STEVAL-IDP003V1. IO-Link industrial modular sensor board based on L6362A. Description. Features

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1 STEVAL-IDP00V IO-Link industrial modular sensor board based on LA Data brief Features Main supply voltage: V maximum STML0CZ microcontroller IO-Link PHY using the LA device for data communication with host unit DC-DC converter and linear regulator on board Integrated reverse polarity protection on LA ICs Multi-sensor connection 00 khz I²C communication PCB designed to accept real industrial sensors ( mm x 0 mm, with 0. mm thickness) Designed to meet IEC industrial standard requirements RoHS compliant Description The STEVAL-IDP00V kit includes the STEVAL-IDP00VD evaluation board based on the LA IO-Link device transceiver and STML0CZ microcontroller for data processing, and the following sensor daughter boards: temperature sensor STTS hosted on the STEVAL-IDP00VT, MEMS sensor IISDH hosted on the STEVAL-IDP00VTV, MEMS sensor IISDQ hosted on the STEVAL- IDP00VA and proximity sensor VL0X hosted on the STEVAL-IDP00VP. The evaluation board is equipped with an industrial M connector (required by the standard) for connection with a single master IC using a 0-meter cable. The wire is a normal three-pole wire: one for IO-Link data, one for the L+ line (positive supply voltage pole) and one for the L- line (negative supply voltage pole). The layout is designed to meet IEC000--/ and EN0 requirements for the industrial sector. October 0 DocID00 Rev /0

2 Block identification STEVAL-IDP00V Block identification In the kit, the main board is the STEVAL-IDP00V. Figure : STEVAL-IDP00V block identification The picture below shows the sensor daughter boards, from the top left corner in a clockwise direction: STEVAL-IDP00VT, STEVAL-IDP00VP, STEVAL-IDP00VA and STEVAL-IDP00VTV. The corresponding sensor part numbers are also shown. Figure : Sensor boards /0 DocID00 Rev

3 STEVAL-IDP00V Schematic diagrams Schematic diagrams Figure : STEVAL-IDP00V circuit schematic ( of ) V L 0 µh VDFPN0 Vcc C nf V C. µf 0V OUT D C µf 0V R R C OUT FB C R k C pf V R R.k 0R U L TR EN Fsw COMP EX _PA D GND SY NC H 0 n F 0V VCC VCC 0 nf V DocID00 Rev /0

4 Schematic diagrams Figure : STEVAL-IDP00V circuit schematic ( of ) STEVAL-IDP00V Vibration sensor Interrupt_Ax v_ax Vdd_IO 0 v_ax R 0k Vdd IISDH GND GND R 0k v_ax v_ax C0 0uF.V R0 0k C 00nF 0V INT INT RES CS CON0A J U IC_SCL GND IC_SDA SA0 IC_SCL_MEMS_Ax x 0 x R 0k x Interrupt_Ax x Interrupt_Ax IC_SDA_MEMS_Ax IC_SCL_MEMS_Ax x IC_SDA_MEMS_Ax IC_SDA_MEMS_Ax IC_SCL_MEMS_Ax x /0 DocID00 Rev

5 STEVAL-IDP00V Figure : STEVAL-IDP00V circuit schematic ( of ) Schematic diagrams Accelerometer sensor v_a C 0uF.V v_a v_a R0 0k v_a Interrupt_A 0 v_a R 0k 0 NC NC NC NC Vdd GND GND GND INT RES Interrupt_A IC_SDA_MEMS IC_SCL_MEMS U NC NC NC NC0 Vdd_IO NC NC IISDQ IC_SCL GND IC_SDA INT RES CS SA0 CON0A Interrupt_A IC_SDA_MEMS IC_SCL_MEMS 0 J C 00nF 0V IC_SCL_MEMS R 0k R 0k IC_SDA_MEMS C 00nF 0V DocID00 Rev /0

6 Schematic diagrams Figure : STEVAL-IDP00V circuit schematic ( of ) STEVAL-IDP00V Temperature sensor v_t v_t v_t v_t R 0K R 0K R 0K CON0A v_t U IC_SCL_THERM SCL Addr/THERM GPIO_THERM 0 GPIO_THERM IC_SDA_THERM IC_SDA_THERM GPIO_THERM IC_SCL_THERM IC_SCL_THERM EVENT Vdd IC_SDA_THERM SDA GND C STTS v_t 0pF 0V J R 0K /0 DocID00 Rev

7 STEVAL-IDP00V Figure : STEVAL-IDP00V circuit schematic ( of ) Schematic diagrams Proximity sensor IC_SCL_PRX IC_SDA_PRX v_prx v_prx v_prx R k R k U GPIO- NC NC GPIO-0 SCL CON0A SDA J VL0X AVSS NC NC AVSS_VCSEL AVDD 0 AVDD_VCSEL C0.uF.V C 00nF 0V GND_PRX GPIO-_PRX 0 GPIO-_PRX IC_SDA_PRX IC_SDA_PRX IC_SCL_PRX IC_SCL_PRX GND_PRX GND_PRX GND_PRX GPIO-_PRX DocID00 Rev /0

8 Schematic diagrams Figure : STEVAL-IDP00V circuit schematic ( of ) STEVAL-IDP00V JP CONN AV -J Microcontroller Vcc Vcc v v-ic v v-ext Linear regulator VDFPN V v v C C C 00nF 0V 00nF 0V 00nF 0V C v-ext D R k GREEN LED v-ext v J v v IC_SCL IC_SCL IC_SDA IC_SDA Interrupt 0 Interrupt VL0X v v v C uf 0V R R C 00nF 0V 00R 00R D NSR0T0P R K v D NSR0T0P R k v 0 Vcc OUTH IQ OUTL SEL C 0pF 0V D RED LED C 0pF GND Y MHz SW RESET C U Vdd IN IN EN/DIAG OUT/IQ OL C nf 0V R 00K N.M. R0 0k R 00R R 00R R k C 0pF 0V R0 k uf V LA C C 0pF 0pF C 0pF 0V R R R 0 N.M. C 0pF V R k 00nF 0V U LDFPUR EN Vin GND Vout PG ADJ R.k % R 0 N.M. R 0k R k C0 0pF CON0A J SWDIO SWCLK CON 0 C.uF 0V 0 GND OSC_OUT OSC_IN PB0 PB PA PC0 PC E VREF+ E PB E PB0 G PB F C PC A PC A BOOT C PB B PB A PB/SPIMOSI STML0x PB/SPIMISO B PB/SCK A PA/NSS A B PA C PA D PC OSC_OUT PB C G PC OSC_IN PB C F PB D F PB G E VDDIO A VDD G VDD A U VDD VDDA NRST VSS PB PA PA PA PA PA0 B PA D PA PH0 OSCIN D PH OSC_OUT D C PA0 /ICSDA C PA /ICSCL E GND R 0 N.M. EN/DIAG R 00R NRST EN/DIAG R 00R PA/ADC PA/ADC PA/ADC PC R 0k % B F D D B F E F G E G G F B Interrupt SWCLK SWDIO GND NRST IC_SDA IC_SCL IC_SCL IC_SDA OSC_IN OSC_OUT GND /0 DocID00 Rev

9 STEVAL-IDP00V Revision history Revision history Table : Document revision history Date Version Changes 0-Jun-0 Initial release. -Oct-0 Updated Figure : "STEVAL-IDP00V circuit schematic ( of )". Minor text changes. DocID00 Rev /0

10 STEVAL-IDP00V IMPORTANT NOTICE PLEASE READ CAREFULLY STMicroelectronics NV and its subsidiaries ( ST ) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST s terms and conditions of sale in place at the time of order acknowledgement. Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of Purchasers products. No license, express or implied, to any intellectual property right is granted by ST herein. Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product. ST and the ST logo are trademarks of ST. All other product or service names are the property of their respective owners. Information in this document supersedes and replaces information previously supplied in any prior versions of this document. 0 STMicroelectronics All rights reserved 0/0 DocID00 Rev

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