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开关电源MC34063应用技巧

更新时间:2019-10-10 15:01:32 大小:416K 上传用户:snowdancing查看TA发布的资源 标签:开关电源mc34063 下载积分:2分 评价赚积分 (如何评价?) 收藏 评论(1) 举报

资料介绍

MC34063和uA78S40开关调节器控制电路理论及应用

MC34063开关电源芯片是多功能、低成本、广泛使用的开关电源芯片。介绍了开关电源芯片MC34063的运行原理、参数选用方法、使用技巧等信息,对于相关电路设计人员有较高的参考价值。

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AN920-D.PDF 416K

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AN920/D  
Theory and Applications  
of the MC34063 and  
mA78S40 Switching  
Regulator Control Circuits  
APPLICATION NOTE  
This paper describes in detail the principle of operation of the MC34063 and μA78S40 switching regulator subsystems. Several  
converter design examples and numerous applications circuits with test data are included.  
INTRODUCTION  
control signal will go low and turn off the gate, terminating  
any further switching of the seriespass element. The output  
voltage will eventually decrease to below nominal due to the  
presence of an external load, and will initiate the switching  
process again. The increase in conversion efficiency is  
primarily due to the operation of the seriespass element  
only in the saturated or cutoff state. The voltage drop across  
the element, when saturated, is small as is the dissipation.  
When in cutoff, the current through the element and likewise  
the power dissipation are also small. There are other  
variations of switching control. The most common are the  
fixed frequency pulse width modulator and the fixed  
ontime variable offtime types, where the onoff  
switching is uninterrupted and regulation is achieved by  
duty control. Generally speaking, the example given  
μA78S40.  
The MC34063 and μA78S40 are monolithic switching  
regulator subsystems intended for use as dc to dc converters.  
These devices represent a significant advancement in the  
ease of implementing highly efficient and yet simple  
switching power supplies. The use of switching regulators  
is becoming more pronounced over that of linear regulators  
because the size reductions in new equipment designs  
require greater conversion efficiency. Another major  
advantage of the switching regulator is that it has increased  
application flexibility of output voltage. The output can be  
less than, greater than, or of opposite polarity to that of the  
input voltage.  
PRINCIPLE OF OPERATION  
In order to understand the difference in operation between  
linear and switching regulators we must compare the block  
down regulators shown in Figure  
gain error amplifier, and a variable resistance seriespass  
element. The error amplifier monitors the output voltage  
level, compares it to the reference and generates a linear  
control signal that varies between two extremes, saturation  
and cutoff. This signal is used to vary the resistance of the  
seriespass element in a corrective fashion in order to  
maintain a constant output voltage under varying input  
voltage and output load conditions.  
V
in  
V
out  
Ref  
Voltage  
+
Linear Control  
Signal  
Error  
Amp  
a. Linear Regulator  
V
in  
V
out  
The switching regulator consists of a stable reference and  
a high gain error amplifier identical to that of the linear  
regulator. This system differs in that a free running oscillator  
and a gated latch have been added. The error amplifier again  
monitors the output voltage, compares it to the reference  
level and generates a control signal. If the output voltage is  
below nominal, the control signal will go to a high state and  
turn on the gate, thus allowing the oscillator clock pulses to  
drive the seriespass element alternately from cutoff to  
saturation. This will continue until the output voltage is  
pumped up slightly above its nominal value. At this time, the  
Error  
Amp  
Ref  
Voltage  
+
Gated  
Latch  
Digital  
Control Signal  
OSC  
b. Switching Regulator  
Figure 1. StepDown Regulators  
© Semiconductor Components Industries, LLC, 2013  
1
Publication Order Number:  
December, 2013 Rev. 6  
AN920/D  
 

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