quadro P6000 at 69,986 (1.7% ahead). The Arc A770's 90th percentile ranking places it among capable high-end cards, though it trails the top professional workstation GPUs by small margins.

In 3DMark Steel Nomad DX12, the GPU scores 2,969. Geekbench OpenCL reaches 109,175, while Vulkan performance hits 94,284. These figures indicate solid DirectX 12 and compute performance. The combined CPU and GPU picture shows a system capable of high-refresh gaming at 1440p and entry-level 4K, with strong productivity throughput for content creation tasks.

Balance and Bottleneck

The CPU's 89th percentile and GPU's 90th percentile rankings suggest a well-matched pairing where neither component dramatically outclasses the other. In CPU-bound workloads such as physics simulation, data compression, and encryption, the i7-13700K's multi-threaded scores (45,887 PassMark multi-thread, 595,292 compression, 33,249 encryption) provide ample headroom. In GPU-bound tasks like 3D rendering at high resolutions, the Arc A770's 19.66 TFLOPS FP32 throughput and 512.0 GB/s memory bandwidth carry the load.

At lower resolutions and high frame rates, the CPU's single-thread performance (1,136 in 3DMark single-thread, 2,116 in Cinebench R23 single-core) becomes more critical. The 5.40 GHz boost clock supports high FPS in esports titles, where frame rates often exceed what the GPU can render at higher quality settings. Conversely, at 4K resolution with ultra settings, the GPU's 90th percentile ranking becomes the limiting factor, though the 16 GB VRAM prevents memory capacity from being the constraint.

The lack of measured FPS data for this combination means bottleneck analysis relies on percentile alignment. The 1-point difference between CPU and GPU percentiles (89 vs 90) indicates minimal imbalance. The CPU's nearest rivals all score within 0.5% of its average, while the GPU's rivals span a 1.7% range, showing the CPU has slightly more competitive pressure from above while the GPU has more variance below.

For streaming workloads, the CPU's 24 threads handle encoding and game processing simultaneously, while the GPU's Xe-HPG architecture with 32 RT cores supports hardware-accelerated ray tracing. Video editing benefits from the CPU's multi-core Cinebench scores and the GPU's compute performance in OpenCL. The balanced nature of this pairing means neither component will consistently bottleneck the other across varied workloads.

FAQ

Q: How does the Core i7-13700K compare to its closest rival, the AMD Ryzen 9 5900?

A: The i7-13700K averages 46,881 in benchmarks, sitting just 0.2% behind the Ryzen 9 5900's 46,971 average score. The difference is negligible in real-world terms.

Q: What is the combined performance tier of this CPU and GPU pairing?

A: The system reaches the 90th combined percentile, with the CPU at the 89th percentile among all CPUs and the GPU at the 90th percentile among all GPUs.

Q: Does the Intel Arc A770 support hardware ray tracing?

A: Yes, the GPU includes 32 dedicated ray tracing cores as part of its Xe-HPG architecture, and it supports DirectX 12 Ultimate (12_2).

Q: What memory types does the i7-13700K support?

A: The processor supports both DDR4 and DDR5 memory in a dual-channel configuration, and it also supports ECC memory.

Q: How much VRAM does the Arc A770 have and what is its memory bandwidth?

A: The GPU features 16 GB of GDDR6 memory on a 256-bit bus, delivering 512.0 GB/s of bandwidth.

Q: What power supply is recommended for the Arc A770?

A: The manufacturer suggests a 550 W power supply for the GPU, which has a 225 W TDP and requires both a 6-pin and 8-pin power connector.

Q: Is the i7-13700K overclockable?

A: Yes, the multiplier is unlocked, allowing overclocking beyond the 5.40 GHz boost clock, though the 125 W TDP provides the baseline power envelope.

Usage Scenarios

High-refresh gaming: The CPU's 5.40 GHz boost clock and 1,136 3DMark single-thread score support high frame rates in competitive titles, while the GPU's 19.66 TFLOPS FP32 throughput and 90th percentile ranking handle demanding graphics settings. The 16 GB VRAM allows texture-heavy games to run at high resolutions without memory pressure.

Streaming: The CPU's 24 threads and 30 MB L3 cache manage simultaneous game rendering and encoding workloads. PassMark multi-thread score of 45,887 indicates sufficient headroom for software encoding, while the GPU's Xe-HPG architecture with 32 RT cores can offload ray tracing effects.

Video editing: Cinebench R23 multi-core score of 30,745 provides strong export performance, while the GPU's OpenCL score of 109,175 accelerates effects and rendering. The 16 GB VRAM handles large timelines and high-resolution previews.

3D rendering: The CPU's 12,412 3DMark max-thread score and 30,745 Cinebench R23 multi-core result drive CPU-based renders, while the GPU's 2,969 Steel Nomad DX12 score supports GPU-accelerated renderers. The 512.0 GB/s memory bandwidth moves scene data efficiently.

Software development: The CPU's 114,867 floating-point math and 154,446 integer math PassMark scores handle compilation workloads, while the 45,887 multi-thread score accelerates parallel build processes. ECC memory support adds reliability for long compilation runs.

Student and office work: The CPU's 2,116 Cinebench R23 single-core score ensures responsive application performance, while the 4,333 PassMark single-thread score covers everyday tasks. The integrated UHD Graphics 770 provides a fallback if needed, and the system's 90th combined percentile places it well above office workload requirements.

Who Should Build It

Gamers targeting high-refresh 1440p or entry-level 4K will find this pairing suitable, given the GPU's 90th percentile ranking and the CPU's strong single-thread performance for maintaining high frame rates. Content creators working with video editing or 3D rendering benefit from the CPU's 24 threads and the GPU's compute capabilities, with the 16 GB VRAM supporting large project files. Developers compiling large codebases leverage the multi-threaded performance, while ECC memory support adds data integrity for critical work. Students and office users receive far more performance than required, though the system's power requirements (125 W CPU TDP, 225 W GPU TDP, 550 W suggested PSU) may exceed what a small form factor or budget-oriented build would prefer. Small business workstations handling data processing, virtualization, or CAD workloads will find the CPU's compression score of 595,292 and encryption score of 33,249 valuable for productivity applications.

Build Overview

This is a desktop-class build combining Intel's Core i7-13700K processor with Intel's Arc A770 graphics card. The system reaches the 90th combined percentile, with the CPU at the 89th percentile among all processors and the GPU at the 90th percentile among all graphics cards. The CPU carries a launch MSRP of $409, while the GPU launched at 329 USD. Both components come from Intel, creating a cohesive platform where the CPU's PCIe Gen 5 lanes and the GPU's PCIe 4.0 x16 interface work together without bandwidth constraints. The Arc A770 is end-of-life production status with Battlemage as its successor, while the i7-13700K remains active. This pairing represents a high-end mainstream desktop configuration suitable for gaming, content creation, and productivity workloads.

GPU Analysis

The Intel Arc A770 uses the DG2-512 chip built on TSMC's 6 nm process, containing 21,700 million transistors on a 406 mm² die with a transistor density of 53.4M per mm². The Xe-HPG architecture operates at a base clock of 2100 MHz with a boost reaching 2400 MHz, while memory runs at 2000 MHz (16 Gbps effective). The 16 GB of GDDR6 memory on a 256-bit bus delivers 512.0 GB/s of bandwidth, providing substantial headroom for high-resolution textures and data-intensive workloads.

The GPU contains 4,096 shading units, 256 texture mapping units, and 128 raster operation units. It includes 32 ray tracing cores for hardware-accelerated ray tracing, with no tensor cores listed. Pixel rate reaches 307.2 GPixel/s and texture rate hits 614.4 GTexel/s. Compute performance measures 19.66 TFLOPS FP32 and 39.32 TFLOPS FP16 (2:1 ratio).

Display output includes one HDMI 2.1 port and three DisplayPort 2.0 connections, supporting modern high-refresh monitors. The dual-slot card requires a 550 W power supply and draws 225 W TDP through a 6-pin and 8-pin power connector configuration. API support includes DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4.

In 3DMark Steel Nomad DX12, the GPU scores 2,969, demonstrating capable DirectX 12 rendering performance. Geekbench OpenCL reaches 109,175, showing strong compute throughput for general-purpose workloads. Vulkan performance hits 94,284, indicating solid cross-platform graphics capability. The 90th percentile ranking places it among high-end consumer GPUs, though its nearest rivals include professional workstation cards like the NVIDIA Quadro P6000 (69,986 average, 1.7% ahead) and AMD Radeon Pro WX 8200 (69,870, 1.5% ahead), showing the Arc A770 competes with last-generation prosumer hardware.

For rendering workloads, the 19.66 TFLOPS FP32 throughput and 512.0 GB/s bandwidth support GPU-accelerated rendering in applications that leverage DirectX, Vulkan, or OpenCL. The 16 GB VRAM exceeds the capacity of many competing cards at this performance tier, allowing larger scenes and higher-resolution textures without out-of-memory errors. The 32 RT cores provide ray tracing acceleration, though the FACT PACK does not specify RT performance metrics.

Gaming Performance

No measured FPS data exists for this exact CPU and GPU combination, so the following frame rate expectations are estimates derived from the individual benchmark scores. The GPU's 90th percentile ranking and the CPU's 89th percentile ranking suggest a system capable of smooth gaming at high settings across most titles.

At 1080p resolution, the CPU's 5.40 GHz boost clock and 1,136 3DMark single-thread score should maintain high frame rates in esports and competitive titles, where the GPU's 19.66 TFLOPS FP32 throughput can render frames quickly. The 2,262 3DMark 2-thread score indicates strong responsiveness in lightly-threaded game logic.

At 1440p, the GPU's 512.0 GB/s memory bandwidth and 2,969 Steel Nomad DX12 score suggest good performance at high settings, with the 16 GB VRAM accommodating high-resolution textures. The CPU's 8,193 3DMark 8-thread score provides sufficient multi-threaded performance for modern game engines that use eight or more threads.

At 4K resolution, the GPU becomes the primary determinant of frame rates. The 90th percentile ranking places it in the upper tier of available graphics cards, though professional workstation rivals like the Quadro P6000 score 1.7% higher. The 16 GB VRAM prevents capacity-based stuttering at 4K, but the 2,969 Steel Nomad DX12 score indicates the card may not sustain ultra settings at 60 FPS in the most demanding titles. Users should expect to adjust settings to high or medium for playable 4K performance in graphically intensive games.

Ray tracing workloads will engage the 32 RT cores, though the FACT PACK provides no specific ray tracing benchmark scores. The DirectX 12 Ultimate support ensures compatibility with current ray-traced titles, and the 39.32 TFLOPS FP16 performance can accelerate certain compute-heavy effects.