M3933/30-13N Allicdata Electronics
Allicdata Part #:

M3933/30-13N-ND

Manufacturer Part#:

M3933/30-13N

Price: $ 95.74
Product Category:

RF/IF and RFID

Manufacturer: Amphenol SV Microwave
Short Description: 2.92MM FEMALE TO MALE ATTENUATOR
More Detail: RF Attenuator 6dB ±0.5dB 0Hz ~ 32GHz 50 Ohms 2W SM...
DataSheet: M3933/30-13N datasheetM3933/30-13N Datasheet/PDF
Quantity: 1000
25 +: $ 87.03170
Stock 1000Can Ship Immediately
$ 95.74
Specifications
Series: --
Packaging: Bulk 
Part Status: Active
Attenuation Value: 6dB
Frequency Range: 0Hz ~ 32GHz
Power (Watts): 2W
Impedance: 50 Ohms
Package / Case: SMA In-Line Module
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Introduction

Velocity Attenuators are devices that are used to reduce the speed, pressure, and amplitude of pressure waves in gas and liquid systems. The devices are used when the pressure or velocity of a wave must be decreased to prevent damage to delicate equipment or to prevent destructive interference of one wave against another.

The M3933/30-13N is a velocity attenuator which is commonly used in a wide variety of applications. This article will discuss the application field and working principle of the M3933/30-13N.

Application Field of M3933/30-13N

The M3933/30-13N is a velocity attenuator which is designed for use in both industrial and laboratory settings. It is frequently used in industrial applications, such as reducing high-pressure gas and liquid waves which are present in production lines and in process operations. Additionally, it is used in laboratories to protect delicate equipment, such as measuring and testing instruments, from sudden pressure changes or high speeds which could cause failure or damage.

The device is suitable for use in a wide variety of gas and liquid flow systems. It is capable of reducing pressure waves in systems with relatively low flow rates, as well as systems with high flow rates. The device also has a wide range of operating temperatures, which allows it to be used in both hot and cold climates.

The M3933/30-13N is also applicable in situations where smooth pressure or velocity transitions are required. This makes the device suitable for use in situations where gradual and consistent speed reductions are necessary, such as in processes involving critical pressure or velocity changes.

Working Principle of M3933/30-13N

The working principle of the M3933/30-13N is based on the Bernoulli equation, which states that a decrease in pressure is accompanied by an increase in velocity and a decrease in fluid density. The device utilizes this principle to reduce the speed and pressure of the wave by altering its pressure field. The device is designed so that the pressure field around it is slightly different than that of the medium.

When a wave passes through the device, the pressure and velocity of the wave will decrease as it passes through the area of altered pressure. This reduces the speed and pressure of the wave, thus providing the desired attenuation effect. The device also utilizes a series of baffles or projections which further reduce the speed and pressure of the wave.

The device is designed so that the pressure drop across it is consistent and relatively low. This ensures that it can be used in diverse applications without causing undue stress on the system. Additionally, the device is designed to provide a minimum pressure loss even at high flow rates.

Conclusion

The M3933/30-13N is a velocity attenuator which is designed for use in a wide range of industrial and laboratory applications. It utilizes the Bernoulli equation to reduce the speed and pressure of gas and liquid waves passing through it. Additionally, it has a wide range of operational temperatures, making it suitable for use in both hot and cold climates. The device is designed to provide consistent and low pressure drops, making it an ideal choice for applications requiring gradual and consistent speed reductions.

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

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