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L6384 数据表(PDF) 4 Page - STMicroelectronics

部件名 L6384
功能描述  HIGH-VOLTAGE HALF BRIDGE DRIVER
PDF  10 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

L6384 数据表(HTML) 4 Page - STMicroelectronics

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IN
SD
HVG
LVG
D99IN1017
Figure 1. Input/Output Timing Diagram
Symbol
Pin
Parameter
Test Condition
Min.
Typ.
Max.
Unit
Vcchys
2
Vcc UV Hysteresis
2
V
Iqccu
2
Undervoltage Quiescent Supply Current
Vcc
≤ 11V
150
µA
Iqcc
2
Quiescent Current
Vin = 0
380
500
µA
Bootstrapped supply Voltage Section
Vboot
8
Bootstrap Supply Voltage
17
V
IQBS
Quiescent Current
Vout = Vboot; IN = HIGH
200
µA
ILK
High Voltage Leakage Current
VHVG = Vout = Vboot =
600V
10
µA
Rdson
Bootstrap Driver on Resistance (*)
Vcc
≥ 12.5V; IN = LOW
125
High/Low Side Driver
Iso
5,7
Source Short Circuit Current
VIN = Vih (tp < 10
µs)
300
400
mA
Isi
Sink Short Circuit Current
VIN = Vil (tp < 10
µs)
500
650
mA
Logic Inputs
Vil
2,3
Low Level Logic Threshold Voltage
1.5
V
Vih
High Level Logic Threshold Voltage
3.6
V
Iih
High Level Logic Input Current
VIN = 15V
50
70
µA
Iil
Low Level Logic Input Current
VIN = 0V
1
µA
Iref
3
Dead Time Setting Current
28
µA
dt
3 vs
5,7
Dead Time Setting Range (**)
Rdt = 47k
Rdt = 146
Rdt = 270k
0.4
0.5
1.5
2.7
3.1
µs
µs
µs
Vdt
3
Shutdown Threshold
0.5
V
(*) RDSON is tested in the following way: RDSON
=
(VCC − VCBOOT1) −(VCC − VCBOOT2)
I1
(VCC,VCBOOT1)− I2(VCC,VCBOOT2)
where I1 is pin 8 current when VCBOOT =VCBOOT1,I2 when VCBOOT =VCBOOT2
(**) Pin 3 is a high impedence pin. Therefore dt can be set also forcing a certain voltage V3 on this pin. The dead time is the same obtained
with a Rdt if it is: Rdt
⋅ Iref = V3.
DC Operation (continued)
L6384
4/10



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