Embedded Systems Design Using the TI MSP430 Series by Chris Nagy

By Chris Nagy

Find out about designing, programming, and constructing with the preferred new Texas tools relatives of microcontrollers, the MSP430 sequence with this new e-book from Chris Nagy. This product line is experiencing explosive progress as a result of its low-power intake and strong positive factors, yet little or no layout and alertness details is obtainable except what's provided by means of the producer. The ebook fills a niche within the technical literature for embedded structures engineers by way of delivering a extra whole blend of technical information, instance code, and descriptive prose than is offered from the producer reference info, and turns out to be useful to either pros and hobbyists. meant for embedded engineers who're new to the embedded box, or for the millions of engineers who've adventure with different microcontrollers (such as photographs, 8051s, or Motorola HC0x units) yet are new to the MSP430 line, Chris Nagy deals a radical and functional description of the machine positive factors, provides improvement directions, and gives layout examples. Code examples are utilized in nearly each bankruptcy and zone additionally incorporated at the better half CD-ROM, and/or on-line. The booklet is split into 3 sections: the 1st part offers precise descriptions of the units themselves; the second one describes hardware/firmware improvement for the units; the 3rd is designed to include details from the 1st , and supply guidance and examples of designs. * Get up-to-speed at the TI MSP430 product family's gains and idiosyncrasies * A 'hand-holding' connection with aid start on designs * Accompanying CD-ROM contains code examples

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Are you writing to Flash or the Watchdog in code? Did you intend to? Reset Condition Upon a reset signal (POR), the Status Register is reset, and the address in location 0FFFEh is loaded into the Status Register. Peripheral registers all enter their powerup state, which are described later in this book, with the peripheral register descriptions themselves. 26 Reset and Interrupts The PUC is not as simple. The Status Register is still reset, but the Program Counter is loaded with either the reset vector (0FFFEh), or the PUC source interrupt vector, depending on the source and the device.

0 0 0 CBE 0 Reserved (unused) bits. Read-only. Selects the XBUF frequency CBSEL=00: ACLK CBSEL=01: ACLK/2 CBSEL=10: ACLK/4 CBSEL=11: MCLK Crystal Buffer Enable CBE=0: Crystal Buffer Disabled CBE=1: Crystal Buffer Enabled ’4xx Series Clock Controls The ’4xx series clock controls are very similar to those of the ’3xx series. The Basic Timer registers, BTCTL, BTCNT1 and BTCNT2, are identical to those of the ’3xx, as are SCFQCTL, SCFI0, and SCFI1. CBCTL, however, is not implemented in these devices.

Clearing the DCO+ bit removes D from the calculation of fDCOCLK. On reset, D=2, but DCO+ is cleared, giving an effective multiplier of 32. High-frequency Oscillator Some of the ’1xx series devices allow for operation from two completely independent crystals. 768 kHz crystals. The second input, identified as XT2, is designed for use with higher-frequency crystals. The XT2 oscillator behaves identically to the LFXT oscillator in high-frequency mode. 6. 6: High-frequency Oscillator 45 Embedded Systems Design using the TI MSP430 Series Clock Controls ’1xx Series Clock Controls ’1xx series devices are controlled by the Basic Clock Module (BCM).

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