Allicdata Part #: | 510CCA32M9800AAG-ND |
Manufacturer Part#: |
510CCA32M9800AAG |
Price: | $ 2.37 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Silicon Labs |
Short Description: | SINGLE FREQUENCY XO, OE PIN 2 (O |
More Detail: | 32.98MHz XO (Standard) CMOS Oscillator 3.3V Enable... |
DataSheet: | 510CCA32M9800AAG Datasheet/PDF |
Quantity: | 1000 |
50 +: | $ 2.13230 |
Frequency Stability: | ±20ppm |
Current - Supply (Disable) (Max): | 18mA |
Height - Seated (Max): | 0.071" (1.80mm) |
Size / Dimension: | 0.276" L x 0.197" W (7.00mm x 5.00mm) |
Package / Case: | 4-SMD, No Lead |
Mounting Type: | Surface Mount |
Ratings: | -- |
Current - Supply (Max): | 26mA |
Operating Temperature: | -40°C ~ 85°C |
Absolute Pull Range (APR): | -- |
Series: | Si510 |
Voltage - Supply: | 3.3V |
Output: | CMOS |
Function: | Enable/Disable |
Frequency: | 32.98MHz |
Type: | XO (Standard) |
Base Resonator: | Crystal |
Part Status: | Active |
Packaging: | Strip |
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The 510CCA32M9800AAG oscillator is a type of active component that produces an output signal based on a reference frequency. It is designed to generate a frequency signal, which is intended for use in a variety of different applications, such as broadcasting, communications and radar systems. The oscillator is capable of operating at a range of frequencies, and can be adjusted to produce a specific output frequency.
The oscillator operates by taking a reference frequency, either from an external source or from an internal oscillator, and outputting a signal with a frequency that is some predetermined multiple of that reference. The 510CCA32M9800AAG oscillator has a variable frequency range, allowing for flexibility in frequency management. The oscillator is designed to minimize signal distortion and other potential errors.
The 510CCA32M9800AAG oscillator is often used in radio-frequency applications, such as in the development of radio-frequency and microwave circuits. It is also commonly used in radar systems, which use oscillators to produce the necessary frequencies for remote sensing and tracking. In addition, the oscillator can be used for communication systems, including mobile and satellite communications.
The 510CCA32M9800AAG oscillator has a variety of features that make it well-suited for use in a variety of different applications. It has a high frequency stability, meaning that the output frequency remains very consistent with minimal drift over time, and it is also designed to be highly resistant to environmental factors such as temperature and humidity changes. Additionally, the oscillator is designed to be very energy-efficient and produces minimal noise.
The 510CCA32M9800AAG oscillator is typically used in combination with other components to create a larger circuit. The components that it is used with depend on the application that it is being used for. For example, in broadcasting and communication systems, the oscillator is often used in combination with a frequency amplifier and power supply. In radar systems, the oscillator may be used in combination with a frequency synthesizer and a control system.
The working principle of the 510CCA32M9800AAG oscillator is relatively simple. For each cycle of an oscillation, the reference frequency is monitored and the output frequency is then adjusted based on the difference between the reference frequency and the desired frequency. This adjustment is done by switching off and then switching on specific transistors. This same cycle is repeated in order to keep the output frequency stable within the desired range.
In conclusion, the 510CCA32M9800AAG oscillator is a versatile device that is designed for use in a variety of applications. It uses an adjustable frequency output and is designed to minimize signal distortion and other potential errors. The oscillator is designed to be highly resistant to environmental factors and produces minimal noise. It is typically used in combination with other components to create a larger circuit, depending on the application. The working principle of the oscillator is relatively simple, and the output frequency is adjusted by switching off and switching on specific transistors.
The specific data is subject to PDF, and the above content is for reference
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