12-bit, 1.6 GSPS DAC Ultra Low Power
The ODT-DAC-12B1P6G-7T-122 is a low-power current steering 12-bit DAC that operates at an update rate of 1.6GSPS.
- 12 Bit
- TSMC
- 7nm
- N7+
12-bit, 1.6 GSPS DAC Ultra Low Power
The ODT-DAC-12B1P6G-7T-122 is a low-power current steering 12-bit DAC that operates at an update rate of 1.6GSPS.
GbE (10/100/1000 Base-T) PHY IP, Silicon Proven in TSMC 28HPC+
For Gigabit 10/100/1000 Ethernet applications, the GPHY is a integrated single chip.
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 40ULP
The full gamut of PCIe 2.0 Base operations is covered by PCIe 2.0 transceiver IP.
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
The whole spectrum of PCIe 2.0 Base applications is offered by PCIe 2.0 transceiver IP.
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 12FFC
A wide variety of PCIe 2.0 Base applications are available with PCIe 2.0 transceiver IP.
PCIe 2.0 Serdes PHY IP, Silicon Proven in TSMC 7nm
A comprehensive selection of PCIe 2.0 Base applications is offered by PCIe 2.0 transceiver IP.
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 22ULP
The PCIe 3.0 PHY IP is designed to support increased applications with its low-power, multi-lane, high-performance design.
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
High-bandwidth applications can avail advantage of PCIe 3.0 PHY IP's high performance, multi-lane scalability, and low-power layo…
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 12FFC
To support high-bandwidth applications, PCIe 3.0 PHY IP provides a low-power, multi-lane, high-performance design.
PCIe 3.0 Serdes PHY IP, Silicon Proven in TSMC 7nm
For the high-bandwidth applications, PCIe 3.0 PHY IP offers high-performance, multi-lane capabilities, and low-power design.
PCIe 4.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
For high-bandwidth applications, the PCIe 4.0 PHY IP delivers high-performance, multi-lane capabilities and a low-power design.
PCIe 4.0 Serdes PHY IP Silicon Proven in TSMC 7nm
The high-bandwidth applications benefit from the low power, multi-lane, and high-performance PCIe 4.0 PHY IP's design.
PCIe 5.0 Serdes PHY IP, Silicon Proven in TSMC 16FFC
For high-bandwidth applications, the PCIe 5.0 PHY IP offers excellent performance, multi-lane capabilities, and low power design.
LPDDR4/ DDR4/ DDR3L PHY IP - 1866Mbps (Silicon Proven in TSMC 28HPC+)
The LPDDR4/ DDR4/ DDR3L Combo PHY IP offers low latency and supports throughput of up to 1866Mbps.
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 1.2V/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/25V 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/25V 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/25V HV
NeoFuse is a small-form factor logic NVM technology with the advantages of working on low power and being reliable and secure.