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Freescale Semiconductor |
Using the MPMC8245 Card in Standalone Mode are also supplied on the MPMC8241 ‘UnityLC’ module, which is similar enough to the MPMC8245 that it will not be specifically handled in this document (standalone operation is identical for both). These are standard features of most MPMC cards, but th |
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Freescale Semiconductor |
Reed Solomon Encoder/Decoder on the StarCore SC140/SC1400 Cores is document describes the implementation of the Reed-Solomon encoder and decoder on the SC140 core. The document begins with a basic theoretical background on the Reed-Solomon algorithm and then discusses the implementation of the encoder and decoder |
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Freescale Semiconductor |
On-Chip FLASH Programming Routines With the exception of mask set errata documents, if any other Freescale Semiconductor document contains information that conflicts with the information in the device data sheet, the data sheet should be considered to have the most current and correct |
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Freescale Semiconductor |
Using Background Debug Mode variety of potential problems, the debug logic is built into the MCU’s on-chip integration module. This differs from other systems that have the debugging logic located in the central processor unit (CPU). Not having the debugging logic in the CPU a |
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Freescale Semiconductor |
PWM Generation of the TIM can include • Two to six input capture/output compare channels – Rising-edge, falling-edge or any-edge input capture trigger – Set, clear or toggle output compare action Buffered and unbuffered pulse width modulation (PWM) signal generatio |
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Freescale Semiconductor |
Synchronizing Instructions is often useful for specifically ordering programs and for debugging. Programmers should be aware, however, that the instruction uses a significant amount of time to complete, and should not be used indiscriminately. For many applications that specifica |
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