416F52035ILR Allicdata Electronics
Allicdata Part #:

416F52035ILR-ND

Manufacturer Part#:

416F52035ILR

Price: $ 0.34
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: CTS-Frequency Controls
Short Description: CRYSTAL 52.000 MHZ 12PF SMT
More Detail: 52MHz ±30ppm Crystal 12pF 100 Ohms 4-SMD, No Lead
DataSheet: 416F52035ILR datasheet416F52035ILR Datasheet/PDF
Quantity: 1000
3000 +: $ 0.30511
Stock 1000Can Ship Immediately
$ 0.34
Specifications
Series: 416
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: MHz Crystal
Frequency: 52MHz
Frequency Stability: ±50ppm
Frequency Tolerance: ±30ppm
Load Capacitance: 12pF
ESR (Equivalent Series Resistance): 100 Ohms
Operating Mode: Fundamental
Operating Temperature: -40°C ~ 85°C
Ratings: --
Mounting Type: Surface Mount
Package / Case: 4-SMD, No Lead
Size / Dimension: 0.063" L x 0.047" W (1.60mm x 1.20mm)
Height - Seated (Max): 0.018" (0.45mm)
Description

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Crystals are solid materials composed of a single type of atom or molecule arranged in a regular and repeating pattern throughout the three-dimensional space. In physics, crystals are most commonly associated with solid state physics, which deals with materials at length scales of atoms and molecules. Crystals have been used since ancient times to create jewelry and ornamental objects because of their unique and attractive properties. In the modern era, crystals are used in many different types of applications, including electronics, lasers, and optical technologies. One particular type of crystal, the 416F52035ILR crystal, is used in many different types of applications, and is particularly suited to certain types of optical and electrical applications.

The 416F52035ILR crystal is a type of semi-insulating crystal of nitrogen-doped fluorite composition. It is highly transparent and has a high optical gain, making it ideally suited for use in optical and electrical devices. One of the most common uses for the 416F52035ILR crystal is as an optical amplifier in fiber-optic communications systems. In such systems, the crystal is used to amplify signals traveling along the fiber-optic line over long distances, allowing for higher transmission rates. Additionally, the crystal can also be used as an electrical switch in digital circuits.

The working principle behind the 416F52035ILR crystal is based on an effect called stimulated emission of radiation. This effect occurs when an electron in an atom absorbs a photon of energy, and then emits two photons of energy in the same direction, thus exciting two electrons and creating a cascade of stimulated emission. This process is exploited in lasers and can be harnessed for use in optical communications systems by placing a 416F52035ILR crystal at the beginning and end of the fiber-optic line, thus amplifying the signal as it travels along the line. The ability of the 416F52035ILR crystal to cause this stimulated emission makes it an ideal choice for use in optical applications.

The 416F52035ILR crystal is also widely used in electronic components, such as integrated circuits, as an electrical switch. The crystal works in this capacity by acting as a voltage-controlled switch. When a particular voltage is applied to the crystal, it will either allow current to flow, or it will block it. This property of the 416F52035ILR crystal makes it well suited for use in digital circuits, where it can act as a switch to control the flow of current.

The 416F52035ILR crystal is a versatile and useful type of crystal with numerous applications in the fields of optics and electronics. When used as an optical amplifier in fiber-optic communication systems, it allows for greater transmission rates over long distances. And when used as an electrical switch, it allows for precise control of the flow of current in digital circuits. Thus, the 416F52035ILR crystal is an invaluable tool for any number of applications in the modern world.

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

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