Allicdata Part #: | 1171-1150-ND |
Manufacturer Part#: |
51-729-305 |
Price: | $ 0.00 |
Product Category: | Filters |
Manufacturer: | API Technologies Corp |
Short Description: | FILTER LC(PI) 5500PF CHASSIS |
More Detail: | LC (Pi) EMI Filter 3rd Order Low Pass 1 Channel C ... |
DataSheet: | 51-729-305 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Current: | 3A |
Height: | -- |
Size / Dimension: | 0.156" Dia x 0.340" L (3.97mm x 8.64mm) |
Package / Case: | Axial, Bushing |
Mounting Type: | Chassis Mount |
Voltage - Rated: | 50V |
Applications: | General Purpose |
Operating Temperature: | -55°C ~ 125°C |
ESD Protection: | No |
Values: | C = 5500pF |
Series: | -- |
Resistance - Channel (Ohms): | 0.01 |
Attenuation Value: | 60dB @ 100MHz |
Center / Cutoff Frequency: | -- |
Number of Channels: | 1 |
Technology: | LC (Pi) |
Filter Order: | 3rd |
Type: | Low Pass |
Part Status: | Discontinued at Digi-Key |
Packaging: | Tray |
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Electromagnetic interference (EMI) and radio-frequency interference (RFI) filters are sometimes referred to as LC (inductance-capacitance) and RC (resistance-capacitance) networks. These filters are used to suppress unwanted signals from entering a device and reduce the amount of radio frequency interference (RFI). They are typically used in electronic circuits that are sensitive, such as communication systems, medical instruments, and industrial automation.
51-729-305s specifically belong to the EMI/RFI filter family. The filter consists of two or more components, such as an inductor or capacitor, connected in series. These components form an LC network that helps to attenuate the interference signals. The LC network blocks signals within a certain frequency range from reaching the device, thus improving the device’s performance and reliability.
51-729-305 filters work by forming two separate, yet interconnected, networks of components. The first network is an inductor-capacitor network. This network attenuates the interference signal by providing an inductive or capacitive impedance. This impedance affects the signal, causing it to decrease in amplitude and/or to shift in frequency. The second network is a resistor-capacitor network. This network acts as a low-pass filter, allowing only the lower-frequency components of the interference signal to pass through while attenuating or blocking the higher frequency ones.
The filter’s components are generally tuned to frequencies that are specific to the device. For instance, if the filter is used to protect a cell phone, then the components will likely be tuned to frequencies specific to that device’s frequencies. The performance of the filter is determined by the values of the components and their frequencies. A higher quality filter should have components that have been carefully selected and tuned for higher performance.
51-729-305 filters are typically used in applications where EMI/RFI interference is a significant problem. The devices in a system that are especially prone to interference are often equipped with these filters. They can also be used in devices that are subjected to high levels of electrical and radiation noise.
For medical instruments, which are especially prone to interference, the filter is typically used to protect the sensitivity of the instrument’s circuitry and the integrity of its signal. Additionally, this filter is used for various industrial and commercial applications, such as radio communications systems, power line quality assessment, and audio equipment safety.
In conclusion, the 51-729-305 EMI/RFI filter is an integral part of any system that is prone to interference. It is used to protect delicate and sensitive equipment from interference signals, thus increasing the overall performance and reliability of the system. The filter works by forming two interconnected networks of components to absorb or attenuate the signals. It can be used in applications such as medical instruments, power lines, audio equipment, and radio communications systems.
The specific data is subject to PDF, and the above content is for reference
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