Electrical data L6387E
4/17 DocID13990 Rev 4
2 Electrical data
2.1 Absolute maximum ratings
2.2 Thermal data
2.3 Recommended operating conditions
Table 1. Absolute maximum ratings
Symbol Parameter Value Unit
V
OUT
Output voltage -3 to V
BOOT
-18 V
V
CC
Supply voltage - 0.3 to +18 V
V
BOOT
Floating supply voltage -1 to 618 V
V
hvg
High-side gate output voltage -1 to V
BOOT
V
V
lvg
Low-side gate output voltage -0.3 to V
CC
+0.3 V
V
i
Logic input voltage -0.3 to V
CC
+0.3 V
dV
OUT
/d
t
Allowed output slew rate 50 V/ns
P
tot
Total power dissipation (T
J
= 85 °C) 750 mW
T
j
Junction temperature 150 °C
T
s
Storage temperature -50 to 150 °C
ESD Human body model 2 kV
Table 2. Thermal data
Symbol Parameter SO-8 DIP-8 Unit
R
th(JA)
Thermal resistance junction to ambient 150 100 °C/W
Table 3. Recommended operating conditions
Symbol Pin Parameter Test condition Min. Typ. Max. Unit
V
OUT
6 Output voltage
(1)
1. If the condition V
BOOT
- V
OUT
< 18 V is guaranteed, V
OUT
can range from -3 to 580 V.
580 V
V
BS
(2)
2. V
BS
= V
BOOT
- V
OUT
.
8 Floating supply voltage
(1)
17 V
f
sw
Switching frequency HVG, LVG load C
L
= 1 nF 400 kHz
V
CC
3 Supply voltage 17 V
T
J
Junction temperature -45 125 °C
DocID13990 Rev 4 5/17
L6387E Pin connection
17
3 Pin connection
Figure 2. Pin connection (top view)
Table 4. Pin description
No. Pin Type Function
1 LIN I Low-side driver logic input
2 HIN I High-side driver logic input
3 V
CC
P Low voltage power supply
4 GND P Ground
5 LVG
(1)
1. The circuit guarantees 0.3 V maximum on the pin (at I
sink
= 10 mA). This allows to omit the “bleeder”
resistor connected between the gate and the source of the external MOSFET normally used to hold the pin
low.
O Low-side driver output
6 OUT P High-side driver floating reference
7 HVG
(1)
O High-side driver output
8 V
BOOT
P Bootstrap supply voltage
7
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Electrical characteristics L6387E
6/17 DocID13990 Rev 4
4 Electrical characteristics
4.1 AC operation
4.2 DC operation
Table 5. AC operation electrical characteristics (V
CC
= 15 V; T
J
= 25 °C)
Symbol Pin Parameter Test condition Min. Typ. Max. Unit
t
on
1 vs. 5
2 vs. 7
High/low-side driver turn-on propagation
delay
V
OUT
= 0 V 110 ns
t
off
1 vs. 5
2 vs. 7
High/low-side driver turn-off propagation
delay
V
OUT
= 0 V 105 ns
t
r
5, 7 Rise time C
L
= 1000 pF 50 ns
t
f
5, 7 Fall time C
L
= 1000 pF 30 ns
Table 6. DC operation electrical characteristics (V
CC
= 15 V; T
J
= 25 °C)
Symbol Pin Parameter Test condition Min. Typ. Max. Unit
Low supply voltage section
V
CC
3
Supply voltage 17 V
V
CCth1
V
CC
UV turn-on threshold 5.5 6 6.5 V
V
CCth2
V
CC
UV turn-off threshold 5 5.5 6 V
V
CChys
V
CC
UV hysteresis 0.5 V
I
QCCU
Undervoltage quiescent supply
current
V
CC
5 V 150 220 A
I
QCC
Quiescent current V
CC
= 15 V 250 320 A
R
dson
Bootstrap driver on-resistance
(1)
V
CC
12.5 V 125
Bootstrapped supply voltage section
V
BS
8
Bootstrap supply voltage 17 V
I
QBS
V
BS
quiescent current HVG ON 100 A
I
LK
High voltage leakage current
V
hvg
= V
OUT
=
V
BOOT
= 600 V
10 A
High/low-side driver
I
so
5, 7
Source short-circuit current V
IN
= V
ih
(t
p
< 10 s) 300 400 mA
I
si
Sink short-circuit current V
IN
= V
il
(t
p
< 10 s) 450 650 mA

L6387ED013TR

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Gate Drivers HV H-Bridge driver
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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