SPRUJ86C October 2023 – August 2024 AM263P2 , AM263P4 , AM263P4-Q1
The Control Card is equipped with a single MCAN transceiver (TCAN1024H-Q1) that is connected to the MCAN4 interface of the AM263Px SoC. The MCAN5 interface of the AM263Px SoC is mapped directly to the HSEC connector.
The MCAN transceiver has three power inputs, VIO is the transceiver I/O level shifting supply voltage and VCC is the transceiver 5V supply voltage, and VSUP is the 12V supply voltage. The SoC CAN data transmit data input is mapped to TXD of the transceiver and the CAN receive data output of the transceiver is mapped to the MCAN RX signal of the SoC with a series termination resistor close to the transceiver.
The standby control signal is a GPIO signal sourced from the IO expander. The STB control input is active high and a pull-down resistor is used to have the transceiver operate in normal mode as opposed to the standby mode that is default due to a weak internal pull up.
The system has a 120Ω split termination on the CANH and CANL signals to improve EMI performance. Split termination improves the electromagnetic emissions behavior of the network by eliminating fluctuations in the bus common-mode voltages at the start and end of message transmissions.
The low and high level CAN bus input output lines are terminated to a three pin header.
The MCAN signals go through a 1:2 signal routing mux. There is a pull-down resistor on the select line of the mux and therefore the MCAN signal routing is the default.
Select | Condition | Function |
---|---|---|
Low | MCAN signals selected | A → B1 |
High (default) | FSI signals selected | A → B2 |