STEVAL-IFP032V1
Eight-channel high-side driver based on the VNI8200XP-32
Data brief
Description
The STEVAL-IFP032V1 evaluation board, based
on the VNI8200XP-32 high-side driver, is
intended for device testing in terms of power
management and digital interface.
In adherence with industrial standards, the
board’s isolated interface between the IPS and
host controller are implemented using high-speed
opto-couplers for IPS driving, and low-speed
opto-couplers to receive device status
information. Connection is achieved through a
30-pin connector.
Features
Operating voltage: from 10.5 to 33 V
Operating current: 1.2 A for each channel
Reverse polarity protection
High-speed opto-isolation for SPI and
parallel communication
Low-speed opto-isolation for device fault
signaling
Step-down converter for 3.3 V or 5 V
Digital supply voltage
LED matrix for channel status signaling
Microcontroller interface
Designed to meet EMC standard
requirements: IEC 61000-4-2, IEC 61000-44, IEC 61000-4-5
RoHS compliant
February 2016
A GUI interface provides a user-friendly way to
test VNI8200XP-32 device functionality, after
connecting the STEVAL-IFP032V1 evaluation
board to a PC via a communication board (part
number STEVAL-PCC009V2).
Thermal performance is improved thanks to a
four-layer design with copper regions distributed
across all the layers for more effective heat
dissipation. The STEVAL-IFP032V1 evaluation
board meets EFT standard requirements IEC
61000-4- 2, IEC 61000-4-4, IEC 61000-4-5.
DocID028944 Rev 1
For further information contact your local STMicroelectronics sales
office
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www.st.com
OPT_SDI
OPT_SDO
OPT_SS
OPT_CLK
OPT_SDO
OPT_SS
OPT_CLK
OPT_SDI
OPT_WD
OPT_WD
OPT_SEL1
OPT_WD_EN
OPT_OUT_EN
TP2 TP3 TP4 TP5
1 SDI
TPTH-ANELLO-1MM
OPT_SEL1
1 CL K
TPTH-ANELLO-1MM
OPT_WD_EN
1 SS
TPTH-ANELLO-1MM
OPT_OUT_EN
1 SDO
TPTH-ANELLO-1MM
2
R46
10k
1
3
1
1
3
2
R38 10k
R36 10k
R34 10k
R32 10k
R30 10k
mC
C30
4.7pF/10V
C29
4.7pF/10V
4.7pF/10V
C20
C17
3.3pF/10V
R43 100R
R42 100R
R41 100R
R40 100R
mC
Vr e g
1
3
2
JP4
2
C22
1 CH4
LEDC-0603
1
CH6
LEDC-0603
CH8
1
2 LD4
R39 270R
R37 270R
R35 270R
R33 270R
1 CH2
LEDC-0603
2LD3
2 LD1
LEDC-0603
CH1
1
LEDC-0603
1 CH3
LEDC-0603
2LD5
1 CH5
LEDC-0603
CH7
2LD7
1
LEDC-0603
2 LD8
2 LD6
JP6
R31 270R
2 LD2
R52 115R
R51 115R
Vreg
mC
JP5
Vr e g
Vreg
1
3
JP3
2
1
C34
C33
FB
13
14
18
17
16
15
12
11
10
9
8
7
6
5
4
3
2
1
DCVDD
VREF
ROW3
ROW2
ROW1
ROW0
COL1
COL0
VREG
SDO/IN8
SS/IN7
CLK/IN6
SDI/IN5
WD/IN4
OUT_EN/IN3
WD_EN/IN2
SEL1/IN1
SEL2
C16
100pF/10V
U7
C14
100pF/10V
C13
100pF/10V
100pF/10V
C12
C11
100pF/10V
Vreg
PGOOD
FAULT
TWARN
PG
FAULT
TWARN
FB
PHASE
BOOT
NC#26
OUT8
OUT7
OUT6
OUT5
OUT4
OUT3
OUT2
OUT1
NC#36
VNI8200
TAB=Vcc
1
NC#35
19
20
21
22
24
25
26
27
28
29
30
31
32
33
34
35
36
R56 8k
C15
2
C21 22nF/50V
DC/DC
JP7
DC/ DC OFF
2
DC/ DC ON
R53 R54 R55
470R 470R 470R
L1
CN2
D3
1k47 1%
10k 1%
FB
5V
2 JP8
1
C32 10nF/10V
R45
R44
100uH/0.7R Is>700mA
1
2
Ext_Vreg
STPS1L60A
GND _DIS C
2 JP11 1
l ow ESR MLCC
1uF/50V
D1
R50
2k37 1%
C31
+C7
50ZL100MEFC8X11. 5
R57
33k
D2
C10
1
Vreg
STPSH100A
2
3V3
JP12
1
mC
R47
10k
100uF/50V
l ow ESR< 10mohm MLCC
EXT_W D
R49
10k
STPS1L60
22nF/50V C24
PHASE
C8
4.7nF Y1 / 4kV
JP2
R48
10k
TRISIL-BIDIR-SMC
22nF/50V C26
Vr e g
100nF/10V
1
22nF/50V C27
TP7
TPTH-ANELLO-1MM
10nF/10V
10nF/10V
37
EP
GND
23
PHASE
LEDC-0603
1
LEDC-0603
Vreg
1
PGOOD2
1
1uF/50V
22nF/50V C23
C9
GND_Board
4.7nF Y1 / 4kV
TP1
TPTH-ANELLO-1MM
LEDC-0603
1
LD11
FAULT 2
1
2
DocID028944 Rev 1
3
OUT_EN
4.7uF/10V
2
SE L1
100pF/50V C35
WD
22nF/50V C18
2/5
SE L2
22nF/50V C19
GND_Board
22nF/50V C28
1
1
2
VCC
CN1
OUT8
OUT1
1
2
3
4
5
6
7
8
CON8
CN3
EARTH
TPTH-ANELLO-1MM
TP6
-
+
1
LD10
TWARN 2
LD9
Schematic diagram
STEVAL-IFP032V1
Schematic diagram
Figure 1: STEVAL-IFP032V1 power section
W D_EN
GSPG290 1161205SG
22nF/50V C25
TRS1
STEVAL-IFP032V1
Schematic diagram
Figure 2: STEVAL-IFP032V1 interface section
DocID028944 Rev 1
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Revision history
2
STEVAL-IFP032V1
Revision history
Table 1: Document revision history
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Date
Version
02-Feb-2016
1
DocID028944 Rev 1
Changes
Initial release.
STEVAL-IFP032V1
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Information in this document supersedes and replaces information previously supplied in any prior versions of this document.
© 2016 STMicroelectronics – All rights reserved
DocID028944 Rev 1
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