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LP6496 bảng dữ liệu(PDF) 5 Page - Lowpower Semiconductor inc

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LP6496 bảng dữ liệu(HTML) 5 Page - Lowpower Semiconductor inc

  LP6496 Datasheet HTML 1Page - Lowpower Semiconductor inc LP6496 Datasheet HTML 2Page - Lowpower Semiconductor inc LP6496 Datasheet HTML 3Page - Lowpower Semiconductor inc LP6496 Datasheet HTML 4Page - Lowpower Semiconductor inc LP6496 Datasheet HTML 5Page - Lowpower Semiconductor inc LP6496 Datasheet HTML 6Page - Lowpower Semiconductor inc  
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LP6496-00
Jun.-2017
Email: marketing@lowpowersemi.com
www.lowpowersemi.com
Page 5 of 6
Preliminary Datasheet
LP6496
Application Information
The LP6496 operates by a constant frequency,
current mode architecture. The output voltage is set
by an external divider returned to the FB pin. An error
amplifier compares the divided output voltage with a
reference voltage of 0.6V and adjusts the peak
inductor current accordingly.
Thermal Protection
The total power dissipation in LP6496 is limited by a
thermal protection circuit. When the device
temperature rises to approximately 150℃, this circuit
turns off the output, allowing the IC to cool. The
thermal protection circuit can protect the device from
being damaged by overheating in the event of fault
conditions. Continuously running the LP6496 into
thermal shutdown degrades device reliability.
Current Limit
The Current limit is set by outside resistance (RSEN),
When the CS voltage larger than 53mV/65mV, the
current limit is happened that driver can be turned off.
The current limit set according to the following
equation:
IOUT = VCS / RSEN
Setting Output Voltage
The output voltage is set with a resistor divider from
the output node to the FB pin. It is recommended to
use divider resistors with 1% tolerance or better. To
improve efficiency at very light loads consider using
larger value resistors. If the values are too high the
regulator is more susceptible to noise and voltage
errors from the FB input current are noticeable. For
most applications, a resistor in the 10kΩ to 1MΩ
range is suggested for RUP and RDN. The output
voltage is established by the following equations
VOUT = 0.6V •(1 + RUP / RDN
Where VREF is 0.6V.
Output Cable Resistance Compensation
To compensate for resistive voltage drop across the
charger's output cable, the LP6496 integrates a
simple, user-programmable cable voltage drop
compensation using the impedance at the FB pin.
The delta VOUT rises when the feedback resistance
RSEN value rises, use the equation below:
ΔVOUT(mV)=IOUT(A)•RSEN(mΩ)•RUP(KΩ) /40 KΩ



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