9C-16.9344MAAE-T Allicdata Electronics

9C-16.9344MAAE-T Crystals, Oscillators, Resonators

Allicdata Part #:

887-2426-2-ND

Manufacturer Part#:

9C-16.9344MAAE-T

Price: $ 0.18
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: TXC Corporation
Short Description: CRYSTAL 16.9344MHZ 12PF SMD
More Detail: 16.9344MHz ±30ppm Crystal 12pF 30 Ohms HC-49S
DataSheet: 9C-16.9344MAAE-T datasheet9C-16.9344MAAE-T Datasheet/PDF
Quantity: 1000
1000 +: $ 0.16380
Stock 1000Can Ship Immediately
$ 0.18
Specifications
Series: 9C
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: MHz Crystal
Frequency: 16.9344MHz
Frequency Stability: ±30ppm
Frequency Tolerance: ±30ppm
Load Capacitance: 12pF
ESR (Equivalent Series Resistance): 30 Ohms
Operating Mode: Fundamental
Operating Temperature: -20°C ~ 70°C
Ratings: --
Mounting Type: Surface Mount
Package / Case: HC-49S
Size / Dimension: 0.449" L x 0.189" W (11.40mm x 4.80mm)
Height - Seated (Max): 0.161" (4.10mm)
Description

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Crystals: 9C-16.9344MAAE-T Application Field and Working Principle

Crystals are small quartz stones that have had electrical charges applied to them, generating a precise resonant frequency that can be used for a variety of purposes. As such, crystals play an important role in the information technology, radio communication, and related industries, creating a vital link between digital electronic components. One such crystal, the 9C-16.9344MAAE-T, comes with a 16.9344MHz resonant frequency, making them ideal for a number of various application fields.

One of the more common application fields for the 9C-16.9344MAAE-T crystal is in radio-frequency (RF) applications. The crystal acts as an oscillator to generate a signal of specific frequency, which is then passed through the device’s receivers and transmitters. This signal is then used to power the transmission and reception of signals. In some cases, the signal can also be used to determine the timing between different parts of the signal, allowing more precise measurements to be taken.

In addition, the 9C-16.9344MAAE-T crystal is also often used in clock synchronization and control systems. In these cases, the crystal will use its precise frequency to create an accurate timing signal, which will then be used to synchronize multiple components or devices. As a result, the devices or components can work together and achieve the same results, even if they are at different locations.

The 9C-16.9344MAAE-T crystal’s use isn’t limited to just synchronizing and transmitting signals. The crystal’s fundamental frequency can also be used to create signals of various frequencies, such as those used in navigation through GPS systems. In these cases, the crystal can be used to compensate for any errors resulting from the signal being received from the satellite. In addition, crystals such as the 9C-16.9344MAAE-T can be utilized in signal modulation systems to generate continuously variable frequencies.

The working principle of the 9C-16.9344MAAE-T crystal is a simple one. A small electric current is passed through the quartz crystal, which causes a physical vibration at the crystal’s resonant frequency. This vibration then generates a stable, continuous frequency that can be used for different purposes. By manipulating the electric current passed through the crystal, the output frequency of the crystal can be changed, allowing it to be tuned to whatever frequency is required.

In addition to the electric current, temperature can also be used to affect the crystal’s frequency. Temperature changes will cause the resonant frequency of the crystal to either increase or decrease, which means that the crystal can be used in temperature-sensitive applications. Crystals such as the 9C-16.9344MAAE-T are often used in high-accuracy temperature control systems, as their stable frequency makes the system more accurate.

In summary, crystals play an important role in many different industries, especially in information technology and radio communication. The 9C-16.9344MAAE-T crystal, in particular, is renowned for its stability and accuracy, making it ideal for systems that rely on extremely precise frequencies. Its ability to be impacted by electrical current and temperature changes makes it especially useful in applications where accuracy is of utmost importance.

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

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