TSMC N5 Source Sync 3DIO Library
Synopsys 3DIO IP Solution is a specialized IO for multi-die integration.
- TSMC
- 5nm
- N5
Foundation Library IP cores provide the fundamental building blocks required for ASIC and SoC implementation, enabling efficient digital design, physical synthesis, timing closure, and manufacturing across advanced semiconductor process nodes.
This category includes both Standard Cell Libraries and I/O Pad Libraries, covering logic cells, sequential elements, low-power cells, level shifters, ESD-protected I/O interfaces, and process-specific implementation libraries optimized for leading foundries.
This catalog enables semiconductor engineers to evaluate and compare Foundation Library IP solutions from multiple vendors based on process node support, PPA (Power, Performance, Area) characteristics, library characterization quality, voltage domains, reliability requirements, and integration with modern EDA design flows.
Whether targeting AI accelerators, automotive SoCs, networking devices, wireless chipsets, or high-performance computing applications, engineers can identify the Foundation Library IP best suited to their technology, performance, and manufacturing requirements.
TSMC N5 Source Sync 3DIO Library
Synopsys 3DIO IP Solution is a specialized IO for multi-die integration.
Synopsys 3DIO IP Solution is a specialized IO for multi-die integration.
Synopsys 3DIO IP Solution is a specialized IO for multi-die integration.
Over-voltage Protection Module
Over-voltage Protection Module enabling direct connection of voltage regulators to 5.5 V batteries with standard 1.8 V I/O devices
55nm Specialized Analog I/O Library
Specialized Analog I/O Library with 1.2V, 1.8V, 3.3V, and 5V integrated Analog I/Os and ESD; includes a custom 12V I/O ESD soluti…
Over-voltage Protection Module
Over-voltage Protection Module enabling direct connection of voltage regulators to 5.5 V batteries with standard 1.8 V I/O devices
TSMC 5nm (N5) 1.2V/1.8V Basekit Libraries
Synopsys’ General-Purpose I/O (GPIO) Library IP provides designers with the input/output operation, functionality, and reliabilit…
Synopsys Inter-Integrated Circuit (I2C) I/O library is used for two wire interfaces to connect low-speed devices like EEPROM, A/D…
GLOBALFOUNDRIES 12LP 3.3v I2C Auto Grade 2 Library
Synopsys Inter-Integrated Circuit (I2C) IO library is used for two wire interfaces to connect low-speed devices like EEPROM, A/D,…
Synopsys Inter-Integrated Circuit (I2C) I/O library is used for two wire interfaces to connect low-speed devices like EEPROM, A/D…
GF 22FDX 1.8V/3.3V I2C with 5V Fail-safe & Fail-tolerant Auto Grade 1 Library
Synopsys Inter-Integrated Circuit (I2C) IO library is used for two wire interfaces to connect low-speed devices like EEPROM, A/D,…
TSMC 7nm (7FF) 3.3V SMBUS (I2C) IO
Synopsys Inter-Integrated Circuit (I2C) I/O library is used for two wire interfaces to connect low-speed devices like EEPROM, A/D…
Synopsys Inter-Integrated Circuit (I2C) IO library is used for two wire interfaces to connect low-speed devices like EEPROM, A/D,…
GLOBALFOUNDRIES 12LP 3.3v LVDS Rx Auto Grade 2 Library
Synopsys Low Voltage Differential Signaling (LVDS) IO library is a high-frequency interface that uses differential signals for da…
Synopsys Low Voltage Differential Signaling (LVDS) I/O library is a high-frequency interface that uses differential signals for d…
Synopsys Low Voltage Differential Signaling (LVDS) I/O library is a high-frequency interface that uses differential signals for d…
GF 22FDX 1.8V LVDS(Tx & Rx) Auto Grade 1 Library
Synopsys Low Voltage Differential Signaling (LVDS) IO library is a high-frequency interface that uses differential signals for da…
Synopsys Low Voltage Differential Signaling (LVDS) I/O library is a high-frequency interface that uses differential signals for d…
Synopsys Low Voltage Differential Signaling (LVDS) I/O library is a high-frequency interface that uses differential signals for d…
Synopsys Low Voltage Differential Signaling (LVDS) IO library is a high-frequency interface that uses differential signals for da…