电子工程世界电子工程世界电子工程世界

关键词

搜索

型号

搜索

SIT1602BI-82-18E-28.636300X

产品描述-40 TO 85C, 7050, 25PPM, 1.8V, 2
产品类别无源元件   
文件大小975KB,共17页
制造商SiTime
标准
下载文档 全文预览

SIT1602BI-82-18E-28.636300X概述

-40 TO 85C, 7050, 25PPM, 1.8V, 2

文档预览

下载PDF文档
SiT1602B
Low Power, Standard Frequency Oscillator
Features
Applications
52 standard frequencies between 3.57 MHz and 77.76 MHz
100% pin-to-pin drop-in replacement to quartz-based XO
Excellent total frequency stability as low as ±20 ppm
Operating temperature from -40°C to 85°C. For 125°C and/or
-55°C options, refer to
SiT1618, SiT8918, SiT8920
Low power consumption of 3.5 mA typical at 1.8V
Standby mode for longer battery life
Fast startup time of 5 ms
LVCMOS/HCMOS compatible output
Industry-standard packages: 2.0 x 1.6, 2.5 x 2.0, 3.2 x 2.5,
5.0 x 3.2, 7.0 x 5.0 mm x mm
Instant samples with
Time Machine II
and
Field Programmable
Oscillators
Ideal for DSC, DVC, DVR, IP CAM, Tablets, e-Books,
SSD, GPON, EPON, etc
Ideal for high-speed serial protocols such as: USB,
SATA, SAS, Firewire, 100M / 1G / 10G Ethernet, etc.
RoHS and REACH compliant, Pb-free, Halogen-free and
Antimony-free
For AEC-Q100 oscillators, refer to
SiT8924
and
SiT8925
Electrical Characteristics
All Min and Max limits are specified over temperature and rated operating voltage with 15 pF output load unless otherwise
stated. Typical values are at 25°C and nominal supply voltage.
Table 1. Electrical Characteristics
Parameters
Output Frequency Range
Symbol
f
Min.
Typ.
Max.
Unit
Condition
Refer to
Table 13
for the exact list of supported frequencies
Frequency Range
52 standard frequencies between
MHz
3.57 MHz and 77.76 MHz
-20
-25
-50
-20
-40
1.62
2.25
2.52
2.7
2.97
2.25
45
90%
Frequency Stability
F_stab
Frequency Stability and Aging
+20
ppm
Inclusive of initial tolerance at 25°C, 1st year aging at 25°C,
and variations over operating temperature, rated power
+25
ppm
supply voltage and load.
+50
ppm
Operating Temperature Range
+70
°C
Extended Commercial
+85
°C
Industrial
Supply Voltage and Current Consumption
1.8
1.98
V
Contact
SiTime
for 1.5V support
2.5
2.75
V
2.8
3.08
V
3.0
3.3
V
3.3
3.63
V
3.63
V
3.8
4.5
mA
No load condition, f = 20 MHz, Vdd = 2.8V to 3.3V
3.7
4.2
mA
No load condition, f = 20 MHz, Vdd = 2.5V
3.5
4.1
mA
No load condition, f = 20 MHz, Vdd = 1.8V
4.2
mA
Vdd = 2.5V to 3.3V, OE = GND, Output in high-Z state
4.0
mA
Vdd = 1.8 V. OE = GND, Output in high-Z state
2.6
4.3
ST = GND, Vdd = 2.8V to 3.3V, Output is weakly pulled down
̅ ̅̅
A
1.4
2.5
ST = GND, Vdd = 2.5V, Output is weakly pulled down
̅ ̅̅
A
0.6
1.3
ST = GND, Vdd = 1.8V, Output is weakly pulled down
̅ ̅̅
A
LVCMOS Output Characteristics
1
1.3
55
2
2.5
2
%
ns
ns
ns
Vdd
All Vdds. See Duty Cycle definition in
Figure 3
and
Footnote 6
Vdd = 2.5V, 2.8V, 3.0V or 3.3V, 20% - 80%
Vdd =1.8V, 20% - 80%
Vdd = 2.25V - 3.63V, 20% - 80%
IOH = -4 mA (Vdd = 3.0V or 3.3V)
IOH = -3 mA (Vdd = 2.8V and Vdd = 2.5V)
IOH = -2 mA (Vdd = 1.8V)
IOL = 4 mA (Vdd = 3.0V or 3.3V)
IOL = 3 mA (Vdd = 2.8V and Vdd = 2.5V)
IOL = 2 mA (Vdd = 1.8V)
Operating Temperature Range
T_use
Supply Voltage
Vdd
Current Consumption
Idd
OE Disable Current
Standby Current
I_OD
I_std
Duty Cycle
Rise/Fall Time
DC
Tr, Tf
Output High Voltage
VOH
Output Low Voltage
VOL
10%
Vdd
Rev 1.04
January 30, 2018
www.sitime.com
EEWORLD大学堂----直播回放 : TI 最新 C2000 实时控制器,在功率变换应用中实现高性能的成本优化型设计
直播回放 : TI 最新 C2000 实时控制器,在功率变换应用中实现高性能的成本优化型设计:https://training.eeworld.com.cn/course/5641...
hi5 单片机
[转]参考设计:启用因特网功能的 3D 打印机运动控制器参考设计
启用因特网功能的 3D 打印机运动控制器参考设计地址:http://www.ti.com.cn/tool/cn/tidep0007 142918 描述 这款开源 3D 打印机运动控制器设计可将 BeagleBone Black 连接到 3D 打印机,从 ......
蓝雨夜 DSP 与 ARM 处理器
分享几篇有意思的电源博文给大家
电池管理技术的前世今生 222896 生活在科技完善的今日,我们很容易忘记我们几年前那种“原始”的生活状态。那时候我们还会使用电话薄、纸质车票和DVD播放器等过气的产品。如果说电子产品的出 ......
eric_wang TI技术论坛
EEWORLD下载中心精品资源推荐--学习UCOS必看的三本书
本帖最后由 tiankai001 于 2015-6-29 23:19 编辑 忽然看到论坛里有关于推荐学习UCOS II的一个好帖子(https://bbs.eeworld.com.cn/thread-312978-1-1.html)。 这么好的资源,一定要放到 ......
tiankai001 下载中心专版
拼搏,只是为了那一道亮丽的风景
清晨的操场上面,一群老爷爷老奶奶,或三五成群,或独立奔行,或者慢跑,或者悠闲散步。其间,也有很多年轻人在努力奔跑着,不断前行,不断想超越自己。如果你注意看,你会发现有个很小的女孩 ......
njlianjian 聊聊、笑笑、闹闹
基于DSP和CPLD技术的多路ADC系统的设计
作者:西安电子科技大学通信工程学院 林成保 刘彦明随着现代电子技术的应用和发展,数字信号处理的内容日益复杂,而ADC是实现从模拟到数字转换的一个必然过程。针对这种情况,利用数字信号处理 ......
fighting 分立器件

 
EEWorld订阅号

 
EEWorld服务号

 
汽车开发圈

 
机器人开发圈

About Us 关于我们 客户服务 联系方式 器件索引 网站地图 最新更新 手机版

站点相关: 大学堂 TI培训 Datasheet 电子工程 索引文件: 2629  1503  1542  2832  2269  53  31  32  58  46 

器件索引   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

北京市海淀区中关村大街18号B座15层1530室 电话:(010)82350740 邮编:100190

电子工程世界版权所有 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号 Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved