Topology and application trends of ultra-low dropout linear regulators

Publisher:喜从中来Latest update time:2011-09-23 Source: 互联网 Reading articles on mobile phones Scan QR code
Read articles on your mobile phone anytime, anywhere

In recent years, low dropout regulators (LDO) have been widely used in various electronic devices, especially consumer electronics with stringent requirements for power. However, with the development of lower dropout application requirements, it is increasingly difficult to meet application requirements due to the limitations of the LDO topology. Therefore, ultra-low dropout regulators (ULDO) based on new topology architectures came into being.


Differences between ULDO and LDO

LDO is an extremely widely used integrated circuit (IC). Its advantages include: simple circuit architecture, low output ripple, few and simple external components, etc. The general LDO architecture is: an error amplifier drives a P-type MOSFET , and the feedback potential is compared with the reference potential to keep the output at the correct voltage . However, when the system requires ultra-low voltage drop, low output voltage (0.8~1.8V), and high output current , it becomes quite difficult to design LDO using the traditional single power supply and P-MOSFET architecture. Therefore, the AX6610-6615 ultra-low voltage drop regulator series uses N-MOSFET as the driver. For the same size of driver, the driving characteristics of N-MOSFET are generally better than P-MOSFET. However, at low input voltage, the driving characteristics of N-MOSFET are insufficient and may not be suitable for the operating voltage of the entire IC. For this reason, another set of power input is used to provide a stable operating voltage for the IC and greatly improve the driving capability of N-MOSFET. This method achieves low voltage input conversion to low voltage output and can drive large load current. ULDO characteristics and topology architecture The AX6610-6615 series ULDO product design adopts a dual power supply architecture. The power supply VIN is the source of output conversion, and the power supply VCNTL is the power supply used by the internal circuit. Then use N-MOSFET as a driver. The reference potential of AX6610-6615 is designed at 0.8 volts, so the lowest output voltage can reach 0.8 volts. Its output voltage soft start time is only 1 millisecond, which can greatly reduce the current surge during startup. The input voltage VIN and VCNTL both have low voltage monitoring functions. When the input voltage is too low, the output will stop, which can avoid malfunction of the IC end and the back-end system end. In addition, in order to ensure that the voltage obtained by the back-end system is correct, this product has a Power-OK pin to provide a back-end system alarm. The IC itself has a 90 ohm discharge resistor inside , which will be enabled when the output is turned off, and has a self-fast discharge function. The overcurrent protection circuit will limit the current when it exceeds the safe range. If the output is in a short-circuit state, the output periodic start-up mechanism will be activated to prevent the output current from being in a high-voltage differential state and limit the current value (because the heat generation power is at its maximum at this time) until the short-circuit state is released. Under continuous heavy load or large cross-voltage, heat will continue to accumulate and the temperature will rise. When the maximum temperature allowable value is reached, the overtemperature protection function will be activated, and the output will be turned off to prevent the IC from burning until the temperature returns to the recovery point, at which time the output will be restarted. In addition, in terms of linear stability, load stability and power supply rejection ratio (PSRR), AX6610-6615 also has excellent performance. ULDO application trend Under the premise of future 4C products requiring "low price, thin and light appearance and mobile Internet access function", the power design solution must abandon the following disadvantages of traditional solutions: 1. Complex external parts 2. Higher output noise and standby power consumption 3. Higher BOM cost For this reason, Arthurlite Technology has launched 1A~5A ULDO linear regulators with extremely simplified peripheral components and ultra-low voltage difference, namely the AX6610~AX6615 series, especially for UMPC/MID products, and in response to the requirements of its products being lightweight and power-saving, such as the power supply required for the low voltage conversion of each group of UMPC/MID on the Intel ATOM or VIA NANO platform. For example: 1.5V to 1.2V stable supply 802.11/Bluetooth wireless module required 1A ~ 5A power management solution or 1.8V/1.5V to 1.1V supply system chip integrated PCH (Platform Controller Hub) 2A ~ 4A dynamic power supply required, which can reduce the external components required and can obtain lower ripple noise than traditional switching regulators, which is extremely cost-effective for customers.




















Figure 1: Block diagram of the AX661x series ULDO chip architecture.

The AX6610~6615 series are linear voltage converters that can provide high current , ultra-low voltage dropout, low ripple interference, and extremely low standby power consumption (below 30μA). The input voltage can be as low as 1.1V to as high as 5V, and the output voltage can be adjusted between 0.8 and 3.3V as needed. They are mainly used in low voltage input and output linear voltage converters, notebook computers, motherboards, network systems, etc. for voltage conversion. AX6610-6615 provides high noise immunity (PSRR up to -65dB) and stable operating voltage. The output voltage has a fast transient response and provides a Power-OK output function, which is convenient for power monitoring. The output capacitor can be applied to solid capacitors (aluminum/tantalum) and ceramic capacitors (MLCC). It has complete system protection functions including soft start, undervoltage lockout (UVLO), short circuit protection (SCP), over temperature protection (OTP) and over current protection (OCP) without using external redundant components. The above functions can be achieved and the circuit design can be minimized. AX6610-6615 adopts SOP-8 LEP lead-free package with no shielding pad on the bottom . The heat sink can be used to conduct heat to the printed circuit board, greatly reducing the surface temperature of the component to meet the application requirements of UMPC/MID.






Figure 2: Typical application circuit of AX6610.

AXElite Technology has just launched the AX1201~AX1204 series ULDO solutions in the third quarter of this year, which have higher withstand voltage (up to 24V) than the AX66xx series, large current output, and extremely low voltage drop characteristics. Its high withstand voltage characteristics are very suitable for the 5V or 12V low-distortion power supply requirements of UMPC/MID/Netbook, such as the audio power supply of TV/monitor or the power supply requirements of UMPC/MID charging dock.


Reference address:Topology and application trends of ultra-low dropout linear regulators

Previous article:Output voltage formula of three-terminal voltage regulator and its application
Next article:Design ideas of series DC regulated power supply

Latest Power Management Articles
Change More Related Popular Components

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

About Us Customer Service Contact Information Datasheet Sitemap LatestNews


Room 1530, 15th Floor, Building B, No.18 Zhongguancun Street, Haidian District, Beijing, Postal Code: 100190 China Telephone: 008610 8235 0740

Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号