Vendor: Global UniChip Corp. (GUC) Category: HBM

TSMC CLN16FFGL+ HBM PHY IP

This datasheet describes GUC’s HBM (High Bandwidth Memory) PHY IP, which can be integrated with HBM memory controller to provide …

Controller + PHY + 1 TSMC 16nm Silicon Proven View all specifications

Overview

This datasheet describes GUC’s HBM (High Bandwidth Memory) PHY IP, which can be integrated with HBM memory controller to provide HBM functionality. The HBM PHY IP shall be an independent IP and can be provided by GUC or other IP vendors.

Key features

  • High Bandwidth Memory (HBM) DRAM PHY
  • Supports HBM 2Gbps
  • Supports DFI 1:2
  • Supports only BL4
  • Supports AWORD/DWORD bus parity
  • Supports programmable parity latency, PL = 0 and 2 , of DQ parity function
  • Supports HBM data bus inversion (DBI) and write data mask (DM)
  • Supports ECC mode
  • Supports single bank refresh
  • Complete HBM PHY delivered as a hard macro component (includes I/O, PLL, and DLL)
  • Supports HBM PHY internal loopback BIST
  • Supports HBM lookback test, includes MISR and LFSR mode
  • Supports IEEE 1500 instruction
  • Supports HBM lane repairs with redundant pin for row/column/data

Silicon Options

Foundry Node Process Maturity
TSMC 16nm 16nm 160 nm Silicon Proven

Specifications

Identity

Part Number
IGAHBMV02A
Vendor
Global UniChip Corp. (GUC)
Type
Silicon IP
Controller / PHY
Controller + PHY , PHY

Files

Note: some files may require an NDA depending on provider policy.

Provider

Learn more about HBM IP core

Reducing Avoidable Memory Trips In HBM Systems

As AI and high-performance SoCs increasingly rely on HBM, memory bandwidth alone is no longer enough to maximize performance. This article discusses why the intelligent data movement and cache efficiency are critical to unlocking the full benefits of HBM-based architectures.

Making Strong Error-Correcting Codes Work Effectively for HBM in AI Inference

LLM inference is increasingly memory-bound, and HBM cost per GB now dominates system cost. Today’s HBM stacks include short on-die ECC, which tightens binning, raises price, and locks reliability policy inside the device. This paper asks a simple question: can we tolerate a much higher raw HBM bit error rate (BER) and still keep end-to-end correctness and throughput, without changing the HBM PHY or the fixed 32B transaction size?

High Bandwidth Memory Evolution from First Generation HBM to the Latest HBM4

HBM4 is the latest generation of the High Bandwidth Memory (HBM) that has become analogous to the Artificial Intelligence (AI) boom that is everywhere in today’s world. HBM is also increasingly being used in other applications like Data centers, autonomous driving systems, servers, cloud computing just to mention few domains where bandwidth and performance in a key requirement.

Breaking the HBM Bit Cost Barrier: Domain-Specific ECC for AI Inference Infrastructure

High-Bandwidth Memory (HBM) delivers exceptional bandwidth and energy efficiency for AI workloads, but its high cost per bit, driven in part by stringent on-die reliability requirements, poses a growing barrier to scalable deployment. This work explores a systemlevel approach to cost reduction by eliminating on-die ECC and shifting all fault management to the memory controller.

Frequently asked questions about HBM Interface IP

What is TSMC CLN16FFGL+ HBM PHY IP?

TSMC CLN16FFGL+ HBM PHY IP is a HBM IP core from Global UniChip Corp. (GUC) listed on Semi IP Hub. It is listed with support for tsmc Silicon Proven.

How should engineers evaluate this HBM?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this HBM IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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