CM1693-06DE Allicdata Electronics
Allicdata Part #:

CM1693-06DE-ND

Manufacturer Part#:

CM1693-06DE

Price: $ 0.00
Product Category:

Filters

Manufacturer: ON Semiconductor
Short Description: FILTER LC(PI) 26NH/22PF ESD SMD
More Detail: LC (Pi) EMI Filter 3rd Order Low Pass 6 Channel L ...
DataSheet: CM1693-06DE datasheetCM1693-06DE Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Current: 30mA
Height: 0.022" (0.55mm)
Size / Dimension: 0.098" L x 0.053" W (2.50mm x 1.35mm)
Package / Case: 12-UFDFN Exposed Pad
Mounting Type: Surface Mount
Voltage - Rated: --
Applications: Data Lines for Mobile Devices
Operating Temperature: -40°C ~ 85°C
ESD Protection: Yes
Values: L = 26nH (Total), C = 22pF (Total)
Series: --
Resistance - Channel (Ohms): --
Attenuation Value: -30dB @ 800MHz ~ 6GHz
Center / Cutoff Frequency: 300MHz (Cutoff)
Number of Channels: 6
Technology: LC (Pi)
Filter Order: 3rd
Type: Low Pass
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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EMI/RFI Filters (LC, RC Networks) are used in a variety of applications, including the protection of electronic equipment from interference. The CM1693-06DE filter is a type of filter which uses both inductor and capacitive elements to reduce the effects of unwanted EMI. These filters are designed for a range of applications, from consumer electronics to military applications. The CM1693-06DE reduces noise and interference in low-power applications, such as audio, video and computer circuits.

The main component of the CM1693-06DE is an inductor-capacitor (LC) network. The primary function of the LC network is to provide filtering of unwanted interference. The LC network works by passing signal frequencies within the range that the filter is designed to respond to, while blocking out any noise or interference that falls outside that range. This allows signals within the frequency range to travel freely through the circuit, while blocking interference. This provides the desired level of noise reduction while still maintaining signal integrity.

The inductor and capacitor elements are connected in series and parallel combinations in order to configure the filter\'s resonance frequency. There are two types of capacitors used in the filter: the first is an electrolytic capacitor, which is used to provide DC bias, and the second is a ceramic capacitor, which is used to block AC interference. The two types of inductors used in the filter are an air core inductor, which is used to provide DC bias, and a ferrite core inductor, which is used to provide AC filtering.

The combination of these elements creates an LC network, which is designed to provide maximum noise reduction while still maintaining a low level of attenuation. This means that signals within the frequency range can pass through with minimal distortion.

The filter also includes additional components which affect the overall performance, such as the G-D Loop, which is used to reduce the EMI/RFI generated by the filter itself. Other components include the F-D Loop, which provides shielding for the LC network, and the Differential Network, which provides additional filtering for signals that have low impedance.

The CM1693-06DE filter is designed for a variety of applications. It is suitable for use in consumer electronics, medical equipment, industrial control systems, aerospace systems and more. Its compact size and low cost make it an attractive option for both OEMs and end users. Its high level of attenuation ensures that the system is protected from unwanted interference, while its low-loss design ensures that signals are maintained at the desired level.

No matter what the application, the CM1693-06DE provides protection from EMI/RFI while still allowing desired signals to pass through with minimal attenuation. Its combination of compact size and low cost makes it suitable for a wide range of applications, from consumer electronics to military applications. Its design guarantees that unwanted noise and interference are reduced to an acceptable level, while still providing the desired signal loss.

The specific data is subject to PDF, and the above content is for reference

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