Power Dynamics, Inc.

Power Dynamics, Inc.

Founded in 1979, Power Dynamics, Inc. is a trusted provider of high-quality engineered products tailored to meet the diverse and exacting needs of contemporary clients. Offering a range of off-the-shelf and bespoke connectors, Power Dynamics, Inc. boasts rapid design, tooling, and manufacturing capabilities, with projects typically completed within weeks. Operating from its headquarters in New Jersey, USA, the company conducts all engineering services and secures safety agency approvals in-house. Power Dynamics, Inc. serves a broad spectrum of industries, including power, medical, industrial, consumer goods, and communications, with its innovative products making a significant impact across these sectors.

Power Line Filter Modules

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2
Series
Operating Temperature
Configuration
Applications
Frequency - Operating
Termination Style
Approval Agency
Mounting Type
Inductance
Filter Type
Voltage - Rated AC (Phase to Ground/Neutral)
Voltage - Rated AC
Voltage - Rated AC (Phase to Phase)
Current
Voltage - Rated DC
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Power Dynamics, Inc.
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ImageProduct DetailPriceAvailabilityECAD ModelOperating TemperatureTermination StyleMounting TypeCurrentApproval AgencyApplicationsFilter TypeConfigurationVoltage - Rated DCVoltage - Rated ACFrequency - OperatingVoltage - Rated AC (Phase to Ground/Neutral)Voltage - Rated AC (Phase to Phase)SeriesInductance
HGN-365A06W-25-3MM1
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Wire Leads
Panel Mount
6 A
cURus, VDE
Medical
Single Phase
Single Stage
-
125V, 250V
50 ~ 60Hz
-
-
HGN-365A
0.8mH
HGN-339-6-F-300
LINE FILTER 125V/250VAC 6A PNLMT
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Quantity
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PCB Symbol, Footprint & 3D Model
6 A
Single Phase
Single Stage
-
125V, 250V
-
-

About  Power Line Filter Modules

Power line filter modules are essential components used to prevent the flow of current through power supply conductors at frequencies that deviate from the intended supply frequency. These modularized passive component assemblies are particularly useful in conjunction with AC utility power sources. They serve two main purposes: mitigating interference from external sources and suppressing potential interference generated by connected devices. The primary function of a power line filter module is to attenuate electrical noise and electromagnetic interference (EMI) that can disrupt the normal operation of electrical equipment. These filters are designed to allow the desired power frequency to pass through while effectively blocking or attenuating unwanted frequencies. By doing so, they ensure that only clean and stable power is supplied to connected devices. When it comes to external interference, power line filter modules act as a barrier, preventing noise and EMI from entering the power supply system. This interference can originate from sources such as radio signals, nearby electrical equipment, or other sources of electrical noise. The filter module's design includes various passive components, such as capacitors and inductors, which work together to create a path of high impedance for unwanted frequencies, effectively filtering them out. Moreover, power line filter modules also suppress potential interference that might be generated by the connected devices themselves. Some electrical devices, especially those with switching power supplies or motors, can introduce noise back into the power supply system. The filter modules help mitigate this issue by providing a low-impedance path for the unwanted frequencies generated by the device, thereby preventing them from propagating further into the power supply network and affecting other connected equipment. By incorporating power line filter modules into a power supply system, both external and internal sources of interference can be effectively controlled. This ensures the reliable operation of sensitive equipment and helps maintain the overall integrity of the power distribution network. In summary, power line filter modules are modularized passive component assemblies that play a crucial role in inhibiting current flow through power supply conductors at frequencies outside the intended supply range. They are utilized to mitigate interference from external sources and suppress potential interference caused by connected devices. By selectively filtering out unwanted frequencies, these modules contribute to the stable and reliable operation of electrical equipment.