The LVDS I/O is a three-module design (input, output and reference block).
- GlobalFoundries
- 40nm
- Silicon Proven
High-Speed I/O Pad Library IP cores provide the pad-level interface between silicon and the package or board environment in modern SoC and ASIC designs.
These IP cores support pad cells designed for higher data rates, signal integrity, and demanding interface requirements, helping designers create robust I/O implementations across digital, analog, and high-speed domains
This catalog allows you to compare High-Speed I/O Pad Library IP cores from leading vendors based on signal integrity, robustness, integration fit, and process node compatibility.
Whether you are designing high-speed interfaces, networking SoCs, storage controllers, or compute platforms, you can find the right High-Speed I/O Pad Library IP for your application.
The LVDS I/O is a three-module design (input, output and reference block).
The SSTL_15/18 pad set is a full complement of I/O, calibration, power, and spacer cells that are necessary to assemble a padring…
The LVDS library provides an LVDS driver, receiver, and temperature stable voltage reference capable of supporting 16 drivers ope…
The (R)GMII library provides the combo driver / receiver and required support cells for (R)GMII signaling.
The PCI 3.0 library provides the driver / receiver and required support cells for PCI 3.0 signaling.
GLOBALFOUNDARIES 22nm FDSOI LVDS Transceiver Pad
The LVDS IO library provides IO cells for LVDS transmitter and receiver.
2.5V General Purpose Staggered IO Pad Set
A full range of power pads is provided to enable the system designer different options for separate core power (VDD and VSS) and …
Level shifter low to high - GlobalFoundries 130nm RFSOI
Level shifter low to high - GlobalFoundries 130nm RFSOI
Level shifter - GlobalFoundries 130nm RFSOI
Level shifter - GlobalFoundries 130nm RFSOI
2.5V General Purpose Inline IO Pad Set
A full range of power pads is provided to enable the system designer different options for separate core power (VDD and VSS) and …