ZHCA829G October 2014 – August 2021 MSP430F2001 , MSP430F2002 , MSP430F2003 , MSP430F2011 , MSP430F2012 , MSP430F2013 , MSP430F2013-EP , MSP430F2101 , MSP430F2111 , MSP430F2112 , MSP430F2121 , MSP430F2122 , MSP430F2131 , MSP430F2132 , MSP430F2232 , MSP430F2234 , MSP430F2252 , MSP430F2254 , MSP430F2272 , MSP430F2274 , MSP430F2274-EP , MSP430F233 , MSP430F2330 , MSP430F235 , MSP430F2350 , MSP430F2370 , MSP430F2410 , MSP430F2416 , MSP430F2417 , MSP430F2418 , MSP430F2419 , MSP430F247 , MSP430F2471 , MSP430F248 , MSP430F2481 , MSP430F249 , MSP430F249-EP , MSP430F2491 , MSP430F2616 , MSP430F2617 , MSP430F2618 , MSP430F2619 , MSP430F2619S-HT , MSP430FR2032 , MSP430FR2033 , MSP430FR2110 , MSP430FR2111 , MSP430FR2153 , MSP430FR2155 , MSP430FR2310 , MSP430FR2311 , MSP430FR2353 , MSP430FR2355 , MSP430FR2433 , MSP430FR2475 , MSP430FR2476 , MSP430FR2532 , MSP430FR2533 , MSP430FR2632 , MSP430FR2633 , MSP430FR2672 , MSP430FR2673 , MSP430FR2675 , MSP430FR2676 , MSP430FR4131 , MSP430FR4132 , MSP430FR4133 , MSP430G2001 , MSP430G2101 , MSP430G2102 , MSP430G2111 , MSP430G2112 , MSP430G2121 , MSP430G2131 , MSP430G2132 , MSP430G2152 , MSP430G2153 , MSP430G2201 , MSP430G2202 , MSP430G2203 , MSP430G2210 , MSP430G2211 , MSP430G2212 , MSP430G2213 , MSP430G2221 , MSP430G2230 , MSP430G2230-EP , MSP430G2231 , MSP430G2231-EP , MSP430G2232 , MSP430G2233 , MSP430G2252 , MSP430G2253 , MSP430G2302 , MSP430G2302-EP , MSP430G2303 , MSP430G2312 , MSP430G2313 , MSP430G2332 , MSP430G2332-EP , MSP430G2333 , MSP430G2352 , MSP430G2353 , MSP430G2402 , MSP430G2403 , MSP430G2412 , MSP430G2413 , MSP430G2432 , MSP430G2433 , MSP430G2444 , MSP430G2452 , MSP430G2453 , MSP430G2513 , MSP430G2533 , MSP430G2544 , MSP430G2553 , MSP430G2744 , MSP430G2755 , MSP430G2855 , MSP430G2955 , MSP430I2020 , MSP430I2021 , MSP430I2030 , MSP430I2031 , MSP430I2040 , MSP430I2041
FR4xx 系列中新引入的两种低功耗模式是 LPM3.5 和 LPM4.5。在这两种模式下,VCORE LDO 均被关闭,因此会关闭数字内核、RAM 和外设的电源。若要从 LPM3.5 唤醒,需要 RTC 中断、LCD 中断、振荡器故障或端口中断。所有其他系统中断都不可用。FR4xx 器件上的 RTC 模块和 LCD 模块由 LPM3.5 LDO 轨供电,因此即使在内核 LDO 已关闭时也能保持正常工作。在 LPM4.5 中,只能使用端口中断来唤醒器件。
了解 LPMx.5 模式与典型 LPM(LPM0 到 LPM4)的本质区别很重要,因为从这些模式唤醒会形成器件复位。由于不会保留 RAM(LPM3.5 中的备用存储器和 LCD 存储器除外),应用状态(如果存储在位于 RAM 内的变量中)和寄存器初始化都将丢失。
在进入低功耗模式和 RAM 保留方面,LPM3.5 与 LPM4.5 不相同。
这些 LPMx.5 模式适用于长时间处于深度睡眠状态且唤醒时间并不重要的应用。为了确定具体应用适合哪种功率模式,需要考虑唤醒频率,因为唤醒期间花费的时间会产生相关的能量损失。