DS1013-30 Allicdata Electronics
Allicdata Part #:

DS1013-30-ND

Manufacturer Part#:

DS1013-30

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC DELAY LINE 30NS 14DIP
More Detail: Delay Line IC Multiple, NonProgrammable 30ns 14-DI...
DataSheet: DS1013-30 datasheetDS1013-30 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Function: Multiple, NonProgrammable
Delay to 1st Tap: 30ns
Available Total Delays: 30ns
Number of Independent Delays: 3
Voltage - Supply: 4.75 V ~ 5.25 V
Operating Temperature: 0°C ~ 70°C
Mounting Type: Through Hole
Package / Case: 14-DIP (0.300", 7.62mm)
Supplier Device Package: 14-PDIP
Base Part Number: DS1013
Description

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The DS1013-30 is a part of the line of clock and timing delay lines. Clock/timing delay line components are used to generate accurate delays in signal propagation and timing. These components have a wide range of applications in the telecommunications, automotive, consumer electronics and research industries.

The DS1013-30 is a low cost, single-channel delay line used for data synchronization and timing transfer applications. It can also be used for non-clock-oriented applications such as static RAM address/data delays, pulse/waveform shaping and voltage control applications. This clock and timing delay line is designed for use with supplies from 3V to 5.5V and has a typical rise and fall time of 15 ns. It features a differential delay line with no DC offsets, zero external loads and the ability to output the delay signal in either TTL or ECL.

The DS1013-30 provides a maximum delay of 30 ns (minimum delay of 0.5 ns) using an external clock up to 65MHz. A delay control input also allows delays to be varied externally to provide variable pulse width/time base and variable bit rate/word duration. The DS1013-30 has a built-in amplifier that exploits the small timing inaccuracies of the delay line to provide an adjustable output signal.

The delay line integrates four 1.1ns delay elements into a single pin IC. Each delay element is a 0.5mm CMOS circuit and has a 0.6ps maximum integrated rise/fall time, so that the overall signal delay accuracy of the device is 0.4ps (4σ). The delay line operates from a 3.3V supply, and the device can be used with a variety of signal formats, including TTL, ECL, LVTTL, CMOS, PECL and LVDS.

The DS1013-30 is available in a 5mm x 5mm LFBG (Lead-Free-Ball-Grid-Array) package. It is designed for OEMs who want to minimize cost and size of their design without sacrificing accuracy or performance. The lead-free and RoHS compliant package also makes it easy to integrate into new or existing applications.

The DS1013-30 works on the basic principle of electromagnetic delay lines. A signal is applied to an inductor, which converts the signal into an electrical impulse used to drive the delay line. This impulse is propagated along the delay line and adds a fixed period of time to the signal, which is then output on the other side. The DS1013-30 includes an integrated amplifier which compensates for minor timing inaccuracies and provides an adjustable output signal.

The DS1013-30 can be used in a variety of applications, including data synchronization in high-speed Ethernet networks, SONET/SDH synchronization, timing recovery in CATV systems and in A/D synchronizers for electronic medical imaging systems. The device is also suitable for pulse shaping and pulse duration control, as well as for applications that require accurate signal delays for digital filters, clock recovery systems and analog-to-digital converters.

The DS1013-30 is an effective clock/timing delay line choice for many applications in the industries mentioned above. Its low cost and small size, as well as its robust operational specifications make it an ideal fit for a variety of designs. The device’s long delay times, adjustable output and integrated amplifier make it a useful and versatile delay line solution.

The specific data is subject to PDF, and the above content is for reference

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