Certus is pleased to offer Secure Digital compliant IOs in technology nodes.
- TSMC
- 28nm
- Silicon Proven
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.
Certus is pleased to offer Secure Digital compliant IOs in technology nodes.
4 Gbps DDR CML receiver and transmitter
055TSMC_CML_01 is a library including: - CML receiver (CML_RX); - CML transmitter (CML_TX).
Library of LVDS IOs cells for TSMC 65LP
The nSIO2000_TS65LP_2V5_1V2 library is an IO cells library combining various LVDS and general purpose I/O powered at 2.5V/1.2V or…
Library of LVDS IOs cells for TSMC 40LP
The nSIO2000_TS40LP_2V5_1V1 library is an IO cells library combining various LVDS and general purpose I/O powered at 2.5V/1.1V or…
3.125 Gbps DDR 1-channel CML transmitter
065TSMC_CML_02 core logic interface includes signal pins (INP1, INP2 and INN1, INN2) for data transmission, control pin EN_TX to …
065TSMC_CML_01 core logic interface includes complementary output signal pins (OUTp, OUTn) for data transmission and enable pin E…
Certus Semiconductor has a long history of working across a broad range of technology nodes from 180nm down to the latest FinFet …
HDMI, LVDS, RF and Analog Pads in TSMC 45/40nm
A 1.0V to 5V Analog I/O library that includes an HDMI, LVDS, and Analog/RF Low Capacitance pad set in TSMC 45/40nm HPM process.
1.8V/3.3V Switchable GPIO with I2C, HDMI, LVDS, ESD & Analog in TSMC 28nm
A TSMC 28nm HPM/HPC/HPC+ Wirebond I/O Library with a switchable 1.8V/3.3V GPIO, 5V I2C ODIO, 1.8V & 3.3V Analog Cells, ESD and mo…
TSMC N5 1.2V/1.5V/1.8V GPIO Platform
Synopsys’ General-Purpose I/O (GPIO) Library IP provides designers with the input/output operation, functionality, and reliabilit…
TSMC N4P LVDS IO 1.2V MS add-on
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) IO library is a high-frequency interface that uses differential signals for da…
TSMC N7 1.8V LVDS IO with CDM 7A, AG2 Platform
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) IO library is a high-frequency interface that uses differential signals for da…
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) IO library is a high-frequency interface that uses differential signals for da…
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) IO library is a high-frequency interface that uses differential signals for da…
TSMC N3P 1.2V High-Speed Test IO
The AI and HPC industries are advancing toward chiplet-based designs to achieve superior performance, as traditional monolithic S…
0.9V SLVS Transceiver in TSMC 22nm
A 200Mbps 0.9V SLVS transceiver solution.