E-TA3216 T 4DB N5 Allicdata Electronics
Allicdata Part #:

E-TA3216T4DBN5-ND

Manufacturer Part#:

E-TA3216 T 4DB N5

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Nidec Copal Electronics
Short Description: ATTENUATOR 1206 SMD 4 DB
More Detail: RF Attenuator 4dB 0Hz ~ 3GHz 50 Ohms 100mW 1206 (...
DataSheet: E-TA3216 T 4DB N5 datasheetE-TA3216 T 4DB N5 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Attenuation Value: 4dB
Frequency Range: 0Hz ~ 3GHz
Power (Watts): 100mW
Impedance: 50 Ohms
Package / Case: 1206 (3216 Metric)
Description

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Attenuators – E-TA3216 T 4DB N5 Application Field and Working Principle

Attenuators are devices used in various applications to reduce the signal or power level of the input signal without significantly distorting its waveform or frequency content. The E-TA3216 T 4DB N5 attenuator is used for direct current (DC) and direct voltage (V) applications. Its working principle is based on the voltage division principle, which states that the voltage across the resistor or attenuator is proportional to the ratio of the resistor’s resistance to the total resistance of the circuit. This article will discuss the application field and working principle of the E-TA3216 T 4DB N5 attenuator.

Applications of E-TA3216 T 4DB N5 Attenuator

The E-TA3216 T 4DB N5 attenuator is mainly used in DC and V applications such as automotive, industrial, audio, power supplies, and PCBs. The attenuator is used in automotive applications such as automotive starting systems, power steering systems, and motorcycle charging systems. Because of its low profile design, the attenuator fits easily in tight spaces, making it perfect for industrial applications. It is also used in audio applications such as sound cards, amplifiers, and speakers. The E-TA3216 T 4DB N5 is frequently used in power supplies of computers, digital cameras, and laptop computers. It is also recommended for use in printed circuit boards (PCBs). The attenuator is also used in a variety of other applications such as medical equipment, optics, telecommunications, and aviation equipment.

Working Principle of E-TA3216 T 4DB N5 Attenuator

The E-TA3216 T 4DB N5 attenuator uses the voltage division principle for its operation. This principle states that the voltage across the resistor or attenuator is proportional to the ratio of the resistor’s resistance to the total resistance of the circuit. The E-TA3216 T 4DB N5 attenuator works by reducing the amplitude of the voltage, thus reducing the power output. The power reduction is done in a linear fashion, meaning that the output will always be proportional to the input. The attenuator works by connecting one end of the resistor to the power source, and connecting the other end of the resistor to the load. The voltage is divided between the two nodes and the voltage is reduced at the load.

The E-TA3216 T 4DB N5 attenuator is designed to be used in systems where high power is not required, such as in audio applications. This is because the attenuator will reduce the power before it reaches the load, thus reducing the amount of heat generated. Additionally, the attenuator is designed to be used at high frequency, thus making it ideal for audio applications.

Conclusion

The E-TA3216 T 4DB N5 attenuator is a versatile device used in various DC and V applications such as automotive, industrial, audio, power supplies, and PCBs. Its working principle is based on the voltage division principle, which states that the voltage across the resistor or attenuator is proportional to the ratio of the resistor’s resistance to the total resistance of the circuit. The E-TA3216 is designed to be used where high power is not required, such as in audio applications. By providing adjustable voltage division, the E-TA3216 attenuator makes it simple to reduce the power output without significantly distorting its waveform or frequency content.

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

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