Design & Reuse
834 IP
401
1.0
VREF Voltage Reference Nano Power Series (400 nA) - UMC 130nm
The SGC21303 is a voltage reference optimized for ultra compact ultra low power applications. The voltage reference has been optimized for area and po...
402
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - GLOBALFOUNDRIES 40nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
403
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - GLOBALFOUNDRIES 55nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
404
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - GLOBALFOUNDRIES,65nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
405
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - TSMC 28nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
406
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - TSMC 40nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
407
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - TSMC 65nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
408
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - TSMC 65nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
409
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - UMC 110nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
410
1.0
VREF Very High PSRR & Low Quiescent Band Gap (90 dB) - UMC 130nm
The SGC21300 is a very high PSRR, very low noise band gap voltage reference that provides a fixed voltage outputs from inputs between 1.8V and 5.5V. T...
411
1.0
GSMC 0.13um 5v-1.5v Power Regulator
This IP is a Low-Dropout (LDO) 5V to 1.5V power regulator with two channel outputs. The max output currents are 50mA (for VD15A output) and 40mA (for ...
412
1.0
GSMC 0.13um 5v-3.3v&1.5v Power Regulator
This IP is a Low-Dropout (LDO) 5V to 3.3V&1.5V power regulator in GSMC 0.13um low power 4P5M e-flash dual gate process. The max output currents are 60...
413
1.0
GSMC 0.13μm Low Power Process 2.6~3.63v -> 1.5v Power Regulator
Targeted in GSMC 0.13μm Low Power 1.5V/3.3V 1P6M process, current design of Power Regulator is to provide 1.5v power supply which is regulated from th...
414
1.0
GSMC 0.18um 3.3v-1.8v Power Regulator
This is a 3.3V to 1.8V power regulator based on GSMC 0.18um 1.8V/3.3V D0 Process. In regulated region, the rated output current is <20mA....
415
1.0
GSMC 0.18um 3.3v/1.8v Power Regulator
Present project is a regulator that generates 1.8v voltage from 3.3v power supply. Based on the GSMC 0.18um 3.3v process, it provides a maximum curren...
416
1.0
GSMC 0.18um 5v-3.3v/1.8v Power Regulator
Based on GSMC 0.18um 3.3v/1.8v Logic process, current design of the Power Regulator is to provide both 3.3v and 1.8v power supplies which are regulate...
417
1.0
GSMC 0.18um Voltage Detector
This IP is a Voltage Detector (VDT) circuit for power management application. When the supply voltage (AVDD33) increases above the detection level (VT...
418
1.0
GSMC 0.18µm 5v-5v/3v/1.8v Power Regulator
This IP is a Low-Dropout (LDO) 5V to 5V/3V/1.8V power regulator in GSMC 0.18μm Logic/EFLASH process. The max rated output current of the PRG is 65mA, ...
419
1.0
CSMS 0.13um 5v-3.3v/1.8v Power Regulator
Based on CSMC 0.13um 3.3v/1.2v Logic process, this design of Low-Dropout (LDO) regulator is to provide both 3.3V and 1.2V supplies that are regulated ...
420
1.0
RTC and PMU Controller on GF 22FDSOI
SGC22300_01_GF_22FDSOI is a Real Time Clock (RTC) based on the leading SGC21510 solution. Using advanced analog design techniques, to guarantee ultra-...
421
1.0
5V to 1.5V Linear Voltage Regulator
The ll_reg1301s01_bcd1370_4lm is a Li-Ion battery voltage to 1.5V linear voltage regulator with 300mA current driving capability. It works from –40°C ...
422
1.0
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard 1.8V devices
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard 1.8V IO devices...
423
1.0
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard 2.5V OD 3.3V devices
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard 2.5 OD 3.3V devices...
424
1.0
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard 2.5V OD 3.3V devices
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard 2.5 OD 3.3V devices...
425
1.0
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard IO devices
Over-voltage Protection Module to handle direct connection of voltage regulators to a 5V battery using standard IO devices...
426
1.0
Over-voltage Protection Module to handle Over-voltage operation (up to 5.5 V) while using standard process 3.3 V devices
Dolphin Design provides a complete Power Management IPs platform, toward three objectives: To standardize and ease Power Regulation Network integrat...
427
1.0
Over-voltage Protection Module to handle Over-voltage operation (up to 5.5 V) while using standard process 3.3 V devices
Dolphin Design provides a complete Power Management IPs platform, toward three objectives: To standardize and ease Power Regulation Network integrati...
428
1.0
Over-voltage Protection Module to handle Over-voltage operation (up to 5.5 V) while using standard process 3.3 V devices
Dolphin Design offer a Reusable Power Kit Library toward three objectives: To standardize and ease Power Regulation Network integration To enable di...
429
1.0
Over-voltage Protection Module to handle up to 5.5 V using standard process 3.3 V devices - High temperature (Grade 1, Tj=150�)
Dolphin Design provides a complete Power Management IPs platform, toward three objectives: To standardize and ease Power Regulation Network integrati...
430
0.118
Band Gap IP, Input: 0.945V - 1.155V, VBG=0.8V, UMC 28nm HLP process
Input 0.945V-1.155V, VBG=0.8V, Band Gap, UMC 28m HLP process....
431
0.118
Band Gap IP, Input: 0.9V - 1.1V, VBG=0.5V, UMC 90nm SP process
Input 0.9V-1.1V, VBG=0.5V, Band Gap, UMC 90nm SP/RVT Logic Low-K process....
432
0.118
Band Gap IP, Input: 1.08V - 1.32V, VBG=0.6V, UMC 90nm LL process
Input 1.08V-1.32V, VBG=0.6V, Band Gap, LL process, UMC 90 nm LL Logic/RVT Low-K process....
433
0.118
Band Gap IP, Input: 1.0V - 1.2V, VBG=0.8V, UMC 0.13um LL/FSG process
VBG=0.8V, VCCA=1.2V, VCCA_min=1.0V, Ivcca=45uA, UMC 0.13um LL Logic/FSG process....
434
0.118
Band Gap IP, Input: 1.0V - 1.5V, VBG=0.615V, UMC 0.13um HS/FSG process
Input 1.0V-1.5V, VBG=0.615V, Bnad Gap, HS process, UMC 0.13um HS/FSG Logic process....
435
0.118
Band Gap IP, Input: 1.0V - 1.5V, VBG=0.615V, UMC 0.15um SP process
VBG=0.615V, VCCA=1.5V, VCCA_min=1.0V, Ivcca=23uA, UMC 0.15um SP Logic process....
436
0.118
Band Gap IP, Input: 1.0V - 1.8V, VBG=0.615V, UMC 0.18um G2 process
VBG=0.615V, VCCA=1.8V, VCCA_min=1.0V, Ivcca=23uA, UMC 0.18um GII Logic process low voltage....
437
0.118
Band Gap IP, Input: 1.0V - 1.8V, VBG=0.615V, UMC 0.18um LL process
VBG=0.615V, VCCA=1.8V, VCCA_min=1.0V, Ivcca=23uA, UMC 0.18um LL Logic process....
438
0.118
Band Gap IP, Input: 1.0V ~ 2.1V, VBG=0.615V, UMC 0.18um G2 process
UMC 0.18um process 1.8V power supply bandgap reference circuit (layout data base with trimming pad), VBG=0.615V....
439
0.118
Band Gap IP, Input: 1.1V, VBG=0.48V, UMC 40nm LP process
Input 1.1V, VBG=0.48V, Band Gap, UMC 40nm LP/RVT Low-K Logic process....
440
0.118
Band Gap IP, Input: 1.1V, VBG=0.8V, UMC 40nm LP process
Input 1.1V, VBG=0.8V, Band Gap, UMC 40nm LP/RVT Low-K Logic process....
441
0.118
Band Gap IP, Input: 1.2V - 1.98V, VBG=0.615V, UMC 0.153um Logic process
Input 1.2V-1.98V, VBG=0.615V bandgap, UMC 0.153um Logic process....
442
0.118
Band Gap IP, Input: 1.2V - 3.3V, VBG=0.615V, UMC 0.18um G2 process
VBG=0.615V, VCCAH=3.3V, VCCAH_min=1.2V, Ivccah=25uA, UMC 0.18um GII Logic process....
443
0.118
Band Gap IP, Input: 1.2V - 4V, VBG=0.615V, UMC 0.18um LL process
0.18um, LL, bandgap, VBG=0.615 at VCCAH=1.2V~4V, UMC 0.18um LL Logic process....
444
0.118
Band Gap IP, Input: 1.2V, VBG=0.4V, Operating current less than 70uA (125C), 1uA standby current, UMC 55nm LP process
Input 1.2V, VBG04=0.4V bandgap, UMC 55nm LP/RVT Low-K Logic process....
445
0.118
Band Gap IP, Input: 1.2V, VBG=0.8V, UMC 0.13um HS/FSG process
VBG=0.8V, VCCA=1.2V, VCCA_min=1.0V, Ivcca=47uA, HS process, UMC 0.13um HS/FSG Logic process....
446
0.118
Band Gap IP, Input: 1.8V - 3.6V, VBG=0.615V, UMC 0.162um eHV process
Input 1.8V-3.6V, VBG=0.615V, Band Gap, UMC 0.162um HV-DDD process....
447
0.118
Band Gap IP, Input: 1.8V, VBG=0.615V, UMC 0.18um G2 process
VBG=0.615V, VCCA=1.8V, VCCA_min=1.0V, Ivcca=30uA, UMC 0.18um GII Logic process....
448
0.118
Band Gap IP, Input: 1V - 1.5V, VBG=0.615V, UMC 0.11um HS/AE process
Input 1V-1.5V, VBG=0.615V bandgap, UMC 0.11um HS/AE (AL Advanced Enhancement) Logic process....
449
0.118
Band Gap IP, Input: 1V - 1.5V, VBG=0.8V, UMC 0.11um HS/AE process
Input 1V-1.5V, VBG=0.8V bandgap, UMC 0.11um HS/AE (AL Advanced Enhancement) Logic process....
450
0.118
Band Gap IP, Input: 1V - 1.5V, VBG=0.8V, UMC 0.11um HS/FSG process
Input 1V-1.5V, VBG=0.8V bandgap, UMC 0.11um HS/FSG Logic process....