DS1L5DJ030S-C Allicdata Electronics
Allicdata Part #:

DS1L5DJ030S-C-ND

Manufacturer Part#:

DS1L5DJ030S-C

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Susumu
Short Description: IND DELAY LINE 300PS 1 OHM TH
More Detail: 300ps ±0.050nS Inductor Delay Line 100mA 50 Ohms 3...
DataSheet: DS1L5DJ030S-C datasheetDS1L5DJ030S-C Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: DS1L
Packaging: Bulk 
Part Status: Obsolete
Delay Time: 300ps
Tolerance: ±0.050nS
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 encompasses a broad range of applications, from simple to complex. DS1L5DJ030S-C is one of the premier models of Delay Lines, and its versatile applications and advanced functionality make it an ideal choice for a wide range of applications. This article will discuss the DS1L5DJ030S-C\'s application field and working principle.

Application Field

A delay line is a device which vibrates or produces sound waves at a frequency interval which can be adjusted according to the desired outcome. The DS1L5DJ030S-C is a dual in-line pin (DIP) delay line and is used in many applications, ranging from telecommunications to musical instruments and from circuit boards to computer applications. It is also used in a wide range of industrial settings, including in airports, public transportation systems, and power grids. In essence, the DS1L5DJ030S-C has the potential to be used in nearly any application which requires a delayed sound signal.

The main advantages of the DS1L5DJ030S-C are its adjustable frequency, accuracy, and reliability. The DS1L5DJ030S-C is adjustable from 500 Hz to 5 kHz, while maintaining a very high frequency stability rate. The accuracy rate of the DS1L5DJ030S-C is better than 99%. Furthermore, the DS1L5DJ030S-C also offers reliable performance over a long operational life. It is also designed to consume less energy, making it very efficient and ideal for many designs and applications.

Working Principle

The DS1L5DJ030S-C is a dual in-line pin (DIP) delay line which uses transducers to convert electrical signals into vibratory waves, and also to convert vibratory waves back into electrical signals. It is composed of two components: the transducers and the delay line. The transducers are used to convert the electrical signal into vibratory waves, while the delay line is used to store and manipulate the vibratory waves.

The transducers convert the electrical signal into vibratory waves which is then stored in the delay line. The delay line is made up of a series of cavities, each cavity consisting of two heads. The two heads are connected to each other with a cord which contains the vibratory waves. As the cord is pulled and pushed, it sends the vibratory waves through the cavities. By manipulating the motion of the cord, the vibratory waves are manipulated as well, allowing for the creation of delayed sound signals.

The DS1L5DJ030S-C is also able to convert the vibratory waves back into electrical signals. It does this using what is known as a “floating magnet” which is located at the end of the delay line. As the vibratory waves travel through the delay line, they pass over the magnet, inducing an electrical charge which is then converted back into an electrical signal. This makes the DS1L5DJ030S-C ideal for applications which require convertibility between electrical and vibratory signals.

Conclusion

The DS1L5DJ030S-C is a dual in-line pin (DIP) delay line which offers a wide range of applications. Its adjustable frequency, accuracy, and reliability make it an ideal choice for many types of applications, ranging from telecommunications to musical instruments. Additionally, its ability to convert electrical signals into vibratory waves and vice versa makes it perfect for applications which require this type of convertibility. All in all, the DS1L5DJ030S-C is a reliable and efficient choice for many types of applications.

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

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