EEWORLDEEWORLDEEWORLD

Part Number

Search

MO2020ME5-CBG-30N0-0080779999E

Description
LVCMOS Output Clock Oscillator, 80.779999MHz Nom, SOT23-5
CategoryPassive components    oscillator   
File Size893KB,12 Pages
ManufacturerDaishinku Corp.
Websitehttp://www.kds.info/
Environmental Compliance
Download Datasheet Parametric View All

MO2020ME5-CBG-30N0-0080779999E Overview

LVCMOS Output Clock Oscillator, 80.779999MHz Nom, SOT23-5

MO2020ME5-CBG-30N0-0080779999E Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid7216096973
package instructionSOT23-5
Reach Compliance Codeunknown
Other featuresTR
maximum descent time2 ns
Frequency Adjustment - MechanicalNO
frequency stability20%
Installation featuresSURFACE MOUNT
Number of terminals5
Nominal operating frequency80.779999 MHz
Maximum operating temperature125 °C
Minimum operating temperature-55 °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 %
MO2020
-55°C to +125°C, Single-Chip, One-output Clock Generator
,2
Features
Applications
Any frequency between 1 MHz to 110 MHz accurate to 6 decimal
places of accuracy
Operating temperature from -55°C to +125°C
Excellent total frequency stability as low as ±20 ppm
Low power consumption of +3.5 mA typical at 20 MHz, +1.8V
LVCMOS/LVTTL compatible output
5-pin SOT23-5: 2.9mm x 2.8mm
RoHS and REACH compliant, Pb-free, Halogen-free and
Antimony-free
For AEC-Q100 oscillators, refer to MO2024 and MO2025
Ruggedized equipment in harsh operating environment
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
Output Frequency Range
Symbol
f
Min.
1
-20
Frequency Stability
F_stab
-25
-30
-50
Operating Temperature Range
T_use
-55
+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%
Typ.
+1.8
+2.5
+2.8
+3.0
+3.3
+3.8
+3.6
+3.5
+2.6
+1.4
+0.6
1.0
1.3
1.0
Max.
110
+20
+25
+30
+50
+125
+1.98
+2.75
+3.08
+3.3
+3.63
+3.63
+4.7
+4.5
+4.5
+4.5
+4.3
+8.5
+5.5
+4.0
55
2.0
2.5
3.0
Unit
MHz
ppm
ppm
ppm
ppm
°C
V
V
V
V
V
V
mA
mA
mA
mA
mA
μA
μA
μA
%
ns
ns
ns
Vdd
No load condition, f = 20 MHz,
Vdd = +2.8V, +3.0V, +3.3V or +2.25 to +3.63V
No load condition, f = 20 MHz, Vdd = +2.5V
No load condition, f = 20 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 and Vdd = +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 and Vdd = +2.5V)
IOL = +2.0 mA (Vdd = +1.8V)
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%).
Condition
Refer to
Table 14
for the exact list of supported frequencies
Frequency Range
Frequency Stability and Aging
Operating Temperature Range
Supply Voltage and Current Consumption
LVCMOS Output Characteristics
Output Low Voltage
VOL
10%
Vdd
Input Characteristics
Input High Voltage
Input Low Voltage
Input Pull-up Impedance
VIH
VIL
Z_in
70%
50
2.0
87
30%
150
Vdd
Vdd
kΩ
MΩ
Pin 3, OE or
ST
Pin 3, OE or
ST
Pin 3, OE logic high or logic low, or
ST
logic high
Pin 3,
ST
logic low
+81-79-426-3211
www.kds.info
Revised September 29, 2015
Daishinku Corp.
Rev. 1.01
1389 Shinzaike, Hiraoka-cho, Kakogawa, Hyogo 675-0194 Japan
ADC front-end design step 1
Modern communication systems and test equipment often need to digitize analog signals as quickly as possible so that signal processing can be completed in the digital domain. However, designing transf...
ZYXWVU Analogue and Mixed Signal
Electronic Engineering World will launch a device search by function classification, please pay attention
In response to the requirements of many electronic engineers, Electronic Engineering World has begun to sort out the functional classification of devices (such as amplifiers, A/D converters, etc.), an...
sw Suggestions & Announcements
[Arduino] Even simpler than "Hello World!" is "Hello Arduino!"
[i=s]This post was last edited by @ZiShi on 2016-5-23 10:27[/i][p=30, 2, left]Two days ago, I was chatting with soso on QQ and talked about open source hardware. Soso said that there is no section abo...
@ZiShi DIY/Open Source Hardware
The difference between NB-IOT and Lora
[size=4]1. Introduction [/size] [size=4] The wireless technologies of the Internet of Things are mainly divided into two categories: [/size] [size=4] (1) One category is short-range communication tech...
fish001 Wireless Connectivity
Problems with judging the start bit of STM8L051F3P6 UART data
A customer reported that after the new STM8L microcontroller was replaced with UART, the library function software code could not receive the correct data normally. The customer compared the waveform ...
喜之郎333 stm32/stm8

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1253  543  120  2281  1162  26  11  3  46  24 
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