坐3922AI-2CF-33NM500.000000

Device Type Digitally Controlled Oscillators
Frequency
500 MHz
Frequency Stability (ppm)
10
Operating Temp. Range (°C)
-40 to 85
Output Type
LVDS
Supply Voltage (V)
3.30
Package Size (mm x mm)
5.0x3.2
Package Height (mm)
0.75
Output Drive Strength*
Default
Feature Pin
n/a
Pull Range (PPM PR)
25
Spread Percentage
n/a
Swing Select
n/a
DC-Coupled Output VOL or AC Swing
n/a
DC-Coupled Output VOH
n/a
RoHS
Yes

*See datasheet for details

Tape & Reel Options

T = 3,000 ct
X = 1,500 ct
Y = 250 ct
  • Digitally controlled 1 ppb frequency pull resolution
  • Frequency from 220 MHz to 625 MHz
  • Supply voltage of 1.8 V; 2.5 V to 3.3 V
  • Frequency stability from ±10 ppm to ±50 ppm
  • Pull range from ±25 ppm to ±1600 ppm:
  • Eliminating a need for external DAC
  • Customized specification for optimal system performance
  • Easy availability of any device specifications within the operating range

One-wire digital frequency tuning

  • Simpler loop control in software controlled system PLL
  • More consistent PLL bandwidth over operating range
  • Faster calibration and lock time
  • Reduction of modulation harmonics;

Three industry-standard packages

  • Minor modification to existing design using VCXO to adopt the DCXO;

4 to 6 weeks lead time

  • Reduce inventory overhead
  • Mitigate shortage risks

  • Networking and communication gears
  • Networked video systems and digitizers
  • Jitter cleaner
  • Networked audio systems
  • Instrumentation
  • Low-bandwidth analog phase locked loop (PLL)
  • FPGA data recovery

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Evaluation Boards(Contact SiTime)– SiT6097 (3225) | SiT6086 (5032) | SiT6085 (7050)

Reliability Calculator– Get FIT/MTBF data for various operating conditions

Frequency Slope (dF/dT) Calculator– Calculate frequency slope over temperature

QFN 3225 6-Pins|QFN 5032 6-Pins|QFN 7050 6-Pins– Preview packages with QFN3D step models

Narrow By:

Resource Name Type
Silicon MEMS Reliability and Resilience Presentations
Performance Comparison: Silicon MEMS Verses Quartz Oscillators Presentations
如何测量精密计时的时钟抖动美联社plications Presentations
How to Measure Phase Jitter and Phase Noise in Precision Timing Applications Presentations
Silicon MEMS vs Quartz Supply Chain Presentations
MEMS-Based Resonators and Oscillators are Now Replacing Quartz Presentations
Getting In Touch with MEMS: The Electromechanical Interface Presentations
坐3922 Datasheet Datasheets
J-AN10006 発振器のPCBデザインのガイドライン Application Notes
AN10006 Best Design and Layout Practices Application Notes
AN10007 Clock Jitter Definitions and Measurement Methods Application Notes
J-AN10007 クロックジッタの定義と測定方法 Application Notes
坐ime発振器の信頼性計算方法 Technology Papers
AN10025 Reliability Calculations for SiTime Oscillators Application Notes
J-AN10028 プローブを使用した発振器の出力波形計測方法 Application Notes
AN10028 Probing Oscillator Output Application Notes
MEMSおよび水晶ベース発振器の電磁場感受率の比較 Technology Papers
Electromagnetic Susceptibility Comparison of MEMS and Quartz-based Oscillators Technology Papers
MEMS発振器と水晶発振器の性能比較(耐衝撃と耐振動) Technology Papers
Shock and Vibration Comparison of MEMS and Quartz-based Oscillators Technology Papers
J-AN10033 発振器の周波数測定ガイドライン Application Notes
AN10033 Frequency Measurement Guidelines for Oscillators Application Notes
シリコンMEMS発振器の耐性および信頼性 Technology Papers
Resilience and Reliability of Silicon MEMS Oscillators Technology Papers
坐imeの MEMS First™ プロセス技術 Technology Papers
坐ime's MEMS First™ and EpiSeal™ Processes Technology Papers
MEMS Resonator Advantages - How MEMS Resonators Work Part 2 Presentations
How to Measure Long-term Jitter and Cycle-to-cycle Jitter in Precision Timing Applications Presentations
Silicon MEMS Oscillator Frequency Characteristics and Measurement Techniques Presentations
AN10052 IEEE 1588 Precision Time Protocol (PTP) in ITU-T Standards Application Notes
AN10029 Output Terminations for Differential Oscillators Application Notes
SC-AN10007 时钟抖动定义与测量方法 Application Notes
SC-AN10033 振荡器频率测量指南 Application Notes
AN10062 Phase Noise Measurement Guide for Oscillators Application Notes
Phase Noise Measurement Tutorial Videos
PCI Express Refclk Jitter Compliance using a Phase Noise Analyzer Presentations
Advantages of MEMS Timing - Parameters Videos
坐ime MEMS Oscillators - Revolutionizing the Timing Market Videos
坐ime's Time Machine II - Part 1: How to Install Oscillator Programming Software Videos
坐ime's Time Machine II - Part 2: How to Program Field Programmable Oscillators Videos
QFN 3225 6-Pins 3D Step Models
QFN 5032 6-Pins 3D Step Models
QFN 7050 6-Pins 3D Step Models
坐ime MEMS Timing Solutions (8.5x11) Brochures/Fliers
坐ime MEMS Timing Solutions (A4) Brochures/Fliers
坐ime MEMS Timing Solutions (A4) Chinese Brochures/Fliers
Silicon Replaces Quartz (Japanese Subtitles) Videos
Silicon Replaces Quartz (Chinese Subtitles) Videos
坐ime MEMS First 工艺 Technology Papers
AN10073 How to Setup a Real-time Oscilloscope to Measure Jitter Application Notes
AN10071 Computing TIE Crest Factors for Telecom Applications Application Notes
AN10070 Computing TIE Crest Factors for Non-telecom Applications Application Notes
AN10072 Determine the Dominant Source of Phase Noise, by Inspection Application Notes
AN10074 Removing Oscilloscope Noise from RMS Jitter Measurements Application Notes