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How to use the STEVAL-BLUEPIRV1 evaluation board for Bluetooth
Introduction
The
STEVAL-BLUEPIRV1
on a passive infrared (PIR) sensor and featuring Bluetooth
The passive infrared sensors are the most used sensors for motion detection, thanks to their low-power
consumption and price.
The
STEVAL-BLUEPIRV1
Fresnel lens is up to 5 m.
The on-board low-power
with a power consumption in a sub-µA range.
The embedded
BNRGM2SA), which integrates an application microcontroller based on an Arm
®
Bluetooth
Low Energy connectivity.
The whole design has been built by focusing on low-power consumption. Even though powered via a CR2032
coin-cell battery, the board expected lifetime is around a year.
UM3001 - Rev 1 - April 2022
For further information contact your local STMicroelectronics sales office.
Energy wireless motion detector based on a PIR sensor
evaluation board is an application example design of a wireless motion detector based
evaluation board uses IRA-S210ST01 by Murata. The detection range of the IML-0688
TSU102
CMOS op-amp and
BlueNRG-M2SA
FCC and IC certified radio module (FCC ID: S9N-BNRGM2S and IC: 8976C-
Figure 1.
STEVAL-BLUEPIRV1 evaluation board
®
Low Energy wireless connectivity.
TS883
comparator perform the analog signal conditioning
®
Cortex
UM3001
User manual
®
Low
®
-M0 core, features the
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Summary of Contents for ST STEVAL-BLUEPIRV1

  • Page 1: Figure 1. Steval-Bluepirv1 Evaluation Board

    UM3001 User manual ® How to use the STEVAL-BLUEPIRV1 evaluation board for Bluetooth Energy wireless motion detector based on a PIR sensor Introduction STEVAL-BLUEPIRV1 evaluation board is an application example design of a wireless motion detector based ® on a passive infrared (PIR) sensor and featuring Bluetooth Low Energy wireless connectivity.
  • Page 2: Overview

    PIR sensing Analog signal element PCF chip Cortex conditionig IRA-S210ST01 antenna M0 MCU Figure 3. STEVAL-BLUEPIRV1 overview (top side) BlueNRG-M2SA module Power management (STLQ020) PIR sensor Signal conditioning (TSU102) Signal conditioning (TS883) Motion LED ® Bluetooth Low Energy status LED...
  • Page 3: Getting Started

    UM3001 Getting started Getting started To use the STEVAL-BLUEPIRV1, you just need to insert the battery and download the STBLESensor app on your smartphone. Battery STEVAL-BLUEPIRV1 is powered through a CR2032 coin cell battery. Insert the battery into the holder placed at the board bottom.
  • Page 4: Stblesensor Application

    BluePIR. Figure 6. Device list By clicking on BluePIR, the smartphone connects to the STEVAL-BLUEPIRV1. The user interface with board information then appears. There are two panels available when successfully connected to STEVAL-BLUEPIRV1. UM3001 - Rev 1...
  • Page 5: Figure 7. Led Switch Panel

    UM3001 STBLESensor application The first panel with the LED indicates the movement. There is a small delay before the LED switches off to prevent flickering. Figure 7. LED switch panel ® The other panel shows the Bluetooth Low Energy Mac address, the signal strength, and the battery voltage with the rough state of charge information.
  • Page 6: Firmware

    UM3001 Firmware Firmware The evaluation board comes flashed with a firmware based on the STSW-BLUENRG1-DK. This software package contains several project examples, such as the BLE_SensorDemo_BlueMSapp with few modifications: • low-power mode selected to achieve sub µA power consumption when idle ®...
  • Page 7: Schematic Diagrams

    Schematic diagrams Figure 9. STEVAL-BLUEPIRV1 circuit schematic 1N4148 LED1 Fresnel 680k 680k lens TS883IST IML-0688 390k TSU102IST 100n DRAIN TSU102IST DRAIN Header 3 TS883IST PIR sensor 390k 680k DIO0 U5 STLQ020PUR DIO1 DIO2 Vout LED2 1000R DIO3 DIO4 ADJ/NC RESETn...
  • Page 8: Bill Of Materials

    UM3001 Bill of materials Bill of materials Table 1. STEVAL-BLUEPIRV1 bill of materials Item Q.ty Ref. Value Description Manufacturer Order code Header, 3-Pin, CN2 N.A. Header 3, HDR1X3 2.54 mm (not assembled) Header, 5-Pin, CN4 N.A. Header 5, HDR1X5 2.54 mm (not...
  • Page 9 UM3001 Bill of materials Item Q.ty Ref. Value Description Manufacturer Order code 1%, 50V, 22k, 0603_R, 50 V, R3, R5 100mW, Vishay / Dale CRCW060322K0FKEA +-100ppm/K 1%, 50V, 1k, 0805_R, 50 V, 100mW, Vishay / Dale CRCW08051K00FKEA +-100ppm/K 1%, 50V, 2M2, 0603_R, 50 100mW, Vishay / Dale...
  • Page 10: Board Versions

    STEVAL-BLUEPIRV1 versions PCB version Schematic diagrams Bill of materials STEVAL$BLUEPIRV1A STEVAL$BLUEPIRV1A schematic diagrams STEVAL$BLUEPIRV1A bill of materials 1. This code identifies the STEVAL-BLUEPIRV1 evaluation board first version. It is printed on the board PCB. UM3001 - Rev 1 page 10/17...
  • Page 11: Regulatory Compliance Information

    Norme appliquée: NMB-003, 7e édition (2020), Classe B. Méthode d'essai appliquée: ANSI C63.4 (2014). Formal product notice required by EU The kit STEVAL-BLUEPIRV1 is in conformity with the essential requirements of the Directive 2014/53/EU (RED) and of the Directive 2015/863/EU (RoHS). Harmonized standards applied are listed in the EU Declaration of Conformity.
  • Page 12 UM3001 Regulatory compliance information Model or name of specific radio equipment: BLUENRG-M2SA Radio type: F1D Frequency bands: F1D: 2402 to 2480 MHz (2MHz bandwidth, 40 channels) RF power: F1D: 0.0055 W Antenna: chip antenna with an output power of +8dBm UM3001 - Rev 1 page 12/17...
  • Page 13: Revision History

    UM3001 Revision history Table 3. Document revision history Date Revision Changes 11-Apr-2022 Initial release. UM3001 - Rev 1 page 13/17...
  • Page 14: Table Of Contents

    UM3001 Contents Contents Overview ................2 Getting started .
  • Page 15: List Of Tables

    STEVAL-BLUEPIRV1 bill of materials ........
  • Page 16: List Of Figures

    STEVAL-BLUEPIRV1 overview (top side)........
  • Page 17 ST’s terms and conditions of sale in place at the time of order acknowledgment. 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’...

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