SLASF93B October 2023 – September 2026 MSPM0C1103-Q1 , MSPM0C1104-Q1
PRODUCTION DATA
TI recommends connecting a combination of low-ESR ceramic decoupling capacitor across the VDD and VSS pins, as well as placing these capacitors as close as possible to the supply pins that they decouple (within a few millimeters) to achieve a minimal loop area. The bulk decoupling capacitor value may be adjusted based upon the PCB design and application requirements. For example, larger bulk capacitors can be used, but this can affect the supply rail ramp-up time.
The NRST reset pin must be pulled up to VDD (supply level) for the device to release from RESET state and start the boot process. TI recommends connecting an external pullup resistor with a pulldown capacitor for most applications, enabling the NRST pin to be controlled by another device or a debug probe.
For the 5V-tolerant open drain (ODIO), a pullup resistor is required to output high for I2C and UART functions, as the open drain IO only implement a low-side NMOS driver and no high-side PMOS driver. The 5V-tolerant open drain IO are fail-safe and may have a voltage present even if VDD is not supplied.
Refer to the MSPM0 C-Series MCU Hardware Development Guide for all specific component values and implemetation details to ensure proper device performance.