| Allicdata Part #: | 486-4019-ND |
| Manufacturer Part#: |
5500.2088 |
| Price: | $ 17.54 |
| Product Category: | Filters |
| Manufacturer: | Schurter Inc. |
| Short Description: | LINE FILTER 125/250VAC 20A CHASS |
| More Detail: | N/A |
| DataSheet: | 5500.2088 Datasheet/PDF |
| Quantity: | 9 |
| 1 +: | $ 15.93900 |
| 10 +: | $ 14.26700 |
| 20 +: | $ 12.59780 |
| 50 +: | $ 11.38350 |
| 100 +: | $ 10.62460 |
| 200 +: | $ 10.24510 |
| 500 +: | $ 10.09340 |
| Series: | FMLB-09 |
| Part Status: | Active |
| Filter Type: | Single Phase |
| Configuration: | Single Stage |
| Voltage - Rated DC: | -- |
| Voltage - Rated AC: | 125V, 250V |
| Current: | 20A |
| Frequency - Operating: | 50/60Hz |
| Applications: | Medical |
| Approvals: | cURus, ENEC, VDE |
| Operating Temperature: | -25°C ~ 100°C |
| Mounting Type: | Chassis Mount |
| Termination Style: | Quick Connect |
| Inductance: | 500µH |
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Power Line Filter Modules (5500.2088) are a family of filter modules specific to low-voltage switching. These filter modules are built with a variable dielectric film and a ferrite core. The module consists of two or three windings of copper wire wound in a spiral pattern with the ferrite core in the center and the dielectric film pressed against the windings and the ferrite core. The electrical characteristics of the module are determined by the thickness of the dielectric film, the size of the core, and the resistance of the wire in the windings. When the module is connected to a power source, the filter begins to block or reduce unwanted signal components. The filter’s range of frequency depends on the electrical characteristics of the dielectric, the core, and the windings internal resistance.
The structure and working of the Power Line Filter Modules (5500.2088) consists of three parts: the dielectric film, the ferrite core and the windings. The dielectric film is made of a material that is highly dielectric. It collects and stores energy, which is then used to reduce the effect of noise and interference on the power line. The ferrite core is an electrically conducting material that concentrates the electric field and provides a medium for the electromagnetic induction of the filter. The core can be made of many different materials, such as iron, steel, aluminum, and even plastic. The windings are made of copper wire and are designed to reduce noise by creating a low-impedance environment.
The working principle of the Power Line Filter Modules (5500.2088) is relatively simple and efficient. It involves capturing the unwanted radio interference or noise and creating an electromagnetic field within the module. This creates a strong, low-impedance environment for the power line, reducing the potential for interference. The wider the frequency range of the module, the more effective it will be in reducing interference. The filter module also has the advantage of reducing power losses associated with line noise.
In today’s world, Power Line Filter Modules (5500.2088) are increasingly used in various electronic applications. They are commonly used in low-voltage switching applications, such as those found in communication and data networks, audio and video equipment, automobiles, and consumer electronics. They are also used in high-voltage applications, such as in grid tie inverters and power supplies, where they are used to reduce power loss associated with line noise. Power Line Filter Modules are also gaining traction in medical, industrial, and military applications and are proving to be very effective in these fields as well.
Power Line Filter Modules (5500.2088) provide an efficient solution for eliminating or reducing interference and noise on power lines. Their working principle is relatively straightforward and can be tailored to a wide variety of applications. Their use is increasingly becoming popular in many different fields and they are proving to be very effective for many different applications. As technology continues to advance, Power Line Filter Modules will become even more important for maintaining reliable power lines and reducing the amount of power loss due to noise and interference.
The specific data is subject to PDF, and the above content is for reference
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5500.2088 Datasheet/PDF