STEVAL-IHM005V1
BLDC & AC motor control
Power driver board 3 KW
Data Brief
Features
■
Quick to set up, to install and easy to run
■
Inverter stage IGBT short circuit rugged based
■
Design is re-usable (the ORCAD source files
are available for free)
■
Several kinds of applications with six-step
commutation or 6-signal PWM (sine wavemodulated) outputs, including: 3 Phase AC
Induction motor control, 3 Phase BLDC/AC PM
motor control (6-step sensorless), 3 Phase
BLAC PM motor control (sinusoidal driven, with
Hall sensors)
■
Optimized layout to provide very low level of
interference between the Power and the Signal
noise
■
Modular approach with three different power
board module (300W, 1kW, 3kW)
)
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STEVAL-IHM005V1
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Description
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The inverter bridge is made by six IGBTs short
circuit rugged rated at 10uS with different option
of current capability in relationship to the power
needed by the customer final application. The
driving of the bridge is made by three IGBTs
drivers (suited in the control board) with High
Side/Low Side integrated functionality in a single
chip with also several protections. The supply of
the power is implemented using the Viper, a
Vertical Intelligent Power Enhanced Regulators
which combines an optimized, high voltage,
Vertical Power MOSFET with state-of-the-art
PWM circuitry.
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July 2007
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The general hardware architecture of the
reference design kit is based on an Inverter
topology suitable to efficiently drive three types of
motors: "3 Phase BLDC/AC Permanent Magnet
(in six-step mode)" , "3 Phase AC Induction" and
"3 Phase BLAC PM motor (sinusoidal driven)"
plus a plug-in control board, based on ST7FMC
MCU.
Rev 1
For further information contact your local STMicroelectronics sales office.
1/4
www.st.com
4
A
B
C
BA'
BB'
5
- VDC
BC'
Brake Motor
FST2
BE'
20A
FST5
FST3
F1
Q7
R23
1
R11
47k
STTH 306
D8
C10
R22
BF'
C11
BC547B
Q9
R26
47K
R33
10K
R25
TACHO1
TACHO1
R34
47K
R35
C7
FST9
FST8
10K
4
CON2
CON1
15VDC- EXT
Strap if not used
STTH106 D2
2
1
1
2
3
4
5
3
2
1
see manual
TR1
transil
CON3
TEMPERATURE SENSOR
Q8
BC557B
+15V
C1
R24
BF
BE
BD
BC
BB
BA
+15V
13
12
11
10
9
8
7
6
5
4
3
2
1
2
1
4
3
2
1
2
1
3
2
1
2
1
2.2uF
25V
C2
D1
1N4148
C4
22nF
50V
D3
BZX84C15
1
2
10uF
35V
3
C3
3
R14
33K
VDD
4
FB
0.23V
+
100nF
50V
C9
+5V
3
R29
10K
+5V
+15V
HV Monitoring
10K
R28
10K
R27
Hs-Current Sense
R19
4.7K
+5V
R20
4.7K
1
R21
4.7K
Q6
1
Q5
1
Q4
1
Q3
1
Q2
1
Q1
D7
STTH106
RES
SOURCE
DRAIN
SET
J8
C8
100nF
400V
22nF-400V
C12
TOKO 00499
L1
1mH
IC1
VIPER12ADIP
J14
VIPER12 ON/OFF
Com
R19, R20, R21
NOT INSTALLED
R17 56K-1/2W
R32 1K
R15 56K-1/2W
R31 1K
R12 56K1/2W
R30 1K
22nF-400V
C13
STTH106
2
R10
0.02R
5W
100uF
25V
C5
+15V
2
2
TP9
D6
BZX85C16
1
1
1
u
d
o
2
R18 120K-1/2W
D20 STTH106
2
R16 120K-1/2W
D19 STTH106
2
R13 120K-1/2W
D18
Vin
TP7
D5
BZX85C5V1
1 1
TP1
R7
3
Phase C
Phase B
Phase A
Date:
2
1
U1
2
1
Thursday, October 20, 2005
R4
12K
4
3
TP4
R3
330K
R2
680K
1
4
3
+5V
Hs-Current Sense
HV Monitoring
TP3
1
of
1
ALL THE RESISTORS
ACCURACY MUST BE
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