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Mitsubishi

SLIMDIP-S Datasheet Preview

SLIMDIP-S Datasheet

DIPIPM RC-IGBT inverter bridge

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< DIPIPM >
SLIMDIP-S
TRANSFER MOLDING TYPE
INSULATED TYPE
OUTLINE
MAIN FUNCTION AND RATINGS
RC-IGBT inverter bridge for three phase DC-to-AC power
conversion
Built-in bootstrap diodes with current limiting resistor
Open emitter type
APPLICATION
AC 100~240V (DC voltage:400V or below) three phase
low power motor inverter drive
Normal terminal type
TERMINAL LINE UP
Terminal
Normal terminal
Short terminal
Part number
SLIMDIP-S
SLIMDIP-S
Suffix
550
555
INTEGRATED DRIVE, PROTECTION AND SYSTEM CONTROL FUNCTIONS
For P-side
: Drive circuit, High voltage high-speed level shifting, Control supply under-voltage protection (UV)
For N-side
: Drive circuit, Control supply under-voltage protection (UV), Short circuit protection (SC),
Over temperature protection (OT)
Fault signaling : Corresponding to SC fault (N-side IGBT), UV fault (N-side supply) and OT fault
Temperature monitoring : Outputting LVIC temperature by analog signal
Input interface : Schmitt-triggered 3V, 5V input compatible, high active logic.
UL Recognized : UL1557 File E323585
INTERNAL CIRCUIT
Bootstrap Diode
with current limiting
resistor
VUFS(2)
VUFB(3)
VVFS(4)
VVFB(5)
VWFS(6)
VWFB(7)
UP(8)
VP(9)
WP(10)
VP1(11)
VNC(12)
RC-IGBT1
HVIC
RC-IGBT2
RC-IGBT3
RC-IGBT4
P(27)
RC-IGBT
U(26)
V(25)
W(24)
UN(13)
VN(14)
WN(15)
VN1(16)
FO(17)
CIN(18)
VNC(19)
VOT(20)
RC-IGBT5
LVIC
RC-IGBT6
NU(23)
NV(22)
NW(21)
Publication Date : January 2019
1




Mitsubishi

SLIMDIP-S Datasheet Preview

SLIMDIP-S Datasheet

DIPIPM RC-IGBT inverter bridge

No Preview Available !

< DIPIPM >
SLIMDIP-S
TRANSFER MOLDING TYPE
INSULATED TYPE
MAXIMUM RATINGS (Tj = 25°C, unless otherwise noted)
INVERTER PART
Symbol
Parameter
Condition
VCC Supply voltage
Applied between P-NU,NV,NW
VCC(surge) Supply voltage (surge)
Applied between P-NU,NV,NW
VCES
Collector-emitter voltage
±IC Each IGBT collector current
TC= 25°C
±ICP Each IGBT collector current (peak) TC= 25°C, less than 1ms
Tj Junction temperature
Note1: Pulse width and period are limited due to junction temperature.
(Note 1)
CONTROL (PROTECTION) PART
Symbol
Parameter
VD Control supply voltage
VDB Control supply voltage
VIN Input voltage
VFO Fault output supply voltage
IFO Fault output current
VSC Current sensing input voltage
Condition
Applied between VP1-VNC, VN1-VNC
Applied between VUFB-VUFS, VVFB-VVFS,VWFB-VWFS
Applied between UP, VP, WP, UN, VN, WN-VNC
Applied between FO-VNC
Sink current at FO terminal
Applied between CIN-VNC
TOTAL SYSTEM
Symbol
Parameter
VCC(PROT)
Self protection supply voltage limit
(Short circuit protection capability)
TC Module case operation temperature
Tstg Storage temperature
Viso Isolation voltage
Condition
VD = 13.5~16.5V, Inverter Part
Tj = 125°C, non-repetitive, less than 2μs
Measurement point of Tc is described in Fig.1
(Note2)
60Hz, Sinusoidal, AC 1min, between connected all pins
and heat sink plate
Note2 TC MEASUREMENT POINT
Fig. 1
Control terminals
Ratings
450
500
600
5
10
-30~+150
Ratings
20
20
-0.5~VD+0.5
-0.5~VD+0.5
1
-0.5~VD+0.5
Ratings
400
-30~+115
-40~+125
2000
Unit
V
V
V
A
A
°C
Unit
V
V
V
V
mA
V
Unit
V
°C
°C
Vrms
RC-IGBT
chip position
9.6mm
Power terminals
Heat sink
Tc point
THERMAL RESISTANCE
Symbol
Parameter
Condition
Min.
Limits
Typ.
Max.
Unit
Rth(j-c)Q
Junction to case thermal
resistance
(Note 3)
Inverter RC-IGBT part (per 1/6 module)
- - 5.4 K/W
Note 3: Grease with good thermal conductivity and long-term endurance should be applied evenly with about +100μm~+200μm on the contacting surface of
DIPIPM and heat sink. The contacting thermal resistance between DIPIPM case and heat sink Rth(c-f) is determined by the thickness and the thermal
conductivity of the applied grease. For reference, Rth(c-f) is about 0.4K/W (per 1/6 module, grease thickness: 20μm, thermal conductivity: 1.0W/m•K).
Publication Date : January 2019
2


Part Number SLIMDIP-S
Description DIPIPM RC-IGBT inverter bridge
Maker Mitsubishi
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