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UT2306-3.3V Ver la hoja de datos (PDF) - Unisonic Technologies

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UT2306-3.3V Datasheet PDF : 19 Pages
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UTC UT2306/UT2306-3.3V/UT2306-5.0V
LINEAR INTEGRATED CIRCUIT
SHUTDOWN
1
8
2
7
UT2306
VIN
3
6
4
5
VOUT
+ COUT
+ CIN
GND (BATTERY AND LOAD RETURN)
Figure 7. Suggested Layout for Best Performance.Input Capacitor Placement as
Shown Is Highly Recommended.Switch Trace (pin 4) Copper Area Is Minimized
Low-Battery Detector
The UT2306 contains an independent low-battery detector that remains active when the device is shut down. This
detector, actually a hysteretic comparator, has an open collector output that can sink up to 500µA.The comparator
also operates below the switcher’s undervoltage lockout threshold, operating until VIN reaches approximately
1.4V.Figure 8 illustrates the input /output characteristic of the detector. Hysteresis is clearly evident in the figure.
VLBO
2V/DIV
VLBI
200mV/DIV
Figure 8. Low-Battery Detector Transfer Function.
Pull-Up R=22K,VIN=2V,Sweep Frequency=10Hz
Battery Life
How may hours does it work? This is the bottom line question that must be asked of any efficiency study. AA
alkaline cells are not perfect power sources. For efficient power transfer, energy must be taken from AA cells at a
rate that does not induce excessive loss. AA cells internal impedance, about 0.2fresh and 0.5end-of-life, results
in significant efficiency loss at high discharge rates. Figure 10 illustrates battery life vs load current of Figure 9’s
UT2306, 2-cell to 5V DC/DC converter. Note the accelerated decrease in hours at higher power levels. Figure 11
plots total watt hours vs load current. Watt hours are determined by the following formula:
WH = ILOAD(5V)(H)
UTC UNISONIC TECHNOLOGIES CO., LTD. 10
QW-R103-029,A

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