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Application Notes from Texas Instruments

Configuring External Interrupts on TMS320C672x Devices

Texas Instruments
Every real-time embedded system needs to be able to interact to events associated with the external world in a timely manner; for this typically every digital signal processor (DSP) device features one or more dedicated pins which are used for carrying these external signals called interrupts inside the device for further processing by the application. The TMS320C672x generation of processors

DSP/BIOS Tconf Language Coding Standards

Texas Instruments
This document describes the Tconf language coding standards. This standard describes general lexical conventions. The benefits of these coding standards include preventing namespace collisions simplifying the use of modules and improving productivity. Third-party software vendors are encouraged to follow these coding standards. These coding standards are suggested but not mandatory for third p

Voltage Mode Boost Converter Small Signal Control Loop Analysis Using TPS61030 (Rev. A)

Texas Instruments
Voltage Mode Boost Converter Small Signal Control Loop Analysis Using the TPS61030

Configuring the GC1115 for 3G Air Interfaces

Texas Instruments
The GC1115 crest factor reduction (CFR) processor reduces the peak-to-average ratio (PAR) of 3G wireless signals. This application report describes how GC1115 users canconfigure the device to achieve the desired peak reduction for 3G applications. In this application report the term 3G refers both to the UMTS (3GPP) standard and to thecdma2000 (3GPP2) standards. Examples are provided for both

High Speed ADCs with Interfacing, Driving and Clocking Schemes (Rev. A)

Texas Instruments
This application report discusses how the performance of high-speed pipeline ADCs can be optimized by designing the right clock circuitry, a good analog input network, as well as how to get the data

High-Efficiency Power Solution Using DC/DC Converters With DVFS (Rev. A)

Texas Instruments
This reference design is intended for users designing with the TMS320C6742 TMS320C6746 TMS320C6748 OMAP-L138 or AM18x processor. Using sequenced power supplies this reference design describes a system having a 12-V input voltage and a high-efficiency dc/dc converter with ntegrated FETs and dynamic voltage and frequency scaling (DVFS) for a small simple design.Sequenced power supply archit

LM27961- Dual-Display White LED Drvr w/3/2x Switched Cap Boost (Rev. A)

Texas Instruments
This application note describes how to operate the LM27961 Evaluation Module.

Smart Codec Features in TMS320DM365

Texas Instruments
You will significantly enhance video encoder quality by incorporating external input/feedback from the system. Additionally the robustness of the video codec will also be vastly improved. The video codec can utilize such information to react quickly and adapt to changing dynamics of the input video signal. This greatly enhances the end-user experience as the video encoder can prioritize the more

Signal Processing Examples With C64x Digital Signal Processing Library (DSPLIB) (Rev. A)

Texas Instruments
The TMS320C64x™ digital signal processing library (DSPLIB) provides a set of C-callable assembly-optimized functions commonly used in signal processing applications e.g. filtering and transform. The DSPLIB includes several functions for each processing category based on the input parameter conditions to provide parameter-specific optimal performance. Therefore it is important to unders

Design Considerations for SMPTE 3 Gbps SDI Interfaces

Texas Instruments
Design Considerations for SMPTE 3 Gbps SDI Interfaces

Implementing a Bidirectional, Half-Duplex FSK RF-Link With TRF6900 and MSP430

Texas Instruments
The advantage of radio frequency (RF) over infrared (IR) links for communication and data transfer is that with RF a successful communication can be set up even when the participants are out of sight.

TIA/EIA-485 and M-LVDS, Power and Speed Comparison

Texas Instruments
This document includes 3.3 V RS-485 and 3.3 V M-LVDS test data to demonstrate that M-LVDS provides low power multipoint operation and faster signaling rates (speeds) than RS-485.

TMS320C67xx Divide and Square Root Floating-Point Functions

Texas Instruments
The purpose of these Floating Point (FP) functions is to provide the Texas Instruments (TI)(tm) TMS320C67xx Digital Signal Processor (DSP) with fast divide and square root assembly language subroutines that are C callable. The functions include both single-precision (SP) 32-bit and double-precision (DP) 64-bit formats. Subjects covered include:- Descriptions- Run-time library functions- Pr

Comparing Performance of Current Ramp and Voltage Ramp Hot Swap Controller ICs

Texas Instruments
This application note addresses the current ramp and voltage ramp characteristics of hot-swap controller ICs. It discusses practical aspects of applying current ramp or voltage ramp and presents a comparison of performance.

High-Integration, High-Efficiency Power Solution Using DC/DC Converters w/DVFS (Rev. A)

Texas Instruments
This reference design is intended for users designing with the TMS320C6742, TMS320C6746, TMS320C6748, OMAP-L138 or AM18x processor. Using sequenced power supplies, this reference design describes a sy

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