Vendor: M31 Technology Corp. Category: Single-Protocol PHY

PCIe 4.0 PHY in TSMC(6nm,7nm, 12nm,16nm)

M31 PCIe 4.0 PHY IP provides high-performance, multi-lane capability and low power architecture for high-bandwidth applications.

PCIe Gen4 TSMC 7nm N7+ View all specifications

Overview

M31 PCIe 4.0 PHY IP provides high-performance, multi-lane capability and low power architecture for high-bandwidth applications. The PCIe 4.0 IP supports a complete range of PCIe 4.0 Base applications and is compliant with the PIPE 4.4.1 specification. The IP integrates high-speed mixed signal circuits to support 16Gbps PCIe 4.0 traffic and is backward compatible with 8.0Gbps PCIe 3.1, 5.0Gbps PCIe 2.1 and 2.5Gbps PCIe 1.1 data rates. With the support of TX and RX equalization techniques, the PCIe 4.0 IP is designed to meet the requirements of different channel conditions.

Key features

  • Fully compliant with PCI Express Base 4.0, PCI Express Base 3.1, PCI Express Base 2.1 and PCI Express Base 1.1 electrical specifications
  • Compliant with PIPE4.4.1 (PCIe) specification
  • Supports all power saving modes (P0, P0s, P1, P2) defined in PIPE4.4.1 specification
  • Supports L1 PM Substates with CLKREQ#
  • Supports L1 Clock Power Management (CPM) with CLKREQ#
  • Supports Separate Refclk Independent SSC (SRIS) architecture
  • Accessible register controls allow user-specific optimization of critical parameters (e.g., TXPLL bandwidth, TX de-emphasis level, CDR bandwidth, and EQ strength)
  • Supports robust BIST functions for mass production testing
  • Dual-mode reference clock pad: Output 100-MHz clock reference clock for RC mode or receive 100-MHz clock for EP mode
  • Can be configured up to multi-lane (x4, x8, x16) design with multiple instances
  • Available in 12nm/16nm, 7nm, and 5nm processes

Silicon Options

Foundry Node Process Maturity
TSMC 7nm N7+ —

Specifications

Identity

Part Number
M31 PCIe 4.0 PHY IP for Storage and High-Bandwidth Connection
Vendor
M31 Technology Corp.
Type
Silicon IP

Standards & Interfaces

Supported Standards
PCIe Gen4

Files

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

Provider

Learn more about Single-Protocol PHY IP core

M31 Expands Rambus Collaboration, Strengthening Its One-Stop MIPI Subsystem Solution

This collaboration combines these controller capabilities with M31’s silicon-proven MIPI PHY portfolio with a strong track record of successful deployments, enabling M31 to offer a comprehensive MIPI subsystem solution integrating high-speed MIPI PHYs and MIPI CSI/DSI controllers to address the growing requirements of high-resolution imaging and display applications.

M31 High-Speed and Long-Channel MIPI C/D-PHY Solution on TSMC N3P/N3C

With the rapid growth of AR/VR and high-resolution imaging systems such as drones and action cameras, MIPI CSI (Camera Serial Interface) and MIPI DSI (Display Serial Interface) require both high data throughput and low power consumption. M31 provides a MIPI C-PHY and D-PHY IP combo solution implemented on TSMC N3P and N3C processes.

M31 Gains Momentum in Advanced Processes, Targets Double-Digit Growth in 2026

Consolidated revenue for the first quarter reached NT$395 million, representing a year-over-year decrease of 9.2%. The decline was primarily attributable to timing fluctuations in contract signings for certain key advanced-node customers in North America, with the related revenue expected to be recognized in the second quarter.

Frequently asked questions about Single-Protocol PHY IP

What is PCIe 4.0 PHY in TSMC(6nm,7nm, 12nm,16nm)?

PCIe 4.0 PHY in TSMC(6nm,7nm, 12nm,16nm) is a Single-Protocol PHY IP core from M31 Technology Corp. listed on Semi IP Hub. It is listed with support for tsmc.

How should engineers evaluate this Single-Protocol PHY?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Single-Protocol PHY 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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