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Application Notes from Texas Instruments

DN017 -- CC11xx 868/915 MHz RF Matching (Rev. A)

Texas Instruments
There are three versions of the CC11xx reference design which have been published. This design note gives a short introduction to RF matching and important aspects when designing products using the CC11xx parts and discusses the differences between the three reference design revisions.

AN-1645 LM4702 Driving a MOSFET Output Stage (Rev. A)

Texas Instruments
This application report provides supporting design information regarding Texas Instruments newestoffering of high-performance ultra high-fidelity audio amplifier driver ICs.

UCC38050 100W Critical Conduction (PFC) Reference Design (Rev. A)

Texas Instruments
UCC38050 100W Critical Conduction Power Factor Corrected (PFC) Reference Design

TMS320C25 Logical Shifts in Parallel With ALU Operations

Texas Instruments
With an easy trick a logical right or left shift can be accomplished in parallel with another instruction without disturbing the accumulator multiplier or any other part of the ALU. This process is explained with examples to illustrate the details. Specific code commands to implement this process are given.

TPS659037 Design Guide

Texas Instruments
This application note provides guidance on schematic design and can be used as a design review of applications using the TPS659037 power management IC (PMIC). This document describes recommended external components recommended connections of select signals and contains a design checklist. Prior to using this guide TI recommends reading the user's guide TPS659037 User's Guide to Power AM572x an

U-115 New Integrated Circuit Produces Robust, Noise Immune System for Brushless

Texas Instruments
The UC3625 family of motor controller ICs integrates most functions required for high-performance, brushless DC motor control into one package. With external power MOSFETs or Darlingtons, these ICs pe

AM572x/AM571x Compatibility Guide (Rev. B)

Texas Instruments

This application report provides a summary of the differences between AM572x Silicon Revision 1.1/2.0 and AM571x Silicon Revision 1.0 high-performance ARM® devices.

TMS320DM647/8 Power Consumption Summary (Rev. B)

Texas Instruments
NOTE: PRELIMINARY DATA FOR TMX DEVICES. INFORMATION SUBJECT TO CHANGE

This application report discusses power consumption of the Texas Instruments TMS320DM647/8 Digital Signal Processor (DSP). Power consumption is highly application-dependent so a spreadsheet is provided to model power consumption for your applications.

AN-1013 Video Amplifier Design for Computer Monitors

Texas Instruments
AN-1013 Video Amplifier Design for Computer Monitors

Configuring the TMS320F280x DSP as an I2C Processor

Texas Instruments
This application report provides details on how to configure a TMS320F280x device so that it can be used as an I2C slave processor and the protocol used to support that configuration.

Implementation of ISO14443B Protocol in the TI TRF796x

Texas Instruments
TRF7960, TRF7960EVM, TRF7961 Implementation of ISO14443B Protocol in the TI TRF796x

Understanding the I2C Bus

Texas Instruments

The I2C bus is a very popular and powerful bus used for communication between a master (or multiple masters) and a single or multiple slave devices.

This application note is aimed at helping users understand how the I2C bus works.

AN-1244 Photo-Diode Current-to-Voltage Converters (Rev. B)

Texas Instruments
Converting the small output current of a photo-diode transducer to a fast responding voltage is oftenchallenging. This application report provides some ways to use high-speed current feedback and voltagefeedback op amps to do the job.

Application Note: Dual Battery Pack Charger

Texas Instruments
Application Note: Dual Battery Pack Charger

U-112 A High Precision PWM Transconductance Amplifier for Microstepping

Texas Instruments
The UC1637 is a pulse-width modulator circuit for a variety of PWM motor drive and amplifier applications requiring either unidirectional or bidirectional drive circuits. When used to replace conventi

Board and System Design Considerations for the TMS320VC5503/06/07/09A DSPs

Texas Instruments
An effective system-level board design requires termination of specific pins and taking advantage of idle and power-down modes on these low power VC5503/5506/5507/5509A digital signal processors (DSPs). This can be achieved by controlling unused pins and dynamically turning off all peripherals and internal functional units when not in use. The benefit is that the DSP and application consume only a

DLP? Series-241 DMD and System Mounting Concepts

Texas Instruments
DLP4500FQE DLP? Series-241 DMD and System Mounting Concepts

Isolated Continuous Conduction Mode Flyback Using the TPS55340

Texas Instruments
TPS55340, TPS55340EVM-148 Isolated Continuous Conduction Mode Flyback Using the TPS55340

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