Details, datasheet, quote on part number: BB-GEVK
CompanyON Semiconductor
DatasheetDownload BB-GEVK datasheet
BB-GEVK photo

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Features, Applications
Getting Started with the IoT Development Kit from ON Semiconductor

IDK Baseboard Ambient Light Sensor (ALS) Shield Touch Shield, PIR Shield, Stepper Motor Shield LED Ballast Shield, Wi-Fi Module BLDC Shield, PoE Shield, CAN Shield

IDE Installer PC: Windows PC with minimum 1 USB port, JRE/JDK version

The IDK baseboard can be connected with different shields depending on the required IoT application. The IDK baseboard allows the user to create many types of IoT nodes and/or gateways depending on which shields are used with the baseboard. The IDK baseboard is configured by connecting the baseboard with the PC and USB cable and using accompanying PC software.

Programing/configuring the IDK requires the ON Semiconductor IDE software. The IDE should be installed on the PC before connecting the hardware to the PC. The Software Suite can be downloaded from Steps for installation of the IDE are mentioned on page 5 of this Quick Start guide.

After the IDE software is installed, hardware can be connected as shown in Figure 1. A single 2 A power supply adapter powers the evaluation board (e.g. CUI INC, model A or any other supporting VOUT = 10-35 V). Jumper settings required for the correct operation of the baseboard and the shields are listed in subsequent sections in this document. The shield boards plug directly into the IDK baseboard. The PC connects to the IDK baseboard through a USB cable. The shields are classified into two broad categories - PMOD & Arduino - based on the interface where the shields are connected to the baseboard. In addition, Arduino-type shields include "Powered" and "Non-Input Power" shields.

The IDK baseboard can be powered up in stand-alone USB Mode. Powered shields require additional power supply for its operation. No-Input power shields (e.g. PMOD-type shields) draw power from the baseboard itself. PMOD type shields: ALS, PIR & Touch (does not require additional power supply). Arduino powered shields: Stepper Motor & LED Ballast shields are supplied from external power source.

The IDK can be powered in 4 different ways: 1. USB: The IDK baseboard can be powered through USB Mode. Jumper setting: None.

CAUTION: In USB Mode, powered shields like Stepper motor, LED Ballast, etc. need to be connected to an external 12 V supply using the cable assembly provided with the IDK.

2. External V DC power adapter supplied with the IDK: Wall power adapter can be connected to the DC jack J11. Jumper settings: J16:ON. J12: OFF & J15: OFF. 3. External V DC through J11 Connector: 12 V can be provided from an external DC power supply through J11 Pin no.2 (+Ve) & J11 Pin No. 3 (-Ve). Jumper settings: J12: ON. J15: OFF & J16: OFF. 4. External V DC through J11 Connector: 12 V can be provided from an external DC power supply through J11 Pin No.2 (+Ve) & J11 Pin No. 3 (-Ve). Jumper settings: J12: OFF, & J16: OFF.

J32: Pins to be shunted for Expander IO1_6 th pin as Wi-Fi Mod Chip select J31: Pins to be shunted for HR pulse from HRM shield DIO16 J31: Pins to be shunted for DIO16 to Arduino connector. J35, J36: Pins to be shunted for expander IO pins to Arduino connectors J35, J36: Pins to be shunted for expander IO Pins to LEDs

The default jumper settings are highlighted below for the IDK boards.

No Jumper settings needed to be shunted for I2C Mode selection to be shunted for I2C Mode selection to be shunted


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