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Application Notes from Texas Instruments

XIO2213B Implementation Guide

Texas Instruments
XIO2213B XIO2213B Implementation Guide

AN-181 3-Terminal Regulator is Adjustable (Rev. B)

Texas Instruments
Until now, all of the 3-terminal power IC voltage regulators have a fixed output voltage. In spite of this limitation, their ease of use, low cost, and full on-chip overload protection have

MSP430 System-Level ESD Considerations

Texas Instruments
System-Level ESD has become increasingly demanding with silicon technology scaling towards lower voltages and the need for designing cost-effective and ultra-low power components. This application rep

A Consumer's Guide to Using eXpressDSP-Compliant Algorithms

Texas Instruments
This document, along with the latest TMS320 DSP Algorithm Standard (referred to as ?XDAIS? throughout the document) API Reference Manual (SPRU360), will assist the XDAIS algorithm consumer to write th

Using the PT78 Series Integrated Switching Regulator (ISR) (Rev. A)

Texas Instruments
Using the PT78 Series Integrated Switching Regulator (ISR) PT78 & PT79 ISR Series

Migrating from TMS320C5515/05 to TMS320C5535/34/33/32 (Rev. A)

Texas Instruments
This document provides the minimum changes required to migrate from TMS320C5515/05 to TMS320C5535/34/33/32. Enhancements or new features of the TMS320C5535/34/33/32 devices that do not affect migrating from the TMS320C5515/05 devices will also be briefly mentioned in this document.

All efforts have been made to provide a comprehensive list of changes. An update will be provided if additional c

A DSP/BIOS EDMA McBSP Device Driver for TMS320C6x1x DSPs (Rev. A)

Texas Instruments
A DSP/BIOS EDMA McBSP Device Driver for TMS320C6x1x DSPs Application Report

TMS320C6455 Design Guide and Comparisons to TMS320C6416T (Rev. A)

Texas Instruments
This document describes system design considerations for the TMS320C6455 (C6455). It also gives comparisons to designing with the TMS320C6416T (C6416T) for those familiar with that device. The objective of this document is to cover system design considerations for the C6455. Those familiar with the C6416T can use the comparisons to migrate a C6416T design to the C6455. In some cases there is infor

Analysis & Design of Hysteretic Constant Freq Buck Regr Using the LM5007 (Rev. B)

Texas Instruments
AN-1319 Analysis and Design of a Hysteretic Constant Frequency Buck Reg ulator Using the LM5007

GSM Full-Rate Voice Coding on the TMS320C62xx DSP

Texas Instruments
This document describes the GSM full-rate voice coding implementation on the TMS320C62xx processor (also called the vocoder). It discusses the system requirements and is designed for programmers who want to use the code in a basic GSM architecture.

UART Implementation Using the High-End Timer

Texas Instruments
This application report describes how the TMS470 high-end timer (HET) peripheral can be used to implement multiple additional full-duplex high-speed universal asynchronous receiver transmitter (UART) interfaces with interrupt capability and zero ARM7 CPU overhead. The solution is provided for both TMS470R1A256 and TMS470R1B1M devices but the information applies to other TMS470 family members as w

TSC2005/6 Linux® Drivers

Texas Instruments
TSC2005, TSC2006 TSC2005/6 Linux® Drivers

TP-15 Reducing DC Errors in Op Amps (Addendum to AN241 & 242)

Texas Instruments
TP-15 Reducing DC Errors in Op Amps (Addendum to AN241 & 242)

GC4016 and GC4116 Power Cycling Considerations (Rev. A)

Texas Instruments
GC4016 and GC4116 Power Cycling Considerations

NFC Card Emulation Using the TRF7970A

Texas Instruments
The Near Field Communication (NFC) market is emerging into multiple fields including Medical, Consumer, Retail, Industrial, Automotive and Smart Grid. Card Emulation is one of the three operational mo

Periodical Interrupts Generation and Measurement

Texas Instruments
Periodical Interrupts Generation and Measurement Application Report

Hercules Family Frequency Slewing to Reduce Voltage and Current Transients

Texas Instruments
This application report describes a method to dynamically increase device frequency in a way that minimizes voltage dips on the board power supply. The PLL’s multiplier can be stepped in 8% steps every 50 reference clocks.

Displaying 6081 - 6100 of 6424

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