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AN280 Folha de dados(PDF) 9 Page - STMicroelectronics

Nome de Peças AN280
Descrição Electrónicos  Controlling voltage transients in full-bridge driver applications
PDF  15 Pages
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Fabricante Electrônico  STMICROELECTRONICS [STMicroelectronics]
Página de início  http://www.st.com
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AN280 Folha de dados(HTML) 9 Page - STMicroelectronics

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AN280
Snubber design considerations
Doc ID 1703 Rev 3
9/15
4
Snubber design considerations
The function of the snubber network is to limit the rate of change of the voltage across the
motor (output terminals of the L6203) when one of the DMOS devices is turned off. Using
the RC snubbing circuit shown in Figure 9, the rate of change of the voltage on the output is
dominated by the capacitor while the resistor is used primarily to limit the peak current
flowing through the power transistor when it turns on.
Figure 9.
RC snubber circuit on output
The time constant of the motor current is much longer than the switching time, due to the
inductance of the motor. At the time of switching the DC motor can be assumed to be a
constant current generator equal to the peak current at switching. If this current is switched
into the snubber, the voltage across the snubber network jumps to a value equal to the
snubber resistance times the motor current. After the initial step, the rate of change is limited
by the motor current charging the snubber capacitor. To properly size the snubber network
the resistor is selected such that the maximum motor current produces a voltage less than
the minimum power supply voltage. If the resistor is larger than this value, the snubber is
ineffective since the capacitor doesn’t limit the voltage rise until the voltage has become
greater than the power supply. For the design example, the maximum resistance for the
snubber is given by the equation:
Equation 2
The snubber capacitor is calculated from the peak current and the target rise time. The
capacitance is given by the equation:
Equation 3
AM15176v1
R
max
V
smin
I
peak
---------------
38V
5A
-----------
7.6 ohm
==
=
C
Ipeak
dt
dv
------
5A
150ns
50V
-----------------
0.015
μF
==
=



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