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7
Input / Output Timing Chart
Fig. 7
Notes
*1 : Diagram shows the prevention of shoot-through via control logic. More dead time to account for switching delay
needs to be added externally.
*2 : When V
DD
decreases all gate output signals will go low and cut off all of 6 IGBT outputs. When V
DD
rises the
operation will resume immediately.
*3 : When the upper side gate voltage at VB1, VB2 and VB3 drops only, the corresponding upper side output is turned
off. The outputs return to normal operation immediately after the upper side gate voltage rises.
*4 : In case of over current detection, all IGBT’s are turned off and the FAULT output is asserted. Normal operation
resumes in 18 to 80 ms after the over current condition is removed.
ON
OFF
HIN1,2,3
LIN1,2,3
N terminal
(BUS line)
current
Upper
U, V, W
Lower
U ,V, W
VB1,2,3
*1
*1
OFF
ON
*2
*3
VBS under voltage protection reset signal
VDD under voltage protection reset signal
-------------------------------------------------------ISD operation current level-------------------------------------------------------
Utmatically reset after protection
(18ms to 80ms)
*4
VDD
VBS under voltage protection reset signal
FAULT terminal
v
oltage
(at pulled-up)
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8
Logic level table
Fig. 8
Sample Application Circuit
Fig.9
INPUT OUTPUT
HIN LIN OCP
Upper
IGBT
Lower
IGBT
U,V,W FAULT
H L OFF ON OFF P OFF
L H OFF OFF ON N OFF
L L OFF OFF OFF
High
Impedance
OFF
H H OFF OFF OFF
High
Impedance
OFF
X X ON OFF OFF
High
Impedance
ON
Control
Circuit
(5V)
VCC
CS1
CS2
CB
CB
CB
VD1
VD2
VD3
P : 13
N : 16
U,VS1 : 10
V,VS2 : 6
W,VS3 : 2
VB1 : 9
U,VS1 : 10
VB2 : 5
V,VS2 : 6
VB3 : 1
W,VS3 : 2
HIN1 : 17
HIN2 : 18
HIN3 : 19
LIN1 : 20
LIN2 : 21
LIN3 : 22
ISD : 27
FAULT : 23
TH : 29
VDD : 25
VSS : 26
RP
RSD
RP
CD
VD=15V
STK531U369A-E
RCIN : 28
ISO : 24
Uppe
r
IGBT
HIN1,2,3
(17,18,19)
IC
Driver
Lower
IGBT
LIN1,2,3
(20,21,22)
P(13)
U,V,W
(10,6,2)
N(16)
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9
Recommended Operating Condition
Item Symbol Conditions MIN TYP MAX Unit
Supply voltage
V
CC
P to N 0 280 450 V
Pre-driver supply voltage
VD1, 2, 3 VB1 to U, VB2 to V, VB3 to W 12.5 15 17.5
V
VD4
V
DD
to V
SS
*1
13.5 15 16.5
PWM frequency fPWM 1 - 20 kHz
Dead time DT Turn-off to Turn-on 2 - - μs
Allowable input pulse width PWIN ON and OFF 1 - - μs
Tightening torque ‘M3’ type screw 0.6 - 0.9 Nm
*1 : Pre-drive power supply (VD4 = 15 ±1.5 V) must have the capacity of Io = 20 mA (DC), 0.5 A (Peak).
Usage Precaution
1. This IPM includes bootstrap diode and resistors. Therefore, by adding a capacitor “CB”, a high side drive voltage is generated; each
phase requires an individual bootstrap capacitor. The recommended value of CB is in the range of 1 to 47 μF, however this value needs
to be verified prior to production. If selecting the capacitance more than 47 μF (±20%), connect a resistor (about 20 ) in series
between each 3-phase upper side power supply terminals (VB1, 2, 3) and each bootstrap capacitor. When not using the bootstrap
circuit, each upper side pre-drive power supply requires an external independent power supply.
2. It is essential that wirning length between terminals in the snubber circuit be kept as short as possible to reduce the effect of surge
voltages. Recommended value of “CS” is in the range of 0.1 to 10 μF.
3. “ISO” (pin 24) is terminal for current monitor. High current may flow into that course when short-circuiting the “ISO” terminal and “V
SS
terminal. Please do not connect them.
4. “FAULT” (pin 23) is open DRAIN output terminal (Active Low). Pull up resistor is recommended more than 6.8 k.
5. Inside the IPM, a thermistor used as the temperature monitor for internal subatrate is connected between V
SS
terminal and TH terminal
therefore, an external pull up resistor connected between the TH terminal and an external power supply should be used. The
temperature monitor example application is as follows, please refer the Fig.10, and Fig.11 below.
6. Pull down resistor of 33 k is provided internally at the signal input terminals. An external resistor of 2.2 k to 3.3 k should be added to
reduce the influence of external wiring noise.
7. The over current protection feature is not intended to protect in exceptional fault condition. An external fuse is recommended for safety.
8. The level of the over current protection might be changed from IPM design value when “ISD” terminal and “V
SS
” terminal are shorted at
external. Be confirm with actual application (“N” terminal and “V
SS
” terminal are shorted at internal).
9. The level of the over current protection is adjustable with the external resistor “RSD” between “ISD” terminal and “V
SS
” terminal.
10. When input pulse width is less than 1.0 μs, an output may not react to the pulse. (Both ON signal and OFF signal)
This data shows the example of the application circuit, does not guarantee a design as the mass production set.
Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond the Recommended
Operating Ranges limits may affect device reliability.

STK531U369A-E

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
Motor / Motion / Ignition Controllers & Drivers INVERTER
Lifecycle:
New from this manufacturer.
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