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PS21965-4W Datasheet(PDF) 3 Page - Mitsubishi Electric Semiconductor

Part # PS21965-4W
Description  600V/20A low-loss CSTBTTM inverter bridge for three phase DC-to-AC power conversion
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Manufacturer  MITSUBISHI [Mitsubishi Electric Semiconductor]
Direct Link  http://www.mitsubishichips.com
Logo MITSUBISHI - Mitsubishi Electric Semiconductor

PS21965-4W Datasheet(HTML) 3 Page - Mitsubishi Electric Semiconductor

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MITSUBISHI SEMICONDUCTOR <Dual-In-Line Package Intelligent Power Module>
PS21965-4/-4A/-4C/-4W
TRANSFER-MOLD TYPE
INSULATED TYPE
Aug. 2007
3
2.54 ±0.25
7-0.6
2.5 MIN
14
×2.54(=35.56)
HEAT SINK SIDE
18
3 MIN
2-R1.6
0.28
25
4-C1.2
Type name
Lot No.
QR
Code
TERMINAL CODE
1.
NC
2.
VUFB
3.
VVFB
4.
VWFB
5.
UP
6.
VP
7.
WP
8.
VP1
9.
VNC *
10. UN
11. VN
12. WN
13. VN1
14. FO
15. CIN
16. VNC *
17. NC
18. NC
19. NC
20. N
21. W
22. V
23. U
24. P
25. NC
HEAT SINK SIDE
1.5 ±0.05
3.5
B
0.8
(2.656)
(2.756)
(1.2)
DETAIL A
DETAIL B
0.28
1.778 ±0.25
35 ±0.3
20
×1.778(=35.56)
38 ±0.5
17
1
A
16-0.5
1.5 MIN
0.5
0.5
0.5
M
Z : ZNR (Surge absorber)
C : AC filter (Ceramic capacitor 2.2~6.5nF)
(Note : Additionally, an appropriate line-to line
surge absorber circuit may become necessary
depending on the application environment).
C1 : Electrolytic type with good temperature and frequency
C2 : 0.22~2
µF R-category ceramic capacitor for noise filtering.
characteristics
(Note : The capacitance value depends on the PWM control
scheme used in the applied system).
Note1:
Input logic is high-active. There is a 3.3k
Ω (min) pull-down resistor built-in each input circuit. When using an external CR filter, please make it satisfy the
input threshold voltage.
2:
By virtue of integrating an application specific type HVIC inside the module, direct coupling to MCU terminals without any opto-coupler or transformer
isolation is possible. (see also Fig. 11)
3:
This output is open drain type. The signal line should be pulled up to the positive side of the 5V power supply with approximately 10k
Ω resistor.
(see also Fig. 11)
4:
The wiring between the power DC link capacitor and the P, N1 terminals should be as short as possible to protect the DIP-IPM against catastrophic high
surge voltages. For extra precaution, a small film type snubber capacitor (0.1~0.22
µF, high voltage type) is recommended to be mounted close to
these P & N1 DC power input pins.
5:
High voltage (600V or more) and fast recovery type (less than 100ns) diodes should be used in the bootstrap circuit.
6:
It is recommended to insert a Zener diode (24V/1W) between each pair of control supply terminals to prevent surge destruction.
7:
Bootstrap negative electrodes should be connected to U, V, W terminals directly and separated from the main output wires.
Protection
circuit (UV)
Drive circuit
AC line input
Input signal
conditioning
Input signal
conditioning
Input signal
conditioning
Level shifter
Drive circuit
Level shifter
Drive circuit
Level shifter
Drive circuit
Input signal conditioning
Protection
circuit
Control supply
Under-Voltage
protection
FO
DIP-IPM
(Note 4)
Inrush current
limiter circuit
VD
VNC
H-side IGBTS
L-side IGBTS
W
V
U
C2
C1
P
VNC
N1
N
CIN
Z
C
High-side input (PWM)
(3V, 5V line) (Note 1, 2)
(Note 5)
(15V line)
AC line output
(3V, 5V line)(Note 1, 2) Fault output (5V line)
(Note 3)
Low-side input (PWM)
(Note 7)
Fo logic
(Note 6)
(Note 6)
Fig. 5 INTERNAL FUNCTIONS BLOCK DIAGRAM (TYPICAL APPLICATION EXAMPLE)
Fig. 4 BOTH SIDES ZIGZAG TERMINAL TYPE PACKAGE OUTLINES (PS21965-4W)
Dimensions in mm
*) Two VNC terminals (9 & 16 pin) are connected inside DIP-IPM, please connect either one to the 15V power supply GND outside and
leave another one open.


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