Vendor: VeriSilicon Microelectronics (Shanghai) Co., Ltd. Category: High-Speed

SMIC 0.25um 2.5V/3.3V PCI I/O Cells Library

VeriSilicon SMIC 0.25um 2.5V/3.3V PCI I/O Cell Library developed by VeriSilicon is optimized for Semiconductor Manufacturing Inte…

Overview

VeriSilicon SMIC 0.25um 2.5V/3.3V PCI I/O Cell Library developed by VeriSilicon is optimized for Semiconductor Manufacturing International Corporation (SMIC) 0.25um logic 1P5M 2.5V/3.3V process. This library can take 5V tolerance. This library supports both Stagger I/O pads and Inline I/O pads.

Key features

  • SMIC 0.25um Logic 1P5M Salicide 2.5V/3.3V process
  • 2.5V core and 3.3V external interface
  • Meets the revision 2.2 of PCI local bus specification
  • Cell count: 6 cells
  • Suitable for four or five metal layers of physical design
  • Easy interface with VeriSilicon SMIC 0.25um process standard I/O libraries

Silicon Options

Foundry Node Process Maturity
SMIC 250nm 250nm 2500 nm

Specifications

Identity

Part Number
SMIC25_PCIIO_01
Vendor
VeriSilicon Microelectronics (Shanghai) Co., Ltd.

Provider

VeriSilicon Microelectronics (Shanghai) Co., Ltd.
HQ: USA
VeriSilicon Microelectronics (Shanghai) Co., Ltd. (VeriSilicon, 688521.SH) is committed to providing customers with platform-based, all-round, one-stop custom silicon services and semiconductor IP licensing services leveraging its in-house semiconductor IP. Under the unique "Silicon Platform as a Service" (SiPaaS) business model, depending on the comprehensive IP portfolio, VeriSilicon can create silicon products from definition to test and package in a short period of time, and provides high performance and cost-efficient semiconductor alternative products for fabless, IDM, system vendors (OEM/ODM), large internet companies and cloud service provider, etc. VeriSilicon's business covers consumer electronics, automotive electronics, computer and peripheral, industry, data processing, Internet of Things (IoT) and other applications. VeriSilicon presents a variety of customized silicon solutions, including high-definition video, high-definition audio and voice, in-vehicle infotainment, video surveillance, IoT connectivity, smart wearable, high-end application processor, video transcoding acceleration and intelligent pixel processing, etc. In addition, VeriSilicon has six types of in-house processor IPs, namely GPU IP, NPU IP, VPU IP, DSP IP, ISP IP and Display Processor IP, as well as more than 1,400 analog and mixed signal IPs and RF IPs. Founded in 2001 and headquartered in Shanghai, China, VeriSilicon has 7 design and R&D centers in China and the United States, as well as 11 sales and customer service offices worldwide. VeriSilicon currently has more than 1,200 employees.

Learn more about High-Speed IP core

PCIe 5.0: The universal high-speed interconnect for High Bandwidth and Low Latency Applications Design Challenges & Solutions

Innosilicon, a leading IP provider, offers a complete PCIe 5.0 solution stack that includes both PHY and controller IPs. Although both layers are crucial to achieving a fully compliant and high-performance PCIe interface, this paper deep dives into the technical challenges of PHY design, highlighting insights drawn from real-world design margins, receiver robustness, and advanced jitter analysis in the context of Gen5 systems.

Frequently asked questions about High-Speed I/O Pad IP

What is SMIC 0.25um 2.5V/3.3V PCI I/O Cells Library?

SMIC 0.25um 2.5V/3.3V PCI I/O Cells Library is a High-Speed IP core from VeriSilicon Microelectronics (Shanghai) Co., Ltd. listed on Semi IP Hub. It is listed with support for smic.

How should engineers evaluate this High-Speed?

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