STEVAL-IOD003V1
Data brief
IO-Link (PHY) device evaluation board based on L6362A with Arduino
connectors for STM32 Nucleo
Features
•
•
•
•
•
•
•
•
L6362A IO-Link device transceiver main characteristics:
–
IO-Link PHY layer
–
Dedicated overload diagnostics pin
–
UART interface
–
Selectable 12 mA 3.3 V or 10 mA 5.0 V linear regulator
–
Overload and overheating protections with non-dissipative cut-off function
Full reverse polarity on IO-Link interface pins
–
–
EMC protections (as per IO-Link v1.1)
–
Surge protection (as per IEC 60947-5-2)
–
DFN-12L (3x3x0.9 mm) package
6.5 to 35 V operating voltage range
On-board 100 mA 12 V linear regulator (L78L)
LEDs for status and diagnostics
Ground and VCC wire break protections
Compatible with STM32 Nucleo boards
Equipped with Arduino UNO R3 connectors
RoHS and China RoHS compliant
Description
Product summary
IO-Link device
evaluation board
based on L6362A
STEVAL-IOD003V1
with Arduino
connectors for
STM32 Nucleo
IO-Link
communication
transceiver
device IC
L6362A
L6362A IO-Link
communication
transceiver
device IC
evaluation
software based
on STM32Cube
STSW-IOD003
The STEVAL-IOD003V1 evaluation board is based on the L6362A IO-Link PHY
device with full integrated EMC protection (according to IO-Link v1.1 specification)
and surge protection (according to IEC 60947-5-2). It provides an affordable and
easy-to-use solution for the development of IO-Link and SIO applications, letting you
easily evaluate the communication features and robustness of the L6362A.
The on-board linear regulators (12 mA-3.3 V from L6362A and 100 mA-12 V from
L78L12ABUTR) can be used to supply the microcontroller via the 24 V bus, instead
of via USB.
When the L78L12ABUTR is enabled (default configuration), you can also perform
evaluation of complete industrial sensor modules by connecting the STEVALIOD003V1 to a NUCLEO-L073RZ (or NUCLEO-L053R8) board and an X-NUCLEOIKS01A2 expansion board.
The STEVAL-IOD003V1 interfaces with the STM32 controller via UART and GPIO
pins and is compatible with the Arduino UNO R3 (default configuration) and ST
morpho (optional, not mounted) connectors.
DB3634 - Rev 1 - June 2018
For further information contact your local STMicroelectronics sales office.
www.st.com
STEVAL-IOD003V1
STEVAL-IOD003V1 schematic diagrams
1
STEVAL-IOD003V1 schematic diagrams
Figure 1. STEVAL-IOD003V1 circuit schematic (1 of 4)
1
2k2
2 R3
D3GREEN
C6
1
1
U1
3
EN
SW3
2
1
1
3V3
D4
R7
R6
JP3 A B default open
3V3
2
default closed 2-3
RED
1k
R8
3k3
IN1
IN2
DIAG
100k
R10
OUT /IQ
330R
D5
1k
R4
RED
1
R1
100k
C1
100pF
R5
1
2
IN2
3
EN/DIAG
4
OUT I/Q
5
OL
6
C2
100pF
VDD
Vcc
IN1
OUTH
IN2
I/Q
EN
OUTL
SEL
OUTI/Q
OL
R2 L6362A
100k
GND
12
VCC
11
OUTH
10
I/Q
9
OUTL
8
SEL
3k3
VCC
OUTH
I/Q
OUTL
2
7
1
VDD
3
SW2
default closed 2-3
C7
100pF (N.M.)
2
1
2
3V3
100pF
2
C5
C4
100pF
1
OL
VDD
IN1
2
1µF/50V
EP
47nF
13
2
C3
C9
C8
470pF (N.M.) 470pF (N.M.)
EP
Figure 2. STEVAL-IOD003V1 circuit schematic (2 of 4): Arduino connectors
3v3
A B
CN6
CN8
DB3634 - Rev 1
1
2
3
4
5
6
7
8
1
2
3
4
5
6
R147 JP6
4.7k
IOREF
NRST
3V3
5VOL
GND
GND
VIN
PA0
PA1
PA4
PB0
PC1
PC0
A0
A1
A2
A3
A4
A5
I2C_SCL
I2C_SDA
default open
3V3
IN1 DEFAULT
R102
100R
R112
100R (NM) IN1
R118
100R(NM)
DI/DQ
R146
100R(NM)
OL
R126
R104
R114
R127
100R(NM)
100R
100R(NM)
100R(NM)
DI/DQ
DIAG DEFAULT
DIAG
I2C_SDA
R134
100R(NM)
DIAG
DEFAULT OL
OL
DEFAULT IN2
DEFAULT EN
IN2
OL
R106
R107
100R(NM)
100R(NM)
D15
D14
AVDD
R115
R105
R125
R101
R109
R111
100R(NM)
100R
100R(NM)
100R
100R
100R (NM)
D13
D12
D11
D10
D9
D8
R145
100R(NM)
INTERRUPT R108
100R(NM)
DIAG
OL
DIAG
DEFAULT OUT I/Q
R144
R135
R124
100R(NM)
100R(NM)
100R(NM)
100R
(Note: UART2 TX, ST-LINK)
(Note: UART2 RX, ST-LINK)
D7
D6
D5
D4
D3
D2
D1
D0
PB8 10
PB9 9
8
7
PA5 6
PA6 5
PA7 4
PB6 3
PC7 2
PA9 1
PA8
PB10
PB4
PB5
PB3
PA10
PA2
PA3
CN5
8
7
6
5
4
3
2
1
CN9
page 2/5
STEVAL-IOD003V1
STEVAL-IOD003V1 schematic diagrams
Figure 3. STEVAL-IOD003V1 circuit schematic (3 of 4): ST morpho connectors
PC10
PC12
VDD
BOOT0
1
3
5
7
9
11
PA13
13
PA14
15
PA15
17
19
PB7
21
PC13
23
(PC14) 25
(PC15) 27
(PF0)
29
PF1
31
VBAT/VLCD 33
PC2
35
PC3
37
CN7
2
4
6
8
10
12
14
16
18
20
22
24
26
28
30
32
34
36
38
PC11
PD2
D15
D14
AVDD
E5v0
D13 PA5
D12 PA6
D11 PA7
D10 PB6
D9 PC7
D8 PA9
D7 PA8
D6 PB10
D5 PB4
D4 PB5
D3 PB3
D2 PA10
D1 PA2
D0 PA3
IOREF
NRST
3v3
5V
VIN
PA0
PA1
PA0
PB0
PC1
PC0
PC9
PB8
PB9
A0
A1
A2
A3
A4
A5
1
3
5
7
9
11
13
15
17
19
21
23
25
27
29
31
33
35
37
CON38
CN10
2
4
6
8
10
12
14
16
18
20
22
24
26
28
30
32
34
36
38
PC8
PC6
PC5
U5V
PD8
PA12
PA11
PB12
PB11
PB2
PB1
PB15/PA7
PB14/PA6
PB13/PA5
PC4
CON38
Figure 4. STEVAL-IOD003V1 circuit schematic (4 of 4): supply voltage
IO-Link device supply voltage (7 - 36 V)
1
2
3
LDO1
A B
VIN
(to NUCLEO)
default closed JP5
VCC
CN1
A B
DI/DQ
L+
JP2
OUTH
OUTL
2
D1
1
BAT54KFILM
A B
JP1
I/Q
1
3
2
SW1
4
VCC
C10 JP4 default closed
330nF
1
DI/DQ/2L+
2
LC/Q
2L-
3
3V3
I2C_SCL
I2C_SDA
INTERRUPT
4
5
1
3
5
7
9
CN11
2
4
6
8
10
3V3
I2C_SCL
I2C_SDA
INTERRUPT
CON6AP
R9
22k
IN1
IN2
DIAG
OUT I/Q
OL
EN
DB3634 - Rev 1
A B
CON6AP
C11
100nF
IN1
IN2
DIAG
OUT /IQ
OL
EN
page 3/5
STEVAL-IOD003V1
Revision history
Table 1. Document revision history
DB3634 - Rev 1
Date
Version
04-Jun-2018
1
Changes
Initial release.
page 4/5
STEVAL-IOD003V1
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DB3634 - Rev 1
page 5/5
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