DC-DC Switching Converter IP

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Compare 22 IP from 7 vendors (1 - 10)
  • 2.0-3.6V to 1.0-1.4V step down DC/DC converter
    • UMC 55nm eFlash CMOS technology
    • Input Voltage Range: +2.0V to +3.6V
    • Current limit detector
    Block Diagram -- 2.0-3.6V to 1.0-1.4V step down DC/DC converter
  • DCDC Buck Converter
    • •Process: UMC 40nm Logic and Mixed-Mode 2.5V/1.1V Low Power Process
    • •Efficiency: ~90% when IOUT=300mA (VIN=5V, considering the 100m? parasitic resistance of VIN and PGND respectively, 300m? parasitic resistance of VIN and AGND respectively and 100m? ESR of external inductor; if the parasitic resistance because of bonding, lead frame, PCB trace and ESR of external inductor is smaller, the efficiency will be higher.)
    • •3.3 V to 5.5 V Input voltage range
    • •0.3-A Max. output current: VIN >= 3.3 V,
    Block Diagram -- DCDC Buck Converter
  • Block Diagram -- 3.3V to 1.8V and 0.9V step-down DC-DC converter
  • Low Noise High performance Buck DCDC
    • Step-down switch converter with an input wide range
    • Output voltage can be programmed;
    • Main (P-Channel MOSFET) and synchronous (N-Channel MOSFET) switches are internal;
    • 400mA peak output current capability;
  • 25uA Low-power Buck DCDC
    • Quiescent current is low to 30uA
    • Suitable for lithium-ionbattery-powered applications
    • Output voltage can be programmed
    • PFM mode and PWM mode can be automatically switched by different loads
  • 20mA, 5V Boost Converter - Adjustable output voltage - SilTerra 0.18um
    • This IP is an inductorless DC/DC converter (charge pump) that provides a stable and configurable output voltage VOC (from 4.8V to 5.5V) for loads up to 20mA.
    • It is designed to work from 3MHz clock circuit and features limitation of in-rush current and power saving mode.
    Block Diagram -- 20mA, 5V Boost Converter -  Adjustable output voltage - SilTerra 0.18um
  • 150mA Buck Converter - SilTerra 0.18um BCD
    • This block is a 150mA, synchronous step-down integrated buck DC-DC converter IP core designed for SilTerra D18V (0.18μm BCD).
    • The converter compensation and rectifier switches are integrated.
    • It operates in PWM (current control mode) for heavy loads and has a PFM mode for light loads, improving its efficiency.
    Block Diagram -- 150mA Buck Converter - SilTerra 0.18um BCD
  • Low-BoM, inductor-based buck switching regulator with high efficiency, full PWM mode design in TSMC 40 ULP
    • Works with a smaller inductance size compared to previous product generation
    • High efficiency buck regulator (up to 95% peak), over wide load current range
    • Pulse With Modulation (PWM) mode enabling to master the frequency response when supplying noise-sensitive analog loads
    • Automatic mode change of the Power Stage Unit, maintaining high-efficiency at low load current
  • DC-DC Buck Ultra Fast Response High Power Series (Vin=2.3-5.5V; Vo=0.6-3.4V; IL=3.0A)
    • DC-DC PWM BUCK: The DCDC SGC67 is an ultra fast response, high output current, step down switched DC-DC regulator IP
    • It is the best supply solution for high power power digital cores with fast activity variation ( where most DC-DC converters fail)
    • Specially designed for SoC integration it uses advanced control techniques to achieve soft start-up, superb transient response and instantaneous overcurrent protection
    • The SGC67 operates with output coils as low as 0.47 uH and any type of output capacitor
  • DC-DC Buck Ultra Fast Response High Power Series (Vin=2.3-5.5V; Vo=0.7-1.33V; IL=2.5.A)
    • DC-DC PWM BUCK: The DCDC SGC67 is an ultra fast response, high output current, step down switched DC-DC regulator IP
    • It is the best supply solution for high power power digital cores with fast activity variation ( where most DC-DC converters fail)
    • Specially designed for SoC integration it uses advanced control techniques to achieve soft start-up, superb transient response and instantaneous overcurrent protection
    • The SGC67 operates with output coils as low as 0.47 uH and any type of output capacitor
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