By John H. Davies
The MSP430 is an easy 16-bit microcontroller with a compact and cost-efficient CPU containing in basic terms 27 directions and sixteen registers. It deals different benefits which make it compatible for low energy purposes: a wealthy number of peripherals for analog enter and output swift processing get up time the remedy of knowledge and deal with on equivalent footing.
Introduction to the MSP430 combines an instructional process with an outline of the CPU and major peripherals. the academic builds from a easy application for lighting fixtures LEDs to using a timer. It makes use of the c language from the beginning yet courses also are built in meeting language to teach how a application interacts with the undefined. to illustrate the targeted beneficial properties of the MSP430 complete insurance is given to the guideline set, sigma-delta analog-digital converters and timers. ultimately, the booklet supplies an advent to the MSP430 which extends the structure to deal with extra reminiscence and which supplies a bridge to the ARM 7 processor.
1.Embedded digital platforms and microcontrollers 2. Texas MSP430 three. improvement four. an easy travel of the MSP430 five. structure of the MSP430 6.Functions, interrupts and low-power modes 7.Digital enter, output and monitors eight. Timers nine. Mixed-signal structures: Analog enter and output 10. verbal exchange eleven. the long run: MSP430X Appendices.
*The in basic terms instructional booklet at the MSP430
*Uses either C and meeting language
*A CDROM containing a improvement package to aid the engineer and hobbyist software the MSP430.
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Extra resources for MSP430 Microcontroller Basics
Setting various combinations of these bits puts the MCU into one of its low-power modes, which is described in the section “Low-Power Modes of Operation” on page 198. We keep the CPU active for now. Constant generator: This provides the six most frequently used values so that they need not be fetched from memory whenever they are needed. It uses both R2 and R3 to provide a range of useful values by exploiting the CPU’s addressing modes. This will be explained in the section “Constant Generator and Emulated Instructions” on page 131 but the compiler or assembler handles the details automatically.
4 shows the memory map of the F2013. Maps are sometimes drawn with addresses increasing up the page, as one would normally draw the vertical axis on a graph. Otherwise they are drawn in the opposite sense, as one would write a list of numbers. I have followed TI’s usage with addresses increasing upward. Most MSP430 devices have a similar memory map, differing only in the size of the regions for RAM and code. The exceptions are devices with particularly large memory, such as the F1611 with 10 KB of RAM.
The answer would deﬁnitely be “No” if you were planning to make a large number of products. You should always design on the basis of the worst case, which in this example is the maximum supply current. You may need to read the data sheet closely to determine whether this parameter is tested. In other words, does the manufacturer guarantee that every device will have IAM ≤ 270 A or is this merely a prediction based on testing one batch? On the other hand, you might be building only a single system.