LXDC3EP TypeF series Micro DC-DC converter 1. Features 2 Low EMI noise and small footprint (11mm )using inductor-imbedded ferrite substrate High efficiency using synchronous rectifier technology at 4MHz operation. Power-Save mode / Forced PWM automatic mode switching function 2% DC output voltage accuracy (PWM mode). 1A maximum load capability Wide input voltage range : 2.5 - 5.5V Fixed output voltage : 1.0V, 1.2V, 1.5V, 1.8V, 2.5V, 3.3V Internal soft start, over current protection, thermal shutdown protection 2. Description BBOTTOTTOM OM VVIIEWEW BOTTOM VIEW TOP VIEW TOP VIEW The LXDC3EP series is a 1A output step-down DCDC converter, which is suitable for a space-limited or a TOP VIEW noise-sensitive application. The device utilizes an inductor-embedded ferrite substrate, and the substrate eliminates radiated EMI noise and conduction noise efficiently. By just putting this device, it can be used as a LDO replacement. Its low noise feature and easy to assembly 55 44 33 5 4 3 ff feature assures reliable power supply quality. f The LXDC3EP series has a mode pin that allows the user to select Forced PWM mode or Power-Save mode that e e changes modes between pulse-skip operation and forced PWM operation automatically depending on the load. e In Power-Save mode, LXDC3EP series offers superior efficiency under light load condition, and it extends the 66 22 gg 6 2 g battery life. When Forced PWM mode is selected, it works at fixed frequency (4MHz) over all load range. The bb advantages of this mode are easy filtering of switching frequency and better load transient response. b ee The integrated over current protection and the thermal shutdown protection features offer a reliable power supply e operation. 7 8 1 7 8 1 7 8 1 ff f cc c 3. Typical Application Circuit ee ee dd aa cc dd ff a c d e f e d tt t 1 February 2016 LXDC3EP TypeF series Micro DC-DC converter 4. Mechanical details 4-1 Out line unit (mm) Symbol Dimension Symbol Dimension L 3.5+/- 0.2 a 0.2+/- 0.2 W 3.2+/- 0.2 b 0.8+/- 0.1 T 1.3MAX c 0.4+/- 0.1 d 0.7+/- 0.1 e 0.6+/- 0.1 2 February 2016