Vendor: Aragio Solutions Category: High-Speed

ONFI_4 IO Pad Set

The ONFI 4.0 library provides the combo driver / receiver cells, the ODT / driver impedance calibration cell, and the voltage ref…

TSMC 28nm Silicon Proven View all specifications

Overview

The ONFI 4.0 library provides the combo driver / receiver cells, the ODT / driver impedance calibration cell, and the voltage reference cell to support both single-ended and differential ONFI 4.0 signaling. This library also meets the requirements for ONFI 3.0 and Toggle 2.0 signaling. The pad set includes a full complement of power, spacer, and adapter cells to assemble a complete pad ring by abutment. An included rail splitter allows isolated ONFI domains to be placed in the same pad ring with other power domains while maintaining continuous VDD/VSS in the pad ring for robust ESD protection.

Key features

  • ONFI Differential Clock Driver / Receiver Features:
  • ? Driver – user-selectable on-die termination and
  • programmable drive strength with ODT / ZO calibration
  • and programmable “off” state control.
  • o ODT Rtt = 30? / 50? / 75? / 100? / 150?
  • o ZOUT = 18? / 25? / 35? / 50?
  • o Off state – Z / pull-up / pull-down / bus keeper
  • ? Receiver – single-ended and true differential outputs
  • ? Powered by 1.2V / 1.8V I/O and 0.9V core supplies
  • ? Maximum operating frequency – 400 MHz

What’s Included?

  • a. Physical abstract in LEF format (.lef)
  • b. Timing models in Synopsys Liberty formats (.lib and .db)
  • c. Calibre compatible LVS netlist in CDL format (.cdl)
  • d. GDSII stream (.gds)
  • e. Behavioral Verilog (.v)
  • f. Layout Parasitic Extraction (LPE) SPICE netlist (.spice)
  • g. Databook (.pdf)
  • h. Library User Guide - ESD Guidelines (.pdf)

Silicon Options

Foundry Node Process Maturity
TSMC 28nm 28nm 280 nm Silicon Proven

Specifications

Identity

Part Number
RGO_TSMC28_18V18_HPCP_20C_ONFI_3_4
Vendor
Aragio Solutions
Type
Silicon IP

Provider

Learn more about High-Speed IP core

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.

High-Speed SerDes Design: Architecture, Equalization, and CDR Circuits

Today, High-Speed SerDes serves as the foundation of industry standards such as PCIe, Ethernet, USB, and UCIe, making it a critical technology for modern semiconductor systems. As the industry progresses towards higher data rates and increasingly complex architectures, SerDes continues to play a central role in enabling reliable and scalable connectivity, especially at lower nodes.

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 ONFI_4 IO Pad Set?

ONFI_4 IO Pad Set is a High-Speed IP core from Aragio Solutions listed on Semi IP Hub. It is listed with support for tsmc Silicon Proven.

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.

×
Semiconductor IP