3.3v to 1.1v/200mA REG, Linear Regulator, UMC 40nm LP/RVT LowK Logic Process
3.3v to 1.1v/200mA REG, Linear Regulator, UMC 40nm LP/RVT LowK Logic Process
- UMC
- 40nm
- LP
Faraday Technology Corporation is a leading fabless ASIC and silicon IP provider. The company's broad silicon IP portfolio includes I/O, Cell Library, Memory Compiler, ARM-compliant CPUs, DDRI/II/III, MPEG4, H.264, USB 2.0/3.0, 10/100 Ethernet, Serial ATA, and PCI Express, etc. Headquartered in Taiwan, Faraday has service and support offices around the world, including the U.S., Japan, Europe, and China. Faraday is listed in Taipei Stock Exchange, ticker 3035.
3.3v to 1.1v/200mA REG, Linear Regulator, UMC 40nm LP/RVT LowK Logic Process
3.3v to 1.1v/200mA REG, Linear Regulator, UMC 40nm LP/RVT LowK Logic Process
3.3V to 1.2V with 180mA driving capability; Linear Regulator; UMC 55nm eFlash LowK Logic process
3.3V to 1.2V with 180mA driving capability; Linear Regulator; UMC 55nm eFlash LowK Logic process
3.3V to 1.2V with 150mA driving capability, Istb=200uA; Linear Regulator; UMC 65nm LP/RVT LowK Logic Process
3.3V to 1.8V with 50mA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3V to 1.8V with 50mA driving capability; Capacitor-free Linear Regulator; UMC 28nm HPC Process
3.3v to 2.5v with 30mA driving capability without external capacitor (Cap-less), use trimming PADs; Linear Regulator; UMC 40nm LP…
3.3V input , Programmable Output 1.8V/1.2V with 300mA driving capability; Linear Regulator; UMC 55nm SP/RVT LowK Logic Process
3.3V to 1.8V/50mA REG with external Capacitor, UMC 28nm HPC Logic and Mixed-Mode Process
3.3V to 1.8V/50mA REG with external Capacitor, UMC 28nm HPC Logic and Mixed-Mode Process
1.4V~3.6V to 1.2V with 100mA driving capability; Linear Regulator; UMC 90nm LL/RVT LowK LOGIC PROCESS minLib Cell Library
3.3V to 1.8V/50mA REG with external Capacitor, UMC 28nm HPC Logic and Mixed-Mode Process
3.3V to 1.8V/50mA REG with external Capacitor, UMC 28nm HPC Logic and Mixed-Mode Process
3.3V to 2.5V with 100mA driving capability; Linear Regulator ; MIFS C40LP Logic Process
3.3V to 2.5V with 100mA driving capability; Linear Regulator ; MIFS C40LP Logic Process
3.3V to 2.5V Regulator with 150mA; UMC 40nm LP/RVT LowK Logic Process
3.3V to 2.5V Regulator with 150mA; UMC 40nm LP/RVT LowK Logic Process
3.3V to 1.8V/150mA REG with external Capacitor, UMC 28nm HPC Logic and Mixed-Mode Process
3.3V to 1.8V/150mA REG with external Capacitor, UMC 28nm HPC Logic and Mixed-Mode Process
3.3v to 2.5v/5mA , REG, Linear Regulator, UMC 55nm LP/RVT Logic Process
3.3v to 2.5v/5mA , REG, Linear Regulator, UMC 55nm LP/RVT Logic Process
2.7V~3.3V to 1.8V with 150mA driving capability; Linear Regulator; UMC 55nm LP/RVT LowK Logic Process
3.3V to 1.1V / 600mA PWM, Switching Regulator using MIFS C40LP Logic Process
3.3V to 1.1V / 600mA PWM, Switching Regulator using MIFS C40LP Logic Process
3.3V to 1.1V / 600mA PWM, Switching Regulator, UMC 40nm LP/RVT LowK Logic Process
3.3V to 1.1V / 600mA PWM, Switching Regulator, UMC 40nm LP/RVT LowK Logic Process
2 Input Power Switch; UMC 55nm LP/RVT LowK Logic Process
2 Input Power Switch; UMC 55nm LP/RVT LowK Logic Process
Input VCC=1.1V& VCC3V=3.3V, 1.1/3.3V Power On Reset; UMC 40nm LP Logic Process
Input VCC=1.1V& VCC3V=3.3V, 1.1/3.3V Power On Reset; UMC 40nm LP Logic Process
Input VCC=1.2V & VCC3V=3.3V, 1.2/3.3V Power On Reset; UMC 55nm uLP Logic Process
Input VCC=1.2V & VCC3V=3.3V, 1.2/3.3V Power On Reset; UMC 55nm uLP Logic Process
Input VCC=1.2V& VCC3V=3.3V, 1.2/3.3V Power On Reset; UMC 55nm LP Logic Process
Input VCC=1.2V& VCC3V=3.3V, 1.2/3.3V Power On Reset; UMC 55nm LP Logic Process