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AN4243 Datasheet(PDF) 7 Page - STMicroelectronics

Part # AN4243
Description  The L6230 DMOS driver for three-phase brushless DC motor
PDF  29 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN4243 Datasheet(HTML) 7 Page - STMicroelectronics

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AN4243
Designing an application with the L6230
Doc ID 024199 Rev 1
7/29
Equation 1
so the supply voltage ripple is:
Equation 2
where IOUT is the output current.
With fast decay, instead, recirculating current recharges the capacitor, causing the supply
voltage to exceed the nominal voltage. This can be very dangerous if the nominal supply
voltage is close to the maximum recommended supply voltage (52 V). In fast decay the
supply voltage ripple is about:
Equation 3
always assuming that the power supply does not recharge the capacitor, and neglecting the
output current ripple and the deadtime.
Usually (if C > 100 µF) the capacitance role is much less than the ESR, then supply voltage
ripple can be estimated as:
Equation 4
Equation 5
For example, if a maximum ripple of 500 mV is allowed and IOUT = 1 A, the capacitor ESR
should be lower than:
Equation 6
Equation 7
Actually, current, sunk by VSA and VSB pins of the device, is subject to higher peaks due to
reverse recovery charge of internal freewheeling diodes. The duration of these peaks is,
tough, very short and can be filtered using a small value (100 ÷ 200 nF), good quality
ceramic capacitor, connected as close as possible to the VSA, VSB and GND pins of the IC.
The bulk capacitor is chosen with maximum operating voltage 25% greater than the
maximum supply voltage, considering also power supply tolerances.
V
S
I
out
ESR
t
on
C
-------
+
⎝⎠
⎛⎞
⋅
–
V
S
I
out
ESR
t
on
C
-------
+
⎝⎠
⎛⎞
⋅
–
I
OUT
2ESR
t
ON
t
OF F
+
c
---------------------------
+
⋅
⎝⎠
⎛⎞
⋅
I
OUT
ESR
in slow decay
⋅
I
OUT
ESR
in fast decay
⋅
ESR
0.5V
1A
------------
500m
Ω in slow decay
=
<
ESR
1
2
---
0.5V
1A
------------
⋅
250 500
()mΩ in fast decay
=
<



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