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Application Notes from Texas Instruments

AN-272 Op Amp Booster Designs (Rev. B)

Texas Instruments
This application report describes the output booster or post amplifier designs required to achieveneeded voltage or current gain in applications that require substantially greater output voltage swing orcurrent (or both) than IC amplifiers can deliver.

Using TSB43Cx43A: S/PDIF over 1394

Texas Instruments
This document details the requirements and how to set up the TSB43Cx43A (iCEM) to support S/PDIF (IEC60958). This application report tells how to configure iCEM to both transmit S/PDIF over 1394 and receive S/PDIF formatted packets from 1394.

TMS320DM644x Thermal Considerations (Rev. A)

Texas Instruments
TMS320DM644x Thermal Considerations Application Report

GC5016 DUC Mode Gain by CMD5016 (SLWC043)

Texas Instruments
GC5016 DUC Mode Gain by CMD5016 (SLWC043)

Reducing Output Ripple and Noise using the LMZ34002

Texas Instruments
IntroductionManyindustrialapplicationsrequirebothpositiveandnegativevoltagestopowertheiranalogcircuitry.ManyoftheseanalogcircuitssuchasdataconvertersaudioamplifierssensorsandRFapplicationsrequirelownoiseandripple.TheLMZ34002isanegativeoutputvoltagepowermodulewhichcanprovidethenegativeoutputvoltag

Single Cell Gas Gauge Application Book

Texas Instruments
Single Cell Gas Gauge Application Book

Client Side Telephony (CST) Chipset Mode

Texas Instruments
Client Side Telephony (CST) Chipset Mode Application Report

Differences Between the Intel 21152 and the PCI2250

Texas Instruments
This application report describes the functional difference between the Intel 21152 and the TI PCI2250. The PCI2250 is a 32-bit PCI-to-PCI bridge that was designed to be pin-to-pin compatible with the Intel 21152. The PCI2250 can also be configured to a TI specific mode that has additional capabilities.

A Low-Cost, Single Coupling Capacitor Config. for Stereo Headphone Amplifiers

Texas Instruments
This application report compares two possible blocking or coupling capacitor configurations for stereo headphone amplifiers operating from a single supply voltage. The report demonstrates that the sta

Design of Active Noise Control Systems With the TMS320 Family

Texas Instruments
An active noise control (ANC) system based on adaptive filter theory was developed in the 1980s; however only with the recent introduction of powerful but inexpensive digital signal processor (DSP) hardware such as the TMS320 family has the technology become practical. The specialized DSPs were designed for real-time numerical processing of digitized signals. These devices have enabled the

Transmission Line Drvrs & Rcvrs for TIA/EIA Standards RS-422 & RS-423 (Rev. A)

Texas Instruments
AN-214 Transmission Line Drivers and Receivers for TIA/EIA Standards RS -422 and RS-423

AN081 -- Johanson Technology Balun Optimized for CC253X, CC254X, CC257X, CC853X (Rev. B)

Texas Instruments
cc2530 AN081 -- Johanson Technology Balun Optimized for CC253X, CC254X, CC257X, CC853X and CC852X

System Design Considerations for True Digital Audio Power Amplifiers (Rev. A)

Texas Instruments
This report describes the conversion of pulse-code-modulated (PCM) to pulse-width-modulated (PWM) signals using Texas Instruments TDAA modulation devices (TAS50xx) and signal amplification using Texas Instruments family of H-bridge output stages (TAS51xx). It includes a detailed discussion of power supply voltage requirements output circuit filters and thermal dissipation. An example stereo appl

Low-Noise CMOS Camera Supply

Texas Instruments
TPS62170 Low-Noise CMOS Camera Supply

AN-2090 LM3448 -120VAC, 6W Isolated Flyback LED Driver (Rev. C)

Texas Instruments
This application note describes the performance of a LM3448 based Flyback LED driver solution that can be used to power a single LED string consisting of seven to eleven series connected LEDs from a 8

Choosing an Ultra Low-Power MCU

Texas Instruments
This application report describes how to compare ultralow-power MCUs. It discusses the key differences between popular low-power MCUs and how to interpret features and specifications and apply them to

Effect of Resistor Tolerance on Power Supply Accuracy

Texas Instruments
This document assists designers in determining the impact of resistor tolerances on a power supply’s output accuracy. It explains how resistive dividers are used in power supply regulation derives an equation for output accuracy in terms of the divider resistors’ tolerances and examines the impact of this equation on an example design.

Thermal Considerations for the DM64xx, DM64x, and C6000 Devices

Texas Instruments
As integrated circuit (IC) components become more complex, the challenge of producing an end product with superior thermal performance increases. Thermal performance is a system level concern, impacte

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