416F3741XCLT Allicdata Electronics
Allicdata Part #:

416F3741XCLT-ND

Manufacturer Part#:

416F3741XCLT

Price: $ 0.00
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: CTS-Frequency Controls
Short Description: CRYSTAL 37.400 MHZ 12PF SMT
More Detail: 37.4MHz ±10ppm Crystal 12pF 200 Ohms 4-SMD, No Lea...
DataSheet: 416F3741XCLT datasheet416F3741XCLT Datasheet/PDF
Quantity: 1000
0 +: $ 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 416
Packaging: Tape & Reel (TR) 
Part Status: Discontinued at Digi-Key
Type: MHz Crystal
Frequency: 37.4MHz
Frequency Stability: ±15ppm
Frequency Tolerance: ±10ppm
Load Capacitance: 12pF
ESR (Equivalent Series Resistance): 200 Ohms
Operating Mode: Fundamental
Operating Temperature: -20°C ~ 70°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 have been used in various types of applications throughout history. One application that has become increasingly popular in recent years is the416F3741XCLT (Crystal Laser Transportation) technology. This technology utilizes a crystal’s natural properties to generate an energy stream that is capable of transporting a variety of objects, as well as information, over long distances without requiring a large amount of energy. Additionally, this technology also has the capacity to transform a variety of elements from one state to another. Due to its advanced capabilities, the 416F3741XCLT technology is becoming increasingly popular in fields such as medical and automotive industries.

At the most basic level, the 416F3741XCLT technology works by using the power of a lasing crystal to focus a beam of energy on a desired point. This beam of energy is then split into two parts, each part traveling in a different direction. The first part of the energy beam is used to transport the object or information being sent, while the second part is sent back to the sending device, informing it that the object or information was successfully transmitted.

In order to achieve the desired results with the 416F3741XCLT technology, a lasing crystal must be used. Lasing crystals are special types of crystals specifically grown in a laboratory, and their chemical makeup is determined by the laser scientist in order to obtain the desired wavelength of the lasing crystal. The wavelength of the lasing crystal is important as this determines the efficiency of the energy beam that will be used to transport the object or information over a long distance. Once a lasing crystal has been created, it is then placed in the 416F3741XCLT device, where it is aligned to its exact parameters as set by the scientist in order to achieve the desired results.

In addition to the lasing crystals used in conjunction with 416F3741XCLT technology, additional elements are also necessary to complete the energy stream and achieve the desired results. Certain types of laser crystals are only capable of generating one part the energy beam, while others can generate multiple parts. Specialized mirrors can also be coupled with the laser crystals in order to reflect multiple beams of energy towards a distant object or information. Interference filters are also employed in order to control the frequency and intensity of the laser beam, as well as to make sure that only the desired particles are being sent out into the environment.

Due to the versatile nature of the 416F3741XCLT technology, it has become increasingly popular in many industries, particularly medical and automotive industries. For medical applications, this technology can be used to transport medical equipment such as medical implants and diagnostic imaging devices to distant locations. For automotive applications, this technology can be used to transport objects between vehicles, as well as to monitor and regulate the flow of traffic in certain areas.

In conclusion, the 416F3741XCLT technology is proving to be a valuable asset in many aspects of modern life. Utilizing a lasing crystal and other specialized elements, this technology is capable of transporting a variety of objects and information over long distances with a minimal amount of energy expenditure. While the primary applications of this technology are currently in the medical and automotive fields, its potential has yet to be fully explored and so it is likely that this technology will continue to find new uses in the years to come.

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

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