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Arduino OBD Shield OBD Shield for Arduino Overview The Arduino OBD Shield connects Arduino board to OBD-II compliant car or light truck. Supports all OBD protocols. Based on AllPro adapter firmware. Arduino R3 form factor.
Stacking headers for expansion and connection to LCD. Provides operating voltage for the Arduino board from OBD connector. Working either 5V or 3.3V Arduino.
Standard DB-9 subconnector for use with OBD-II cable. ECU Live Data reader sketch example Description The Arduino OBD Shield is an OBD to UART interpreter hiding all the complexity of OBD protocol and exposing it as a simple request/reply interface with the help of ArdObd library. The shield schematic. Using this shield is ideal for OBD data logger or scanner application. The shield is communicating with Arduino board using serial Com1 port on pins 0 and 1. Arduino Mega and Due boards have additional Com ports, it is possible to connect shield to those ports using additional connector/jumpers on the board. Note, that Arduino IDE is using a serial port for interfacing with bootloader, so there are jumpers on the shield allowing the temporary disconnect of the serial port.
On board interfaces Male DB-9 connects to vehicle OBD-II port. Jumpers JP1 are for connecting shield to Com1 port, which is the only option for Arduino Uno board. To connect Arduino Mega and Due, remove the jumpers and use side Tx/Rx connector. On board indicators This shield contains 3 informational LEDs:. D1 (red) indicates CAN frames transmitted. D2 (yellow) indicates receiving CAN frames by the shield.
D3 (green) indicates 3.3V power connection The Software The Arduino IDE with ECU Live Reader sketch: The sketch and OBD library:. The Firmware. — the prebuilt firmware The board layout files in Eagle format:.
The simple OBD reader construction The reader is using low-cost 1602 LCD Keypad Shield for Arduino which is a knock-off of. It has a 2x16 LCD display and 6 momentary push buttons and available on eBay for $3.The LCD shield uses a voltage divider for the five push buttons, so each button produces a different voltage. The schematic below shows how it works.
The idea is to minimize the numbers of Arduino pins being used. The OBD reader assembled is shown below. The UP and DOWN push buttons is used to got through the different OBD PIDs.