Top Manufacturers

Displaying 2981 - 3000 of 6424

Application Notes from Texas Instruments

DN-33 Optocoupler Feedback Drive Techniques Using the UC3901 and UC3903

Texas Instruments
A variety of low-cost supervisory ICs contain the required building blocks for the more demanding optocoupler feedback drive applications. Initially developed to address other specific power supply tasks several control ICs excel in the role as precision optocoupler control and drivers. This design note describes a basic optocoupler driver circuit and also a more advanced optocoupler drive circ

Measuring the Thermal Impedance of LDOs in situ

Texas Instruments
This document describes a procedure for computing an integrated circuit's junction-to-ambient thermal impedance using its thermal shutdown temperature.

ADS809 analog-to-digital converter with large input pulse signal

Texas Instruments

The Texas Instruments (TI) ADS809 is a 12-bit, 80-MHz pipeline analog-to-digital converter (ADC). It has high speed, high resolution, high-input bandwidth, and a high signal dynamic range. Its many other good features include good signal-to-noise-ratio (SNR), good linearity, low jitter, flexible clocking, an over-range indicator (OVR), “data valid” output, three-state output, an internal or external reference, and a single-ended or differential input configuration. It can be used for broadband communications, test equipment, medical instrumentation, CCD imaging, and other fast-ADC applications.

In these applications the input analog signal applied to the ADS809 varies and may be a DC, AC, narrow band, wide band, or pulse signal with a large amplitude. The sampling clock used for these applications can be up to 80 MHz with a uniform or non-uniform clock phase. Different applications require different critical features of the ADS809. In some conventional sampling applications, the ADC input analog signal is smooth with a large amplitude, and the SNR and spurious-free dynamic range (SFDR) are critical; while in some small-signal sampling applications, the SFDR and full-scale (FS) step-acquisition time are not as critical. However, the FS step-acquisition time is critical in largesignal sampling applications, especially when the sampling clock has to be high-frequency with a non-uniform phase and the analog input pulse signal is large (for example, 2 V). In this case the input signal has a sharp edge with a large voltage amplitude, and the pulse edge could be very close to the sampling clock edge due to sampling clock phase variations. If the ADC does not have fast step response for the signal settling, the next ADC sample after the pulse edge will be unstable, which is undesirable. Therefore it is critical for the ADC to have a fast settling time when a large input pulse signal is sampled. Similarly, when the input pulse is over full-scale range (FSR), it is important for the ADC to have a fast over-range recovery time. This is tough for any ADC in applications where the input pulse signal is large and sampling speed is very high with a nonuniform clock phase. However, the ADS809 works well with this type of application. This article presents the results of recent lab tests that further prove the ADS809’s fast step response with a large, FS input pulse. The test data also covers the ADS809’s response to over-range conditions.

AN-1058 Using the COP820CJ/COP840CJ in Home Appliances

Texas Instruments
AN-1058 Using the COP820CJ/COP840CJ in Home Appliances

XIO2001 Implementation Guide. (Rev. D)

Texas Instruments

This document is provided to assist platform designers using the XIO2001 PCI Express to PCI Translation Bridge. Detailed information can be found in the XIO2001 Data Manual. However, this document provides board design suggestions for the various device features when designing in the XIO2001.

Cost-Effective Transformerless Offline Supply for Light Load Applications (Rev. A)

Texas Instruments
This design idea provides a simple non-isolated AC/DC power supply for low power applications. Thedesign uses a capacitive-dropper front-end combined with a LM46000 SIMPLE SWITCHER® buckregulator from Texas Instruments. The circuit provides 3.3 V at a minimum of 100 mA from a line supply of90 VAC to 265 VAC. Theory of operation as well as design equations and performance results are given.

TMS320C6748/46/42 & OMAP-L1x8 USB Upstream Device Compliance Testing

Texas Instruments
TMS320C6748/46/42 & OMAP-L1x8 Universal Serial Bus Upstream Device Compliance Testing

AN-23 The LM105-An Improved Positive Regulator

Texas Instruments
Application Note 23 The LM105-An Improved Positive Regulator

TMS320C6000 Multichannel Communications System Interface

Texas Instruments
This document describes a simple interface for development of multichannel telephony systems. Three interfaces are provided: 1. MVIP (Multi-Vendor Integration Protocol): Accomplished with the MT90810 Flexible MVIP Interface Circuit (FMIC). 2. T1/E1 interface: Accomplished with the PEB2254 Framing and Line Interface Component (FALC).3. Voice Band Analog Input and Output: Accomplished

Using the TMS320 DSP Algorithm Standard in a Static DSP System (Rev. B)

Texas Instruments
The TMS320 DSP Algorithm Standard is part of TI's eXpressDSP (XDAIS) technology initiative. It allows system designers to easily integrate algorithms from a variety of sources (e.g. third parties customers). However in system design flexibility comes with a price.This price is paid in CPU cycles and memory space both critical in all DSP systems but perhaps most critical in a static syste

TMS320DM36x Power Consumption Summary

Texas Instruments
This application report discusses the power consumption of the Texas Instruments TMS320DM36x digital media System-on-Chip (DMSoC). Power consumption on the DM36x device is highly application-dependent; therefore a spreadsheet that estimates power consumption is provided along with this document. To obtain good results from the spreadsheet realistic usage parameters must be entered (see Section 2

bq20z75 to bq20z75-V160 Change List

Texas Instruments
bq20z75 to bq20z75-V160 Change List

LMK04828 as a Clock Source for the ADS42JB69

Texas Instruments
ADS42JB69 ADS42LB69 LMK04828 LMK04828 as a clock source for the ADS42JB69

FIFO Synchronous Retransmit: Programmable DSP-Interface for FIR Filtering (Rev. A)

Texas Instruments
The SN74ACT3638 FIFO contains a patented synchronous retransmit feature which allows data stored within the FIFO to be re-read starting at a selected position. This document shows the use of the retransmit feature with a digital signal processor (DSP) for finite impulse response (FIR) filtering. The application uses the 32-bit floating-point TMS320C31 and a SN74ACT3638 bi-directional clocked FIFO

Uninterruptible Synchronization Clock Circuit

Texas Instruments
Uninterruptible Synchronization Clock Circuit /SVA/Application_Notes/SNVA703

AN-1432 The LM4935 Headset/Push-Button Detection Guide (Rev. A)

Texas Instruments
The LM4935 features an advanced headset detection scheme that can sense the insertion or removal ofany type of available headset.

Dynamic Behavior of TLV320DAC23 and TLV320AIC23B

Texas Instruments
Dynamic Behavior of TLV320DAC23 and TLV320AIC23B

Displaying 2981 - 3000 of 6424

Latest Parts

IN STOCK 1481
Buy

ASX00049

Arduino

* $39.99 - * $50.80

IN STOCK 2803
Buy

1687559

Phoenix Contact Ltd

[no prices available]

IN STOCK 5
Buy

Reference Designs

RD006

Wurth Elektronik

RD006 - 3 W Dual-output isolated auxiliary supply for communication interfaces and measurement systems

CN0583

Analog Devices Inc.

Multistandard Micropower Verified Smoke Detection System-on-Module

Technical Resources

EVALUATION KITS

EVAL-AD7124-8SDZ

Analog Devices Inc.

$0.00 - * $94.68

IN STOCK 792
Buy
View All