Synopsys offers low jitter Programmable Crystal Oscillator that supports 5 MHz to 50 MHz, with optimized design to reduce jitter …
- TSMC
- 3nm
- N3E
Semiconductor IP cores (Intellectual Property cores) are reusable design blocks used in SoC and ASIC development to accelerate time-to-market and reduce design complexity.
These IP cores span a broad range of technologies, including Analog & Mixed Signal, Compute Acceleration, Graphics & Vision, Interface Connectivity , Memory Interfaces, Security, Wireless, System Peripheral, Embedded Memories, and Foundation Libraries. The catalog covers everything from analog front-ends, data converters, processors, DSPs, AI accelerators, and imaging solutions to high-speed connectivity, memory controllers and PHYs, cryptographic engines, embedded memory macros, standard cell libraries, and wireless communication IP.
This catalog allows you to explore and compare IP cores from leading vendors, based on performance, power, process node compatibility, and application domain.
Whether you are designing for automotive, wireless communication, consumer electronics, or data centers, you can find the right IP solutions for your system requirements.
Synopsys offers low jitter Programmable Crystal Oscillator that supports 5 MHz to 50 MHz, with optimized design to reduce jitter …
Synopsys offers low jitter Programmable Crystal Oscillator that supports 5 MHz to 50 MHz, with optimized design to reduce jitter …
Intel 18A 1.2V XTAL Oscillator
Synopsys offers low jitter Programmable Crystal Oscillator that supports 5 MHz to 50 MHz, with optimized design to reduce jitter …
GF 22FDX 5.5V OTP Auto-Grade1 IO Inline
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
NVM OTP XBC TSMC N5A 1.2V Automotive Grade 1 with Functional Safety
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
NVM MTP EEPROM TSMC 65nm LP 2.5V SVT, SVT/HVT
Synopsys MTP EEPROM Non-Volatile Memory (NVM) IP is a Multi-Time Programmable (MTP) block developed in standard logic CMOS proces…
NVM MTP EEPROM TSMC 40nm LP 2.5V
Synopsys MTP EEPROM Non-Volatile Memory (NVM) IP is a Multi-Time Programmable (MTP) block developed in standard logic CMOS proces…
NVM MTP EEPROM TSMC 180nm BCDG2 5V
Synopsys MTP EEPROM Non-Volatile Memory (NVM) IP is a Multi-Time Programmable (MTP) block developed in standard logic CMOS proces…
NVM MTP EEPROM TSMC 180nm BCDG2 5V
Synopsys MTP EEPROM Non-Volatile Memory (NVM) IP is a Multi-Time Programmable (MTP) block developed in standard logic CMOS proces…
NVM MTP ULP TSMC 180nm CM018RI 3.3V
The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increa…
The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increa…
NVM MTP ULP TSMC 180nm G 3.3V 125C Operation
The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increa…
The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increa…
NVM MTP ULP SilTerra 180nm G 3.3V
The Synopsys Multi-Time Programmable (MTP) Ultra-Low Power (ULP) Non-Volatile Memory (NVM) IP reduces area and power while increa…
Synopsys Medium Density Non-Volatile Memory (NVM) IP, an alternative to embedded flash memory, provides up to 256 Kbits of on-chi…
NVM FTP Trim TowerJazz 180nm SL 3.3V
The Synopsys Few Time Programmable (FTP) Trim Non-Volatile Memory (NVM) IP provides the capability of reprogrammable NVM in a sta…
The Synopsys Few Time Programmable (FTP) Trim Non-Volatile Memory (NVM) IP provides the capability of reprogrammable NVM in a sta…