2 port Linear regulator for FXSATA168HD0A ; UMC 90nm SP/RVT LowK Logic Process
2 port Linear regulator for FXSATA168HD0A ; UMC 90nm SP/RVT LowK Logic Process
- UMC
- 90nm
- SP
Power management IP cores are essential components in modern SoC and ASIC designs, enabling efficient power regulation, distribution, and energy optimization.
These IP cores include functions such as voltage regulators, DC-DC converters, LDOs, battery management, and power monitoring, ensuring reliable and energy-efficient system operation.
This catalog allows you to compare power management IP cores from leading vendors based on efficiency, power consumption, integration level, and process node compatibility.
Whether you are designing mobile devices, automotive systems, IoT products, or high-performance computing platforms, you can find the right power management IP for your system.
2 port Linear regulator for FXSATA168HD0A ; UMC 90nm SP/RVT LowK Logic Process
2 port Linear regulator for FXSATA168HD0A ; UMC 90nm SP/RVT LowK Logic Process
Source and Sink Current 100mA LDO for 28nm cascade I/O, UMC 28nm HPC Logic and Mixed-Mode Process
Source and Sink Current 100mA LDO for 28nm cascade I/O, UMC 28nm HPC Logic and Mixed-Mode Process
3.3V to 0.75*VCC33A with 5mA driving capability with external capacitor; Linear Regulator; UMC 55nm LP/RVT LowK Logic Process
3.3V to 2.5V with 5mA driving capability; Capacitor-free Linear Regulator; UMC 0.11um HS/AE Logic Process
3.3V to 2.5V with 5mA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3V to 2.5V with 5mA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3V to 2.5V with 5mA driving capability; Capacitor-free Linear Regulator; UMC 40nm Logic/Mixed-Mode Low Power Process
3.3V to 1.1V /50mA REG; Linear Regulator; UMC 40nm LP/RVT LowK Logic Process_x005F_x000D_
3.3V to 1.1V /50mA REG; Linear Regulator; UMC 40nm LP/RVT LowK Logic Process
3.3V to 2.0V with 288mA driving capability with external capacitor,use trimming ports (need e-Fuse IP); Linear Regulator; UMC 28n…
3.3V to 1.2V/0.9V with 100mA driving capability;Linear Regulator, UMC 55nm uLP/HVT Low-K Logic Process
3.3V to 1.2V/0.9V with 100mA driving capability;Linear Regulator, UMC 55nm uLP/RVT Low-K Logic Process
3.3V to 0.3V and VCCK-0.3V / 10mA voltage source for N/P well forward body bias, Linear Regulator, UMC 55nm uLP/RVT Low-K Logic P…
3.3V to 0.9V with 2mA driving capability,Linear Regulator; UMC 28nm HPC Logic and Mixed-Mode process
3.3V to 0.9V with 2mA driving capability,Linear Regulator; UMC 28nm HPC Logic and Mixed-Mode process
3.3v to 1.2v/1ma with power switch function ,UMC 28nm HPC Logic process
3.3v to 1.2v/1ma with power switch function ,UMC 28nm HPC Logic process
3.3V to 1.8V with 10uA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3V to 1.8V with 10uA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
1.7V~3.6V to 1.0V with 600mA driving capability, Linear Regulator,UMC 55nm LP/RVT LowK Logic Process
1.7V~3.6V to 1.0V with 600mA driving capability, Linear Regulator,UMC 55nm LP/RVT LowK Logic Process
3.3V to 1.2V with 150mA driving capability; Linear Regulator; UMC 0.13um LOGIC PROCESS
3.3V to 1.2V with 150mA driving capability; Linear Regulator; UMC 0.13um LOGIC PROCESS
3.3V to 0.9V with 50mA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3V to 0.9V with 50mA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3v to 1.2v/150mA REG, Linear Regulator, UMC 55nm LP/RVT LowK Logic process
3.3v to 1.2v/150mA REG, Linear Regulator, UMC 55nm LP/RVT LowK Logic process
3.3V to 1.2V with 150mA driving capability without external capacitor(Cap-less); use trimming ports (need e-Fuse IP); Linear Regu…
3.3V to 1.2V with 350mA driving capability; Linear Regulator; UMC 0.11£gm HS/FSG logic process