51-321-610 Allicdata Electronics
Allicdata Part #:

51-321-610-ND

Manufacturer Part#:

51-321-610

Price: $ 0.00
Product Category:

Filters

Manufacturer: API Technologies Corp
Short Description: FILTER LC(T) 0.36UF CHASSIS
More Detail: LC (T-Type) EMI Filter 3rd Order Low Pass 1 Channe...
DataSheet: 51-321-610 datasheet51-321-610 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current: 1A
Height: --
Size / Dimension: 0.687" Dia x 1.507" L (17.45mm x 38.28mm)
Package / Case: Axial, Bushing - 2 Solder Eyelets
Mounting Type: Chassis Mount
Voltage - Rated: 400V
Applications: General Purpose
Operating Temperature: --
ESD Protection: No
Values: C = 0.36µF
Series: --
Resistance - Channel (Ohms): 0.6
Attenuation Value: 70dB @ 100MHz ~ 1GHz
Center / Cutoff Frequency: --
Number of Channels: 1
Technology: LC (T-Type)
Filter Order: 3rd
Type: Low Pass
Part Status: Discontinued at Digi-Key
Packaging: Tray 
Description

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Electromagnetic Interference / Radio Frequency Interference (EMI / RFI) filters are used to protect sensitive electronic circuits from interference, such as signals generated by lightning, high-power radio transmitters, and other sources. The 51-321-610 Application Network is one type of EMI/RFI filter that is commonly used. This type of filter consists of an inductor (L) and a capacitor (C) connected in series. The combination of the two components acts as a combined low-pass and high-pass filter network, with the inductor blocking high frequency signals and the capacitor blocking low frequency signals.
The main advantages of the 51-321-610 Application Network over other types of EMI/RFI filters are its low cost, wide frequency range, high common mode rejection ratio (CMRR) and high power dissipation. The filter can be used in applications with a wide frequency range, from as low as 0 MHz to as high as 50 GHz. The high CMRR ensures that it will effectively filter out unwanted frequencies. In addition, the filter is capable of dissipating large amount of power, which makes it suitable for high-power applications. The high power dissipation also ensures that the filter can remain operational for longer periods of time without overheating.
The 51-321-610 Application Network can be used in a variety of applications, from telecommunications to industrial automation. In telecommunications, these filters are commonly used to reduce interference from external signals such as radio transmitters, broadcasting systems, and other high power emitters. In industrial automation, these filters are used to eliminate electrical noise generated by motors, power generators, and other industrial equipment. Moreover, these filters can be used in medical and military applications. In medical applications, they are generally used to reduce unwanted noise in various devices such as ultrasound machines, MRI machines, and other imaging equipment. In military applications, these filters are often used in communications and radio equipment to reduce the interference generated by high power emitters.
The 51-321-610 Application Network can also be used to protect sensitive circuits and systems from the effects of Electrostatic Discharge (ESD). This type of filter can absorb large voltage transients, which can damage sensitive components such as semiconductor components. As such, the 51-321-610 Application Network can be used to provide protective redundancy in systems that are vulnerable to ESD.
The working principle of the 51-321-610 Application Network is fairly simple. The series combination of an inductor and a capacitor acts as a low-pass filter, meaning that it attenuates higher frequencies more than lower frequencies. This is achieved by the inductor blocking higher frequencies and the capacitor blocking lower frequencies. The filter also has a high common mode rejection ratio (CMRR), which effectively filters out unwanted frequencies. Furthermore, the filter has a high power rating, which ensures that it can handle large amounts of power without becoming damaged. Finally, the filter is also capable of dissipating high power, allowing it to remain operational for long periods of time.

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

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