80-M006PNB010SA-K615C ; 80-M006PNB010SA01-K615D
preliminary datasheet
MiniSkiip 0
Output Inverter Application
General conditions
3phase SPWM
V
GEon
= 15 V
V
GEoff
= -15 V
R
gon
= 32
Ω
R
goff
= 32
Ω
600V/10A
Figure 1
Typical average static loss as a function of output current
P
loss
= f(I
out
)
18
Ploss (W)
IGBT
Figure 2
Typical average static loss as a function of output current
P
loss
= f(I
out
)
12
Ploss (W)
FWD
16
Mi*cosfi = 1
14
10
Mi*cosf i= -1
8
12
10
6
8
4
6
4
2
2
Mi*cosfi = -1
0
0
2
4
6
8
10
12
14
Iout (A)
16
0
0
2
4
6
8
10
12
Mi*cosfi = 1
14
Iout (A)
16
T
j
=
150
°C
T
j
=
150
°C
Mi*cosφ from -1 to 1 in steps of 0,2
Figure 3
Typical average switching loss
as a function of output current
Ploss (W)
9,0
Mi*cosφ from -1 to 1 in steps of 0,2
IGBT
P
loss
= f(I
out
)
Figure 4
Typical average switching loss
as a function of output current
Ploss (W)
4,0
FWD
P
loss
= f(I
out
)
8,0
fsw = 16kHz
7,0
3,5
3,0
fsw = 16kHz
6,0
2,5
5,0
2,0
4,0
1,5
3,0
1,0
2,0
0,5
1,0
fsw = 2kHz
0,0
0
2
4
6
8
10
12
14
Iout (A)
16
0,0
0
2
4
6
8
fsw = 2kHz
10
12
14
Iout (A)
16
T
j
=
DC link =
f
sw
from
150
°C
T
j
=
DC link =
f
sw
from
150
°C
320
V
2 kHz to 16 kHz in steps of factor 2
320
V
2 kHz to 16 kHz in steps of factor 2
copyright Vincotech
1
Revision: 1
80-M006PNB010SA-K615C ; 80-M006PNB010SA01-K615D
preliminary datasheet
MiniSkiip 0
Output Inverter Application
Phase
I
out
= f(Mi*cos
φ)
Figure 6
Typical available 50Hz output current
as a function of switching frequency
Iout (A)
16
600V/10A
Figure 5
Typical available 50Hz output current
as a function Mi*cosφ
16
Iout (A)
Phase
I
out
= f(f
sw
)
Th = 60°C
Th = 100°C
Th = 60°C
14
14
12
12
10
10
Th = 100°C
8
8
6
6
4
4
2
2
0
-1,0
-0,8
-0,6
-0,4
-0,2
0,0
0,2
0,4
0,6
0,8
1,0
Mi*cos
φ
0
1
10
fsw (kHz)
100
T
j
=
DC link =
f
sw
=
T
h
from
Figure 7
150
°C
T
j
=
150
°C
320
V
4
kHz
60 °C to 100 °C in steps of 5 °C
Phase
DC link = 320
V
Mi*cos
φ
= 0,8
T
h
from
60 °C to 100 °C in steps of 5 °C
Figure 8
Typical available 0Hz output current as a function
I
outpeak
= f(f
sw
)
of switching frequency
Iout (Apeak)
16
Phase
Typical available 50Hz output current as a function of
I
out
= f(f
sw
, Mi*cos
φ)
Mi*cos
φ
and switching frequency
-1,00
-0,80
Iout (A)
-0,60
14
12
-0,40
13,0-14,0
-0,20
12,0-13,0
0,00
11,0-12,0
0,20
0,40
4
9,0-10,0
0,60
2
0,80
8,0-9,0
1,00
1
2
4
8
16
32
64
0
1
10
10
Th = 60°C
Mi*cosfi
8
6
10,0-11,0
Th = 100°C
fsw
fsw (kHz)
100
T
j
=
DC link =
T
h
=
150
320
80
°C
V
°C
T
j
=
DC link =
T
h
from
Mi =
150
°C
320
V
60 °C to 100 °C in steps of 5 °C
0
copyright Vincotech
2
Revision: 1
80-M006PNB010SA-K615C ; 80-M006PNB010SA01-K615D
preliminary datasheet
MiniSkiip 0
Output Inverter Application
Inverter
Figure 10
Typical efficiency as a function of output power
efficiency=f(P
out
)
efficiency (%)
100,0
99,5
99,0
600V/10A
Figure 9
Typical available peak output power as a function of
P
out
=f(T
h
)
heatsink temperature
Pout (kW)
4,0
Inverter
2kHz
3,5
16kHz
3,0
2kHz
98,5
2,5
98,0
97,5
97,0
96,5
1,0
96,0
0,5
95,5
95,0
60
65
70
75
80
85
90
95
100
Th (
o
C)
0,0
0,5
1,0
1,5
2,0
2,5
3,0
3,5
4,0
4,5
Pout (kW)
2,0
1,5
16kHz
0,0
T
j
=
DC link =
Mi =
cos
φ=
f
sw
from
Figure 11
150
°C
T
j
=
DC link =
Mi =
cos
φ=
f
sw
from
Inverter
150
°C
320
V
1
0,80
2 kHz to 16 kHz in steps of factor 2
320
V
1
0,80
2 kHz to 16 kHz in steps of factor 2
Typical available overload factor as a function of
P
peak
/ P
nom
=f(P
nom
,f
sw
)
motor power and switching frequency
Overload (%)
400
350
300
250
200
150
Motor nominal power (HP/kW)
Switching frequency (kHz)
100
1,00 / 0,74
1
2
4
8
16
399
399
399
399
399
1,50 / 1,10
266
266
266
266
266
2,00 / 1,47
200
200
200
200
200
3,00 / 2,21
133
133
133
133
133
5,00 / 3,68
0
0
0
0
0
7,50 / 5,52
0
0
0
0
0
T
j
=
DC link =
Mi =
cos
φ=
f
sw
from
T
h
=
150
320
1
°C
V
0,8
1 kHz to 16kHz in steps of factor 2
80
°C
Motor eff = 0,85
copyright Vincotech
3
Revision: 1