1KByte EEPROM IP with configuration 66p16w8bit
130GF_EEPROM_04 is a nonvolatile electrically erasable programmable read-only memory (EEPROM) with volume 1056 Byte (8(bit per wo…
- GlobalFoundries
- 130nm
- BCD
- Pre-Silicon
Embedded memory IP cores are fundamental components in modern SoC and ASIC designs, providing fast and efficient on-chip data storage for processors, accelerators, and peripherals.
These IP cores include a wide range of memory types such as SRAM, ROM, register files, and non-volatile memories like Flash and EEPROM, enabling optimized performance and power efficiency.
This catalog allows you to compare embedded memory IP cores from leading vendors based on density, access time, power consumption, and process node compatibility.
Whether you are designing high-performance processors, AI accelerators, automotive systems, or IoT devices, you can find the right embedded memory IP for your design.
1KByte EEPROM IP with configuration 66p16w8bit
130GF_EEPROM_04 is a nonvolatile electrically erasable programmable read-only memory (EEPROM) with volume 1056 Byte (8(bit per wo…
2048bits EEPROM with configuration 16p8w16bit
130GF_EEPROM_05 is a nonvolatile electrically erasable programmable read-only memory (EEPROM) with volume 2048bit, which is organ…
1Kbyte EEPROM IP with configuration 64p8w16bit
The block is a nonvolatile electrically erasable programmable read-only memory (EEPROM) with volume 1 Kbyte (16(bit per word) x 8…
36Kbyte EEPROM IP with configuration 288p32w32bit
The block is a nonvolatile electrically erasable programmable read-only memory (EEPROM) with volume 36Kbyte (32(bit per word) x 3…
Single Rail SRAM GLOBALFOUNDRIES 22FDX
Ultra-low voltage logic designs using adaptive body biasing demand dense SRAM solutions which fully integrate in the ABB aware im…
Dual Rail SRAM Globalfoundries 22FDX
Ultra-low voltage logic designs using adaptive body biasing demand dense SRAM solutions which fully integrate in the ABB aware im…
Dual Port Register File Compiler (1 Read-only port, 1 Write-only port) - GF 22FDX+
2 Port Register File Bit Cell Power Supply (V) TP185SL 0.8
Single Port High-Speed Multi Bank SRAM Memory Compiler on GF 22FDX+
High Speed Multi Bank 32KWords Deep.
Single Port Low Leakage Register File Compiler - GF 22FDX+
SP Ultra Low Leakage Reg File.
Single Port Low Leakage SRAM Memory Compiler on GF 22FDX+
SP Ultra Low Leakage SRAM.
Single Port Low Leakage Register File Compiler - GF 22FDX+
Single port register file compiler with low power retention mode and three speed options Bit Cell Power Supply (V) P110UL 0.8
GF 22FDX 5.5V OTP Auto-Grade1 IO Inline
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
Single Port Low Leakage SRAM Memory Compiler on GF 22FDX
Single port SRAM compiler with optional redundancy, low power retention mode, and three speed options
Single Port Low Leakage Register File Compiler - GF 22FDX
Single port register file compiler with low power retention mode and three speed options Bit Cell Power Supply (V) P110UL 0.8
Low Power Memory Compiler - 1-Port Register File Compiler - GF 22nm FDX
Specifically designed for ultra-low power applications, this memory leverages body biasing to dramatically reduce power consumpti…
Low Power Memory Compiler - Single Port SRAM - GF 22nm FDX
Natively designed to be ultra-low power, this memory leverages body biasing to reduce static power consumption, meeting the strin…
3.6Kbit EEPROM IP with configuration 28p8w16bit
130GF_EEPROM_08 IP is a nonvolatile electrically erasable programmable read-only memory (EEPROM) with volume 3.6 Kbits, which is …
GF 22FDX 5.5V OTP Auto-Grade1 IO Staggered
Designers face the challenge of creating secure, cost-effective, low power, and reliable SoC designs.
UHF RFID tag IP with 3.6kBit EEPROM and -18dBm sensitivity
130GF_RFID_EPCGen2_01 IP is intended for use in passive UHF transponder applications.
NVM OTP in GF (180nm, 130nm, 65nm, 55nm, 40nm, 28nm, 22nm, 12nm)
Synopsys Non-Volatile Memory (NVM) IP provides reprogrammable NVM supporting up to 1 million bits (1Mbit) configurations in stand…