SIT1602AC-12-18E-26.000000

设备Type LVCMOS振荡器
Frequency
26 MHz
频率稳定性(PPM)
25
Operating Temp. Range (°C)
-20 to 70
输出类型
LVCMOS
电源电压(V)
1.80
Package Size (mm x mm)
2.5x2.0
Package Height (mm)
0.75
Output Drive Strength*
Default
Feature Pin
Output Enable
Pull Range (PPM PR)
n/a
传播百分比
n/a
摆动选择
n/a
DC-Coupled Output VOL or AC Swing
n/a
直流耦合输出voh
n/a
rohs.
Yes
Comment
Not recommended for new designs, use SiT1602BC-12-18E-26.000000D

*See datasheet for details

磁带和卷轴选项

D = 3,000 ct
E = 1,000
G = 250 ct

可配置功能集

  • 52 standard frequencies
  • Stability from ±20 ppm to ±50 ppm
  • 工业或商业临时延长。
  • 1.8 V,2.5 V至3.3 V,或1.8 V至3.3 V电源电压:
  • Customize specification for optimal system performance
  • 使用相同的基础设备,以减少资格需求的许多设计;

用于所有频率,电压和稳定性的小型2016和2520套餐

  • Save more board space without compromising performance and availability;

Low power consumption

  • 1.2 µA typical standby current (1.8 V)
  • 3.6 mA typical active current (1.8 V):
  • Extends battery life in portable applications
  • 降低绿色系统的功耗;

FlexEdge™ configurable drive strength

  • Slower rise/fall time that minimizes EMI from the oscillator
  • Saves cost by driving multiple loads and eliminate additional timing components;

超快速的交换时间(4至6周)

  • Reduce inventory overhead
  • 减轻短缺风险

  • 数字静态摄像机(DSC)
  • Digital camcorders
  • Portable media players (PMP)
  • 移动电视调谐器(便携式电视,CMME,DMB等)
  • Portable storage devices
  • 便携式导航设备(PND)中的音频和处理器时钟
  • IP Cam.
  • DVR
  • FM模块
  • 移动电话中的非基带时钟(相机模块,多媒体芯片组等)
  • 便携式游戏设备
  • Other handheld applications (eePC, portable test equipment, etc.)
  • Retail electronics

狭窄:

电动汽车al Boards联系Silime.-SiT6095 (2016) | SiT6081 (2520) | SiT6082 (3225) | SiT6083 (5032) | SiT6084 (7050)

Reliability Calculator-获取适合/ MTBF数据以进行各种操作条件

Time Machine II Programmer-Program frequency, voltage, stability & more

Frequency Slope (dF/dT) Calculator- 计算频率斜率超过温度

2016年4针|2520 4-Pins|3225 4针|5032 4针|7050 4-Pins- 预览包装QFN.3D step models

狭窄:

资源名称 Type
SIT1602 3.57MHz LVCMOS. 弗里克。测试报告
SIT1602 4.096MHz LVCMOS. 弗里克。测试报告
SiT1602 4MHz LVCMOS 弗里克。测试报告
SiT1602 7.3728MHz LVCMOS 弗里克。测试报告
SiT1602 8.192MHz LVCMOS 弗里克。测试报告
SiT1602 10MHz LVCMOS 弗里克。测试报告
SiT1602 12MHz LVCMOS 弗里克。测试报告
SIT1602 18.432MHz LVCMOS. 弗里克。测试报告
SIT1602 19.2MHz LVCMOS. 弗里克。测试报告
SIT1602 24.576MHz LVCMOS. 弗里克。测试报告
SiT1602 24MHz LVCMOS 弗里克。测试报告
SIT1602 25.000625MHz LVCMOS. 弗里克。测试报告
SiT1602 25MHz LVCMOS 弗里克。测试报告
SIT1602 26MHz LVCMOS. 弗里克。测试报告
SiT1602 28.6363MHz LVCMOS 弗里克。测试报告
SiT1602 30MHz LVCMOS 弗里克。测试报告
SIT1602 31.25MHz LVCMOS. 弗里克。测试报告
SiT1602 32.768MHz LVCMOS 弗里克。测试报告
SIT1602 33.3MHz LVCMOS. 弗里克。测试报告
SIT1602 33.33MHz LVCMOS. 弗里克。测试报告
SIT1602 33.333MHz LVCMOS. 弗里克。测试报告
SiT1602 33.3333MHz LVCMOS 弗里克。测试报告
SiT1602 33.33333MHz LVCMOS 弗里克。测试报告
SiT1602 33MHz LVCMOS 弗里克。测试报告
SIT1602 37.5MHz LVCMOS. 弗里克。测试报告
SiT1602 38.4MHz LVCMOS 弗里克。测试报告
SiT1602 38MHz LVCMOS 弗里克。测试报告
SiT1602 40MHz LVCMOS 弗里克。测试报告
SiT1602 48MHz LVCMOS 弗里克。测试报告
SIT1602 50MHz LVCMOS. 弗里克。测试报告
SIT1602 54MHz LVCMOS. 弗里克。测试报告
SIT1602 60MHz LVCMOS. 弗里克。测试报告
SIT1602 62.5MHz LVCMOS. 弗里克。测试报告
SIT1602 65MHz LVCMOS. 弗里克。测试报告
SiT1602 66.6MHz LVCMOS 弗里克。测试报告
SIT1602 66.66MHz LVCMOS. 弗里克。测试报告
SIT1602 66.666MHz LVCMOS. 弗里克。测试报告
SIT1602 66.6666MHz LVCMOS. 弗里克。测试报告
SiT1602 66.66666MHz LVCMOS 弗里克。测试报告
SiT1602 66MHz LVCMOS 弗里克。测试报告
SIT1602 72MHz LVCMOS. 弗里克。测试报告
SiT1602 74.25MHz LVCMOS 弗里克。测试报告
SiT1602 74.176MHz LVCMOS 弗里克。测试报告
SIT1602 74.175824MHz LVCMOS. 弗里克。测试报告
SiT1602 77.76MHz LVCMOS 弗里克。测试报告
SIT1602(LVCMOS,1.8 V) IBIS Models
SiT1602 (LVCMOS, 2.5 V) IBIS Models
SIT1602(LVCMOS,2.8 V) IBIS Models
SiT1602 (LVCMOS, 3.0 V) IBIS Models
SIT1602(LVCMOS,3.3 V) IBIS Models
SiT1602 (LVCMOS, 2.5 to 3.3 V continuous) IBIS Models
硅MEMS可靠性和弹性 Presentations
Performance Comparison: Silicon MEMS Verses Quartz Oscillators Presentations
Optimize System Performance with Low Power MEMS Oscillators Presentations
How to Measure Clock Jitter in Precision Timing Applications Presentations
How to Measure Phase Jitter and Phase Noise in Precision Timing Applications Presentations
How to Get Instant Oscillators with SiTime's New Field Programmer Presentations
Silicon MEMS vs Quartz Supply Chain Presentations
电力意识和更环保应用的时钟功能 White Papers
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MEMS定时解决方案改进触摸屏设备 White Papers
Field Programmable Timing Solutions for Medical Applications White Papers
MEMS定时技术:破碎石英时机的约束来改进智能移动设备 White Papers
Ultra-robust MEMS timing solutions improve performance and reliability in meter applications White Papers
MEMS振荡器在电机控制应用中提高可靠性和系统性能 White Papers
MEMS-Based Resonators and Oscillators are Now Replacing Quartz Presentations
与MEMS联系:机电接口 Presentations
Field Programmable Oscillators Datasheet 数据表
SIT1602数据表 数据表
时间机器II MEMS振荡器编程器 Product Briefs
J-AN10002シングルエンドシングルエンド器材のの推奨方法 Application Notes
AN10002 Termination Recommendations for Single-ended Oscillator Driving Single or Multiple Loads Application Notes
J-AN10006 発振器のPCBデザインのガイドライン Application Notes
AN10006最佳设计和布局实践 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
SiTime発振器の信頼性計算方法 Technology Papers
AN10025 Reliability Calculations for SiTime Oscillators Application Notes
J-AN10028プローブプローブ使使使しししたのの波形波形计测方法 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
基于MEMS和石英振荡器的电磁敏感性比较 Technology Papers
MEMS発振器材と水晶仪器のの比较(耐冲撃と移动) Technology Papers
基于MEMS和石英振荡器的冲击和振动比较 Technology Papers
J-AN10033 発振器の周波数測定ガイドライン Application Notes
AN10033振荡器频率测量指南 Application Notes
シリコンMEMS発振器材のおよび函数性 Technology Papers
Resilience and Reliability of Silicon MEMS Oscillators Technology Papers
SITIMEのMEMS FIRST™プロセス技术 Technology Papers
stime的MEMS First™和Episeal™流程 Technology Papers
The top 8 reasons to use an oscillator instead of a crystal resonator White 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
SIT1618(LVCMOS,2.5 V) IBIS Models
AN10052 IEEE 1588 Precision Time Protocol (PTP) in ITU-T Standards 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 视频
PCI使用相位噪声分析仪表达REFCLK抖动符合性 Presentations
Advantages of MEMS Timing - Parameters 视频
SINIME MEMS振荡器 - 彻底改变定时市场 视频
SiTime's Time Machine II - Part 1: How to Install Oscillator Programming Software 视频
环境机器II - 第2部分:如何编程现场可编程振荡器 视频
Training Module: Replacing Crystals with Oscillators 视频
QFN 2016 4-PINS 3D步骤模型
QFN.2520 4-Pins 3D步骤模型
QFN.3225 4针 3D步骤模型
QFN.5032 4针 3D步骤模型
qfn 7050 4-pins 3D步骤模型
SiTime MEMS Timing Solutions (8.5x11) Brochures/Fliers
SITIME MEMS定时解决方案(A4) Brochures/Fliers
SITIME MEMS定时解决方案(A4)Chinese Brochures/Fliers
硅替换石英(日本字幕) 视频
硅取代石英(中文字幕) 视频
SiTime MEMS First 工艺 Technology Papers
AN10073 How to Setup a Real-time Oscilloscope to Measure Jitter Application Notes
AN10071计算领带电信应用因素 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