EZA-NT56AAAJ Filters |
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Allicdata Part #: | PNT56TR-ND |
Manufacturer Part#: |
EZA-NT56AAAJ |
Price: | $ 0.00 |
Product Category: | Filters |
Manufacturer: | Panasonic Electronic Components |
Short Description: | FILTER RC(PI) 470 OHM/1000PF SMD |
More Detail: | RC (Pi) EMI Filter 1st Order Low Pass 4 Channel R ... |
DataSheet: | EZA-NT56AAAJ Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Resistance - Channel (Ohms): | 470 |
Height: | 0.039" (1.00mm) |
Size / Dimension: | 0.252" L x 0.122" W (6.40mm x 3.10mm) |
Package / Case: | 2512 (6432 Metric), Concave |
Mounting Type: | Surface Mount |
Voltage - Rated: | 50V |
Applications: | Data Lines for Mobile Devices |
Operating Temperature: | -25°C ~ 85°C |
ESD Protection: | No |
Values: | R = 470 Ohms, C = 1000pF |
Series: | EZANT |
Attenuation Value: | -- |
Center / Cutoff Frequency: | -- |
Number of Channels: | 4 |
Technology: | RC (Pi) |
Filter Order: | 1st |
Type: | Low Pass |
Part Status: | Obsolete |
Packaging: | Tape & Reel (TR) |
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
EMI/RFI filters are electrical devices designed to suppress any type of interference or noise. They are usually composed of an electronic circuit, often a combination of inductors (L) and capacitors (C), and they are capable of restricting or blocking the high frequency, pulse-like signals that are emitted by some electronic devices. EMI/RFI filters also play an important role in the protection of electronic equipment from static electricity, power surges, electrostatic discharges, and other sources of electromagnetic interference (EMI). The EZA-NT56AAAJ is a type of EMI/RFI filter, characterized by its ability to attenuate EMI/RFI signals over a very wide frequency range - from 0.1 MHz to 1.6 GHz.
The primary components of the EZA-NT56AAAJ filter are two capacitors and one inductor, wired in series. The structure of the filter consists of a capacitor-inductor-capacitor (C-L-C) network, which is commonly referred to as an RLC (resistor-inductor-capacitor) network. The filter is designed so that the inductor and capacitors are paired in a way that maximizes the signal attenuation. For example, when a current flows through the filter, the inductor resists the current, while the capacitors provide constructive and destructive interference paths. As the current flows from one component to another, the inductor and capacitors create a waveform that helps to suppress or attenuate EMI/RFI signal components.
The EZA-NT56AAAJ filter is exceptionally useful in a wide variety of applications. It is commonly used in power converters, motor drives, automotive electronics, medical equipment, military/aerospace, industrial control systems, home appliances, and telecom systems. In power converter applications, the filter is often used to suppress electromagnetic transients generated by the switching power circuits. In automotive electronics, it is used to reduce induced current in the cables connected to the vehicle\'s sensors. In industrial control systems, the filter is used to reduce EMI and to maintain system reliability in harsh industrial environments. In telecom systems, the filter is used to reduce EMI that can interfere with wireless transmission signals.
When selecting a filter for an application, it is important to consider the specific characteristics of the filter. The EZA-NT56AAAJ filter, for example, is optimized for wide bandwidth with low impedance characteristics. It also provides excellent rejection performance across the ultra-wide frequency range, making it suitable for many different high impedance circuits. The filter is also highly reliable, shock tolerant, and resistant to temperature, humidity, and UV radiation.
Overall, the EZA-NT56AAAJ is a powerful and versatile filter, capable of effectively attenuating high frequency interference in a wide range of applications. It is highly reliable and can provide excellent rejection performance across an ultra-wide frequency range. Its low-impedance characteristics and shock-tolerant design make it an ideal choice for many different high impedance circuits.
The specific data is subject to PDF, and the above content is for reference
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