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L6387 Scheda tecnica(PDF) 3 Page - STMicroelectronics

Il numero della parte L6387
Spiegazioni elettronici  HIGH-VOLTAGE HIGH AND LOW SIDE DRIVER
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Produttore elettronici  STMICROELECTRONICS [STMicroelectronics]
Homepage  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L6387 Scheda tecnica(HTML) 3 Page - STMicroelectronics

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RECOMMENDED OPERATING CONDITIONS
Symbol
Pin
Parameter
Test Condition
Min.
Typ.
Max.
Unit
Vout
6
Output Voltage
Note 1
580
V
Vboot-
Vout
8
Floating Supply Voltage
Note 1
17
V
fsw
Switching Frequency
HVG,LVG load CL = 1nF
400
kHz
Vcc
2
Supply Voltage
17
V
Tj
Junction Temperature
-45
125
°C
Note 1: If the condition Vboot - Vout < 18V is guaranteed, Vout can range from -3 to 580V.
ELECTRICAL CHARACTERISTICS
AC Operation (Vcc = 15V; Tj = 25°C)
Symbol
Pin
Parameter
Test Condition
Min.
Typ.
Max.
Unit
ton
1 vs 7
High/Low Side Driver Turn-On
Propagation Delay
Vout = 0V
110
ns
toff
2 vs 5
High/Low Side Driver Turn-Off
Propagation Delay
Vout = 600V
105
ns
tr
7,5
Rise Time
CL = 1000pF
50
ns
tf
7,5
Fall Time
CL = 1000pF
30
ns
DC OPERATION (Vcc = 15V; Tj = 25°C)
Symbol
Pin
Parameter
Test Condition
Min.
Typ.
Max.
Unit
Low Supply Voltage Section
Vcc
3
Supply Voltage
17
V
Vccth1
Vcc UV Turn On Threshold
5.5
6
6.5
V
Vccth2
Vcc UV Turn Off Threshold
5
5.5
6
V
Vcchys
Vcc UV Hysteresis
0.5
V
Iqccu
Undervoltage Quiescent Supply
Current
Vcc
≤ 9V
150
220
µA
Iqcc
Quiescent Current
Vcc = 15V
250
320
µA
Rdson
Bootstrap Driver on Resistance (*)
Vcc
≥ 12.5V
125
Bootstrapped supply Voltage Section
VBS
8
Bootstrap Supply Voltage
17
V
IQBS
VBS Quiescent Current
HVG ON
200
µA
ILK
High Voltage Leakage Current
VS = VB = 600V
10
µA
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)
450
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
(*) 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.
L6387
3/9


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