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#[doc = "Reader of register TEMPCR"] pub type R = crate::R<u32, super::TEMPCR>; #[doc = "Writer for register TEMPCR"] pub type W = crate::W<u32, super::TEMPCR>; #[doc = "Register TEMPCR `reset()`'s with value 0"] impl crate::ResetValue for super::TEMPCR { type Type = u32; #[inline(always)] fn reset_value() -> Self::Type { 0 } } #[doc = "Reader of field `VTEMP_EN`"] pub type VTEMP_EN_R = crate::R<bool, bool>; #[doc = "Write proxy for field `VTEMP_EN`"] pub struct VTEMP_EN_W<'a> { w: &'a mut W, } impl<'a> VTEMP_EN_W<'a> { #[doc = r"Sets the field bit"] #[inline(always)] pub fn set_bit(self) -> &'a mut W { self.bit(true) } #[doc = r"Clears the field bit"] #[inline(always)] pub fn clear_bit(self) -> &'a mut W { self.bit(false) } #[doc = r"Writes raw bits to the field"] #[inline(always)] pub fn bit(self, value: bool) -> &'a mut W { self.w.bits = (self.w.bits & !0x01) | ((value as u32) & 0x01); self.w } } impl R { #[doc = "Bit 0 - Temperature sensor Enable This bit is used to enable/disable temperature sensor function. 1 = Enabled temperature sensor function 0 = Disabled temperature sensor function (default) After this bit is set to 1, the value of temperature can get from ADC conversion result by ADC channel selecting channel 7 and alternative multiplexer channel selecting temperature sensor. Detail ADC conversion function please reference ADC function chapter."] #[inline(always)] pub fn vtemp_en(&self) -> VTEMP_EN_R { VTEMP_EN_R::new((self.bits & 0x01) != 0) } } impl W { #[doc = "Bit 0 - Temperature sensor Enable This bit is used to enable/disable temperature sensor function. 1 = Enabled temperature sensor function 0 = Disabled temperature sensor function (default) After this bit is set to 1, the value of temperature can get from ADC conversion result by ADC channel selecting channel 7 and alternative multiplexer channel selecting temperature sensor. Detail ADC conversion function please reference ADC function chapter."] #[inline(always)] pub fn vtemp_en(&mut self) -> VTEMP_EN_W { VTEMP_EN_W { w: self } } }