F5QG942M5P2KF-J Allicdata Electronics

F5QG942M5P2KF-J Filters

Allicdata Part #:

F5QG942M5P2KF-J-ND

Manufacturer Part#:

F5QG942M5P2KF-J

Price: $ 0.16
Product Category:

Filters

Manufacturer: Taiyo Yuden
Short Description: FILTER SAW 942.5MHZ 5SMD
More Detail: N/A
DataSheet: F5QG942M5P2KF-J datasheetF5QG942M5P2KF-J Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
5000 +: $ 0.14421
Stock 1000Can Ship Immediately
$ 0.16
Specifications
Series: F5
Part Status: Active
Lead Free Status / RoHS Status: --
Frequency - Center: 942.5MHz
Moisture Sensitivity Level (MSL): --
Bandwidth: 35MHz
Insertion Loss: 2.2dB
Ratings: --
Applications: CDMA, WCDMA, LTE
Mounting Type: Surface Mount
Package / Case: 5-SMD, No Lead
Height (Max): 0.020" (0.50mm)
Size / Dimension: 0.043" L x 0.035" W (1.10mm x 0.90mm)
Description

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Surface Acoustic Wave (SAW)filters are a highly specialized RF component used mainly in communication systems. They are able to filter out unwanted signals from the desired ones. The F5QG942M5P2KF-J is suitable for use in a wide range of communication systems because it is designed to meet various requirements in terms of frequency response, insertion loss, blocking, and selectivity. All of these are key features for a high-performing filter in communication applications.

The F5QG942M5P2KF-J is a surface acoustic wave (SAW) filter, also known as a surface wave filter or dielectric resonator filter (DRF). It uses ceramic substrates with metalized interdigitated electrodes to create an evanescent standing wave. The evanescent standing wave is generated by successive bouncing of electromagnetic waves, which corresponds to the resonance effect of standing waves in a vibrating cable. As the frequency of the electro-magnetic wave oscillates, so does the signal voltage, which results in the effects of frequency selection. Thus, the F5QG942M5P2KF-J can be used to select specific frequencies in a range and reject all others.

The main structure of the F5QG942M5P2KF-J can be simply described as several metal layers and insulating layers. The metal layers form complex and closely-spaced contacts, creating a system of distributed scattering and loading elements. The insulating layers provide electronic isolation and insulation between the metal layers. The insulating layers also control the amount of electrical energy stored in the metal layers, which further affects the resonance frequency of the filter. The design structure also serves to reduce the effects of frequency distortion.

When the filter is inputted with a signal, its response will depend on the shape of the input signal\'s frequency spectrum. As a rule, the filter will reject signals whose frequencies are outside of the pre-set range, while allowing signals whose frequencies are inside the pre-set range to pass through. This is the basic operation principle of the F5QG942M5P2KF-J.

The F5QG942M5P2KF-J is a high-performance, low-cost SAW filter, making it particularly suitable for use in a variety of communication systems. It is relatively easy to integrate in such systems due to its small size and thin design. It is also highly resistant to most environmental conditions, making it extremely durable and reliable. The F5QG942M5P2KF-J is ideal for applications involving long-distance communication, including RFID systems, satellite communication, cellular networks, and so on. The F5QG942M5P2KF-J is also well suited for short-distance use, such as in Wi-Fi and Bluetooth systems.

In conclusion, the F5QG942M5P2KF-J is an ideal choice for applications involving the filtering of signals. Its design structure ensures a high level of selectivity and low insertion loss, making it suitable for applications requiring an accurate rejection of signals from a large dynamic range. Due to its small size, thin design, and excellent resistance to environmental factors, the F5QG942M5P2KF-J offers an ideal combination of performance and reliability for a wide range of communication systems.

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

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