LP3201-LV Buck
产品型号 | 输入电压(V) | 输出电压(V) | 开关频率(Hz) | 输出电流 | 效率(%) | 静态电流(mA) | 特征 | 封装 | 规格书 |
---|---|---|---|---|---|---|---|---|---|
LP3201 | 2.5-6 | Adj | 1.5M | 1200 | 95 | - | PSM/PWM,Shutdown,SS(internal)OTP,OCP | SOT23-5 |
1.5MHz, 1A Step-Down Converter
General Description
The LP3201 is a 1.5MHz constant frequency current mode PWM step-down converter. It is ideal for portable equipment which requires very high current up to 1A from single-cell Lithium-ion batteries. The LP3201 also can run at 100% duty cycle for low dropout operation, extending battery life in portable systems while light load operation provides very low output ripple for noisy sensitive applications. The LP3201 can supply up to 1A output load current from an input voltage 2.5V to 5.5V and the output voltage can be regulated as low as 0.61V. The high switching frequency minimizes the size of external components while keeping switching losses low. The internal slope compensation setting allows the device to operate with smaller inductor values to optimize size and provide efficient operation.
Applications
Portable Instruments
DSP Core Supplies
Cellular Phone and Smart mobile phone
PDA
GPS Applications
DSP Core Supplies
Cellular Phone and Smart mobile phone
PDA
GPS Applications
Features
Input Voltage Range: 2.5V to 5.5V
Output Voltage Range: 0.61V to V IN
1A Output Current
100% Duty Cycle in Dropout
Low Shutdown Current: <1uA
1.5MHz Switching Frequency
Soft-Start Function
Short Circuit Protection
Thermal Fault Protection
SOT23-5 Package
RoHS Compliant and 100% Lead (Pb)-Free
Output Voltage Range: 0.61V to V IN
1A Output Current
100% Duty Cycle in Dropout
Low Shutdown Current: <1uA
1.5MHz Switching Frequency
Soft-Start Function
Short Circuit Protection
Thermal Fault Protection
SOT23-5 Package
RoHS Compliant and 100% Lead (Pb)-Free
Marking Information
Please see specification.
Please ask our service mailbox for what you want which is marketing@lowpowersemi.com.
We will send a copy to you as fast as we can.
We will send a copy to you as fast as we can.