256x8 Bits OTP (One-Time Programmable) IP, TSMC 40G 0.9/1.8V Process
The AT256X8T40G6AA is organized as 256 bits by 8 one-time programmable (OTP).
- TSMC
- 40nm
- G
- Silicon Proven
eFuse / OTP IP cores provide reusable on-chip storage structures for processors, controllers, and accelerators in modern SoC and ASIC designs.
These IP cores support one-time programmable non-volatile storage for configuration, trimming, and security data, helping designers balance density, speed, power, and reliability in memory-centric subsystems
This catalog allows you to compare eFuse / OTP IP cores from leading vendors based on density, performance, power efficiency, and process node compatibility.
Whether you are designing secure provisioning, chip configuration, calibration storage, or Root-of-Trust systems, you can find the right eFuse / OTP IP for your application.
256x8 Bits OTP (One-Time Programmable) IP, TSMC 40G 0.9/1.8V Process
The AT256X8T40G6AA is organized as 256 bits by 8 one-time programmable (OTP).
256x8 Bits OTP (One-Time Programmable) IP, TSMC 22ULP 0.8V/1.8V process
The AT256X8T22ULP6AA is organized as 256 bits by 8 one-time programmable (OTP).
4Kx32 Bits OTP (One-Time Programmable) IP, TSMC 40nm ULP 1.1V/2.5V Process
The AT4K32T40ULP7ZC is organized as 4K-bits by 32 one-time programmable (OTP).
1x64 Bits OTP (One-Time Programmable) IP, TSMC 0.18um Mixed-Signal 1.8V/3.3V Process
The AT1X64T180MM0AB is organized as one by 64 bits one-time programmable (OTP).
1Kx32 Bits OTP (One-Time Programmable) IP, TSMC 40ULP 1.1/2.5V Process
The AT1K32T40ULP6AA is organized as a 1K-bit by 32 one-time programmable (OTP).
512x8 Bits OTP (One-Time Programmable) IP, SMIC 110nm 1.2V/3.3V Mixed Signal Generic Process
The AT512X8Z110LL0AA is organized as a 512-bit by 8 one-time programmable (OTP).
256x8 Bits OTP (One-Time Programmable) IP, TSMC 0.13um 1.5V/3.3V LP Process
The AT256X8T130LP0AA is organized as a 256-bit by 8 one-time programmable (OTP).
256x1 Bits OTP (One-Time Programmable) IP, UMC 110 nm 1.2V/3.3V L110AE Process
The AT256X1U110MAE0AC is organized as a 256-bit by 1 one-time programmable (OTP).
32x22 Bits OTP (One-Time Programmable) IP, X-Fab 0.18um XH018 1.8V/3.3V Process
The AT32X22B180GN0AA is organized as a 32 by 22 one-time programmable (OTP).
8Kx8 Bits OTP (One-Time Programmable) IP, VIS 0.15µm 1.8V/5V BCD GIII Process
The AT8K8V150BCD0DB is organized as an 8K-bit by 8 one-time programmable (OTP).
The ATO00256X1TS180MSG3NA is organized as a 256 bit by 1 one-time programmable (OTP).This is a kind of non-volatile memory fabric…
1x64 Bits OTP (One-Time Programmable) IP, GlobalFoundries 22nmFDX 0.8V/1.8V Process
The AT1X64G22FDX0AA is organized as a 1 by 64 one-time programmable (OTP).
NVM OTP in Dongbu (180nm, 150nm, 110nm)
Synopsys Non-Volatile Memory (NVM) IP provides reprogrammable NVM supporting up to 1 million bits (1Mbit) configurations in stand…
4Kx8 Bits OTP (One-Time Programmable) IP, VIS 0.15µm 1.8V BCD Process
The AT4K8V150BCD0AA is organized as a 4K-bits by 8 one-time programmable.
4Kx8 Bits OTP (One-Time Programmable) IP, GF 22nm FDX 0.8V/1.8V Process
The AT4K8G22FDX0AA is organized as a 4K-bits by 8 one-time programmable memory.
64X1 Bits OTP (One-Time Programmable) IP, GF 22nm FDX 0.8V/1.8V Process
The AT64X1G22GN0AA is organized as a 64-bit by 1 one-time programmable (OTP).
Embedded OTP (One-Time Programmable) IP, 768x10 bits for 3.3V Green
eMemory's NeoBit OTP (One-Time Programmable) IP can be implemented seamlessly in various CMOS technologies such as logic, mixed-m…
Embedded OTP (One-Time Programmable) IP, 512x38 bits for 1.5V/5V BCD
eMemory's NeoBit OTP (One-Time Programmable) IP can be implemented seamlessly in various CMOS technologies such as logic, mixed-m…
Embedded OTP (One-Time Programmable) IP, 512x32 bits for 1.5V/5V LP
eMemory's NeoBit OTP (One-Time Programmable) IP can be implemented seamlessly in various CMOS technologies such as logic, mixed-m…
Embedded OTP (One-Time Programmable) IP, 512x32 bits for 1.5V/6V/32V MTE
eMemory's NeoBit OTP (One-Time Programmable) IP can be implemented seamlessly in various CMOS technologies such as logic, mixed-m…