Embedded Flash IP,64Kx8 bits for 1.8V/5V/32V HV
eMemory's NeoFlash IP is a cost-effective embedded Flash solution for both foundries & customers.
- TSMC
- 160nm
- In Production
eMemory Technology Inc. (eMemory) was established at Hsinchu Science Park, the famous Taiwan Silicon Valley, in August 2000. eMemory is a technology oriented company focusing on the development of logic embedded non-volatile memories such as Flash, MTP and OTP and providing logic embedded non-volatile memory IP solutions as well as related technical services.
Embedded Flash IP,64Kx8 bits for 1.8V/5V/32V HV
eMemory's NeoFlash IP is a cost-effective embedded Flash solution for both foundries & customers.
Embedded EEPROM IP, 512x16 bits for 1.2V/5V BCD
eMemory's NeoEE IP is a cost-effective embedded EEPROM solution for both foundries & customers.
Embedded EEPROM IP, 512x16 bits for 1.2V/5V BCD
eMemory's NeoEE IP is a cost-effective embedded EEPROM solution for both foundries & customers.
Embedded EEPROM IP, 512x8 bits for 1.8V/5V BCDA
eMemory's NeoEE IP is a cost-effective embedded EEPROM solution for both foundries & customers.
Embedded EEPROM IP, 512x8 bits for 5V BCD1340HP
eMemory's NeoEE IP is a cost-effective embedded EEPROM solution for both foundries & customers.
Embedded EEPROM IP, 256x8 bits for 5V BCD
eMemory's NeoEE IP is a cost-effective embedded EEPROM solution for both foundries & customers.
Embedded EEPROM IP, 256x8 bits for 1.8V/5V Logic
eMemory's NeoEE IP is a cost-effective embedded EEPROM solution for both foundries & customers.
Embedded OTP (One-Time Programmable) IP, 8x32 bits for 1.2V/2.5V LP
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.
Embedded OTP (One-Time Programmable) IP, 8Kx8 bits for 1.8V/6V/30V BCDlite
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, 8Kx8 bits for 1.8V/6V 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, 8Kx8 bits for 1.8V/6V/42V HV_MR
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, 8Kx8 bits for 1.8V/5V/12V/15V/20V/24V/40V 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, 8Kx8 bits for 1.8V/3.3V ULL
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, 8Kx8 bits for 1.2V/8V/32V HV_RAMless
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.
Embedded OTP (One-Time Programmable) IP, 8Kx8 bits for 1.2V/8V/+-16V HV
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.
Embedded OTP (One-Time Programmable) IP, 8Kx8 bits for 1.2V/8V/+-16V HV
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.
Embedded OTP (One-Time Programmable) IP, 8Kx8 bits for 1.2V/6V/32V HV_RAMless
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.
Embedded OTP (One-Time Programmable) IP, 8Kx8 bits for 1.2V/6V/32V HV
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, 8Kx8 bits for 1.2V/5V/32V HV
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.
Embedded OTP (One-Time Programmable) IP, 8Kx8 bits for 1.1V/8V/32V HV
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.