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MSP430F5525IPN Datasheet(PDF) 2 Page - Texas Instruments |
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MSP430F5525IPN Datasheet(HTML) 2 Page - Texas Instruments |
2 / 115 page MSP430F551x MSP430F552x SLAS590D – OCTOBER 2009 – REVISED APRIL 2010 www.ti.com DESCRIPTION The Texas Instruments MSP430 family of ultralow-power microcontrollers consists of several devices featuring different sets of peripherals targeted for various applications. The architecture, combined with extensive low-power modes, is optimized to achieve extended battery life in portable measurement applications. The device features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows wake-up from low-power modes to active mode in less than 5 µs. The MSP430F5529, MSP430F5527, MSP430F5525, and MSP430F5521 are microcontroller configurations with integrated USB and PHY supporting USB 2.0, four 16-bit timers, a high-performance 12-bit analog-to-digital converter (ADC), two universal serial communication interfaces (USCI), hardware multiplier, DMA, real-time clock module with alarm capabilities, and 63 I/O pins. The MSP430F5528, MSP430F5526, MSP430F5524, and MSP430F5522 include all of these peripherals but have 47 I/O pins. The MSP430F5519, MSP430F5517, and MSP430F5515 are microcontroller configurations with integrated USB and PHY supporting USB 2.0, four 16-bit timers, two universal serial communication interfaces (USCI), hardware multiplier, DMA, real time clock module with alarm capabilities, and 63 I/O pins. The MSP430F5514 and MSP430FF5513 include all of these peripherals but have 47 I/O pins. Typical applications include analog and digital sensor systems, data loggers, etc. that require connectivity to various USB hosts. Family members available are summarized in Table 1. Table 1. Family Members USCI Flash SRAM ADC12_A Comp_B Package Channel A: Channel B: Device Timer_A(2) Timer_B(3) I/O (KB) (KB)(1) (Ch) (Ch) Type UART/IrDA/ SPI/I2C SPI MSP430F5529 128 8 + 2 5, 3, 3 7 2 2 14 ext / 2 int 12 63 80 PN 64 RGC, MSP430F5528 128 8 + 2 5, 3, 3 7 2 2 10 ext / 2 int 8 47 80 ZQE MSP430F5527 96 6 + 2 5, 3, 3 7 2 2 14 ext / 2 int 12 63 80 PN 64 RGC, MSP430F5526 96 6 + 2 5, 3, 3 7 2 2 10 ext / 2 int 8 47 80 ZQE MSP430F5525 64 4 + 2 5, 3, 3 7 2 2 14 ext / 2 int 12 63 80 PN 64 RGC, MSP430F5524 64 4 + 2 5, 3, 3 7 2 2 10 ext / 2 int 8 47 80 ZQE 64 RGC, MSP430F5522 32 8 + 2 5, 3, 3 7 2 2 10 ext / 2 int 8 47 80 ZQE MSP430F5521 32 6 + 2 5, 3, 3 7 2 2 14 ext/ 2 int 12 63 80 PN MSP430F5519 128 8 + 2 5, 3, 3 7 2 2 - 12 63 80 PN MSP430F5517 96 6 + 2 5, 3, 3 7 2 2 - 12 63 80 PN MSP430F5515 64 4 + 2 5, 3, 3 7 2 2 - 12 63 80 PN 64 RGC, MSP430F5514 64 4 + 2 5, 3, 3 7 2 2 - 8 47 80 ZQE 64 RGC, MSP430F5513 32 4 + 2 5, 3, 3 7 2 2 - 8 47 80 ZQE (1) The additional 2 KB USB SRAM that is listed can be used as general purpose SRAM when USB is not in use. (2) Each number in the sequence represents an instantiation of Timer_A with its associated number of capture compare registers and PWM output generators available. For example, a number sequence of 3, 5 would represent two instantiations of Timer_A, the first instantiation having 3 and the second instantiation having 5 capture compare registers and PWM output generators, respectively. (3) Each number in the sequence represents an instantiation of Timer_B with its associated number of capture compare registers and PWM output generators available. For example, a number sequence of 3, 5 would represent two instantiations of Timer_B, the first instantiation having 3 and the second instantiation having 5 capture compare registers and PWM output generators, respectively. 2 Submit Documentation Feedback Copyright © 2009–2010, Texas Instruments Incorporated |
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