Vendor: Synopsys, Inc. Category: Single-Protocol PHY

PCIe 2.0 PHY, SMIC 40LL, x1

The multi-channel PHY IP for PCI Express® 2.1 includes the high-speed, high-performance transceiver to meet today’s demands for h…

PCIe Gen2 SMIC 40nm LL View all specifications

Overview

The multi-channel PHY IP for PCI Express® 2.1 includes the high-speed, high-performance transceiver to meet today’s demands for higher bandwidth. The PHY provides a cost-effective solution that is designed to meet the needs of today’s PCI Express (PCIe®) designs while being extremely low in power and area.

Using the leading-edge design, analysis, simulation, and measurement techniques, the vendor delivers exceptional signal integrity and jitter performance that exceeds the PCI Express standards electrical specifications. The high-margin, robust PHY architecture tolerates process, voltage and temperature (PVT) manufacturing variations and is implemented with standard CMOS digital process technologies.

The multi-tap transmitter and receiver equalizers, along with the advanced built-in diagnostics and ATE test vectors, enable customers to control, monitor and test for signal integrity without the need for expensive test equipment. This provides on-chip visibility into actual link and channel performance to quickly improve signal integrity, reducing both product development cycles and the need for costly field support.

Key features

  • Compliant with the PCI Express (PCIe®) 2.1 and PIPE specifications
  • x1, x2, x4, x8, x16 lane configurations with bifurcation
  • PCIe L1 substate power management
  • Supports power gating and power island
  • Embedded bit error rate tester and internal eye monitor
  • ATE test vectors for complete, at-speed production testing
  • Pseudo random bit sequencer (PRBS) generation and checker
  • IEEE 1149.6 AC JTAG Boundry Scan
  • Beaconing, receiver detection and electrical idle features
  • Supports -40C to 125C junction temperatures

Block Diagram

Silicon Options

Foundry Node Process Maturity
SMIC 40nm LL

Specifications

Identity

Part Number
dwc_pcie2phy_smic40ll_x1
Vendor
Synopsys, Inc.
Type
Silicon IP

Standards & Interfaces

Supported Standards
PCIe Gen2

Files

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

Provider

Learn more about Single-Protocol PHY IP core

Accelerating the Development of TLM-2.0 Models Using Model Authoring Kits (MAKs)

Model authoring kits (MAKs) enable the rapid development of transaction-level models, TLMs, of a given functionality or protocol. MAKs include base functionalities that are common to all models independent of the RTL implementation in a well-structured way, allowing for maximum reuse. The DesignWare System-Level Library provides MAKs for UART and USB. Taking the example of a USB 2.0 EHCI controller model using MAKs, this paper explains the significant design time reduction that can be achieved.

Industry 1st CXL 4.0 Verification IP: Transforming AI and HPC Systems

Synopsys continues to lead innovation with the industry’s first commercially available CXL 4.0 Verification IP (VIP). This comprehensive solution supports the full 128 GT/s data rate, IO throttling, and streamlined port negotiation, equipping designers to validate and optimize their products for the future.

Low Power Analysis and Verification of Super Speed Inter-Chip (SSIC) IP

In our current work, we focus on the low power analysis and verification challenges and the methodology used to verify low power design. The power-gating feature that we term Hibernation brings in significant power savings to Synopsys SSIC IP Controller. The verification tests the functionality of the Controller before, during and after hibernation state. The low power analysis will showcase the power savings achieved in SSIC IP with and Without Hibernation.

Frequently asked questions about Single-Protocol PHY IP

What is PCIe 2.0 PHY, SMIC 40LL, x1?

PCIe 2.0 PHY, SMIC 40LL, x1 is a Single-Protocol PHY IP core from Synopsys, Inc. listed on Semi IP Hub. It is listed with support for smic.

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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