LP5907MFX-3.0/NOPB
₹26.00
Features of LP5907MFX-3.0
? 2.2 to 5.5 volts of input voltage
? 1.2 to 4.5 volts in the output voltage range
? Stable with ceramic input and output capacitors rated at 1 F
? No need for a noise bypass capacitor
? Location of the remote output capacitor
? Protection from thermal overload and short circuit
? Operating junction temperature range of -40?C to 125?C
? Low noise output voltage: 6.5 VRMS
? PSRR at 1 kHz: 82 dB
? Tolerance for output voltage: 2%
? Exceptionally low IQ: 12 A
? Minimal dropout (120 mV)
Applications of LP5907MFX-3.0
- Smartphones
- ?Tablets
- ?Communications equipment
- Digital still cameras
- Factory automation
1672 in stock
Description of LP5907MFX-3.0
A low-noise LDO that can deliver up to 250 mA of output current is the LP5907. The LP5907MFX-3.0 device has low noise, high PSRR, low quiescent current, and low line or load transient response figures. It was created to satisfy the needs of RF and analogue circuits. The LP5907 offers class-leading noise performance without a noise bypass capacitor and the option for remote output capacitor placement thanks to new creative design techniques.
The gadget requires a ceramic capacitor with a 1-F input and 1-F output; a supplementary noise bypass capacitor is not necessary. The fixed output voltages for this device range from 1.2 V to 4.5 V in steps of 25 mV. For special voltage option requirements, get in touch with Texas Instruments Sales.


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- Lowest System Cost with Enhanced Flexibility
- 725 V rated MOSFET
- Increases BV de-rating margin
- Line compensated overload power ? no additional components
- Dramatically reduces max overload variation over universal input voltage range
- ?5% turn on UV threshold: line voltage sense with single external resistor
- Simple ON/OFF control, no loop compensation needed
- Selectable current limit through BP/M capacitor value
- Higher current limit extends peak power or, in open frame applications, maximum continuous power
- Lower current limit improves efficiency in enclosed adapters/ chargers
- Allows optimum TinySwitch?-4 choice by swapping devices with no other circuit redesign
- Tight I2 f parameter tolerance reduces system cost
- Maximizes MOSFET and magnetics utilization
- ON-time extension ? extends low-line regulation range/hold-up time to reduce input bulk capacitance
- Self-biased: no bias winding or bias components
- Frequency jittering reduces EMI filter costs
- Pin-out simplifies heat sinking to the PCB
- SOURCE pins are electrically quiet for low EMI
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