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PDF STK57FU394AG-E Data sheet ( Hoja de datos )

Número de pieza STK57FU394AG-E
Descripción 2-in-1 PFC and Inverter Intelligent Power Module
Fabricantes ON Semiconductor 
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STK57FU394AG-E
2-in-1 PFC and Inverter
Intelligent Power Module (IPM),
600 V, 15 A
The STK57FU394AG-E is a fully-integrated PFC and inverter power
stage consisting of a high-voltage driver, six motor drive IGBT’s, one
PFC IGBT, one PFC rectifier and a thermistor, suitable for driving
permanent magnet synchronous (PMSM) motors, brushless-DC (BLDC)
motors and AC asynchronous motors.
The IGBT’s are configured in a 3-phase bridge with separate emitter
connections for the lower legs for maximum flexibility in the choice of
control algorithm.
An internal comparator and reference connected to the over-current
protection circuit allows the designer to set individual over-current
protection levels for the PFC and the inverter stages. Additionally, the
power stage has a full range of protection functions including cross-
conduction protection, external shutdown and under-voltage lockout
functions.
Features
Simple thermal design with PFC and inverter stage in one package.
PFC operating frequency up to 40kHz
Cross-conduction protection
Adjustable over-current protection level
Integrated bootstrap diodes and resistors
Certification
UL1557 (File Number : E339285)
Typical Applications
Heat Pumps
Home Appliances
Industrial Fans
Industrial Pumps
HINU
LINU
HINV
LINV
HINW
LINW
PFCIN
Three channel
half-bridge
driver
+
single-ended
PFC driver
with
protection
circuits
HS1
LS1
HS2
LS2
HS3
LS3
HS1 HS2 HS3
LS1 LS2 LS3
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PACKAGE PICTURE
SIP35 56x25.8 / SIP2A-3
MARKING DIAGRAM
ABCDD
STK5 7 FU3 9 4AG
4 8 12 16 20 22 24 26 28 30 32 34
1 5 9 13
19 21 23 25 27 29 31 33 35
STK57FU394AG = Specific Device Code
A = Year
B = Month
C = Production Site
DD = Factory Lot Code
Device marking is on package top side
ORDERING INFORMATION
Device
STK57FU394AG-E
Package
SIP35 56x25.8
/ SIP2A-3
(Pb-Free)
Shipping
(Qty / Packing)
8 / Tube
Figure 1. Functional Diagram
© Semiconductor Components Industries, LLC, 2016
June 2016 - Rev. 0
1
Publication Order Number:
STK57FU394AG-E/D

1 page




STK57FU394AG-E pdf
STK57FU394AG-E
ABSOLUTE MAXIMUM RATINGS (Notes 1, 2)
Tc=25C unless otherwise noted.
Rating
Symbol
Conditions
Value
Unit
PFC Section
Collector-emitter voltage
VCE
PFCL to HVGND
600 V
PFC
IGBT
Repetitive peak collector current
Collector current
ICP
IC
Duty cycle 10%, pulse width 1ms
Tc=100C
72 A
36 A
18 A
Maximum power dissipation
PC
73 W
Diode reverse voltage
VRM
VP to PFCL
600 V
PFC
Diode
Repetitive peak forward current
Diode forward current
IFP1
IF1
Duty cycle 10%, pulse width 1ms
Tc=100C
60 A
30 A
15 A
Maximum power dissipation
PD1
56 W
Anti-
parallel
Diode
Repetitive peak forward current
Diode forward current
Maximum power dissipation
IFP2
IF2
PD2
Duty cycle 10%, pulse width 1ms
11 A
5A
10 W
Maximum AC input voltage
VAC
Single-phase Full-rectified
264 V
Maximum output voltage
Input AC current (steady state)
Vo In the Application Circuit
Iin (VAC=200V)
450 V
15 Arms
Inverter Section
Supply voltage
Collector-emitter voltage
Output current
Output peak current
Maximum power dissipation
VCC
VCE max
Io
Iop
Pd
VP to NU, NV, NW surge < 500V
(Note 3)
VP to U, V, W or U to NU, V to NV, W
to NW
VP, U, V, W, NU, NV, NW terminal
current
VP, U, V, W, NU, NV, NW terminal
current at Tc=100C
VP, U, V, W, NU, NV, NW terminal
current, pulse width 1ms
IGBT per 1 channel
450
600
±15
±8
±30
35
V
V
A
A
A
W
Gate driver section
Gate driver supply voltage
Input signal voltage
FLTEN terminal voltage
VBS, VDD
VIN
VFLTEN
VBU to U, VBV to V, VBW to W, VDD
to GND (Note 4)
HINU, HINV, HINW, LINU, LINV,
LINW, PFCIN
FLTEN terminal
0.3 to +20.0
0.3 to VDD
0.3 to VDD
V
V
V
ITRIP terminal voltage
VITRIP
ITRIP terminal
0.3 to +10.0
V
PFCTRIP terminal voltage
VPTRIP
PTRIP terminal
1.5 to +2.0
V
Intelligent Power Module
Junction temperature
Tj IGBT, FRD, Gate driver IC
150 C
Storage temperature
Tstg
45 to +125
C
Operating case temperature
Tc IPM case temperature
30 to +100
C
Tightening torque
MT Case mounting screws
0.9 Nm
Isolation voltage
Vis
50Hz sine wave AC 1 minute
(Note 5)
2000
Vrms
1. Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device
functionality should not be assumed, damage may occur and reliability may be affected.
2. Refer to ELECTRICAL CHARACTERISTICS, RECOMMENDED OPERATING RANGES and/or APPLICATION INFORMATION for
Safe Operating parameters.
3. This surge voltage developed by the switching operation due to the wiring inductance between VP and NU, NV, NW terminals.
4. VBS=VBU to U, VBV to V, VBW to W
5. Test conditions : AC2500V, 1 s
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STK57FU394AG-E arduino
APPLICATIONS INFORMATION
Input / Output Timing Chart
STK57FU394AG-E
Figure 18. Input / Output Timing Chart
Notes
1. This section of the timing diagram shows the effect of cross-conduction prevention.
2. This section of the timing diagram shows that when the voltage on VDD decreases sufficiently all gate output signals will go low,
switching off all six IGBTs. When the voltage on VDD rises sufficiently, normal operation will resume.
3. This section shows that when the bootstrap voltage on VBU (VBV, VBW) drops, the corresponding high side output U (V, W) is
switched off. When the voltage on VBU (VBV, VBW) rises sufficiently, normal operation will resume.
4. This section shows that when the voltage on ITRIP exceeds the threshold, all IGBT’s are turned off. Normal operation resumes
later after the over-current condition is removed. Similarly, when the voltage on PTRIP exceeds the threshold, all IGBT’s are
turned off. Normal operation resumes later after the over-current condition is removed
5. After VDD has risen above the threshold to enable normal operation, the driver waits to receive an input signal on the LIN input
before enabling the driver for the HIN signal.
Input / Output Logic Table
INPUT
OUTPUT
HIN
LIN
ITRIP
PTRIP
High side IGBT
Low side IGBT
U,V,W
FAULT
H L L L ON (Note 5)
OFF
VP OFF
LHL L
OFF
ON
NU,NV,NW
OFF
LLLL
OFF
OFF
High Impedance
OFF
HHL L
OFF
OFF
High Impedance
OFF
XXHX
OFF
OFF
High Impedance
ON
XXXH
OFF
OFF
High Impedance
ON
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