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Application Notes from Texas Instruments

Practical Technique for Minimizing the Number of Measurements in Sensor Signal

Texas Instruments
The output of many modern bridge type sensors contains errors that must be eliminated through calibration. One major source of error is variation of sensor span and offset from device to device and their respective drifts with temperature. These drifts can be non-linear. Another source of error is the nonlinearity of the sensor output with applied stimulus. Signal conditioning electronics can also

Adaptive Frequency Hopping and Other Co-Existence Mechanisms for CC85xx

Texas Instruments
This application report provides operational details of the RF System that are used in the PurePath Wireless family of devices (CC85xx).

AN-1066 Low Cost Boost Converters Using LM3578A (Rev. B)

Texas Instruments
The LM3578A integrated circuit is a switching regulator with all the power control and protection features.It operates over a wide input voltage range. This together with its low-cost makes it a very popular choicefor use in switching regulators. This application report presents several low-cost boost converter circuitsdeveloped using the LM3578A switching regulator. The operation and the

Programmable Yn Clock Phase Shift w/SN74SSQEA32882 DDR3 Register

Texas Instruments
This application report describes how to shift the Yn clock position on TI’s DDR3 register SN74SSQEA32882 (V4.2) by using extended CMR commands. This Yn clock position shift can be used for the analysis of post register margin at the DRAMs. Note that this application report does not apply to SN74SSQE32882 (V3.1).

Thermocouple Measurements with ΔΣ ADCs

Texas Instruments
Thermocouple Measurements with ΔΣ ADCs

Interfacing the TLC32040 Family to the TMS320 Family (Rev. A)

Texas Instruments
INTERFACING THE TLC32040 FAMILY TO THE TMS320 FAMILY APPLICATION REPORT

DAC348x Device Configuration and Synchronization

Texas Instruments
DAC3484, DAC3482, DAC34H84, DAC34SH84, DAC3282, DAC3283, DAC3174 DAC348x Device Configuration and Synchronization

Using the TMS320VC5506/C5507/C5509/C5509A USB Bootloader (Rev. C)

Texas Instruments
Bootloading the TMS320VC5506/C5507/C5509/C5509A digital signal processor (DSP) through the on-chip universal serial bus (USB) peripheral is part of the standard bootloader provided on the device. This document describes the procedures for physically connecting the DSP to a USB host invoking the USB bootloader on the DSP generating the correct boot table file and downloading the boot table from

Selecting the Best bq2425x Single Cell I2C, Standalone Switch-Mode Battery Charg

Texas Instruments
bq24250, bq24251, bq24253, bq24253H, bq24257, bq24258 Selecting the Best bq2425x Single Cell I2C, Standalone Switch-Mode Battery Charger PMP/BMS/Battery_Charge/2-App_Reports/SLUA685/bq2425x

DS92LV16 Power Up Reset (Rev. B)

Texas Instruments
DS92LV16 date code VS39AD and later (middle two date code numbers will be ≥ 39) have a minor metallayer change to the chip’s power up reset and pull up circuitry to ensure robust start up with very slowsupply ramp rates. This change is very minor. It does not affect device functionality performance orreliability and requires no re-qualification.All parts sampled or purchased directly fro

Design Considerations of SN74V293 FIFO in a MicroStar BGA(TM) Package (Rev. A)

Texas Instruments
Texas Instruments? near-chip-scale MicroSTAR BGA? package is gaining in popularity for applications where board space and/or weight are significant design factors. However no less-significant design factors are those associated with electronic coupling between signal paths when leading-edge high-speed digital signals are closely spaced.With a few simple routing and trace-location consideratio

Output Voltage Selection for the TPS62400 Family of Buck Converters

Texas Instruments
This application report explains how to determine the output voltage of the TPS62400 after power up and the software adjustable range of voltages

TMS320C6414T/15T/16T Power Consumption Summary (Rev. A)

Texas Instruments
This document discusses the power consumption of the Texas Instruments TMS320C6414T™ TMS320C6415T™ and TMS320C6416T™ digital signal processors (DSPs). Power consumption on these devices is highly application dependent so a spreadsheet is provided to model power consumption for a user's application. To get good results from the spreadsheet realistic usage parameters must be entered. The low cor

TMS320C6455 to TMS320C6474 Migration Guide

Texas Instruments
The TMS320C6455 fixed-point digital signal processor (DSP) and the TMS320C6474 communications infrastructure DSP are two of Texas Instruments? high-performance DSP processors, each offering high-speed

Space-Vector PWM with TMS320C24x Using H/W & S/W Determined Switching Patterns

Texas Instruments
SPACE-VECTOR PWM WITH TMS320C24X USING HARDWARE AND SOFTWARE DETERMINED SWITCHING PATTERNS

Wide-Vin Battery-Charger Using SMBus MSP430 MCUs and bq Fuel Gauges (Rev. A)

Texas Instruments
This application report describes a smart-battery charger reference design with a wide-input-voltage range. The reference design implements the System Management Bus (SMBus) protocol for communication

Using TLV320AIC3x Digital Audio Data Serial Interface w/TDM Support

Texas Instruments
This application report describes how to configure the time-division multiplexing mode in TLV320AIC3x codec devices and discusses the associated protocol timing diagram for the I2C and DSP modes of operation with various offset programmability. This document also explains how to interface and communicate multiple TLV320AIC3x devices using single audio data interface with the host/multimedia proces

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