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Application Notes from Texas Instruments

Defining Skew, Propagation-Delay, Phase Offset (Phase Error)

Texas Instruments
This application note discusses various types of skew, propagation delays, and phase error/phase offset in general. Special attention is given to important parameters that are used in TI clock distrib

Reducing Radiated Emissions in Ethernet 10/100 LAN Applications (Rev. A)

Texas Instruments
This application report explains how Texas Instruments' PHYTER products help system designers toreduce radiated emissions in Ethernet 10/100 LAN applications.

bq20z80 EVM Data Flash Settings for Num of Serial Cells/Pack Cap (Rev. B)

Texas Instruments
This application report describes the configuration changes in the data flash constants in the Texas Instruments bq20z80 Gas Gauge Evaluation Software for a variety of battery-pack configurations.

What's an LFSR? (Rev. A)

Texas Instruments
This document describes the linear feedback shift register (LFSR), fault grading, pseudorandom pattern generation (PRPG), and a parallel signature analyser (PSA). An LFSR and PSA are used to test a T

Configuring the bq27000/200 for Gas Gauge Applications

Texas Instruments
Users of the bq27000 and bq27200 ICs can program ten EEPROM locations to optimize setups for particular battery and host requirements. This application report describes how to configure these ICs for those requirements.

Improved Start-up Performance for Charge Pumps TPS6030x

Texas Instruments
This document shows a solution to enhance the start-up performance of the TPS603x charge pumps. With the circuitry shown, the device can drive at start-up into full load (40 mA).

Recent Advancements In Bus-Interface Packaging And Processing (Rev. A)

Texas Instruments
Designers need a wide range of fine-pitch surface mount packages to meet today?s systems constraints in broad area and total volume. The SSOP and SQFP packages allow bus-interface logic devices to meet the wider data bus trends and provide superior electrical performance while minimizing space requirements. This document discusses the evolution of bus-interface packages their impedance the 3.3-

Floating-Point Arithmetic With the TMS32020 ( Contains Scanned Text)

Texas Instruments
This report presents algorithm and code implementing floating-point addition subtraction multiplication and division with the TMS320. The support of floating-point operations by the TI processors has made possible some applications such as implementation of the CCITT Adaptive Differential Pulse Code Modulation (ADPCM) algorithm and image/graphics operations.

Ground Loop Break (GLB) Circuits

Texas Instruments
Ground loops can be introduced when different components in audio systems are connected with standardaudio cables and these loops can cause annoying interference. In many cases the interference can bereduced significantly with a ground loop break (GLB) circuit including a low-value resistor and differentialamplifiers. This paper explains this approach and how to design a GLB circuit.

H.261 Implementation on the TMS320C80 DSP

Texas Instruments
This report describes the coding requirements techniques and decisions whichmust be made to utilize the TMS320C80 DSP as an integrated services digitalnetwork (ISDN) video-system manager and provides an overview on how theprocessor handles video signal in the ISDN narrow-band format in conformancewith the International Telecommunications Union (ITU)?T H.261 Recommendation.

TI Logic Solutions for Memory Interleaving With the Intel440BX Chipset

Texas Instruments
Increasing performance requirements of personal computers that necessitate a larger number of SDRAMs and DIMMs can be met by an FET-switch muliplexer. Four devices for memory interleaving for the 440BX and other core-logic chipsetsincorporate internal pulldown resistors damping resistors and make-before-break features that increase speed while maintaining minimal simultaneous-switching noise.

UCC2897A Peak Current Mode Active Clamp Forward Converter Small Signal Modeling

Texas Instruments
UCC2897A Peak Current Mode Active Clamp Forward Converter Small Signal Modeling Design Consideration written by Chinese engineer

AN-30 Log Converters (Rev. B)

Texas Instruments
One of the most predictable non-linear elements commonly available is the bipolar transistor. Therelationship between collector current and emitter base voltage is precisely logarithmic from currentsbelow one picoamp to currents above one milliamp. Using a matched pair of transistors and integratedcircuit operational amplifiers it is relatively easy to construct a linear to logarithmic conv

How to Calculate the Period Jitter from the SSCR for High-Speed ADCs

Texas Instruments
This document introduces a general formula to translate the phase noise of a clock source rated via the Single Sideband to Carrier Ratio to the cycle-to-cycle jitter of the oscillation period. The link allows to seamlessly aggregate the external clock source phase noise usually given in dBc/Hz to the phase stability figure of the on-chip clock synchronization circuitry usually rated in ps-RMS

AN-1408 Designing Power Over Ethernet Using LM5070 and DP83865 (Rev. C)

Texas Instruments
This application report provides a reference design for Power over Ethernet (PoE) on the Power Device (PD) side using Texas Instruments LM5070 and the physical layer device DP83865 Gig PHYTER™

Implementation of FSK Modulation and Demodulation using CD74HC4046A

Texas Instruments

In telecommunications and signal processing, frequency modulation (FM) is encoding of information on a carrier wave by varying the instantaneous frequency of the wave. Digital data can be encoded and transmitted via carrier wave by shifting the carrier's frequency among a predefined set of frequencies—a technique known as frequency-shift keying (FSK). FSK is widely used in modems, radio-teletype and fax modems, and can also be used to send Morse code.

Frequency-shift keying (FSK) is a frequency modulation scheme in which digital information is transmitted through discrete frequency changes of a carrier wave. This application report discusses logiclevel implementation of binary FSK (BFSK) modulator and demodulator using a phase-locked loop PLL device – CD54HC4046A, CD54HCT4046A, CD74HC4046A, and CD74HCT4046A (hereafter in this document referred to as HC/HCT4046A). BFSK is the simplest FSK, using a pair of discrete frequencies to transmit binary information.

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