SMIC 0.18um 3.3v-1.8v Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which converts an external high voltage power supply into su…
- SMIC
- 180nm
- G
LDO Voltage Regulator IP cores provide low-noise linear voltage regulation for sensitive loads in modern SoC and ASIC designs.
These IP cores are widely used to create clean local supplies for analog, RF, sensor, and always-on circuits where noise and simplicity matter more than peak switching efficiency
This catalog allows you to compare LDO Voltage Regulator IP cores from leading vendors based on dropout voltage, output noise, load regulation, and process node compatibility.
Whether you are designing analog subsystems, RF circuits, sensor interfaces, or always-on domains, you can find the right LDO Voltage Regulator IP for your application.
SMIC 0.18um 3.3v-1.8v Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which converts an external high voltage power supply into su…
SMIC 0.13μm 1.62~3.3v->1.2v 230mA Power Regulator
Targeted in SMIC 0.13μm 1.2v/3.3v logic process, current design of Power Regulator is to provide 1.2v power supply which is regul…
SMIC 0.18um 3.3v��1.8v Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which converts an external high voltage power supply into su…
SMIC 0.18um 3.3v-1.8v Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which converts an external high voltage power supply into su…
SMIC 0.13μm 1.62~3.3v->1.2v Power Regulator
Targeted in SMIC 0.13μm 1.2v/3.3v logic process, current design of Power Regulator is to provide 1.2v power supply which is regul…
SMIC 0.13μm 1.62~3.3v->1.2v Power Regulator
Targeted in SMIC 0.13μm 1.2v/3.3v logic process, current design of Power Regulator is to provide 1.2v power supply which is regul…
IBM 65nm 3.3v-1.0v Power Regulator
This IP is a 3.3V to 1.0V power regulator in IBM 65nm 1.0V/2.5V process.
SMIC 0.18¦Ìm 5v-3.3v/1.8v Power Regulator
Based on SMIC 0.18¦Ìm 3.3v/1.8v Logic process, this design of Power Regulator is to provide both 3.3v and 1.8v power supplies whi…
SMIC 0.13um 3.3v/1.2v Power Regulator
Present IP devises a NO-CAP regulator which generates 1.2V voltage from 3.3V power supply and provides100mA plus loading current.
UMC 0.18um 5v-3.3v Power Regulator
Based on UMC 0.18um 3.3v/1.8v Logic Process, current design of Power Regulator is to provide the 3.3v voltage output regulated fr…
UMC 0.18um 5v-3.3v Power Regulator
Based on UMC 0.18um 3.3v/1.8v Logic Process, current design of a Power Regulator is to provide a 3.3v voltage output regulated fr…
UMC 0.18um 3.3v-1.8v 150mA Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which provides suitable power supply for the core by regulat…
SMIC 0.25um 3.3v-2.5v Power regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which converts an external high voltage power supply into su…
SMIC 0.25um 5v~2.5v Voltage Regulator
The present IP is a voltage regulator to generate 2.5v power for on chip circuits.
SMIC 0.18um 5v-3.3v/1.8v Power Regulator
Based on SMIC 0.18um 3.3v/1.8v Logic process, current design of the Power Regulator is to provide both 3.3v and 1.8v power suppli…
SMIC 0.18um 5v-3.3v Power Regulator
Based on SMIC 0.18um 3.3v/1.8v Logic Process, current design of Power Regulator is to provide the 3.3v voltage output regulated f…
SMIC 0.18um 5v-3.3v Power Regulator
Based on SMIC 0.18um 3.3v/1.8v Logic Process, current design of a Power Regulator is to provide the 3.3v voltage output regulated…
SMIC 0.18um 3.3v-1.8v Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which provides suitable power supply for the core by regulat…
SMIC 0.18um 3v/4.2v->1.8v Power Regulator
Present IP is to generate 1.8v supply voltage from an external Button Cell or Lithium Battery.
SMIC 0.18um 3.3v-1.8v Power Regulator
Power Regulator, also called Voltage Regulator, is an on-chip device which converts an external high voltage power supply into su…