Skip to content

Computer Graphics Card INTEL Data Center GPU Max 1100 1350 1550 Subsystem Gaming Graphics Card 

$8,550.00

  1. Data Center GPU Max 1100:
    • An entry-level GPU for HPC, AI, and ML workloads.
    • Features 128 Xe Cores and 16GB HBM2e memory.
    • Ideal for smaller-scale data center workloads.
  2. Data Center GPU Max 1350:
    • mid-range GPU for HPC, AI, and ML workloads.
    • Features 160 Xe Cores and 16GB HBM2e memory.
    • Offers better performance for medium-scale data center workloads.
  3. Data Center GPU Max 1550:
    • high-end GPU for HPC, AI, and ML workloads.
    • Features 192 Xe Cores and 16GB HBM2e memory.
    • Delivers top-tier performance for large-scale data center workloads.
  4. Data Center GPU Max Subsystem:
    • scalable GPU solution for HPC, AI, and ML workloads.
    • Configurable with 128-192 Xe Cores and 16-32GB HBM2e memory.
    • Designed for flexible and scalable data center deployments.

Summary:

  • Max 1100: An entry-level GPU for smaller-scale HPC, AI, and ML workloads.
  • Max 1350: A mid-range GPU for medium-scale HPC, AI, and ML workloads.
  • Max 1550: A high-end GPU for large-scale HPC, AI, and ML workloads.
  • Max Subsystem: A scalable GPU solution for flexible and scalable data center deployments.
SKU: N/A Categories: ,

Computer Graphics Card INTEL Data Center GPU Max 1100  1350 1550 Subsystem Gaming Graphics Card

Here’s a detailed comparison table for the GPUs: Data Center GPU Max 1100Data Center GPU Max 1350Data Center GPU Max 1550, and Data Center GPU Max Subsystem. These GPUs are part of Intel’s Data Center GPU Max Series, designed for high-performance computing (HPC), AI, and machine learning workloads in data centers.


Feature Max 1100 Max 1350 Max 1550 Max Subsystem
Architecture Xe-HPC Xe-HPC Xe-HPC Xe-HPC
Xe Cores 128 160 192 128-192 (configurable)
Ray Tracing Units 128 160 192 128-192 (configurable)
FP32 Performance ~10 TFLOPs ~13 TFLOPs ~15 TFLOPs ~10-15 TFLOPs
FP64 Performance ~5 TFLOPs ~6.5 TFLOPs ~7.5 TFLOPs ~5-7.5 TFLOPs
Memory 16GB HBM2e 16GB HBM2e 16GB HBM2e 16-32GB HBM2e
Memory Bandwidth ~1 TB/s ~1.2 TB/s ~1.5 TB/s ~1-1.5 TB/s
TDP ~300W ~350W ~400W ~300-400W
Use Case HPC, AI, ML HPC, AI, ML HPC, AI, ML HPC, AI, ML
Key Feature Entry-level HPC Mid-range HPC High-end HPC Scalable HPC

1. Intel Data Center GPU Max 1100

  • Architecture: Built on Intel’s Xe-HPC architecture, optimized for efficiency and performance in entry-level data center workloads.
  • Performance: Features 128 Xe Cores and 128 Ray Tracing Units, delivering ~10 TFLOPs of FP32 performance and ~5 TFLOPs of FP64 performance.
  • Memory: Equipped with 16GB of HBM2e memory, providing high bandwidth for data-intensive workloads.
  • Memory Bandwidth: Offers ~1 TB/s, ensuring fast data access and processing.
  • TDP: Operates at a ~300W TDP, making it suitable for smaller-scale data center deployments.
  • Use Case: Designed for entry-level HPC, AI, and ML workloads, targeting smaller data centers and research institutions.
  • Key Feature: A cost-effective GPU for entry-level data center workloads, offering a balance of performance and efficiency.

2. Intel Data Center GPU Max 1350

  • Architecture: Based on Intel’s Xe-HPC architecture, offering enhanced performance for mid-range data center workloads.
  • Performance: Features 160 Xe Cores and 160 Ray Tracing Units, delivering ~13 TFLOPs of FP32 performance and ~6.5 TFLOPs of FP64 performance.
  • Memory: Comes with 16GB of HBM2e memory, providing ample memory for medium-scale workloads.
  • Memory Bandwidth: Offers ~1.2 TB/s, ensuring smooth performance in demanding applications.
  • TDP: Operates at a ~350W TDP, making it suitable for medium-scale data center deployments.
  • Use Case: Ideal for mid-range HPC, AI, and ML workloads, targeting medium-sized data centers and research institutions.
  • Key Feature: A mid-range GPU offering excellent performance for medium-scale data center workloads.

3. Intel Data Center GPU Max 1550

  • Architecture: Built on Intel’s Xe-HPC architecture, targeting high-end performance for large-scale data center workloads.
  • Performance: Features 192 Xe Cores and 192 Ray Tracing Units, delivering ~15 TFLOPs of FP32 performance and ~7.5 TFLOPs of FP64 performance.
  • Memory: Equipped with 16GB of HBM2e memory, providing high bandwidth for large-scale workloads.
  • Memory Bandwidth: Offers ~1.5 TB/s, ensuring ultra-fast data processing.
  • TDP: Operates at a ~400W TDP, making it suitable for high-performance data center deployments.
  • Use Case: Designed for high-end HPC, AI, and ML workloads, targeting large data centers and research institutions.
  • Key Feature: A high-end GPU offering top-tier performance for large-scale data center workloads.

4. Intel Data Center GPU Max Subsystem

  • Architecture: Based on Intel’s Xe-HPC architecture, offering a scalable solution for flexible data center deployments.
  • Performance: Configurable with 128-192 Xe Cores and 128-192 Ray Tracing Units, delivering ~10-15 TFLOPs of FP32 performance and ~5-7.5 TFLOPs of FP64 performance.
  • Memory: Comes with 16-32GB of HBM2e memory, providing flexible memory capacity for various workloads.
  • Memory Bandwidth: Offers ~1-1.5 TB/s, ensuring smooth performance in scalable deployments.
  • TDP: Operates at a ~300-400W TDP, making it suitable for flexible and scalable data center deployments.
  • Use Case: Designed for scalable HPC, AI, and ML workloads, targeting data centers with varying workload demands.
  • Key Feature: A scalable GPU solution offering flexibility and performance for diverse data center workloads.
INTEL Data Center GPU Ma

Data Center GPU Max 1100, Data Center GPU Max 1350, Data Center GPU Max 1550, Data Center GPU Max Subsystem

Reviews

There are no reviews yet.

Be the first to review “Computer Graphics Card INTEL Data Center GPU Max 1100 1350 1550 Subsystem Gaming Graphics Card ”

Your email address will not be published. Required fields are marked *