405C35E13M00000 Allicdata Electronics
Allicdata Part #:

405C35E13M00000-ND

Manufacturer Part#:

405C35E13M00000

Price: $ 0.36
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: CTS-Frequency Controls
Short Description: CRYSTAL 13.0000MHZ 20PF SMD
More Detail: 13MHz ±30ppm Crystal 20pF 60 Ohms 4-SMD, No Lead
DataSheet: 405C35E13M00000 datasheet405C35E13M00000 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.33170
Stock 1000Can Ship Immediately
$ 0.36
Specifications
Series: 405
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: MHz Crystal
Frequency: 13MHz
Frequency Stability: ±50ppm
Frequency Tolerance: ±30ppm
Load Capacitance: 20pF
ESR (Equivalent Series Resistance): 60 Ohms
Operating Mode: Fundamental
Operating Temperature: -20°C ~ 70°C
Ratings: --
Mounting Type: Surface Mount
Package / Case: 4-SMD, No Lead
Size / Dimension: 0.197" L x 0.126" W (5.00mm x 3.20mm)
Height - Seated (Max): 0.039" (1.00mm)
Description

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Crystals: 405C35E13M00000 application field and working principle

Crystals are widely used in electronic and communication devices due to their excellent qualities like high stability over temperature and good frequency stability over long periods of time.

The crystal with the reference number 405C35E13M00000, is a crystal oscillator (XTAL) usually in the form of an SMA package. The reference number of the crystal indicates the frequency in kHz, the voltage used to drive the crystal and the type of package among other potential attributes. The crystal is used for frequencies over 200 kHz and maintain excellent stability to provide a signal of high precision.

XTALs have a wide number of applications, for example in computers, smartphones, satellites, and even in audio systems.In communication devices, XTALs have several important functions, including:

  1. To provide the ground reference for signal
  2. To generate the basic clock frequency of the logic circuits
  3. To drive counter logic circuits
  4. To drive A/D and D/A converters
  5. To act as a reference signal for modulation

The Crystal 405C35E13M00000 is commonly employed in the field of instrumentation, industrial automation and telecommunications, to provide chip timing as well as driving and decoding of signals, with a particular emphasis on analogue-to-digital converters, voltage-controlled oscillators, power line carrier systems and for frequency synthesis.

The working principle of the crystal 405C35E13M00000 is based on the production of an oscillating signal, from a mechanical resonance effect on a quartz crystal. Quartz is a piezoelectric material, meaning that the mechanical deformation of the crystal can generate a small change in its electrostatic potential. The same applies inversely, whereby an electric field applied to the crystal will result in a small mechanical deformation. This property causes mechanical resonance and an electric vibration at a specific frequency, which is defined by the physical properties of the crystal and is determined by the geometry of the crystal and its mechanical properties.

When using the crystal in an electronic circuit, it is typically placed in a resonator tank circuit and the deforming current, at the frequency of the crystal and the resonator tank, is transmitted to the circuit’s output. This current is filtered and regulated to obtain a continuous sine wave that has the frequency and stability of the crystal. This signal can be used for a range of different applications, providing a pure and stable frequency reference, with excellent accuracy.

In conclusion, the crystal 405C35E13M00000 is a high-precision and reliable oscillator, commonly employed in instruments, industrial automation and telecommunications applications, where it is used to create a timing reference and as a frequency synthesizer. The crystal works using the mechanical resonance of quartz crystals, which is based on the piezoelectric effect that causes the crystal to vibrate at a specific frequency when an electric field is applied to it.

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

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