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L6228 Folha de dados(PDF) 12 Page - STMicroelectronics

Nome de Peças L6228
Descrição Electrónicos  DMOS DRIVER FOR BIPOLAR STEPPER MOTOR
PDF  26 Pages
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Fabricante Electrônico  STMICROELECTRONICS [STMicroelectronics]
Página de início  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L6228 Folha de dados(HTML) 12 Page - STMicroelectronics

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Figure 11. Output Current Regulation Waveforms
Figure 12 shows the magnitude of the Off Time tOFF versus COFF and ROFF values. It can be approximately
calculated from the equations:
tRCFALL = 0.6 · ROFF · COFF
tOFF = tRCFALL + tDT = 0.6 · ROFF · COFF + tDT
where ROFF and COFF are the external component values and tDT is the internally generated Dead Time with:
20K
Ω ≤ ROFF ≤ 100KΩ
0.47nF
≤ COFF ≤ 100nF
tDT = 1µs (typical value)
Therefore:
tOFF(MIN) = 6.6µs
tOFF(MAX) = 6ms
These values allow a sufficient range of tOFF to implement the drive circuit for most motors.
The capacitor value chosen for COFF also affects the Rise Time tRCRISE of the voltage at the pin RCOFF. The
Rise Time tRCRISE will only be an issue if the capacitor is not completely charged before the next time the
monostable is triggered. Therefore, the on time tON, which depends by motors and supply parameters, has to
be bigger than tRCRISE for allowing a good current regulation by the PWM stage. Furthermore, the on time tON
can not be smaller than the minimum on time tON(MIN).
OFF
BC
DD
A
tON
tOFF
tOFF
BC
ON
2.5V
0
Fast Deca
y
Fast Deca
y
Slow Decay
Slow Decay
1
µs tBLANK
tRCRISE
1
µs tDT
1
µs tDT
tRCRISE
tRCFALL
tRCFALL
SYNCHRONOUS OR QUASI
SYNCHRONOUS RECTIFICATION
1
µs tBLANK
5V
VRC
VSENSE
VREF
IOUT
VREF
RSENSE
D01IN1334



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