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All IPs > Memory Controller & PHY > HBM > H-Series HBM2/HBM2E PHY IP

H-Series HBM2/HBM2E PHY IP

From MEMTECH

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Description

The H-Series HBM2/HBM2E PHY is a high bandwidth memory solution tailored to meet the rigorous demands of graphic-intensive and high-performance computing applications. It features a sophisticated physical layer design that ensures maximum data transfer rates while minimizing latency, delivering superior performance in terms of bandwidth and power efficiency. The H-Series PHY is pivotal in supporting next-generation graphics rendering and scientific simulations, making it an invaluable asset for industries reliant on high data throughput.

Engineered to complement HBM2 and HBM2E standards, this PHY offers robust support for advanced graphic processing and networking products. Its architecture stands out for its power-efficient design, crucial for maintaining energy expenses at bay while boosting operational performance. Through its high-density layout, this PHY addresses the memory demands of modern computing, effectively bridging the gap between increased data demands and efficient energy use.

MEMTECH’s dedication to providing a seamless integration experience is evident in the design of the H-Series PHY, which aligns with the company's overall strategy to deliver innovation through collaboration with top technology partners. The result is a comprehensive solution that meets and exceeds industry expectations, driving advancements in various high-tech fields.

Features
  • High Bandwidth
  • Low Power Consumption
  • Advanced Calibration Routines
Foundries & Process Nodes
Foundry Process Nodes
TSMC 10nm
20nm
Tech Specs
Class Value
Categories Memory Controller & PHY > HBM
Analog & Mixed Signal > Coder/Decoder
Analog & Mixed Signal > RF Modules
Network on Chip > Network on Chip
Data Rate Up to 4096 bits wide
Channel Support 8 channels
Data Transfer Rate Up to 4 Gbps per pin
Part Number H-Series HBM2/HBM2E PHY
Power (W) 5W
Supply Voltage 1.2V
Availability All Countries & Regions
Applications
  • Graphics Processing
  • High-Performance Computing
  • Networking
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