Features: Input Voltage Range : 2.0V ~ 10VOutput Voltage Range : 2.0V ~ 6.0V Can be set freely with 0.9V (±2.0%) of reference voltage supplyand external components.Oscillation Frequency : 300kHz ±15%Output Current : More than 800mA (VIN = 4.2V, VOUT=3.3V)Stand-By Function : 3.0µA (MAX.)Pack...
XC9303: Features: Input Voltage Range : 2.0V ~ 10VOutput Voltage Range : 2.0V ~ 6.0V Can be set freely with 0.9V (±2.0%) of reference voltage supplyand external components.Oscillation Frequency : 300kHz ±1...
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PARAMETER |
SYMBOL |
RATINGS |
UNITS |
VDD Pin Voltage |
VDD |
- 0.3~12 |
V |
FB Pin Voltage |
VFB |
- 0.3~12 |
V |
CE Pin Voltage |
VEN |
- 0.3~12 |
V |
PWM Pin Voltage |
VPWM |
- 0.3~12 |
V |
MODE Pin Voltage |
VEXT |
- 0.3~12 |
V |
EXT1.2 Pin Voltage |
VEXT |
- 0.3 ~ VDD + 0.3 |
V |
EXT1.2 Pin Current |
IEXT |
± 100 |
mA |
Power Dissipation |
Pd |
150 |
mW |
Operating Temperature |
Topr |
- 40 ~ + 85 |
|
Storage Temperature |
Tstg |
- 55 ~+ 125 |
The XC9303 has a 0.9V (±2.0%) internal voltage supply and using externally connected components, output voltage can be set freely between 2.0V to 6.0V. With an internal 300kHz switching frequency smaller external components can be used. Soft-start time is internally set to 10msec and offers protection against in-rush currents when the power is switched on and prevents voltage overshoot. The XC9303 series is highly efficient, synchronous PWM, PWM/PFM switching step-up & down DC/DC controller ICs. A versatile, large output current and high efficiency, step-up/down DC/DC controller can be realized using only basic external components - transistors, coil, diode, capacitors, and resistors for detecting voltages. High efficiency is obtained through the use of a synchronous rectification topology. The operation of the XC9303 series can be switched between synchronous PWM and synchronous PWM/PFM (autoswitching) externally using PWM pin. In PWM/PFM mode the XC9303 automatically switches from PWM to PFM during light loads and high efficiencies can be achieved over a wide range of output loads conditions. Output noise can be easily reduced with PWM control since the frequency is fixed.