SPRUJ22A
November 2021 – March 2023
AWR2944
Trademarks
1
Getting Started
1.1
Introduction
1.2
Key Features
1.3
What’s Included
1.3.1
Kit Contents
1.3.2
mmWave Out-of-Box (OOB) Demo
2
Hardware
2.1
Block Diagram
2.2
PCB Handling Recommendations
2.3
Power Connections
2.4
Connectors
2.4.1
MIPI 60-Pin Connector (J19)
2.4.2
Debug Connector-60 pin (J7)
2.4.3
CAN-A Interface Connector (J3)
2.4.4
CAN-B Interface Connector (J2)
2.4.5
Ethernet Ports (J4 and J9)
2.4.5.1
ECOs to Enable the DP83TC812R PHY
2.4.6
USB Connectors (J8, J10)
2.4.7
OSC_CLKOUT Connector (J14)
2.4.8
PMIC SPI Connector (J16) (DNP)
2.4.9
Voltage Rails Ripple Measurement Connectors (J1, J5) (DNP)
2.5
Antenna
2.6
PMIC
2.7
On-Board Sensors
2.8
PC Connection
2.8.1
XDS110 Interface
2.8.2
FTDI Interface
2.9
Connecting the AWR2944EVM to the DCA1000 EVM
2.10
Jumpers, Switches, and LEDs
2.10.1
Switches
2.10.2
Sense On Power (SOP) Jumpers (J17, J18, J20)
2.10.3
I2C Connections
2.10.4
Push Buttons
2.10.5
LEDs
3
Design Files and Software Tools
3.1
Design Files
3.2
Software, Development Tools, and Example Code
4
Revision History
1.2
Key Features
On-board antenna
XDS110 based JTAG emulation with Serial port for onboard 64-bit QSPI flash programming
UART to USB Debug port for terminal access using FT4232H
60-pin, high-density (HD) connector for external JTAG/ Emulator Interface with TRACE and CSI2 support
60-pin, high-density (HD) connector for debug, SPI, I2C and LVDS
RJ45 connector to stream the captured data over the network to the host PC
MATEnet Ethernet interface to stream the captured data over the network to an automotive host
Dual On-board CAN-FD transceiver
One button and LED for basic user interface
12 V power jack to power the board
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