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LP38856 3A Fast-Response High-Accuracy LDO Linear Regulator

LP38856

LP38856
LP38856 LP38856
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Part Number LP38856
Manufacturer National Semiconductor
Description Features n Standard VOUT values of 0.8V and 1.2V The LP38856 is a high-current, fast-response regulator n Stable with 10 µF ceramic capacitors which can maintain output voltage regulation with an extremely low input to output voltage drop. Fabricated on a n Dropout voltage of 240 mV (typical) at 3A load current CMOS process, the device operates from two inpu.
Features n Standard VOUT values of 0.8V and 1.2V The LP38856 is a high-current, fast-response regulator n Stable with 10 µF ceramic capacitors which can maintain output voltage regulation with an extremely low input to output voltage drop. Fabricated on a n Dropout voltage of 240 mV (typical) at 3A load current CMOS process, the device operates from two input voltages: n Precision Output Voltage across all line and load VBIAS provides power for the internal bias and control circonditions: cuits, as well as drive for the gate of the N-MOS power — ± 1.0% for TJ = 25˚C transistor, while VIN supplies power.
Datasheet Datasheet LP38856 Data Sheet
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LP38856

Texas Instruments
LP38856
Part Number LP38856
Manufacturer Texas Instruments
Title 3-A Fast-Response High-Accuracy LDO Linear Regulator
Description The LP38856 is a high-current, fast-response regulator which can maintain output voltage regulation with an extremely low input-to-output voltage drop. Fabricated on a CMOS process, the device operates from two input voltages: VBIAS provides power for the internal bias and control circuits, as well .
Features
•1 Input Voltage: 1.1 V to 5.5 V
• Wide VBIAS Supply Operating Range: 3 V to 5.5 V
• Standard VOUT: 0.8 V and 1.2 V
• Stable with 10-µF Ceramic Capacitors
• Dropout Voltage of 240 mV (Typical) at 3-A Load Current
• Precision Output Voltage Across All Line and Load Conditions:
  – ±1% for TJ = 25°C
  – ±2% for 0°C ≤ TJ ≤ +125°C
  – ±3% for
  –40°C ≤ TJ ≤ +125°C
• Overtemperature and Overcurrent Protection .


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