Allicdata Part #: | NAH-10-102-D-ND |
Manufacturer Part#: |
NAH-10-102-D |
Price: | $ 33.17 |
Product Category: | Filters |
Manufacturer: | Cosel USA, Inc. |
Short Description: | LINE FILTER 250VDC/VAC 10A DIN |
More Detail: | N/A |
DataSheet: | NAH-10-102-D Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 30.15180 |
Series: | NAH |
Part Status: | Active |
Filter Type: | Single Phase |
Configuration: | Single Stage |
Voltage - Rated DC: | 250V |
Voltage - Rated AC: | 250V |
Voltage - Rated AC (Phase to Ground/Neutral): | 250V |
Current: | 10A |
Frequency - Operating: | -- |
Applications: | General Purpose |
Approvals: | cURus, VDE |
Operating Temperature: | -40°C ~ 85°C |
Mounting Type: | DIN Rail |
Termination Style: | Terminal Block |
Inductance: | -- |
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Power line filters are used in a variety of applications to help suppress induced noise in electrical systems. In particular, power line filters, such as the NAH-10-102-D, are designed to be used in environments where EMI and RFI can be potentially problematic. To better understand how the NAH-10-102-D filter works, it helps to examine its application field and working principle.
The NAH-10-102-D is designed for use in a variety of applications, such as medical, industrial, consumer electronics, and automotive systems. It is also suitable for use in applications that require high levels of safety, reliability, and performance. In its most general form, the filter attenuates conducted noise on line-to-ground paths, filtering out common-mode noise generated by the DC/AC converter subsystems commonly found in electronic systems. In addition, it helps to reduce conducted interference between different subsystems, and can even be used to prevent interference from getting into other parts of the electrical system.
At a more detailed level, the NAH-10-102-D helps to reduce conducted EMI/RFI interference in applications that require high levels of performance and reliability. Its use of a common-mode inductive element helps to reduce conducted interference, while its high-isolation capacitors provide a filter path between the system and other equipment. It also helps reduce conducted EMI/RFI interference by providing a path of low impedance for low-frequency noise injection.
The NAH-10-102-D is also designed to operate efficiently and reliably in harsh, high-voltage environments. It is designed to handle up to 250 VAC, and can operate in temperatures ranging from -40°C to +105°C. Additionally, its small size makes it an ideal choice for applications where space is limited.
The NAH-10-102-D’s working principle is based on the concept of filtering common-mode noise from a system by using a combination of capacitors, common-mode inductors, and ground planes. The common-mode inductor acts as a choke, blocking the passage of high-frequency noise from the system into other parts of the electrical system. The capacitors, in turn, help to reduce the common-mode noise on the same line-to-ground path, while the ground plane helps to provide a low-impedance pathway for low-frequency noise to be injected into the system.
The combination of these components and their design parameters allow the NAH-10-102-D to provide efficient EMI/RFI noise control. It is designed with low-impedance designs that suppress common-mode noise from the system, and high-impedance designs that suppress conducted interference between different systems. Additionally, the filters are designed to operate within a wide range of frequencies, ranging from 300 KHz to 30 MHz.
In conclusion, the NAH-10-102-D is a high-performance power line filter designed specifically for applications which require a low-noise environment. Its combination of common-mode inductors, capacitors, and ground planes help to create a filter path between the system and other equipment, allowing it to effectively attenuate conducted EMI/RFI interference. In addition, its small size and ability to withstand temperatures of up to 105°C make it an ideal choice for a variety of applications, from medical and industrial to automotive and consumer electronics.
The specific data is subject to PDF, and the above content is for reference
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