531FC250M000DGR Allicdata Electronics
Allicdata Part #:

531FC250M000DGR-ND

Manufacturer Part#:

531FC250M000DGR

Price: $ 16.54
Product Category:

Crystals, Oscillators, Resonators

Manufacturer: Silicon Labs
Short Description: OSC XO 250.000MHZ LVDS SMD
More Detail: 250MHz XO (Standard) LVDS Oscillator 2.5V Enable/D...
DataSheet: 531FC250M000DGR datasheet531FC250M000DGR Datasheet/PDF
Quantity: 1000
250 +: $ 14.88590
Stock 1000Can Ship Immediately
$ 16.54
Specifications
Frequency Stability: ±7ppm
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
Series: Si531
Voltage - Supply: 2.5V
Output: LVDS
Function: Enable/Disable
Frequency: 250MHz
Type: XO (Standard)
Base Resonator: Crystal
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Oscillators are electronic circuits that generate a repeating waveform - typically a sine, square, sawtooth or triangle wave - to produce a harmonic frequency. The 531FC250M000DGR, a type of digital oscillator, falls under this category. It uses the latest micro chip design and provides a stable, reliable operating frequency with excellent phase noise and jitter performance. This oscillator is used in a range of applications, from telecom to industrial and can also be used as a frequency reference for clocking sources.

The 531FC250M000DGR oscillator is a high-frequency oscillator based on digital frequency synthesizing technology. It combines a low-power transceiver IC, a PLL synthesizer IC and a high-precision, low-jitter voltage-controlled oscillator (VCO). It has wide tuning range (0.1MHz~250MHz) and high-frequency stability. Its integrated circuit chip is composed of a microprocessor, a non-volatile memory, an analog-digital converter, a phase-lock loop synthesizer, and appropriate logic. This combination allows the oscillator to control frequency more accurately over a wide frequency range, as well as providing excellent noise, jitter, and temperature performance specially suitable for high-performance applications

In terms of its working principle, the 531FC250M000DGR oscillator is operated by the phase-lock loop (PLL). The PLL is made up of two main blocks; the frequency synthesizer (FS) and the voltage controlled oscillator (VCO). The frequency synthesizer has various programmable parameters such as the oscillator frequency and its associated reference frequency, which is used to calculate the duty cycle of the output signal. The VCO is the component that actually generates the output signal. The output signal is then fed back to the frequency synthesizer, where it is compared to the reference signal. If there is a mismatch, the frequency synthesizer adjusts the duty cycle of the signal accordingly to bring it into alignment with the reference.

The 531FC250M000DGR oscillator is widely used in applications such as Base Station Synchronization, RFID, Test and Measurement, Communications, Radar, Medical, and Automotive. For example, its excellent frequency stability over temperature, phase noise and jitter characteristics ensures reliable system performance in Base Station Synchronization. In Radio Frequency Identification (RFID), it is used as a local oscillator in the carrier signal, as well as being used in Radar systems because of its superior performance.

It also finds application in the medical and automotive fields. For instance, in medical imaging systems, the 531FC250M000DGR oscillator helps to ensure precise frequency synchronization of various devices, and can also be used in automotive applications for actuator synchronization.

In conclusion, the 531FC250M000DGR digital oscillator is a highly efficient, reliable, and stable device that is suitable for various applications and is widely used in telecom, industrial, medical, and automotive industries. Its unique working principle of phase-lock loop synthesis makes it an ideal choice for applications that require high-frequency stability and low-jitter signals in real-time.

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

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