Allicdata Part #: | AOCJY3A-10.000MHZ-F-SW-ND |
Manufacturer Part#: |
AOCJY3A-10.000MHZ-F-SW |
Price: | $ 185.14 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Abracon LLC |
Short Description: | OSC OCXO 10.000MHZ SNWV PC PIN |
More Detail: | 10MHz OCXO Sine Wave Oscillator 5V 6-DIP (0.750",... |
DataSheet: | AOCJY3A-10.000MHZ-F-SW Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 166.62200 |
Specifications
Frequency Stability: | ±30ppb |
Current - Supply (Disable) (Max): | -- |
Height - Seated (Max): | 0.512" (13.00mm) |
Size / Dimension: | 1.000" L x 1.000" W (25.40mm x 25.40mm) |
Package / Case: | 6-DIP (0.750", 19.05mm), 5 Leads |
Mounting Type: | Through Hole |
Ratings: | -- |
Current - Supply (Max): | -- |
Operating Temperature: | -40°C ~ 75°C |
Series: | AOCJY3 |
Voltage - Supply: | 5V |
Output: | Sine Wave |
Function: | -- |
Frequency: | 10MHz |
Type: | OCXO |
Base Resonator: | Crystal |
Part Status: | Active |
Packaging: | Tray |
Description
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Oscillators - AOCJY3A-10.000MHZ-F-SW application field and working principle
An oscillator is an electronic circuit that produces regular, periodic electronic signals. Oscillators are widely used in many electronic applications, and are often a crucial component in many types of electronic equipment. One such oscillator is the AOCJY3A-10.000MHZ-F-SW. This oscillator is designed for applications requiring low jitter, high frequency stability, and excellent phase noise performance. In this article, we will look at the application field and working principle of this oscillator.The AOCJY3A-10.000MHZ-F-SW oscillator is ideally suited for use in telecommunications and data communications applications. It is also suitable for use in instrumentation, consumer electronics, and industrial control applications. This oscillator provides excellent close-in phase noise performance, excellent jitter performance, and fast start-up time.In terms of working principle, this oscillator works according to the Pierce oscillator principle. In this principle, an electronic inverter is coupled with an LC resonant circuit. The LC resonant circuit is formed by an inductor connected in series with a capacitor and a resistor, which is placed in parallel with the capacitor. When a voltage signal is applied to one of the input terminals, an alternating voltage is induced in the LC resonant circuit. This alternating voltage is then applied to the other input terminal of the inverter, which in turn produces an inverted output signal. This output signal is then amplified and fed back to the input terminal, thus setting up an oscillating voltage. The Pierce oscillator produces a sinusoidal output waveform and is extremely stable. This stability is due to the fact that the inductor and capacitor values, coupled with the frequency of the oscillator, create a resonance at the resonance frequency. This ensures that the output signal remains consistent and does not vary with temperature or time.In addition to its Pierce oscillator design, the AOCJY3A-10.000MHZ-F-SW oscillator also features an external temperature compensation circuit. This circuit ensures that the oscillator remains stable over wide temperature ranges. Even on start up, this oscillator provides accurate and stable output signals. The AOCJY3A-10.000MHZ-F-SW oscillator is also equipped with an advanced phase-locked loop (PLL) circuit. This circuit ensures that the output signal is locked to a reference signal and maintains a constant frequency. This makes it ideal for use in telecommunications and data communications equipment, where accurate clock signals and phase synchronization are required. The AOCJY3A-10.000MHZ-F-SW oscillator can operate over a wide range of supply voltages and is highly efficient, which helps to extend the life of the oscillator. Moreover, it is highly reliable and provides superb performance over a wide range of operating temperatures. From the above, it is clear that the AOCJY3A-10.000MHZ-F-SW oscillator is an ideal solution for many telecommunications and data communications applications. Its simple but effective working principle, coupled with its advanced PLL and temperature compensation circuitry, ensures that it provides consistent and highly accurate output signals.The specific data is subject to PDF, and the above content is for reference
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