data brief - steval-idb011v1 - evaluation platform based on … · 2020. 9. 4. · dl1 7 gnd 1 r26...

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Features Bluetooth ® low energy evaluation board based on the BlueNRG-LP Bluetooth low energy system-on-chip (QFN48 package) Associated BlueNRG-LP development kit SW package (STSW-BNRGLP-DK) including firmware and documentation Up to +8 dBm programmable output power (at antenna connector) Excellent receiver sensitivity (-96 dBm @1 Mbps, -103 dBm @125 bps long range) Very low power consumption: 3.4 mA RX @ sensitivity level, and 4.3 mA TX @ +0 dBm Supports master, slave, and simultaneous master-and-slave roles Bluetooth low energy data length extension, 2 Mbps, long range and extended advertising and scanning SMA connector for antenna or measuring equipment Arduino R3 connectors 3 user LEDs and 2 user buttons MEMS digital accelerometer/gyroscope MEMS digital pressure/temperature sensor MEMS digital microphone Embedded CMSIS-DAP debugger and drag&drop programming support RoHS compliant Description The STEVAL-IDB011V1 evaluation platform is designed to help you develop and test Bluetooth ® low energy applications using the low power BlueNRG-LP system-on-chip in combination with inertial and environmental MEMS sensors and digital MEMS microphone, and various interface buttons and LEDs. The BlueNRG-LP features a 64 MHz, 32-bit ARM ® Cortex ® -M0+ core, 256 KB programmable Flash, 64 KB SRAM, MPU, and an extensive peripheral set (6x PWM, 2x I²C, 2x SPI/I2S, SPI, USART, UART, PDM, 12-bit ADC SAR). It is compliant with the Bluetooth ® LE specification, supporting master, slave, and simultaneous master- and-slave roles, data length extension, 2 Mbps, long range and extended advertising and scanning features. Serial communication with a PC and three power options (USB only, battery only, external power supply) allow complex application development and testing flexibility. Product summary Evaluation platform based on BlueNRG-LP STEVAL- IDB011V1 Low power Bluetooth® smart system on chip BlueNRG-LP Software package for BlueNRG-LP BLE stack v3.x family STSW- BNRGLP-DK Applications Wireless Connectivity Evaluation platform based on BlueNRG-355MC system-on-chip STEVAL-IDB011V1 Data brief DB4266 - Rev 3 - November 2020 For further information contact your local STMicroelectronics sales office. www.st.com

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  • Features• Bluetooth® low energy evaluation board based on the BlueNRG-LP Bluetooth

    low energy system-on-chip (QFN48 package)• Associated BlueNRG-LP development kit SW package (STSW-BNRGLP-DK)

    including firmware and documentation• Up to +8 dBm programmable output power (at antenna connector)• Excellent receiver sensitivity (-96 dBm @1 Mbps, -103 dBm @125 bps long

    range)• Very low power consumption: 3.4 mA RX @ sensitivity level, and 4.3 mA TX @

    +0 dBm• Supports master, slave, and simultaneous master-and-slave roles• Bluetooth low energy data length extension, 2 Mbps, long range and extended

    advertising and scanning• SMA connector for antenna or measuring equipment• Arduino R3 connectors• 3 user LEDs and 2 user buttons• MEMS digital accelerometer/gyroscope• MEMS digital pressure/temperature sensor• MEMS digital microphone• Embedded CMSIS-DAP debugger and drag&drop programming support• RoHS compliant

    DescriptionThe STEVAL-IDB011V1 evaluation platform is designed to help you develop and testBluetooth® low energy applications using the low power BlueNRG-LP system-on-chipin combination with inertial and environmental MEMS sensors and digital MEMSmicrophone, and various interface buttons and LEDs.

    The BlueNRG-LP features a 64 MHz, 32-bit ARM® Cortex®-M0+ core, 256 KBprogrammable Flash, 64 KB SRAM, MPU, and an extensive peripheral set (6x PWM,2x I²C, 2x SPI/I2S, SPI, USART, UART, PDM, 12-bit ADC SAR). It is compliant withthe Bluetooth® LE specification, supporting master, slave, and simultaneous master-and-slave roles, data length extension, 2 Mbps, long range and extended advertisingand scanning features.Serial communication with a PC and three power options (USB only, battery only,external power supply) allow complex application development and testing flexibility.

    Product summary

    Evaluation platformbased on BlueNRG-LP

    STEVAL-IDB011V1

    Low power Bluetooth®smart system on chip BlueNRG-LP

    Software packagefor BlueNRG-LP BLEstack v3.x family

    STSW-BNRGLP-DK

    Applications WirelessConnectivity

    Evaluation platform based on BlueNRG-355MC system-on-chip

    STEVAL-IDB011V1

    Data brief

    DB4266 - Rev 3 - November 2020For further information contact your local STMicroelectronics sales office.

    www.st.com

    https://www.st.com/en/product/BlueNRG-LP?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/BlueNRG-LP?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/stsw-bnrglp-dk?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/steval-idb011v1?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/BlueNRG-LP?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/BlueNRG-LP?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/steval-idb011v1?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/steval-idb011v1?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/BlueNRG-LP?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/stsw-bnrglp-dk?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266https://www.st.com/en/product/stsw-bnrglp-dk?ecmp=tt9470_gl_link_feb2019&rt=db&id=DB4266

  • 1 Schematic diagrams

    Figure 1. STEVAL-IDB011V1 circuit schematic (1 of 3)

    VDDSD VDDRF

    VDDA PA13

    PB5

    PB9PB8

    PB14

    PA13

    RSTN

    PA15PA14

    PA5

    PA11

    PA4PA7

    PA1PA6

    PB0PA9PA8PB7

    PB4

    PB3PA12

    PB2

    VDD1

    VCAP

    VCAP

    VDD

    4

    VDD3

    VDD1VDDA VDD2

    VDDRF

    VDD2 VDD3 VDD4

    BLE_RSTN

    PB9PB8PB7PB6PB5PB4

    PB3

    PB2

    PB1

    PB0

    PA15

    PA14

    PA13

    PA12

    PA9

    PA8

    PA0PA1

    PA4PA5PA6PA7

    PB12

    PB13

    PB14

    PB15

    BLE_SWDIOBLE_SWCLK

    PA11PA13

    PA14PA15

    PB12

    PB13

    PA10

    BLE_SWCLK

    BLE_SWDIO

    PA11

    VDD

    SD

    BLE_RSTN

    SWCLK

    SWDIO

    0_0402R24

    11 2 2JP3P

    B31

    PB2

    2PB

    13

    PB0

    4PA

    155

    PA14

    6PA

    137

    PA12

    8PA

    119

    PA10

    10PA

    911

    PA8

    12

    PA0 13PA1 14PA2 15PA3 16PA4 17PA5 18PA6 19PA7 20

    VDD2 21RF1 22

    VDDRF 23OSCOUT 24

    PB448PB547PB646PB745PB844PB943PB1042PB1141VDDA40VDD139RSTN38VDD337

    VD

    DSD

    36V

    LXSD

    35V

    SS34

    NC

    33V

    FBSD

    32V

    CA

    P31

    AT3/

    PB12

    /XTA

    L030

    AT2/

    PB13

    /XTA

    L129

    AT1/

    PB14

    28AT

    0/PB

    1527

    VD

    D4

    26O

    SCIN

    25

    GND49

    U1

    BlueNRG-LP

    0_0402R15

    C4 100n_0402

    TP4

    VDDA

    C16 100n_0402

    0_0402R22

    C15 100n_0402

    0_0402R25

    0_0402R1

    C7 220n_0402

    0_0402 R23

    123456

    CN4

    0_0402R7Q1

    XTAL_LS

    0_0402R21

    0_0402R4

    0_0402R170_0402 R19

    0_0402R14

    11 2 2

    JP4

    C2

    8p2_0402

    0_0402 R20

    C9

    100n_0402

    0_0402R18

    11 2 2

    JP1

    C6

    0.5p_0402

    0_0402R12

    C12 100n_0402

    123456789

    10

    CN1

    C13 100n_0402

    C1

    8p2_0402

    12345678

    CN3

    0_0402R2

    13

    2D10_0402R16

    C5

    1.2p_0402

    Q2

    XTAL_HS

    C11

    3p_0402

    L1 3n_0402

    11 2 2

    JP5

    C14

    100n_0402

    0_0402R13C3 4u7_0402

    0_0402R11

    C10

    100n_0402

    0_0402 R80_0402

    R9

    C8

    4u7_0402

    12345678

    CN2

    0_0402R10

    C30

    3.4p_0402

    0_0402R5

    0_0402R3

    0_0402R6

    SPI_CLK

    UART_T

    XD

    I2C1_DATI2C1_CLK

    SPI_MISOSPI_MOSI

    SPI_CS

    UART_R

    XD

    PA10

    PB6

    PB1

    PB15

    PB0

    PB8PB9

    PB2

    PA6

    SWCLK

    SWDIO

    RSTN

    VBLUE

    VBLUEVBLUE

    VBRD VBLUE

    VBRDVBRD

    VBLUE VBLUE VBLUE VBLUE

    Solder a 10u_0603 between 1-2or a 0R0_0603 between 1-3

    ARDUINO CONNECTORS

    L2 1n_0402

    RST_UCRSTN

    C42

    TBD

    C43

    TBD

    L3

    0ohm_0402

    Antenna matching network

    L422n_0402

    C18

    3p_0402

    IN1

    GN

    D2

    OUT 3

    GN

    D4U2

    J1RF_IN/OUT

    DB

    4266 - Rev 3

    page 2/6

    STEVAL-ID

    B011V1

    Schematic diagram

    s

  • Figure 2. STEVAL-IDB011V1 circuit schematic (2 of 3)

    GREEN

    RED

    REDGREEN

    RESET

    100n_0402C24

    VDDIO1SCL2

    RES

    3SD

    A4

    SA0

    5

    CS 6INT_DRDY 7

    GN

    D8

    GN

    D9

    VD

    D10U4

    LPS22HB

    R40 680_0402

    100n_0402C23

    100n_0402C38

    BATT1

    Battery holder

    0_0402R51

    DL2

    1

    3

    2D2

    100n_0402C26

    VDD1

    L/R2 CLK 3DOUT 4G

    ND

    5

    GN

    D6

    GN

    D8

    GN

    D7U9 MP34DT05-A

    112233 4 4

    5 56 6

    U5

    AAAF3529

    PUSH2

    100n_0402C25

    BATT2

    CR2032

    R36

    10k_0402

    PUSH1

    100_0402R27

    100_0402R30

    SDO/SA01SDx2SCx3INT14

    VD

    DIO

    5G

    ND

    6G

    ND

    7SD

    A14

    SCL

    13C

    S12

    NC 11OCS 10INT2 9VDD 8

    U6LSM6DSOX

    R34 10k_0402

    DL3

    BLUE

    1u_0402C37

    0_0402R39

    DL1

    0_0402R38

    0_0402

    R35

    100k_0402R26

    C19

    4u7_0402

    100k_0402R32

    0_0402R37

    0_0402

    R33

    0_0402R42

    R291k_0402

    100n_0402C22

    10n_0402C20

    100k_0402

    R31

    0_0402R41

    4.7u_0603C21

    1

    3

    2D3

    100_0402R28

    0_0402R50

    1

    2

    3

    JP2

    C17

    1u_0402

    USB_5V

    SPI_

    MOSI

    SPI_MISOPB

    15

    SPI_

    CLK

    PB0

    I2C1_DAT

    I2C1_CLK

    PB8

    PB9

    PA6

    PA10

    PB6

    RSTN

    PB1

    PB2

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VBRD

    VLDO

    VBRD

    VBRD

    VBRD

    GREEN

    POWER MANAGEMENT

    BUTTONS AND LEDS

    SENSORS

    For DL2 solder a 1 kohm between 1 - 2For U5 solder a 1 kohm between 1 - 3

    For DL3 solder a 680 ohm between 1 - 2For U5 solder a 680 ohm between 1 - 3

    GREEN

    NCC40

    10n_0402C41

    OUT 1

    GND2GND3

    IN 4EN5GND 6GND 7

    ADJ8U3

    LDL212D33R

    DB

    4266 - Rev 3

    page 3/6

    STEVAL-ID

    B011V1

    Schematic diagram

    s

  • Figure 3. STEVAL-IDB011V1 circuit schematic (3 of 3)

    JTMSJTCK

    VDD_A

    DMDP

    USBDP

    USBDM

    DP

    DM

    OSC_IN

    OSC_OUT

    JTDIJTDO

    DP-CON

    BOOT0

    0_0402R49

    0_0402

    R46

    1k5_0402R58

    0_0402

    R45

    C27 20p_0402

    12345678910

    CN7

    CONN

    RHoS

    0_0402 R59

    1.5k_0402R43

    ST

    X18MHz

    0_0402R53

    TP1

    GND

    1M_0402R44

    0_0402R56

    C35

    100n_0402

    C32

    100n_0402

    Vcc1D-2D+3ID4GND5

    GND6GND7GND8

    GND11GND10GND9

    CN6

    USB micro B100n_0402C29

    C34

    1u_0402

    C33

    100n_0402

    680_0402R61

    0_0402R47

    EU

    C361u_0402

    DL4

    RED

    C31100n_0402

    TP3

    GNDC2820p_0402

    1k_0402R57

    I/O111

    GND2

    I/O213 I/O22 4VBUS 5I/O12 6

    U8

    USBLC6-2SC6

    0_0402 R60

    5k_0402R52

    TP2

    GND

    0_0402R48

    0_0402R54

    USB_5V

    UART_TXD

    UART_RXD

    PA10SPI_CLK

    SPI_MOSISPI_MISO

    SPI_CS

    SWCLKSWDIO

    VBRDVBRD

    VBRD

    VBRDVBRD

    VLDO

    VBRD

    USBUSB to serial converter

    JTAG USB toserial converter

    V1 V2

    V3 V4

    BOOT0A6

    OSC_IND8

    NRSTC7

    PB0H4PB1F4PB2H3PB3A4PB4B4PB5A5PB6B5PB7C5PB8D5PB9B6PB10G3PB11F3PB12G2PB13G1PB14F2PB15F1PD2A3

    OSC_OUT D7

    PA0-WKUP F6PA1 E6PA2 H8PA3 G7PA4 H7PA5 E5PA6 G5PA7 G4PA8 E4PA9 D2

    PA10 D3PA11 C1PA12 C2PA13 D4PA14 B2PA15 C3

    PC0 E8PC1 F8PC2 D6PC4 H6PC5 H5PC6 E1PC7 E2PC8 E3PC9 D1

    PC10 A2PC11 B3PC12 C4PC13 C8PC14 B8PC15 B7

    1 of 2U7A

    Part Number: STM32F10XRXY

    VBATC6VDD_1H1VDD_2A1VDD_3A8VDD_4G6

    VDDAG8

    VREF+F7

    VSS_1 H2VSS_2 B1VSS_3 A7VSS_4 F5VSSA E7

    2 of 2U7B

    Part Number: STM32F10XRXY

    100_0402R55

    C39100n_0402

    VBRD

    VDD_1VDD_2VDD_3VDD_4

    VDD_A

    BOOT0

    OSC_IN

    NRST

    JTDO

    DP-CON

    VDD_4VDD_1VDD_2

    NRST

    OSC_OUT

    DP-CON

    JTDIJTCK

    JTMSUSBDP

    USBDM

    RST_UC

    VDD_3

    DB

    4266 - Rev 3

    page 4/6

    STEVAL-ID

    B011V1

    Schematic diagram

    s

  • Revision history

    Table 1. Document revision history

    Date Version Changes

    16-Jul-2020 1 Initial release.

    29-Jul-2020 2 Updated Figure 1.

    30-Nov-2020 3 Updated Section 1 Schematic diagrams.

    STEVAL-IDB011V1

    DB4266 - Rev 3 page 5/6

  • IMPORTANT NOTICE – PLEASE READ CAREFULLY

    STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, enhancements, modifications, and improvements to STproducts and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. STproducts 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 ofPurchasers’ products.

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    Information in this document supersedes and replaces information previously supplied in any prior versions of this document.

    © 2020 STMicroelectronics – All rights reserved

    STEVAL-IDB011V1

    DB4266 - Rev 3 page 6/6

    http://www.st.com/trademarks

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    Product summaryFeaturesDescription1 Schematic diagramsRevision history