DS1L5DJ040K-C Allicdata Electronics
Allicdata Part #:

DS1L5DJ040K-C-ND

Manufacturer Part#:

DS1L5DJ040K-C

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Susumu
Short Description: IND DELAY LINE 400PS 1 OHM TH
More Detail: 400ps ±0.025nS Inductor Delay Line 100mA 50 Ohms 3...
DataSheet: DS1L5DJ040K-C datasheetDS1L5DJ040K-C Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: DS1L
Packaging: Bulk 
Part Status: Obsolete
Delay Time: 400ps
Tolerance: ±0.025nS
Operating Temperature: -10°C ~ 85°C
Mounting Type: Through Hole
Package / Case: 3-SIP
Impedance: 50 Ohms
DC Resistance (DCR): 1 Ohm Max
Current: 100mA
Description

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Delay lines are electronic devices that use delay lines to “delay” signals by a certain amount of time. In a system or circuit, delay lines can be used to increase a reaction time, reduce latency, and improve signal-to-noise ratios. The DS1L5DJ040K-C is one such delay line.

What is DS1L5DJ040K-C?

The DS1L5DJ040K-C is a delay line that is designed to provide a delay of 1.5 ns each way in a low noise environment. The delay line is designed for applications that require reliable signal timing, and is ideal for myriad applications that require a precise and adjustable delay.The DS1L5DJ040K-C is a compact, low cost delay line that provides a delay of up to 120 ns each way. It has a 0.5Ω input and a 0.8Ω output resistance, which allows signals to be directed through the delay line without fear of signal loss. The DS1L5DJ040K-C also features a variable gain control and a built-in reference generator, allowing users to adjust the gain of the delay line to match their system requirements. The delay line can also be used with external reference signals, such as from an external oscillator or clock source, for precise signal timing.

Application fields of DS1L5DJ040K-C

The DS1L5DJ040K-C has an extensive list of potential applications and usages due to its characteristics and design. The main application fields of DS1L5DJ040K-C include:

  • Digital signal processing
  • Digital timing and interlude signals in communication systems
  • Timing and switching systems
  • Ultrasonic imaging systems
  • Airborne navigation systems
  • Radar equipment
  • Electronic voting systems
  • High-speed multiplexers and routers
  • Signal conditioning in computer systems

Working Principle of DS1L5DJ040K-C

The DS1L5DJ040K-C uses a periodic waveform structure to create a delay in the signal. This waveform structure is made up of an array of digital or analog components, which each introduce a small amount of delay.The DS1L5DJ040K-C has two input channels, which accept the input signal and change it into a periodic waveform. This waveform is then passed through the series of delay sections, which add incremental delays. The signal is then combined into a single output waveform. The DS1L5DJ040K-C has a user-adjustable gain control, which is used to adjust the amount of delay in the signal. This gain control also changes the amplitude of the output waveform, which can be used to increase or decrease the signal amplitude.The DS1L5DJ040K-C also has a variable phase-shift control, which can be used to adjust the phase of the signal. This phase-shift control helps to minimize signal distortion and ensure precise timing of the signal.Finally, the DS1L5DJ040K-C has a variable reference generator, which allows the user to select the reference signal for the delay line. The reference signal is used to control the timing of the signal, and ensure accurate delay times and precise signal timing.

Advantages and Disadvantages of DS1L5DJ040K-C

The DS1L5DJ040K-C provides a range of advantages for users. The ability to adjust the delay line gain and phase-shift control allows users to achieve precise signal timing and maximize the signal-to-noise ratio. The use of digital components also helps to minimize signal distortion, and the built-in reference generator helps reduce latency.However, the DS1L5DJ040K-C also has some disadvantages. The cost of the delay line is relatively high, and it cannot be used in the presence of strong electromagnetic interference (EMI). Additionally, the delay line does not work well with high frequency signals, and is limited in its use of multiple signal paths.

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

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