STDRIVE601
Datasheet
Triple half-bridge high-voltage gate driver
Features
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High voltage rail up to 600 V
Driver current capability:
–
200 mA source current @ 25 °C
–
350 mA sink current @ 25 °C
dV/dt transient immunity ±50 V/ns
Gate driving voltage range from 9 V to 20 V
Overall input-output propagation delay: 85 ns
Matched propagation delay for all channels
3.3 V, 5 V TTL/CMOS inputs with hysteresis
Integrated bootstrap diodes
Comparator for fast overcurrent protection
Smart shutdown function
Interlocking and deadtime function
Dedicated Enable pin
UVLO function on low-side and high-sides
SO-28
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Applications
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Product status link
STDRIVE601
Product summary
Order code
Package
Packing
Tube
STDRIVE601
STDRIVE601TR
SO-28
Tape & Reel
3-phase motor drives
Inverters
Description
The STDRIVE601 is a high voltage device manufactured with BCD6s offline
technology. It is a single-chip with three half-bridge gate drivers for N-channel power
MOSFETs or IGBTs suitable for 3-phase applications.
All device outputs can sink and source 350 mA and 200 mA respectively. Prevention
from cross conduction is ensured by interlocking and deadtime function.
The device has dedicated input pins for each output and a shutdown pin. The logic
inputs are CMOS/TTL compatible down to 3.3 V for easy interfacing with control
devices. Matched delays between low-side and high-side sections guarantee no
cycle distortion and allow high frequency operation.
The STDRIVE601 embeds a comparator featuring advanced SmartSD function also
integrated in the device, ensuring fast and effective protection against fault events
like overcurrent, overtemperature, etc.
Dedicated UVLO protection on the low-sides and each of the high-side driving
sections allow to prevent the power switches from operating in low efficiency or
dangerous conditions.
The integrated bootstrap diodes as well as all of the integrated features of this IC
make the application PCB design easier, more compact and simpler, thus reducing
the overall bill of material.
The device is available in SO-28 package.
Product label
DS12949
-
Rev 2
-
April 2021
For further information contact your local STMicroelectronics sales office.
www.st.com
STDRIVE601
Pin description and connection diagram
2
Pin description and connection diagram
Figure 2.
Pin connection (top view)
VCC
HIN1
HIN2
HIN3
LIN1
LIN2
LIN3
FAULT
CIN
EN
OD
SGND
PGND
LVG3
1
2
3
4
5
6
7
8
9
10
11
12
13
14
28
27
26
25
24
23
22
21
20
19
18
17
16
15
BOOT1
HVG1
OUT1
NC
BOOT2
HVG2
OUT2
NC
BOOT3
HVG3
OUT3
NC
LVG1
LVG2
Table 1.
Pin description
Pin #
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17, 21 25
18
19
20
22
Pin Name
VCC
HIN1
HIN2
HIN3
LIN1
LIN2
LIN3
FAULT
CIN
EN
OD
SGND
PGND
LVG3
(1)
LVG2
(1)
LVG1
(1)
N.C.
OUT3
HVG3
(1)
BOOT3
OUT2
Type
Power Supply
Logic Input
Logic Input
Logic Input
Logic Input
Logic Input
Logic Input
OD Output
Analog Input
Logic Input
OD Output
Power Supply
Power Supply
Analog Output
Analog Output
Analog Output
-
Power Supply
Analog Output
Power Supply
Power Supply
Function
Low-side and logic supply voltage
High-side driver logic input 1
High-side driver logic input 2
High-side driver logic input 3
Low-side driver logic input 1
Low-side driver logic input 2
Low-side driver logic input 3
Fault output
Comparator positive input
Enable input, active high
SmartSD timing Open Drain output, unlatch and restart input
Signal ground
Low-side driver ground
Low-side driver output 3
Low-side driver output 2
Low-side driver output 1
Not Connected
High-side (floating) common voltage driver 3
High-side driver output 3
Bootstrap supply voltage 3
High-side (floating) common voltage driver 2
DS12949
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Rev 2
page 3/26
STDRIVE601
Pin description and connection diagram
Pin #
23
24
26
27
28
Pin Name
HVG2
(1)
BOOT2
OUT1
HVG1
(1)
BOOT1
Type
Analog Output
Power Supply
Power Supply
Analog Output
Power Supply
High-side driver output 2
Bootstrap supply voltage 2
Function
High-side (floating) common voltage driver 1
High-side driver output 1
Bootstrap supply voltage 1
1. The circuit guarantees less than 1 V on the LVG and HVG pins (at Isink = 10 mA), with VCC > 3 V. This allows omitting the
“bleeder” resistor connected between the gate and the source of the external MOSFETs normally used to hold the pin low.
DS12949
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Rev 2
page 4/26
STDRIVE601
Electrical data
3
3.1
Electrical data
Absolute maximum ratings
Table 2.
Absolute maximum ratings
Note:
Each voltage referred to SGND unless otherwise specified.
Parameter
Logic supply voltage
Low-side driver ground
Low-side drivers ground
Output voltage
Bootstrap voltage
High-side gate output voltage
Low-side gate output voltage
Comparator input voltage
Logic input voltage
(2)
OD pin voltage
FAULT pin voltage
Common mode transient Immunity
Junction temperature
Storage temperature
Human body model
-40
-50
2
(3)
Min.
-0.3
VCC - 21
-21
V
BOOT
- 21
- 0.3
V
OUT
- 0.3
V
PGND
- 0.3
- 0.3
- 0.3
- 0.3
- 0.3
Max.
21
VCC + 0.3
21
V
BOOT
+ 0.3
620
V
BOOT
+ 0.3
VCC + 0.3
20
15
21
21
50
150
150
Unit
V
V
V
V
V
V
V
V
V
V
V
V/ns
°C
°C
kV
Symbol
VCC
V
PGND
V
PS
(1)
V
OUT
V
BOOT
V
HVG
V
LVG
V
CIN
V
i
V
OD
V
FAULT
dV
OUT
/dt
T
J
T
S
ESD
1. V
PS
= PGND - SGND.
2. EN, LINx, HINx.
3. Pins 18 to 28 have HBM ESD rating 1C conforming to ANSI/ESDA/JEDEC JS-001-2014.
3.2
Thermal data
Table 3.
Thermal data
Symbol
R
th(JA)
1. JEDEC 2s2p PCB in still air.
Parameter
Thermal resistance junction to ambient
(1)
Value
52
Unit
°C/W
DS12949
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Rev 2
page 5/26