EEWORLDEEWORLDEEWORLD

Part Number

Search

MO2019AE5-CUH-30E0-01230219990Y

Description
LVCMOS Output Clock Oscillator, 123.021999MHz Nom, SOT23-5
CategoryPassive components    oscillator   
File Size604KB,12 Pages
ManufacturerDaishinku Corp.
Websitehttp://www.kds.info/
Environmental Compliance
Download Datasheet Parametric View All

MO2019AE5-CUH-30E0-01230219990Y Overview

LVCMOS Output Clock Oscillator, 123.021999MHz Nom, SOT23-5

MO2019AE5-CUH-30E0-01230219990Y Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid7216076295
Reach Compliance Codeunknown
Other featuresENABLE/DISABLE FUNCTION; TR
maximum descent time2 ns
Frequency Adjustment - MechanicalNO
frequency stability25%
Installation featuresSURFACE MOUNT
Nominal operating frequency123.021999 MHz
Maximum operating temperature125 °C
Minimum operating temperature-40 °C
Oscillator typeLVCMOS
Output load15 pF
physical size3.05mm x 1.75mm x 1.45mm
longest rise time2 ns
Maximum supply voltage3.3 V
Minimum supply voltage2.7 V
Nominal supply voltage3 V
surface mountYES
maximum symmetry55/45 %
MO2019
High Frequency, High Temp, One-output Clock Generator
Features
Applications
Frequencies between 115.194001 MHz to 137 MHz accurate to 6
decimal places
Operating temperature from -40°C to +125°C. For -55°C option,
refer to MO2020 and MO2021
Supply voltage of +1.8V or +2.5V to +3.3V
Excellent total frequency stability as low as ±20 ppm
Low power consumption of +4.9 mA typical at 125 MHz, +1.8V
LVCMOS/LVTTL compatible output
5-pin SOT23-5 package: 2.9mm x 2.8mm
RoHS and REACH compliant, Pb-free, Halogen-free and
Antimony-free
For AEC-Q100 clock generators, refer to MO2024 and MO2025
Industrial, medical, avionics and other high temperature applica-
tions
Industrial sensors, PLC, motor servo, outdoor networking
equipment, medical video cam, asset tracking systems, etc.
Electrical Specifications
Table 1. 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.
Parameters
Symbol
Min.
Typ.
Max.
Unit
Condition
Frequency Range
Output Frequency Range
f
115.194001
137
MHz
Refer to
Table 14
for the exact list of supported frequencies
list of supported frequencies
Frequency Stability and Aging
-20
Frequency Stability
F_stab
-25
-30
-50
-40
-40
+1.62
+2.25
Supply Voltage
Vdd
+2.52
+2.7
+2.97
+2.25
Current Consumption
Idd
OE Disable Current
I_od
Standby Current
I_std
Duty Cycle
Rise/Fall Time
DC
Tr, Tf
45
Output High Voltage
VOH
90%
+1.8
+2.5
+2.8
+3.0
+3.3
+6.2
+5.4
+4.9
+2.6
+1.4
+0.6
1.0
1.3
1.0
+20
+25
+30
+50
+105
+125
+1.98
+2.75
+3.08
+3.3
+3.63
+3.63
+8.0
+7.0
+6.0
+4.8
+4.5
+8.5
+5.5
+4.0
55
2.0
2.5
3.0
ppm
ppm
ppm
ppm
°C
°C
V
V
V
V
V
V
mA
mA
mA
mA
mA
μA
μA
μA
%
ns
ns
ns
Vdd
No load condition, f = 125 MHz, Vdd = +2.8V, +3.0V or +3.3V
No load condition, f = 125 MHz, Vdd = +2.5V
No load condition, f = 125 MHz, Vdd = +1.8V
Vdd = +2.5V to +3.3V, OE = Low, Output in high Z state.
Vdd = +1.8V, OE = Low, Output in high Z state.
Vdd = +2.8V to +3.3V,
ST
= Low, Output is weakly pulled down
Vdd = +2.5V,
ST
= Low, Output is weakly pulled down
Vdd = +1.8V,
ST
= Low, Output is weakly pulled down
All Vdds
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 = -4.0 mA (Vdd = +3.0V or +3.3V)
IOH = -3.0 mA (Vdd = +2.8V or +2.5V)
IOH = -2.0 mA (Vdd = +1.8V)
IOL = +4.0 mA (Vdd = +3.0V or +3.3V)
IOL = +3.0 mA (Vdd = +2.8V or +2.5V)
IOL = +2.0 mA (Vdd = +1.8V)
Extended Industrial
Automotive
Inclusive of Initial tolerance at +25°C, 1st year aging at +25°C,
and variations over operating temperature, rated power supply
voltage and load (15 pF ± 10%).
Operating Temperature Range
Operating Temperature Range
(ambient)
T_use
Supply Voltage and Current Consumption
LVCMOS Output Characteristics
Output Low Voltage
VOL
10%
Vdd
Daishinku Corp.
Rev. 1.01
1389 Shinzaike, Hiraoka-cho, Kakogawa, Hyogo 675-0194 Japan
+81-79-426-3211
www.kds.info
Revised September 29, 2015
MOSFET
How should the absorption capacitance of MOSFET be determined?...
305374869 Analogue and Mixed Signal
Design of helical antenna based on finite element method
[b][font=Verdana]Design of spiral antenna based on finite element method[/font][/b]At present, in wireless[/font][font=Arial]communication and military communication, such as mountain highway communic...
xtss RF/Wirelessly
NUCLEO-G431RB Review -> DAC Review
[i=s]This post was last edited by elike on 2019-9-22 21:39[/i]NUCLEO-G431RB Review The DAC in this chip is a 12 -bit DAC with a total of 4 DAC interfaces . There are two channels of DAC that can be ou...
elike stm32/stm8
Application skills/PIC series microcontroller programming basics
1. Basic format of the programFirst introduce two pseudo instructions:EQU —— label assignment pseudo instruction ORG —— address definition pseudo instruction After RESET, the instruction counter PC of...
rain Microchip MCU
STM32F107 serial port 1 sending error
The source programs of serial port 1 and serial port 2 are almost the same. Now serial port 2 is completely normal, but serial port 1 can only receive. Sometimes there is no data when sending, and som...
zjp_zy Embedded System
Why are the effects of using a simulator and burning into an IC different?
#include#include/***************for 24c02************************************************************/ #define WriteDeviceAddress 0xa0 //The 6th and 7th bits control the segment address of the data, t...
zhangxian8031 Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2360  2720  414  617  2320  48  55  9  13  47 
Datasheet   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
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 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