Features
IO-Link master PHY based on L6360
Interrupt diagnostics pin
I²C and UART interface
SPI (slave) interface
65 mA selectable (3.3 or 5.0 V) linear regulator
CQ (push-pull) and L+ (high side) switches
IQ additional IEC61131-2 type 1 digital input
L+ and CQ overload and overheating protections with non-dissipative cut-off
function
QFN-26L (3.5x5x1 mm) package
Operating voltage range from 18 to 32.5 V
Additional high side switch for L+ heavy loads (IPS161H)
LEDs for status and diagnostics
Ground and V
CC
wire break protections
EMC compliance with IEC61000-4-2, IEC61000-4-3, IEC61000-4-5
Equipped with ST morpho connectors
CE certified
RoHS and China RoHS compliant
Description
The STEVAL-IOM001V1 evaluation board is based on the L6360 IO-Link master
transceiver with physical layer compliant with IO-Link v1.1 specification.
Together with the STSW-IOM001 example code, it provides an affordable and easy-
to-use solution for the development of IO-Link applications, letting you easily
evaluate the communication features and robustness of the L6360.
You can also perform evaluation of multiple ports industrial IO-Link master modules
by connecting up to four STEVAL-IOM001V1 with few solder bridge modifications.
The STEVAL-IOM001V1 interfaces with the STM32 Nucleo microcontroller via UART
and GPIO pins and is compatible with the Arduino UNO R3 (optional configuration)
and ST morpho (default configuration) connectors.
Product summary
IO-Link master
evaluation board
based on L6360
equipped with ST
morpho
connectors for
STM32 Nucleo
STEVAL-IOM001V1
IO-Link
communication
master
transceiver IC
L6360
L6360 IO-Link
communication
transceiver
master IC
evaluation
software based
on STM32Cube
STSW-IOM001
IO-Link master evaluation board based on L6360 equipped with ST morpho
connectors for STM32 Nucleo
STEVAL-IOM001V1
Data brief
DB3632 - Rev 1 - June 2018
For further information contact your local STMicroelectronics sales office.
www.st.com
1 STEVAL-IOM001V1 schematic diagrams
Figure 1. STEV
AL-IOM001V1 circuit schematic (1 of 4)
Vdd
4
U2
1
C/Qi
270
INCQ
680
10
OUT10
2
7
GND
JP2
4k7
D10
9
2
EN_CQ
1
R13
1
2
SW KEY-Y1011
D13
TR2
C14
U1
JP3
6
NC6
R26
SW KEY-Y1011
JUMP
R28
5
3
L-
2
14
1
L6360
100nF
SPT01-335DEE
OUT11
11
IQ
16
SCL
2
1
0R29
R19
4
D11
OL-OFF
L+
2
VH
L-
21
STPS1L40M
270
270
SW2
NC5
5
1
SDA
JUMP
EN_L+
9
SDA
R20
8
STPS1L40M
3
1
SW KEY-Y1011
IQ
VH
3
Rbias
9
OUT9
4
CoD
R18
YELLOW
L+_U2
R12
R27680
R15
R16
100nF
3
SW1
1
C13
3
C5 100nF
IRQ
2
OUTCQ
2
7
20
LED1
19
R32
1k
2 8
Sel
2
CQio
100nF
10k
2
L+_ON
VH
27
2
25
C/Qo
26
1
R17
10nFC10
R24
1
2
C7
1
Vdd
RST
1
D16 RED
1
1
R14
1
15
1
C6
OUTIQ
RESET
2
R11
3
RST
SCL
2
IRQ
NC12
1
J2
VCC_U2
L+_U1
10k
OUT I/Q
SDA
3
SA0
560pF
100nF
2
SW5
1
SW KEY-Y1011
270
C9
4K7
INCQ
SW KEY-Y1011
3
DIAG
SW4
IN C/Qo
11
100nF
1
I/Q
2
1
Vdd
R31
D4
C8
1
J1
2
22
10
R34 68k (N.M.)
VCC_U1
R21
1
3
1
2
L+_U2
3
ENL+
RST
Vcc
1
13
2
C11
270
VCC_U1
15
SA0
1
24
3
2
IN1
2
L+_U1
270
3
SW0
560pF
VCC
GREEN
ENCQ
TAB
R30
Vdd
4
7
3k3
6
CQio
270
R22
Vdd
IRQ
Vcc
RED
R25
C12
ENL+
YELLOW
2
1k
18
5
SA1
SA2
6
R33 1k
23
EP
1nF
4K7
SA0
124K 0,1%
SW3
8
OUT8
ENCQ
OUTCQ
12
2
R23
OUT C/Qi
12
D5
SW KEY-Y1011
2
R10
1
2
1
2
OUTIQ
270
SCL
VCC_U2
IPS161H
2
4K7
D12
13
L+
10k
NC1
1
LS HS
V+
A
V-
K
17
LED2
STEVAL-IOM001V1
STEVAL-IOM001V1 schematic diagrams
DB3632 - Rev 1
page 2/6