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

1.0MHZCFPT-9051AC1CLF

产品描述HCMOS Output Clock Oscillator, 1MHz Nom, LEAD FREE, SMD, 6 PIN
产品类别无源元件    振荡器   
文件大小62KB,共4页
制造商C-MAC Automotive
官网地址https://cmac.com
标准
下载文档 详细参数 全文预览

1.0MHZCFPT-9051AC1CLF概述

HCMOS Output Clock Oscillator, 1MHz Nom, LEAD FREE, SMD, 6 PIN

1.0MHZCFPT-9051AC1CLF规格参数

参数名称属性值
是否无铅不含铅
是否Rohs认证符合
Reach Compliance Codeunknown
其他特性TRI-STATE; ENABLE/DISABLE FUNCTION
老化1 PPM/FIRST YEAR
最大控制电压4.5 V
最小控制电压0.5 V
最长下降时间7 ns
频率调整-机械NO
频率稳定性0.3%
制造商序列号CFPT-9051
安装特点SURFACE MOUNT
标称工作频率1 MHz
最高工作温度70 °C
最低工作温度
振荡器类型HCMOS
输出负载15 pF
物理尺寸14.7mm x 9.2mm x 6.2mm
最长上升时间7 ns
最大供电电压5.5 V
最小供电电压4.5 V
标称供电电压5 V
表面贴装YES
最大对称度45/55 %
Base Number Matches1

文档预览

下载PDF文档
CFPT-9050 Series
ISSUE 6 ; 23 DECEMBER 2004
Recommended for New Designs
Delivery Options
Frequency Stability
Temperature: see table
Typical Supply Voltage Variation ±10% < ±0.2 ppm*
Typical Load Coefficient 15pF ±5pF < ±0.2 ppm*
Please contact our sales office for current leadtimes
Description
* Depending on frequency and output type
Frequency Adjustment
A highly versatile series of surface mountable
14.7 x 9.2 x 6.2mm temperature compensated voltage
controlled crystal oscillators (TCVCXOs) for applications
where small size and high performance are pre-
requisites. This oscillator uses C-MAC’s latest custom
ASIC "Pluto", a single chip oscillator and analogue
compensation circuit, capable of sub 0.3 ppm
performance. Its wide frequency range, operating
temperature range, drive capability, coupled with its
high stability and linear frequency pulling make it the
ideal reference oscillator. Its ability to function down to
a supply voltage of 2.4V and low power consumption
makes it particularly suitable for mobile applications
Three options with external Voltage Control applied to
pad 1:
A - Ageing adjustment: > ±5ppm (Standard Option)
B - No frequency adjustment. Initial calibration @ 25°C
< ±0.5 ppm
C - High Pulling ±10ppm to ±50ppm can be available
depending on frequency and stability options.
Please consult our sales office
Linearity
Slope
Input resistance
Modulation bandwidth
Standard control voltage ranges:
Without reference voltage
Without reference voltage
With reference voltage
< 1%
Positive
> 100kΩ
> 2kHz
Standard Frequencies
9.6, 10.0, 12.8, 19.44, 20.0, 38.88, 49.152, 51.84MHz
Waveform
SURFACE MOUNT
TCXOs
Square HCMOS 15pF load
Square ACMOS 50pF max. load
Sinewave 10kΩ // 10pF AC-coupled
,
Clipped sinewave 10kΩ // 10pF AC-coupled
,
- Vs=5.0V 2.5V±2V
- Vs=3.3V 1.65V±1V
- Vc=0V to Vref
Reference Voltage, Vref (HCMOS/ACMOS only)
Supply Voltage
Optional reference voltage output on pad 5, suitable for
potentiometer supply or DAC reference.
1. No output (standard option)
2. 2.2V, for Min. Vs>2.4V
3. 2.7V, for Min. Vs>3.0V
4. 4.2V, for Min. Vs>4.5V
Maximum load current (mA) = Vref /10
Operating range 2.4 to 6.0V, see table
Current Consumption
HCMOS Typically
1+Frequency(MHz)*Supply(V)*{Load(pF)+15}*10
-3
mA
e.g. 20MHz, 5V, 15pF
4mA
ACMOS Typically
1+Frequency(MHz)*Supply(V)*{Load(pF)+23}*10
-3
mA
Sinewave, 6 to 12 mA depending on frequency
Clipped Sinewave, Typically
1+Frequency(MHz)*1.2*{Load(pF)+30}*10
-3
mA
For manual frequency adjustment (HCMOS/ACMOS output
only) connect an external 50kΩ potentiometer between
pad 5 (Reference Voltage) and pad 3 (GND) with wiper
connected to pad 1 (Voltage Control). Please specify
reference voltage as a part of the ordering code
Note: Please contact our sales office if a reference voltage
is required in combination with sine or clipped sinewave
output
Tri-state
Package Outline
14.7 x 9.2 x 6.2mm SMD
Ageing
Pad 2 open circuit or >0.6Vs output enabled
< 0.2Vs Tri-state
When Tri-stated, the output stage is disabled for all
output options, but the oscillator and compensation
circuit are still active (current consumption <1mA)
±1ppm maximum in first year
±3ppm maximum for 10 years
±1ppm maximum after reflow
Europe Tel: +44 (0)1460 270200
Americas Tel: +1 919 941 9333
Asia
Tel: +86 755 8826 5991
Fax: +44 (0)1460 72578
Fax: +1 919 941 9371
Fax: +86 755 8826 5990
Website: www.cmac.com
推挽电路
要介绍推挽电路,首先介绍功放的一些基本知识。从能量控制的观点看,功放电路和电压放大电路没有本质区别,但后者的要求是使负载得到不失真的电压信号,而前者的要求是获得一定的不失真的输出功 ......
灞波儿奔 模拟与混合信号
一款单片机实验板的原理图
一款单片机实验板原理图,有很多值得参考的地方。有刚学单片机的想自己动手做一块实验板的可以借鉴一下。...
terrykgm 单片机
FPGA内存控制
两个摄像头同时采集写入内存,然后一起到vga显示,但是图像的交错的,各位大神看看是什么原因呢,谢谢114088 Sdram_Control_4Port u8 ( // HOST Side .REF_CLK(CLOCK_50), .RESET_N( ......
guolonghui FPGA/CPLD
EEWORLD大学堂----德州仪器工业周 - 高效率小尺寸双向DC-DC变换器设计
德州仪器工业周 - 高效率小尺寸双向DC-DC变换器设计:https://training.eeworld.com.cn/course/4018...
hi5 聊聊、笑笑、闹闹
都是DP惹的祸
本帖最后由 dontium 于 2016-3-13 16:10 编辑 引子: 用C28 的CPU编程,为了节省CPU开消,提高速度,在关键部位使用汇编编程,有个ADC中断,就使用了汇编。 ......
dontium 微控制器 MCU
高速PCB布线实践指南
高速PCB布线有很多方面的问题,关于这个题目已有人撰写了大量的文献。本文主要从实践的角度来探讨高速电路的布线问题。主要目的在于帮助新用户当设计高速电路PCB布线时对需要考虑的多种不同问题 ......
风亦路 PCB设计

 
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: 1266  442  2544  48  1773  25  58  27  41  24 

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