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Application Notes

CDCE72010 as a Clocking Solution for High-Speed Analog-to-Digital Converters

Texas Instruments
Texas Instruments has recently introduced a family of devices suitable to meet the demands of high-speed high-IF sampling analog-to-digital converters (ADCs) such as the ADS5483 which is capable of sampling up to 135 MSPS. To realize the full potential of these high-performance devices the system must provide an extremely low phase noise clock source. The CDCE72010 clock synthesizer chip offers

Selecting an Impedance Track Gas Gauge for Li-Ion Single Cell Applications

Texas Instruments
bq27541, bq27545, bq27520, bq27620, bq27410, bq27425 Selecting an Impedance Track Gas Gauge for Li-Ion Single Cell Applications

AN-1566 Techniques for Thermal Analysis of Switching Power Supply Designs (Rev. A)

Texas Instruments
This application note provides thermal power analysis techniques for analyzing the power IC.

TPIC74100-Q1 Buck/Boost Switch Mode Regulator (Rev. B)

Texas Instruments

This document explains the features and benefits of the TPIC74100 buck/boost switch-mode regulatorwhich has been designed for automotive power-management applications.

It is meant as a guideline to achieve a good configuration of the device.

The configuration of the device is dependent on the individual application. Important topics required forthis evaluation are covered.

Audio Power Amplifier Operation with Transformer Load

Texas Instruments
Audio Power Amplifier Operation with Transformer Load

TLK10002 Latency Measurement in Wireless Base Station System

Texas Instruments
TLK10002 TLK10002 Latency Measurement in Wireless Base Station System

UCC28700 5-W USB Flyback Design Review (Rev. C)

Texas Instruments
In USB and isolated low power converter designs quasi resonant and discontinuous conduction mode flyback converter topologies are a popular choice due to their low parts count and relatively low cost. To reduce the cost even further in these designs TI has developed a quasi-resonant/discontinues current mode flyback controller with primary side control.

Migration From 3.3-V To 2.5-V Power Supplies For Logic Devices

Texas Instruments
This application report explores the possibilities for migrating to 3.3-V and 2.5-V power supplies and discusses the implications.Customers are successfully using a wide range of low-voltage 3.3-V logic devices. These devices are within Texas Instruments (TI) advanced low-voltage CMOS (ALVC) crossbar technology (CBT) crossbar technology with integrated diode (CBTD) low-voltage crossbar techn

Series 4xx DMD Handling Specification

Texas Instruments
PURPOSE <ul><li>Define the minimum requirements for DMD Handling</li> <li>Establish precautions to protect the DMD from Electrostatic Discharge (ESD)</li> <li>Establish precautions to protect the D

A Comparison Between the BiCMOS UCC3895 Phase Shift Controller and the UC3875

Texas Instruments
This application report compares the BiCMOS UCC3895 to its bipolar predecessors the UC3875/6/7/8 family and the UC3879 controller. All of these integrated circuits provide the control and drive signals needed to implement a full-bridge converter using phase-shifted control. The UCC3895 represents the latest offering in the Texas Instruments line of phase-shift controllers incorporating a feature

Ethernet Packet Transfer Via FastC&M over AIF2 Application Report

Texas Instruments
Ethernet Packet Transfer Via FastC&M over AIF2 Application Report

Teaching DSP Through the Practical Case Study of an FSK Modem

Texas Instruments
This paper describes the teaching of Digital Signal Processors (DSP) through classical lectures and a practical case study where students have to implant a real time simplified FSK modem on a TMS320C50.DISCLAIMER: This document was part of the DSP Solution Challenge 1995 European Team Papers. It may have been written by someone whose native language is not English. TI assumes no

Maximum Output Current of TPS62050

Texas Instruments
The TPS62050 is a highly integrated synchronous step-down dc/dc converter capable of delivering output up to 800 mA. However the maximum output current is limited by parameters such as ambient temperature input-output voltage ratio and switching frequency. This application report provides the maximum allowable output current of the TPS62050.

Cell Balancing Using the bq20zxx (Rev. C)

Texas Instruments
This application report discusses three types of cell imbalances that are observed in a battery pack withserially connected cells.

Using TPS61200 as WLED Driver

Texas Instruments
This application report explains how to build a white LED driver circuit using the TPS61200 Boost Converter from Texas Instruments. It also explains an analog dimming scheme for the LED drivers.

TMS320C6000 Code Optimization: Inner Loop/Outer Loop Performance Tradeoff

Texas Instruments
This document descibes the process used to develop and optimize nested loops for the Texas Instruments (TI)(tm) TMS320C6x digital signal processor (DSP). The performance of loops can greatly affect the performance of entire applications. Many loops are nested loops with both an inner and outer loop. To optimize nested loops it is necessary to consider both the inner loop and the outer loop perform

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