530FB10M0000DGR Allicdata Electronics
Allicdata Part #:

530FB10M0000DGR-ND

Manufacturer Part#:

530FB10M0000DGR

Price: $ 5.61
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Silicon Labs
Short Description: SINGLE FREQUENCY XO, OE PIN 2 (O
More Detail: 10MHz XO (Standard) LVDS Oscillator 2.5V Enable/Di...
DataSheet: 530FB10M0000DGR datasheet530FB10M0000DGR Datasheet/PDF
Quantity: 1000
250 +: $ 5.05454
Stock 1000Can Ship Immediately
$ 5.61
Specifications
Frequency Stability: ±20ppm
Current - Supply (Disable) (Max): 75mA
Height - Seated (Max): 0.071" (1.80mm)
Size / Dimension: 0.276" L x 0.197" W (7.00mm x 5.00mm)
Package / Case: 6-SMD, No Lead
Mounting Type: Surface Mount
Ratings: --
Current - Supply (Max): 98mA
Operating Temperature: -40°C ~ 85°C
Absolute Pull Range (APR): --
Series: Si530
Voltage - Supply: 2.5V
Output: LVDS
Function: Enable/Disable
Frequency: 10MHz
Type: XO (Standard)
Base Resonator: Crystal
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Oscillators are electrical circuits that generate repeating signals, and these signals are generated based on certain principles and calculations. 530FB10M0000DGR is one of such oscillator products, and in this article, we will discuss its application fields and working principles.

Application field of 530FB10M0000DGR

530FB10M0000DGR is a high-performance oscillator that is designed to offer superior tuning stability and frequency precision. As a result, this oscillator is ideal for applications that involve precision frequency control.

One of the most notable applications of 530FB10M0000DGR oscillators is in the rapidly expanding field of wireless and global positioning systems (GPS). 530FB10M0000DGR oscillators are highly accurate and can be used in applications such as automotive telematics, cellular phones, precision navigation, and other location-based services. 530FB10M0000DGR oscillators are also used in a variety of radar applications, including ground mapping radars, ground surveillance radars, and air traffic control radars.

In addition, 530FB10M0000DGR oscillators are extensively used in certain military and aerospace applications, such as missile guidance systems and satellite communication systems. They are also ideal for applications in the health care sector, such as ultra-sound imaging and medical instrumentation.

Working Principle of 530FB10M0000DGR

530FB10M0000DGR oscillator works on the principle of a free-running oscillator. In this type of oscillator, two or more components are used in combination in order to generate a continuous repetitive signal. The two components typically used in an oscillator are a capacitor and an inductor connected in series and driven by an external voltage source.

The 530FB10M0000DGR oscillator uses a combination of an oscillator transistor and a quartz crystal. A drive voltage is supplied to the crystal, which then produces an alternating current (AC) output. This alternating current is then amplified using a transistor and fed back to the crystal. This feedback increases the amplitude of the oscillation, and the frequency of the output is determined by the resonant frequency of the quartz crystal.

The 530FB10M0000DGR oscillator is optimized for low power consumption and improved frequency stability. The frequency stability is achieved by using an oscillator circuit with a low phase-noise characteristic and a low amplitude temperature coefficient. This ensures that the frequency of the output signal is very accurately maintained even in varying temperature and humidity conditions.

In conclusion, 530FB10M0000DGR is a highly sophisticated oscillator product that offers superior tuning stability and frequency precision. It is ideal for a variety of applications involving precision frequency control, such as automotive telematics, cellular phones, precision navigation, ground mapping radars, ground surveillance radars, air traffic control radars, missile guidance systems, and satellite communication systems. The oscillator works on the principle of a free-running oscillator, and its frequency stability is achieved by using an oscillator circuit with a low phase-noise characteristic and a low amplitude temperature coefficient.

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

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