EEWORLDEEWORLDEEWORLD

Part Number

Search

EG-2021CA133.0000M-CHRNL0

Description
IC,CRYSTAL OSCILLATOR,1-CHANNEL,62.5MHZ-170MHZ,LLCC,4PIN,CERAMIC
CategoryPassive components    oscillator   
File Size267KB,2 Pages
ManufacturerSeiko Epson Corporation
Environmental Compliance
Download Datasheet Parametric View All

EG-2021CA133.0000M-CHRNL0 Overview

IC,CRYSTAL OSCILLATOR,1-CHANNEL,62.5MHZ-170MHZ,LLCC,4PIN,CERAMIC

EG-2021CA133.0000M-CHRNL0 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid1148448069
package instructionDILCC4,.2,200
Reach Compliance Codecompliant
Country Of OriginJapan, Mainland China, Malaysia, Thailand
YTEOL.33
JESD-609 codee4
Installation featuresSURFACE MOUNT
Number of terminals4
Maximum operating frequency170 MHz
Minimum operating frequency62.5 MHz
Nominal operating frequency133 MHz
Maximum operating temperature85 °C
Minimum operating temperature-5 °C
Oscillator typeSAW OSCILLATOR
Maximum output low current8 mA
Package body materialCERAMIC
Encapsulate equivalent codeDILCC4,.2,200
power supply2.5 V
Certification statusNot Qualified
Maximum slew rate25 mA
Nominal supply voltage2.5 V
surface mountYES
Terminal surfaceGold (Au)
Crystal oscillator
Product Number (please contact us)
CRYSTAL OSCILLATOR
LOW-JITTER SAW OSCILLATOR
EG-2021CA: Q3807CA00xxxx00
EG-2001CA: Q3801CA00xxxx00
EG - 2021
/
2001CA
62.5 MHz to 250 MHz
2.5 V

EG-2021CA
3.3 V

EG-2001CA
Output
:
CMOS
Function
:
Output enable (OE)
External
dimensions
:
7.0 × 5.0 × 1.2 mm
Very
low jitter and low phase noise by SAW unit.
Frequency
range
Supply
voltage
:
:
Actual size
EG-2021CA
EG-2001CA
Specifications (characteristics)
Item
Output frequency range
Supply voltage
Storage temperature
Operating temperature *1
Frequency tolerance *1
Current consumption
Disable current
Symmetry
Output voltage
Output load condition (CMOS)
Input voltage
Rise time / Fall time
Start-up time
Symbol
Specifications
EG-2021CA
62.500 MHz to
170.001MHz to
170.000MHz
250.000MHz
2.5 V 0.125 V
-40
C
to +100
C
P: 0
C
to +70
C
R: -5
C
to +85
C
G:
50
10
-6
H:
100
10
-6
25 mA Max.
30 mA Max.
600
A
Max.
45 % to 55 %
40 % to 60 %
V
CC
-0.35 V Min.
0.35 V Max.
15 pF Max.
70 % V
CC
Min.
30 % V
CC
Max.
2 ns Max.
10 ms Max.
0.2 ps Typ.
3 ps Typ.
3 ps Typ.
25 ps Typ.
4 ps Typ.
1 ps Max.
-6
-6
fo
V
CC
T_stg
T_use
f_tol
I
CC
I_dis
SYM
V
OH
V
OL
L_CMOS
V
IH
V
IL
t
r
/
t
f
t_str
EG-2001CA
106.250 MHz to
170.000 MHz
3.3 V 0.3 V
0
C
to +70 C
Z:
50
10
-6
Y,H:
100 
10
-6
50 mA Max.
10
A
Max.
45 % to 55 %
V
CC
-0.4 V Min.
0.4 V Max.
Conditions / Remarks
Please contact us about available frequencies.
Storage as single product.
OE=Vcc, No load condition
OE=GND
50 % V
CC
level, L_CMOS Max.
I
OH
= -8 mA
I
OL
= 8 mA
OE terminal
Between 20% V
CC and
80% V
CC
level, L_CMOS Max.
Time at minimum supply voltage to be 0 s
Deterministic Jitter
Random Jitter
(RMS of total distribution)
Peak to Peak
Accumulated Jitter() n=2 to 50000 cycles
Offset frequency: 12 kHz to 20 MHz
Jitter *2
Phase Jitter
t
RMS
t
p-p
t
acc
t
PJ
t
DJ
t
RJ
Frequency aging *3
f_aging
10
10 / year Max.
5
10 / year Max. +25
C,
First year, V
CC
=2.5 V,3.3 V
*1 As per table below
*2 Tested using a DTS-2075 Digital timing system made by WAVECREST with jitter analysis software VISI6.
*3 Except: CHPA,CHRA,PCH
Model
EG-2021CA
Model
Aging
A *4
N *5
Symmetry
H:
10010
-6
(0C to +70C) *4
HP:
10010
-6
(0C to +70C)
CHPA
CHPN
-6
CHRA
CHRN
Frequency tolerance and Y:
10010
-6
(0C to +70C) *5
Frequency tolerance and HR:
10010
(-5C to +85C)
-6
operating temperature
operating temperature
GP:
5010
(0C to +70C)
-
CGPN
Z:
5010
-6
(0C to +70C) *6
GR:
5010
-6
(-5C to +85C)
-
CGRN
*4 This includes initial frequency tolerance, temperature variation, supply voltage variation, load variation, reflow drift, and aging(+25
C,10
years).
*5 This includes initial frequency tolerance, temperature variation, supply voltage variation, load variation, and reflow drift.(except aging)
*6 This includes initial frequency tolerance, and temperature variation.(except reflow drift, supply voltage variation, load variation and aging)
EG-2001CA
P: 50
5
%
PCH
PCY
PCZ
External dimensions
EG-2021CA
#4
#3
5.0±0.2
#3
1.4
1.1
#4
(Unit:mm)
EG-2001CA
1.4
#3
5.0±0.2
#4
1.1
Footprint (Recommended) (Unit:mm)
1.8
1.5
3.9
5.08
To maintain stable operation,
provide a 0.01uF to 0.1uF
by-pass capacitor at a location as
near as possible to the power
source terminal of the crystal
product (between Vcc - GND).
E EG-2021
125.000C
HPA172A
#1
#2
7.0
±
0.2
2.6
E 125.000H
1PC124A
#2
5.08
Pin map
Pin. Connection
OE
*1
1
2
GND
3
OUT
4
V
CC
#1
7.0±0.2
1.2
±0.2
#2
5.08
Pin map
Pin
Connection
OE
*1
1
2
GND
3
OUT
4
V
CC
#1
1.2±0.2
5.08
5.08
*1 Standby function built-in
#2 is connected to the cover.
*1 Standby function built-in
#2 is connected to the cover.
OE pin = HIGH : Specified frequency output.
OE pin = LOW : Output is high impedance
2.6

Recommended Resources

stm8 input capture frequency measurement
The measurement frequency is between 1k-2k, and the required accuracy is 0.01%, that is, 2kHZ, 0.2HZ.During the process, I found that the maximum jump was 0.8HZ. I didn't know what was wrong with the ...
zfcarlos stm32/stm8
Can't install CCS
I just started learning microcontrollers. I bought an msp430f149 microcontroller from the Internet. I plan to use the ccs6.1 compiler but I don't know how to install the whole process. Can anyone guid...
勤学好问 Microcontroller MCU
How to make the buzzer sound when pressing K1 and the indicator light on when pressing K2D1
Now I can do it separately, but I don't know how to combine the two to solve it....
静静qoq 51mcu
Power consumption of STM8L
Hardware: Except for PG4 as the external interrupt button and PG7 as the GPIO high and low level output, all other settings are set to GPIO pull-up output low level state. The power consumption when e...
萤火虫宝宝 stm32/stm8
AM437x Processor PoM to Create Industrial Gateway Based on IoT (IoT-SDK)
Industry 4.0 or the fourth industrial revolution is the current trend in automation and data exchange in the manufacturing industry. It is based on cyber-physical systems (CPS), networked machines, an...
Aguilera Microcontroller MCU
Coordinate transformation in motor FOC (CLARK+PARK+formula derivation)
[align=left][color=rgb(50, 50, 50)][font=myFont, "][size=14px][color=rgb(79, 79, 79)][size=12pt]Today I learned that motor FOC includes SVPWM, coordinate transformation, signal acquisition feedback, P...
okhxyyo Motor Drive Control(Motor Control)

Popular Articles

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1232  2364  2628  1084  1833  25  48  53  22  37 
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