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ACE724 Fiches technique(PDF) 6 Page - ACE Technology Co., LTD.

No de pièce ACE724
Description  18V (30V spike) 2A Synchronous PFM/PWM Buck Converter
PDF  10 Pages
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Fabricant  ACE [ACE Technology Co., LTD.]
Site Internet  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE724 Fiches technique(HTML) 6 Page - ACE Technology Co., LTD.

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ACE724
18V (30V spike) 2A Synchronous PFM/PWM Buck Converter
VER 1.3
6
Functional Descriptions
Loop Operation
The ACE724 is a wide input range, high-efficiency, DC-to-DC step-down switching regulator, capable of
delivering up to 2A of output current, integrated with a 110m
synchronous MOSFET, eliminating the
need for external diode. It uses a PWM current-mode control scheme. An error amplifier integrates error
between the FB signal and the internal reference voltage. The output of the integrator is then compared to
the sum of a current-sense signal and the slope compensation ramp. This operation generates a PWM
signal that modulates the duty cycle of the power MOSFETs to achieve regulation for output voltage.
Current Limit
There is a cycle-by-cycle current limit on the high-side MOSFET of 3A(typ). When the current flowing out
of SW exceeds this limit, the high-side MOSFET turns off and the synchronous rectifier turns on. Unlike
the traditional method of current limiting by limiting the voltage at the compensation pin, which usually has
large variation due to duty cycle variance, this type of peak current limiting scheme provides a relatively
more accurate limit for output current, thereby lowering the requirements for system design.
Light Load Operation
Traditionally, a fixed current mode constant frequency PWM DC-DC regulator always switches even
when the output load is small. When energy is shuffling back and forth through the power MOSFETs,
power is lost due to the finite RDSONs of the MOSFETs and parasitic capacitances. At light load, this loss
is prominent and efficiency is therefore very low. ACE724 employs a proprietary control scheme that
improves efficiency in this situation by enabling the device into a power save mode during light load,
thereby extending the range of high efficiency operation.
Faster Transient Response
Normally, people use 3.3nF and 5.6Kohm RC for compensation to keep the loop stable. However, if one
needs to have faster load transient response, 3.3nF and 8.5Kohm is recommended.



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