GL2L5MS220D-C Allicdata Electronics
Allicdata Part #:

GL2L5MS220D-C-ND

Manufacturer Part#:

GL2L5MS220D-C

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Susumu
Short Description: IND DELAY LINE 2.2NS 1 OHM SMD
More Detail: 2.2ns ±0.050nS Inductor Delay Line 100mA 50 Ohms 1...
DataSheet: GL2L5MS220D-C datasheetGL2L5MS220D-C Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: GL2L
Packaging: Bulk 
Part Status: Obsolete
Delay Time: 2.2ns
Tolerance: ±0.050nS
Operating Temperature: -25°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 16-SOIC (0.220", 5.59mm Width)
Impedance: 50 Ohms
DC Resistance (DCR): 1 Ohm Max
Current: 100mA
Description

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Delay Lines

Delay line is a common tool for radio frequency and microwave engineers. It is composed of a delay kernel, multiple coupling and matching components, and an integrated transmission line to link the entire delay line. The main purpose of delay line is to generate a short duration time shift (phase shifting) for a signal of the same frequency traveling through the delay line. This time shift possesses a significant importance for engineering applications such as signal processing, antenna design and circuit design. This article will discuss GL2L5MS220D-C Delay Line and its application fields and working principles.

GL2L5MS220D-C Delay Line

GL2L5MS220D-C Delay Line is a high-performance, miniature, high-frequency, high-sensitivity miniature delay line based on the Fabry–Pérot design. It is designed to supply temporal delays in the range of 0.2μs to 9μs at frequencies up to 57GHz for telecommunication industry applications. It can also be used in radar and microwave measurement applications, as well as radio frequency signal processing. The key features of GL2L5MS220D-C Delay line include a low insertion loss in the range of 0.8-4.0dB and a very low reflection at up to 57GHz. It also features resistance to differential mode and common mode disturbances associated with high-frequency signals.

Application fields

GL2L5MS220D-C Delay Line can meet the requirements of high-precision signal processing by providing temporal delay with high accuracy. This delay line can be used for testing of a wide variety of electronic devices such as antennas and components. It is also suitable for radar systems, microelectronic instrumentation, wireless communication systems and pulse propagation. It is widely used in baseband signal processing, short-wave stereo delay compensation, band-pass filter matching, signal frequency shifting, temporal correlator measurement and energy spectrum analysis.

Working Principle

GL2L5MS220D-C Delay Line is based on the Fabry–Pérot design, which is a type of optical system composed of two mirrors with a uniform cavity in between them. The mirrors act as end mirrors for the cavity and the electromagnetic wave travels in the cavity when the wave is incident on the mirror. The optical path of the wavefront determines the delay in the system. As the wavefront travels from one mirror to the other along the cavity, it is subject to periodic reflections which cause constructive and destructive interference. This interference causes a time shift (phase shift) of the wavefront, thus resulting in a delay. The amount of time delay can be tuned by changing the length of the cavity or by adjusting the positions of the mirror.

Conclusion

GL2L5MS220D-C Delay Line is a high-performance, miniature delay line based on the Fabry–Pérot design for telecommunication applications up to 57GHz. With a low insertion loss and a very low reflection, it meets the requirements of high-precision signal processing. This delay line can be used for testing of a wide variety of electronic devices such as antennas and components. It is also suitable for radar, microelectronic instrumentation, wireless communication systems and pulse propagation. Working on the principle of constructive and destructive interference in a cavity, this delay line causes a time shift (phase shift) of the wavefront resulting in a delay.

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

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