I. Introduction
At the present, portable electronic devices such as mobile phones or digital cameras are the emerging market of electronic devices, even called the daily essentials. The demand for the portable electronic devices makes the power supply circuit more and more important. in general, the operating time or standby time of the portable devices all depends on the battery capacity. Efficient power distribution is the main concern in the portable device [1]–[4]. On the other hand, the size and weight of these power devices are also important for the designers. The miniaturization of the power modules and the reduction of the external components are essential in portable devices. Besides, the size of the power supply circuit is the major design consideration, no matter whether the circuit is fabricated as a single chip or integrated into a system-on-chip (SoC) chip. for the portable electronic devices, the reduction of the area on silicon and printed circuit broad (PCB) means lower fabrication cost and tinier size. in other words, a compact power supply system is necessary for the power management of the SoC systems. Therefore, the trend is to focus on the CMOS implementation of power converters and insert the power modules into any portable device. Table I shows the different implementation techniques that can be used to supply different applications. for today's designers, how to find an optimum solution has become an urgent issue. Comparison of the Different Power Supply Devices
LDO | Charge Pump | Switching Regulator | |
---|---|---|---|
Efficiency | Bad | Good | Best Up to 95% and averageabout 90% |
Cost | Best | Moderate Capacitor count,pin count, siliconarea drive costs | Most expensive Inductor and otherexternal componentsdrive costs |
Difficulty in Design | Easv | Harder | Most difficult |
PCB Area | Very small | Small | LargeDue to the height andarea of inductor |
Output Ripple | Very low | Moderate | Moderate |
EMI | Very low | Low | Moderate |
Load Capability | ModerateUp to 150mA | ModerateUp to 250mA | BestAble to above 500mA |
Transfonnation Type | Step down | Step up Step down Inverter | Step up Step down Inverter |