V23990-P849-X4X-P2-19 [VINCOTECH]
Output Inverter Application;型号: | V23990-P849-X4X-P2-19 |
厂家: | VINCOTECH |
描述: | Output Inverter Application |
文件: | 总4页 (文件大小:59K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
V23990-P849-A48/A49/C49/C49-PM
preliminary datasheet
1200V/8A
flowPIM0 3rd Gen
Output Inverter Application
General conditions
3phase SPWM
VGEon
VGEoff
=
=
=
=
15 V
-15 V
32 Ω
32 Ω
Rgon
Rgoff
Figure 1
IGBT
Figure 2
FRED
Typical average static loss as a function of output current
Typical average static loss as a function of output current
Ploss = f(Iout
)
Ploss = f(Iout)
25
16
14
12
10
8
Mi*cosfi=1
Mi*cosfi=-1
20
15
10
5
6
4
2
Mi*cosfi=1
Mi*cosfi=-1
0
0
0
0
2
4
6
8
10
12
14
Iout (A)
16
2
4
6
8
10
12
14
Iout (A)
16
At
At
Tj=125°C
Tj=125°C
Mi*cosfi from -1 to 1 in steps of 0,2
Mi*cosfi from -1 to 1 in steps of -0,2
Figure 3
IGBT
Figure 4
FRED
Typical average switching loss
as a function of output current
Typical average switching loss
as a function of output current
Ploss = f(Iout
)
Ploss = f(Iout)
20,0
18,0
16,0
14,0
12,0
10,0
8,0
8,0
7,0
6,0
5,0
4,0
3,0
2,0
1,0
0,0
fsw=16kHz
fsw=16kHz
6,0
4,0
2,0
fsw=2kHz
fsw=2kHz
0,0
0
2
4
6
8
10
12
14
Iout (A)
16
0
2
4
6
8
10
12
14
Iout (A)
16
At
At
Tj =
Tj =
125
°C
V
125
°C
V
DC link = 600
DC link = 600
fsw from 2 kHz to 16 kHz in 2 steps
fsw from 2 kHz to 16 kHz in 2 steps
copyright Vincotech
1
Revision: 2
V23990-P849-A48/A49/C49/C49-PM
preliminary datasheet
Output Inverter Application
Figure 5
Phase
Figure 6
Phase
Typical available 50Hz output current
as a function Mi*cosfi
Typical available 50Hz output current
as a function of switching frequency
Iout = f(Mi*cosfi)
Iout = f(fsw)
12
10
8
12
10
Th=60°C
Th=60°C
Th=100°C
Th=100°C
8
6
6
4
2
0
4
2
0
-1,0
-0,8
-0,6
-0,4
-0,2
0,0
0,2
0,4
0,6
0,8
Mi*cosfi
1,0
1
10
100
fsw (kHz)
At
At
Tj =
Tj =
125
°C
125
°C
V
DC link = 600
fsw =
V
DC link = 600
Mi*cosfi = 0,8
8
kHz
Th from 60 °C to 100 °C in steps of 5 °C
Th from 60 °C to 100 °C in steps of 5 °C
Figure 7
Phase
out = f(fsw, Mi*cosfi)
Figure 8
Phase
Typical available 50Hz output current as a function of
Mi*cosfi and switching frequency
Typical available 0Hz output current as a function
of switching frequency
I
Ioutpeak = f(fsw)
12
-1,00
-0,80
-0,60
-0,40
-0,20
0,00
0,20
0,40
0,60
0,80
1,00
Th=60°C
10
Iout (A)
Th=100°C
11,3-12,0
10,5-11,3
9,8-10,5
9,0-9,8
8
6
4
2
8,3-9,0
7,5-8,3
6,8-7,5
6,0-6,8
0
1
1
2
4
8
16
32
10
100
fsw
fsw (kHz)
At
Tj =
At
Tj =
125
°C
125
DC link = 600,00
°C
V
DC link = 600
Th =
V
°C
80
Th from 60 °C to 100 °C in steps of 5 °C
copyright Vincotech
2
Revision: 2
V23990-P849-A48/A49/C49/C49-PM
preliminary datasheet
Output Inverter Application
Figure 9
Inverter
Figure 10
Inverter
Typical available peak output power as a function of
Typical efficiency as a function of output power
Pout=f(Th)
efficiency=f(Pout)
heatsink temperature
6,0
2kHz
100,0
2kHz
5,0
4,0
3,0
2,0
1,0
0,0
99,0
98,0
97,0
96,0
95,0
94,0
16kHz
16kHz
60
65
70
75
80
85
90
95
Th
100
0,0
1,0
2,0
3,0
4,0
5,0
6,0
7,0
8,0
(
o C)
Pout (kW)
At
At
Tj =
Tj =
125
°C
V
125
°C
DC link = 600
DC link = 600
V
Mi =
1
Mi =
1
cosfi =
0,80
cosfi =
0,80
fsw from 2 kHz to 16 kHz in 2 steps
fsw from 2 kHz to 16 kHz in 2 steps
Figure 11
Inverter
peak / Pnom=f(Pnom,fsw
Typical available overload factor as a function of
motor power and switching frequency
P
)
400
350
300
250
200
150
Motor nominal power (HP/kW)
100
0,75 / 0,55
799
1,00 / 0,74
599
1,50 / 1,10
399
2,00 / 1,47
300
3,00 / 2,21
200
5,00 / 3,68
120
1
799
599
399
300
200
120
2
799
599
399
300
200
120
4
799
599
399
300
200
120
8
799
599
399
300
200
120
16
At
Tj =
125
°C
V
DC link = 600
Mi =
1
cosfi =
0,8
fsw from 1 kHz to 16 kHz in 2 steps
Th = 90 °C
Motor eff = 0,85
copyright Vincotech
3
Revision: 2
V23990-P849-A48/A49/C49/C49-PM
preliminary datasheet
PRODUCT STATUS DEFINITIONS
Datasheet Status
Product Status
Definition
This datasheet contains the design specifications for
product development. Specifications may change in any
manner without notice. The data contained is exclusively
intended for technically trained staff.
Target
Formative or In Design
First Production
This datasheet contains preliminary data, and
supplementary data may be published at a later date.
Vincotech reserves the right to make changes at any time
without notice in order to improve design. The data
contained is exclusively intended for technically trained
staff.
Preliminary
This datasheet contains final specifications. Vincotech
reserves the right to make changes at any time without
notice in order to improve design. The data contained is
exclusively intended for technically trained staff.
Final
Full Production
DISCLAIMER
Vincotech reserves the right to make changes without further notice to any products herein to improve reliability, function or design.
Vincotech does not assume any liability arising out of the application or use of any product or circuit described herein; neither does it
convey any license under its patent rights, nor the rights of others.
LIFE SUPPORT POLICY
Vincotech products are not authorised for use as critical components in life support devices or systems without the express written
approval of Vincotech.
As used herein:
1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or
sustain life, or (c) whose failure to perform when properly used in accordance with instructions for use provided in labelling can be
reasonably expected to result in significant injury to the user.
2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to
cause the failure of the life support device or system, or to affect its safety or effectiveness.
copyright Vincotech
4
Revision: 2
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