AMD Radeon RX 7900 GRE vs Intel Arc Pro B60 Dual Comparison
AMD Radeon RX 7900 GRE
Arc Pro B60 Dual
PERFORMANCE BENCHMARKS
Analysis: AMD Radeon RX 7900 GRE vs Intel Arc Pro B60 Dual
# AMD Radeon RX 7900 GRE vs Intel Arc Pro B60 Dual
The AMD Radeon RX 7900 GRE and the Intel Arc Pro B60 Dual occupy different positions in the graphics card market, with the database showing the AMD part as a high-performance consumer option and the Intel part as a workstation-oriented professional card. The RX 7900 GRE carries an average benchmark score of 32456 and sits in the 77th percentile of all GPUs, while the Arc Pro B60 Dual has no recorded benchmark scores and sits in the 50th percentile, which reflects its professional focus rather than raw gaming performance. The specifications reveal fundamentally different design priorities: the AMD card uses a larger chip with more compute resources, while the Intel card uses a smaller die but offers more memory capacity and a newer PCIe interface.
Where Each One Wins
The AMD Radeon RX 7900 GRE wins decisively in every compute and graphics benchmark category recorded in the database. Its 3DMark Steel Nomad DX12 score of 4814 demonstrates strong modern API performance, while the Geekbench OpenCL score of 175758 and Vulkan score of 99850 show substantial compute throughput across both general-purpose and graphics workloads. The PassMark suite reinforces this dominance: the G3D score of 27089, GPU compute score of 15016, and DirectX 11 score of 300 all indicate a card built for sustained rendering performance.
The Intel Arc Pro B60 Dual, by contrast, has no recorded benchmark scores in the database. Its 50th percentile ranking and average benchmark score of 0 reflect this absence of data, not necessarily inferior performance. The card's strengths lie elsewhere: it offers 24 GB of memory compared to the AMD card's 16 GB, and its PCIe 5.0 x8 interface provides twice the per-lane bandwidth of the AMD card's PCIe 4.0 x16 connection. For professional workloads that demand large memory pools, such as complex 3D scenes or machine learning datasets, the Intel card's memory capacity is a clear advantage. The AMD card wins on raw speed; the Intel card wins on memory headroom and interface modernity.
Architecture Differences
The two cards use completely different architectures from their respective manufacturers. The AMD Radeon RX 7900 GRE is built on the RDNA 3.0 architecture using the Navi 31 chip with the codename Plum Bonito, part of the Navi III generation (RX 7000 series). It uses a 5 nm process at TSMC, with 57,700 million transistors on a 529 mm² die, giving a transistor density of 109.1M per mm². The Intel Arc Pro B60 Dual uses the Xe2-HPG architecture with the BMG-G21 chip, part of the Battlemage Pro Series generation, also on a 5 nm process at TSMC but with 19,600 million transistors on a 272 mm² die, resulting in a lower density of 72.1M per mm².
The compute resources differ dramatically. The AMD card features 5120 shading units, 320 texture mapping units, 160 ROPs, and 80 ray tracing cores. The Intel card has 2560 shading units, 160 TMUs, 80 ROPs, and 20 ray tracing cores. This means the AMD card has exactly double the shading units, TMUs, and ROPs, and four times the ray tracing cores. The clock speeds tell a different story: the Intel card has a higher base clock of 2000 MHz versus the AMD's 1287 MHz, and a higher boost clock of 2400 MHz versus 2245 MHz. The AMD card compensates with its massive shader count, producing 45.98 TFLOPS of FP32 performance against the Intel card's 12.29 TFLOPS, a 3.7x advantage.
The memory subsystems also diverge. The AMD card uses 16 GB of GDDR6 on a 256-bit bus with 576.0 GB/s of bandwidth, while the Intel card uses 24 GB of GDDR6 on a 192-bit bus with 456.0 GB/s of bandwidth. The AMD card has a higher memory clock at 2250 MHz (18 Gbps effective) versus the Intel's 2375 MHz (19 Gbps effective), but the wider bus gives AMD the bandwidth edge. Power requirements differ substantially: the AMD card has a 260 W TDP with 2x 8-pin connectors and a 600 W suggested PSU, while the Intel card has a 400 W TDP with a single 16-pin connector and an 800 W suggested PSU.
Head-to-Head Benchmarks
The database contains no direct head-to-head benchmark comparisons between these two cards, and the Intel Arc Pro B60 Dual has no individual benchmark scores recorded. This makes quantitative comparison one-sided, but the AMD card's recorded results provide context against other GPUs in its percentile range. The RX 7900 GRE's nearest rivals in the database are all AMD professional or older consumer cards: the AMD FirePro S10000 with an average score of 32388 (0.2% behind), the AMD FirePro S9300 X2 at 32540 (0.3% ahead), the AMD Radeon RX 590 GME at 32601 (0.4% ahead), and the AMD Radeon Pro 570X at 32176 (0.9% behind). These deltas are all within 1%, indicating the RX 7900 GRE sits at a dense performance cluster.
The RX 7900 GRE's individual scores show its strengths across API generations. Its PassMark DirectX 9 score of 310 exceeds its DirectX 11 score of 300, which in turn vastly outperforms its DirectX 10 score of 139 and DirectX 12 score of 107. This pattern suggests legacy API optimization remains strong. The G2D score of 1180 indicates solid 2D desktop performance. The FP32 throughput of 45.98 TFLOPS places it well above the Intel card's 12.29 TFLOPS, and the FP16 performance of 91.96 TFLOPS (2:1 ratio) versus 24.58 TFLOPS (2:1 ratio) maintains the same proportional advantage. Pixel rate of 359.2 GPixel/s versus 192.0 GPixel/s and texture rate of 718.4 GTexel/s versus 384.0 GTexel/s both favor AMD by roughly 1.9x, consistent with the doubled ROP and TMU counts.
FAQ
Q: Which card has more memory, and does that affect performance?
A: The Intel Arc Pro B60 Dual has 24 GB of GDDR6 memory, while the AMD Radeon RX 7900 GRE has 16 GB of GDDR6 memory. However, the AMD card has higher memory bandwidth at 576.0 GB/s compared to 456.0 GB/s, because the AMD card uses a 256-bit bus versus the Intel card's 192-bit bus. More memory helps capacity-limited workloads, but higher bandwidth helps throughput.
Q: What are the power requirements for each card?
A: The AMD Radeon RX 7900 GRE has a 260 W TDP, uses 2x 8-pin power connectors, and requires a 600 W suggested PSU. The Intel Arc Pro B60 Dual has a 400 W TDP, uses a single 16-pin connector, and requires an 800 W suggested PSU. The Intel card draws significantly more power despite having fewer compute units.
Q: How do the compute capabilities compare?
A: The AMD card delivers 45.98 TFLOPS of FP32 performance and 91.96 TFLOPS of FP16 performance (2:1 ratio). The Intel card delivers 12.29 TFLOPS of FP32 and 24.58 TFLOPS of FP16 (2:1 ratio). The AMD card has 5120 shading units, 320 TMUs, 160 ROPs, and 80 ray tracing cores, while the Intel card has 2560 shading units, 160 TMUs, 80 ROPs, and 20 ray tracing cores.
Q: Which card supports newer PCIe technology?
A: The Intel Arc Pro B60 Dual uses PCIe 5.0 x8, while the AMD Radeon RX 7900 GRE uses PCIe 4.0 x16. The Intel card's interface provides higher per-lane bandwidth, though the AMD card's x16 configuration offers more total lanes.
Q: What display outputs does each card provide?
A: The AMD Radeon RX 7900 GRE offers 1x HDMI 2.1a, 2x DisplayPort 2.1, and 1x USB Type-C. The Intel Arc Pro B60 Dual provides 4x mini-DisplayPort 2.1. The AMD card includes a USB Type-C output, which the Intel card lacks.
Q: When were these cards released?
A: The AMD Radeon RX 7900 GRE was released on July 26, 2023, with a launch MSRP of 549 USD. The Intel Arc Pro B60 Dual was released on September 4, 2025, with a launch MSRP of 1,199 USD. The Intel card came to market over two years later.
Specification Differences
| Specification | AMD Radeon RX 7900 GRE | Intel Arc Pro B60 Dual |
|---|---|---|
| Architecture | RDNA 3.0 | Xe2-HPG |
| Chip | Navi 31 | BMG-G21 |
| Process Node | 5 nm (TSMC) | 5 nm (TSMC) |
| Transistors | 57,700 million | 19,600 million |
| Die Size | 529 mm² | 272 mm² |
| Transistor Density | 109.1M / mm² | 72.1M / mm² |
| Base Clock | 1287 MHz | 2000 MHz |
| Boost Clock | 2245 MHz | 2400 MHz |
| Memory Size | 16 GB | 24 GB |
| Memory Type | GDDR6 | GDDR6 |
| Memory Bus | 256 bit | 192 bit |
| Memory Bandwidth | 576.0 GB/s | 456.0 GB/s |
| Memory Clock | 2250 MHz (18 Gbps effective) | 2375 MHz (19 Gbps effective) |
| Shading Units | 5120 | 2560 |
| TMUs | 320 | 160 |
| ROPs | 160 | 80 |
| Ray Tracing Cores | 80 | 20 |
| FP32 Performance | 45.98 TFLOPS | 12.29 TFLOPS |
| FP16 Performance | 91.96 TFLOPS (2:1) | 24.58 TFLOPS (2:1) |
| Pixel Rate | 359.2 GPixel/s | 192.0 GPixel/s |
| Texture Rate | 718.4 GTexel/s | 384.0 GTexel/s |
| TDP | 260 W | 400 W |
| Power Connectors | 2x 8-pin | 1x 16-pin |
| Suggested PSU | 600 W | 800 W |
| Bus Interface | PCIe 4.0 x16 | PCIe 5.0 x8 |
| Display Outputs | 1x HDMI 2.1a, 2x DP 2.1, 1x USB-C | 4x mini-DisplayPort 2.1 |
| Dimensions (LxHxW) | 276 x 110 x 51 mm | 300 x 110 x 40 mm |
| Release Date | 2023-07-26 | 2025-09-04 |
| Launch MSRP | 549 USD | 1,199 USD |
The Verdict
The recorded data shows the AMD Radeon RX 7900 GRE as the performance leader in every measured benchmark category, with a 77th percentile ranking and an average benchmark score of 32456. Its FP32 throughput of 45.98 TFLOPS is 3.7x higher than the Intel card's 12.29 TFLOPS, and its memory bandwidth of 576.0 GB/s exceeds the Intel card's 456.0 GB/s. The AMD card also consumes less power at 260 W versus 400 W and requires a smaller PSU at 600 W versus 800 W, making it the more efficient choice based on available specifications.
The Intel Arc Pro B60 Dual offers advantages in memory capacity with 24 GB versus 16 GB, a newer PCIe 5.0 x8 interface, a higher boost clock at 2400 MHz versus 2245 MHz, and a significantly later release date with a higher launch MSRP of 1,199 USD versus 549 USD. Its 50th percentile ranking and lack of recorded benchmark scores mean the database cannot confirm its actual performance, but the specifications suggest it targets professional workloads where memory capacity and interface bandwidth matter more than raw compute throughput. The AMD card is the pick for users prioritizing measured performance and efficiency; the Intel card suits scenarios requiring maximum memory capacity and the latest PCIe standard.