//! Connect a potentiometer to PIN3 and see the read values change when //! rotating the shaft. Alternatively you could also connect the PIN to GND or //! 3V3 to see the maximum and minimum raw values read. #![no_std] #![no_main] use esp32s3_hal::{ adc::{AdcConfig, Attenuation, ADC, ADC1}, clock::ClockControl, gpio::IO, peripherals::Peripherals, prelude::*, timer::TimerGroup, Delay, Rtc, }; use esp_backtrace as _; use esp_println::println; #[entry] fn main() -> ! { let peripherals = Peripherals::take(); let mut system = peripherals.SYSTEM.split(); let clocks = ClockControl::boot_defaults(system.clock_control).freeze(); let timer_group0 = TimerGroup::new( peripherals.TIMG0, &clocks, &mut system.peripheral_clock_control, ); let mut wdt = timer_group0.wdt; let mut rtc = Rtc::new(peripherals.RTC_CNTL); // Disable MWDT and RWDT (Watchdog) flash boot protection wdt.disable(); rtc.rwdt.disable(); let io = IO::new(peripherals.GPIO, peripherals.IO_MUX); // Create ADC instances let analog = peripherals.SENS.split(); let mut adc1_config = AdcConfig::new(); let mut pin3 = adc1_config.enable_pin(io.pins.gpio3.into_analog(), Attenuation::Attenuation11dB); let mut adc1 = ADC::::adc(analog.adc1, adc1_config).unwrap(); let mut delay = Delay::new(&clocks); loop { let pin3_value: u16 = nb::block!(adc1.read(&mut pin3)).unwrap(); println!("PIN3 ADC reading = {}", pin3_value); delay.delay_ms(1500u32); } }