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PDF PSS30S71F6 Data sheet ( Hoja de datos )

Número de pieza PSS30S71F6
Descripción Dual-In-Line Package Intelligent Power Module
Fabricantes Mitsubishi Electric Semiconductor 
Logotipo Mitsubishi Electric Semiconductor Logotipo



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< Dual-In-Line Package Intelligent Power Module >
PSS30S71F6
TRANSFER MOLDING TYPE
INSULATED TYPE
OUTLINE
MAIN FUNCTION AND RATINGS
3 phase DC/AC inverter
600V / 30A (CSTBT)
N-side IGBT open emitter
Built-in bootstrap diodes with current limiting resistor
APPLICATION
AC 100~240Vrms(DC voltage:400V or below) class
low power motor control
TYPE NAME
PSS30S71F6
With temperature output function
INTEGRATED DRIVE, PROTECTION AND SYSTEM CONTROL FUNCTIONS
For P-side
: Drive circuit, High voltage high-speed level shifting, Control supply under-voltage (UV) protection
For N-side : Drive circuit, Control supply under-voltage protection (UV), Short circuit protection (SC),
Fault signaling : Corresponding to SC fault (N-side IGBT), UV fault (N-side supply)
Temperature output : Outputting LVIC temperature by analog signal
Input interface : 3, 5V line, Schmitt trigger receiver circuit (High Active)
UL Recognized : UL1557 File E80276
INTERNAL CIRCUIT
VUFB(1)
VUFB(3)
VP1(4)
UP(6)
VVFS(7)
VVFB(9)
VP1(10)
VP(12)
VWFS(13)
VWFB(15)
VP1(16)
WP(18)
VOT(20)
UN(21)
VN(22)
WN(23)
FO(24)
CFO(25)
CIN(26)
VNC(27)
VN1(28)
HVIC1
HO
HVIC2
HO
HVIC3
HO
LVIC
UOUT
VOUT
WOUT
IGBT1
Di1
DIPIPM
P(37)
U(36)
IGBT2
Di2
V(35)
IGBT3
Di3
IGBT4
Di4
IGBT5
Di5
IGBT6
Di6
W(34)
NU(33)
NV(32)
NW(31)
Publication Date : December 2013
1

1 page




PSS30S71F6 pdf
< Dual-In-Line Package Intelligent Power Module >
PSS30S71F6
TRANSFER MOLDING TYPE
INSULATED TYPE
MECHANICAL CHARACTERISTICS AND RATINGS
Parameter
Condition
Mounting torque
Mounting screw : M3 (Note 6)
Terminal pulling strength
Load 9.8N
Terminal bending strength
Load 4.9N, 90deg. bend
Weight
Heat-sink flatness
Note 6: Plain washers (ISO 7089~7094) are recommended.
Note 7: Measurement point of heat sink flatness
Recommended 0.78N·m
EIAJ-ED-4701
EIAJ-ED-4701
(Note 7)
Min.
0.59
10
2
-
-50
Limits
Typ.
0.78
-
-
21
-
Max.
0.98
-
-
-
100
Unit
N·m
s
times
g
μm
12.78mm
Measurement position
-+
4.65mm
13.5mm
Heat sink side
23mm
+
-
Heat sink side
RECOMMENDED OPERATION CONDITIONS
Symbol
Parameter
Condition
Limits
Unit
Min. Typ. Max.
VCC Supply voltage
Applied between P-NU, NV, NW
0 300 400 V
VD Control supply voltage
Applied between VP1-VNC, VN1-VNC
13.5 15.0 16.5
V
VDB Control supply voltage
Applied between VUFB-VUFS, VVFB-VVFS, VWFB-VWFS
13.0 15.0 18.5
V
ΔVD, ΔVDB Control supply variation
-1 - +1 V/μs
tdead Arm shoot-through blocking time For each input signal
1.5 -
- μs
fPWM PWM input frequency
TC 100°C, Tj 125°C
- - 20 kHz
VCC = 300V, VD = 15V, P.F = 0.8,
fPWM= 5kHz
-
- 21.0
IO Allowable r.m.s. current Sinusoidal PWM
Arms
TC 100°C, Tj 125°C
(Note8) fPWM= 15kHz
-
- 16.0
PWIN(on)
(Note 9)
0.7
-
-
Minimum input pulse width
PWIN(off)
VNC VNC variation
200VVCC350V,
13.5VVD16.5V,
13.0VVDB18.5V,
-20°CTc100°C,
Below rated current
Between rated current
and 1.7 times of rated
current
1.5 -
3.0 -
-
- μs
N-line wiring inductance Between 1.7 times and
less than 10nH (Note 10) 2.0 times of rated current
3.6
-
-
Between VNC-NU, NV, NW (including surge)
-5.0 - +5.0 V
Tj Junction temperature
-20 - +125 °C
Note 8: Allowable r.m.s. current depends on the actual application conditions.
9: DIPIPM might not make response if the input signal pulse width is less than PWIN(on)
10: IPM might make delayed response or no response for the input signal with off pulse width less than PWIN(off). Please refer below about delayed response.
Delayed Response against Shorter Input Off Signal than PWIN(off) (P-side only)
P Side Control Input
Internal IGBT Gate
Output Current Ic
t2 t1
Real line: off pulse width > PWIN(off); turn on time t1
Broken line: off pulse width < PWIN(off); turn on time t2
(t1:Normal switching time)
Publication Date : December 2013
5

5 Page





PSS30S71F6 arduino
< Dual-In-Line Package Intelligent Power Module >
PSS30S71F6
TRANSFER MOLDING TYPE
INSULATED TYPE
Revision Record
Rev.
1
2
Date
10/15/2013
12/25/2013
Page
-
5
Revised contents
New
Revise misdescriptions (Condition of Terminal pulling strength and Terminal bending
strength)
Publication Date : December 2013
11

11 Page







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