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 MUBW 15-12 A6
Converter - Brake - Inverter Module (CBI1)
Rectifier VRRM = 1600V IFAVM = 25 A IFSM = 370 A
Brake VCES = 1200 V IC25 = 13 A VCE(sat) = 2.8 V
Inverter VCES = 1200 V IC25 = 18 A VCE(sat) = 2.8 V
Features
q
Input Rectifier Bridge D8 - D13 Symbol VRRM IF IFAVM IFSM it TVJ TVJ = 25C TVJ = 150C; TK = 70C TVJ = 45C; t = 10 ms sine 50 Hz TVJ = 125C Conditions Maximum Ratings 1600 55 25 370 680 +150 V A A A As C
q
q q q
q
NPT IGBT technology Square RBSOA, no latchup Free wheeling diodes with Hiperfast and soft recovery behaviour Isolation voltage 2500 V~ Built in temperature sense High level of integration: one module for complete drive system Direct Copper Bonded Al2O3 ceramic base plate
Applications Symbol Conditions Characteristic Values (TVJ = 25C, unless otherwise specified) min. typ. max. 20 2 1.2 1.05 1.46 A mA V C/W
q q
AC motor control AC servo and robot drives
q
IR VF RthJC
VRRM = 1200 V; TVJ = 25C TVJ = 125C IF = 55 A per die
Advantages
q q q
No need of external isolation Easy to mount with two screws Package designed for wave soldering High temperature and power cycling capability
(c) 2000 IXYS All rights reserved
1-8
031
IXYS reserves the right to change limits, test conditions and dimensions.
MUBW 15-12 A6
Output Inverter T1 - T6, D1 - D6 Symbol VCES VCGR VGE IC ICM tSC Ptot TVJ TVJ Symbol Conditions TVJ = 25C TVJ = 25C; RGE = 20kW TVJ = 25C TC = 25C TC = 90C tp = 1 ms = 1% duty cycle; VCE = 600 V; TVJ = 125C non-repetitive TC = 25C Free-Wheeling Diode IGBT TC = 25C TC = 90C Maximum Ratings 1200 1200 20 18 11.5 36 23 10 70 +150 +150 V V V A A A A s W C C
Conditions
Characteristic Values (TVJ = 25C, unless otherwise specified) min. typ. max. 500 100 4.5 1200 2.9 3.4 350 40 5.5 6.5 A nA V V V V ns ns ns ns mJ mJ nF nF nF S 58 2.3 2 55 0.8 250 3 nC V V ns C A C/W C/W
ICES IGES VGE(th) V(BR)CES VCEsat tf tr td(on) td(off) Eoff Eon Ciss Coss Crss gfs Qg VF trr Qr Ir RthJC
VGE = 0 V; VCE = 1000 V VCE = 0 V; VGE = 25 V VGE = VCE; IC = 0.35 mA VGE = 0 V; IC = 10 mA; TVJ = -40C VGE = 15 V; IC = 10 A; TVJ = 25C TVJ = 150C
Inductive load, TVJ = 125C VCC = 600 V; IC = 8 A RG = 100 W; VGE = 15 V
80 420 0.9 1.3 850 98 60 1.7
VGE = 0 V VCE = 25 V f = 1 MHz VCE = 20 V; IC = 1.5 A VCC = 1000 V; IC = 8 A pulse; VGE = 15 V IF = 4 A; VGE = 0 V; TVJ = 25C TVJ = 100C
IF = 4 A; VGE = 0 V; TVJ = 100C VR = -300 V; diF/dt = -800 A/s IF = 4 A; VGE = 0 V; VR = -300 V diF/dt = -800 A/s
IGBT Diode
(per die) (per die)
1.5 2.25
(c) 2000 IXYS All rights reserved
2-8
MUBW 15-12 A6
Brake Chopper T7, D7 Symbol VCES VCGR VGE IC ICM tSC Ptot TVJ TVJ Symbol Conditions TVJ = 25C TVJ = 25C; RGE = 20kW TVJ = 25C TC = 25C TC = 90C tp = 1 ms = 1% duty cycle; VCE = 600 V; TVJ = 125C non-repetitive TC = 25C Free-Wheeling Diode IGBT TC = 25C TC = 90C Maximum Ratings 1200 1200 20 13 8 26 16 10 67 +150 +150 V V V A A A A s W C C
Conditions
Characteristic Values (TVJ = 25C, unless otherwise specified) min. typ. max. 1 0.1 4.5 1200 2.8 4 200 55 3.3 4.5 5.5 100 100 6.5 A nA V V V V ns ns ns ns mJ mJ pF pF pF S nC 3 V V ns C 250 A C/W C/W
ICES IGES VGE(th) V(BR)CES VCEsat tf tr td(on) td(off) Eoff Eon Ciss Coss Crss gfs Qg VF trr Qrr Ir RthJC
VGE = 0 V; VCE = 1000 V VCE = 0 V; VGE = 25 V VGE = VCE; IC = 0.3 mA VGE = 0 V; IC = 10 mA; TVJ = -40C VGE = 15 V; IC = 5 A; TVJ = 25C TVJ = 150C
Inductive load, TVJ = 125C VCC = 600 V; IC = 5 A RG = 100 W; VGE = 15 V
65 320 0.4 0.8 650 50 20 1.7 2.5 48 2.3 2 55 0.8
VGE = 0 V VCE = 25 V f = 1 MHz VCE = 20 V; IC = 1.5 A VCC = 800 V; IC = 6 A pulse; VGE = 15 V IF = 4 A; VGE = 0 V; TVJ = 25C TVJ = 100C
IF = 4 A; VGE = 0 V; TVJ = 100C VR = -300 V; diF/dt = -800 A/s IF = 4 A; VR = -300 V; VGE = 0 V diF/dt = -800 A/s
IGBT Diode
(per die) (per die)
1.55 2.25
(c) 2000 IXYS All rights reserved
3-8
MUBW 15-12 A6
Module Symbol Tstg VISOL Md dS dA Weight IISOL 1 mA; 50/60 Hz; t = 1 min Mounting torque (M4) Creepage distance on surface Strike distance in air typ. Conditions Maximum Ratings -40...+125 2500 2.0 - 2.2 18 - 20 12.7 12.7 42 C V~ Nm lb.in. mm mm g
Temperature Sensor R Symbol R Conditions Tamb = 20C Maximum Ratings 4.7 kW
For additional data see C620/4.7k 5% S+M NTC thermistor catalog
Dimensions in mm (1 mm = 0.0394")
5.7 0.3 21.1 0.5 17.1 0.3 3.4 0.1
57.3-0.3
2 +0. 5.5
4.3+
0.2
(c) 2000 IXYS All rights reserved
4-8
MUBW 15-12 A6
Input Rectifier Bridge D8 - D13
% 6 D
)
" $AC D 6
)60
'AAW
550
6
$ U U #
99-
!$ A2A!$8 A2A "8 ! U
9-
D
A2A#$8
U
9-
A2A#$8
h " $
! U
9-
U
9-
A2A "8
A2A "8
$
$ $ ! W
)
W !$



Forward characteristics
Surge overload current IFSM: crest value, t: duration
I2t versus time (1-10 ms)
10 1 0.1 D=0 D = 0.005 D = 0.01 D = 0.02 D = 0.05 D = 0.1 D = 0.2 D = 0.5 0.00001 0.0001 0.001 0.01 0.1 1 10
(ZthJH is measured using 50 m thermal grease)
ZthJH[K/W]
0.01 0.001 0.0001 100
t (s)
Transient thermal resistance junction to heatsink
(c) 2000 IXYS All rights reserved
5-8
MUBW 15-12 A6
Output Inverter T1 - T6
UAApuhhprvvpA!$8
Reverse biased safe operating area
2.5
!
x
'
w
v
u
VtW
%
hAA$W iAA%W
2.0 ICpuls / IC 1.5
#
t
pAA&W qAA'W rAA(W
!
Dp6
sAA W
'
s
tA
W
1.0
uA !W % vAA "W wAA #W #
r
0.5 TVJ = 150C VGE = 15 V 0.0 0 400 800 VCE 1200 V
xA $W
!
q hAiAp
! " # $ % & ' (
VprW
UAApuhhprvvpA !$8
Short circuit safe operating area
10

J N M M K
hAA$W iAA%W pAA&W qAA'W rAA(W VtW
8 ICsc / IC 6 di/dt = 200 A/s 600 A/s 1000A/s

Dp6
I
sAA W tA W

VprW
H
uA !W vAA "W wAA #W xA $W
4 TVJ = 150C 2 V = 15 V GE Tsc 10 s L < 50 nH 0 400 800 VCE 1200 V
G F DE
0

Typ. gate charge
A
!
Typ. capacitances
A
'
8
%
8vAA 8AA 8AA
AA
#
! W A r t V
'
%
#
!
! " # $ % &
$ $ ! !$ " "$
8 u h t r A 8 i
VprAW
(c) 2000 IXYS All rights reserved
6-8
MUBW 15-12 A6
Output Inverter T1 - T6
7\S VZLWFKLQJ WLPH
WGRI I WI RII WGRQ WURQ
7\SVZLWFKLQJ WLPH
V Q W
V Q W
WGRI I
=8A VCE = 600 V TVJ = 125C


IC
RG = 150 W VCE = 600 V TVJ = 125C

WI RI I WGRQ WURQ
5J2KP
,$
UAvpuvtAyrA
(RI I &
UAvpuvtAyr
(RI I &
(RI I & (RQ& (RQ&
(RI I & (RQ& (RQ&
V : P (
IC
= 8A VCE = 600 V
V : P (
RG = 150 W VCE = 600 V


StAPu
,$
Transient thermal resistance junction to heatsink
(ZthJH is measured using 50 m thermal grease)
9A2 AAAA 9A2 A$ 9A2 A 9A2 A! 9A2 A$ 9A2 A A 9A2 A!A 9A2 A$ A
,*%7 =WK- + >. :@
(c) 2000 IXYS All rights reserved
7-8
MUBW 15-12 A6
Output Inverter D1 - D6
40 A 35 IF 30 25 20 15 10 5 0 0 1 2 3 VF V 4 0.5 0.0 100 10
TVJ=150C TVJ=100C TVJ= 25C
3.0 2.5 Qr 2.0 1.5 1.0
mC VVJ= 600V R
T = 100C
50
TVJ= 100C A VR = 600V
IRM
IF= 30A IF= 15A IF= 7.5A
40
30
20
IF= 30A IF= 15A IF= 7.5A
0 A/ms 1000 -diF/dt 0 200 400 600 A/ms 1000 800 -diF/dt
Forward current IF versus VF
Reverse recovery charge Qr versus -diF/dt
180 ns
TVJ= 100C VR = 600V
Peak reverse current IRM versus -diF/dt
120 V VFR 80
TVJ= 100C IF = 15A VFR tfr
2.0
1.2
ms
tfr 0.8
1.5 Kf 1.0
IRM
trr
160
IF= 30A IF= 15A IF= 7.5A
140
40 0.5
Qr
0.4
120
0.0 0 40 80 120 C 160 TVJ
100 0 200 400 600 -diF/dt 800 A/ms 1000
0
15-12A
0
200
400
0.0 600 A/ms 1000 800 diF/dt
Dynamic parameters Qr, IRM versus TVJ
Recovery time trr versus -diF/dt
Peak forward voltage VFR and tfr versus diF/dt (ZthJH is measured using 50 m thermal grease)
10
1
D=0 D = 0.005 D = 0.01 D = 0.02 D = 0.05 D = 0.1 D = 0.2 D = 0.5
0.1
FRED ZthJH[K/W]
0.01
0.00001
0.0001
0.001
0.01
t (s)
0.1
1
10
0.001 100
Transient thermal resistance junction to heatsink (c) 2000 IXYS All rights reserved
8-8


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