SWRU613A
July 2023 – August 2024
AWRL1432
,
IWRL1432
1
Description
Get Started
Features
5
1
Evaluation Module Overview
1.1
Introduction
1.2
Kit Contents
1.3
Specification
1.4
Device Information
2
Hardware
2.1
XWRL1432BOOST Antenna
2.1.1
PCB Material
2.1.1.1
Transmitter and Receiver Virtual Array
2.2
EVM Mux Block Diagram
2.3
Switch Settings
2.4
LEDs
2.5
Connectors
2.6
USB Connector
2.7
DCA1000 HD Connector
2.8
Booster Pack Connector for the LaunchPad Connectivity
2.9
CANFD Connector
2.10
LIN PHY Connection
2.11
I2C Connections
2.11.1
EEPROM
2.12
XDS110 Interface
2.13
Flashing the Board
2.14
DCA1000EVM Mode
2.14.1
RDIF Interface for Raw ADC Capture
2.15
PCB Storage and Handling Recommendations:
2.15.1
PCB Storage and Handling Recommendations
2.15.2
Higher Power Demanding Applications
3
Software
3.1
Software, Development Tools, and Example Code
3.1.1
XWRL1432 Demo Visualization Getting Started
4
Hardware Design Files
4.1
Schematics, PCB Layout and Bill of Materials (BOM)
4.2
EVM Design Database
5
Additional Information
5.1
Trademarks
6
References
6.1
TI E2E Community
7
Revision History
Features
High RF performance RO4835LoPro PCB substrate
Wide field of view antenna, targeted for wall mount applications
XDS110 JTAG interface with USB connectivity for code development and debugging
Power optimized discrete DCDC power management
Serial port for onboard QSPI flash programming
60-pin, high-density (HD) connectors for raw analog-to-digital converter (ADC) data
Onboard CAN-FD transceiver
Onboard LIN PHY transceiver for automotive variant.
USB powered standalone mode of operation
EVM is designed as a booster pack to connect with other LaunchPad EVMs
Onboard 16Mbit QSPI flash