XLH730102.000000X Allicdata Electronics
Allicdata Part #:

XLH730102.000000X-ND

Manufacturer Part#:

XLH730102.000000X

Price: $ 0.86
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: IDT, Integrated Device Technology Inc
Short Description: OSC XO 102.000MHZ HCMOS SMD
More Detail: 102MHz XO (Standard) HCMOS Oscillator 3.3V Enable/...
DataSheet: XLH730102.000000X datasheetXLH730102.000000X Datasheet/PDF
Quantity: 1000
500 +: $ 0.77175
Stock 1000Can Ship Immediately
$ 0.86
Specifications
Frequency Stability: ±100ppm
Current - Supply (Disable) (Max): --
Height - Seated (Max): 0.055" (1.40mm)
Size / Dimension: 0.295" L x 0.205" W (7.50mm x 5.20mm)
Package / Case: 4-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 47mA
Operating Temperature: -20°C ~ 70°C
Series: XPRESSO™ FXO-HC73
Voltage - Supply: 3.3V
Output: HCMOS
Function: Enable/Disable
Frequency: 102MHz
Type: XO (Standard)
Base Resonator: Crystal
Part Status: Active
Packaging: Strip
Description

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XLH730102.000000X oscillators are used to produce periodic signal, utilizing the mechanical resonance of a vibrating system. Common applications of these oscillators include timing, pulse generation, signal generation and some specialized forms of automation. The working principle of XLH730102.000000X oscillator relies on the combination of electrical and mechanical properties.

XLH730102.000000X oscillators are used as a type of resonator, where the oscillation of a body is controlled by an electrical signal. The principle of operation for XLH730102.000000X oscillators is simple. An electrical signal, usually an alternating current, is fed into a physical system whose natural oscillations match the frequency of the feed signal. This electrical excitation then causes the physical system to vibrate at the same frequency as the electrical signal.

XLH730102.000000X oscillators are commonly found in the form of quartz crystal oscillators. The crystal is physically biased so that when an electrical signal is applied, the crystal will start to generate an oscillating waveform at an exact frequency. The input electrical signal can either be a continuous sinusoidal wave, an alternating current or a periodic square waveform. Other applications include temperature compensation oscillators, crystal oscillators, voltage control oscillators and ruthenium oxide oscillators.

In quartz crystal oscillators (XCOs), the crystal is driven by a feedback circuit. This feedback circuit takes the output from the crystal and compares it to the desired frequency. Any mismatch in frequency is detected and the circuit adjusts the amount of current applied to the crystal so that oscillation frequency remains constant. This process of frequency control ensures the accuracy of the oscillator.

Parametric oscillators (PXOs) are used when high frequency accuracy and low power consumption are needed. These oscillators rely on the same principles as XCOs, but employ a much lower operating power. The input signal is generated by a parametric amplifier, which is driven by a microprocessor. The frequency is determined by the amplifier’s parameters, such as the gain and cut-off frequency. This type of oscillator is often used in precision timing and cryptography applications.

Temperature-compensated crystal oscillators (TCXOs) are highly accurte oscillators used in sensitive applications where temperature fluctuations must be accounted for. The frequency of the crystal is kept constant by measuring the temperature of the crystal and using an electronic circuit to adjust the bias voltage. This ensures that the oscillator remains accurate even when the temperature is changing.

Ruthenium (RuOx) oscillators are used in the automotive and telecommunications industries, due to their low power consumption and small size. These oscillators are essentially ceramic resonators whose frequency is determined by the electrical characteristics of the material itself. Because of their small size, they are very useful in internal electronic components, such as microprocessors.

In conclusion, XLH730102.000000X oscillators have a wide range of applications, depending on the type of oscillator being used. They are commonly used for timing, pulse generation and signal generation, as well as for temperature compensation and cryptography applications. All oscillators work on the same principle – a physical system is driven by an electrical signal, causing it to vibrate at a desired frequency.

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

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