EEWORLDEEWORLDEEWORLD

Part Number

Search

3GW8E-30N-800.00

Description
LVCMOS Output Clock Oscillator, 800MHz Nom, ROHS AND REACH COMPLIANT, DIP-8/4
CategoryPassive components    oscillator   
File Size126KB,1 Pages
ManufacturerEuroquartz
Websitehttp://www.euroquartz.co.uk/
Environmental Compliance  
Download Datasheet Parametric View All

3GW8E-30N-800.00 Overview

LVCMOS Output Clock Oscillator, 800MHz Nom, ROHS AND REACH COMPLIANT, DIP-8/4

3GW8E-30N-800.00 Parametric

Parameter NameAttribute value
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
physical size12.8mm x 12.8mm x 5.08mm
Is it lead-free?Yes
Is it Rohs certified?Yes
Reach Compliance Codecompliant
Is SamacsysN
YTEOL2
Objectid1063499847
package instructionROHS AND REACH COMPLIANT, DIP-8/4
linearity10%
Maximum supply voltage3.465 V
Minimum supply voltage3.135 V
maximum symmetry55/45 %
Maximum control voltage1.85 V
Minimum control voltage1.45 V
Frequency Adjustment - MechanicalNO
Frequency offset/pull rate30 ppm
frequency stability50%
Nominal operating frequency800 MHz
Oscillator typeLVCMOS
Output load15 pF
Nominal supply voltage3.3 V
surface mountNO
Installation featuresTHROUGH HOLE MOUNT
Number of terminals8
EURO
QUARTZ
8 pin Dual-in-Line
Frequency range 200.1MHz to 800MHz
LVCMOS Output
Supply Voltage 3.3 VDC
High Q fundamental mode crystal
Low jitter multiplier circuit
DESCRIPTION
OUTLINE & DIMENSIONS
GW42 VCXOs, are packaged in an industry-standard, 4 pad, 11.4mm
x 9.6mm x 2.5mm SMD package. GW42 VCXOs incorporate a high Q
fundamental crystal and a low jitter multiplier circuit.
SPECIFICATION
Frequency Range:
Supply Voltage:
Output Logic:
Integrated Phase Jitter:
Period Jitter RMS:
Period Jitter Peak to peak:
Phase Noise:
Initial Frequency Accuracy:
Output Voltage HIGH (1):
Output Voltage LOW (0):
Pulling Range:
Temperature Stability:
Output Load:
Start-up Time:
Duty Cycle:
Rise/Fall Times:
Current Consumption
<96MHz:
>96MHz:
Linearity:
Modulation Bandwidth:
Input Impedance:
Slope Polarity:
(Transfer function)
GW8 VCXO
200.1MHz ~ 800.0MHz
200.1MHz to 800.0MHz
3.3 VDC ±5%
LVCMOS
2.6ps typical, 4.0ps maximum
(for 155.250MHz)
4.3ps typical (for 155.250MHz)
27.0ps typical (for 155.250MHz)
Tune to the nominal frequency
with Vc= 1.65 ±0.2VDC
90% Vdd minimum
10% Vdd maximum
From ±30ppm to ±150ppm
15pF
10ms maximum, 5ms typical
50% ±5% measured at 50% Vdd
1.2ns typical (15pF load)
30mA maximum (15pF load)
40mA maximum (15pF load)
10% maximum, 6% typical
25kHz minimum
2 MW minimum
Monotonic and Positive. (
PHASE NOISE
10Hz
100Hz
1kHz
10kHz
100kHz
1MHz
10MHz
-65dBc/Hz
-95dBc/Hz
-120dBc/Hz
-125dBc/Hz
-121dBc/Hz
-120dBc/Hz
-140dBc/Hz
Storage Temperature:
Ageing:
Enable/Disable (Tristate):
RoHS Status:
-50° to +100°C
±5ppm per year maximum
Not available (
Fully compliant
)
PART NUMBER SCHEDULE
Example:
FREQUENCY STABILITY
Stability Code Stability ±ppm Temp. Range
A
25
0°~+70°C
B
50
0°~+70°C
C
100
0°~+70°C
D
25
-40°~+85°C
E
50
-40°~+85°C
F
100
-40°~+85°C
If non-standard frequency stability is required
Use ‘I’ followed by stability, i.e. I20 for ±20ppm
3GW8B-80N-250.00
Supply Voltage
3 = +3.3V
Series Designator
GW8
Stability over temperature range
(
)
Pullability in ±ppm
Pullability determinator
N = minimum
M = maximum
T = Typical
Frequency in MHz
EUROQUARTZ LIMITED Blacknell Lane CREWKERNE Somerset UK TA18 7HE
Tel: +44 (0)1460 230000 Fax: +44 (0)1460 230001 info@euroquartz.co.uk www.euroquartz.co.uk
I would like to ask why a resistor should be added to the i/o0 of the microcontroller.
Why do we need to add a pull-up resistor to the pin on i/op.0?...
qixiangyujj MCU
I would like to ask a question: Can the WinInet API in Windows be used in Window Mobile?
For example, functions like HttpSendRequest and InternetReadFile. If not, can the mobile phone request data from a server through the http protocol?...
wwwwwwx Embedded System
Urgent question: MP3 circuit schematic! Please help me analyze the principles of each component and the function of the processor in this MP3 schematic.
http://blog.ednchina.com/Upload/Blog/2007/3/30/826adf84-7829-4de7-8065-2149d80d0c85.jpg Please help me analyze the principles of each component and the function of the processor in this MP3 schematic ...
jiangfeng5244 Embedded System
Help with TLE7183F issues
Problem phenomenon: 1. When TLE7183F is powered on, there is no voltage difference between the output gate-source voltage, but the gate and source both have ground voltages, and the voltages are the s...
pcbaby2018 Motor Drive Control(Motor Control)
MicroPython common IO port simulates SPI communication, which may be used when porting to some boards
MicroPython was ported to an STM32F407 board. Due to hardware design reasons, only ordinary IO ports could be used to simulate SPI communication. Therefore, a MicroPython driver was written in C langu...
如意如意 MicroPython Open Source section
Newbie help! Regarding the issue of porting uCOS to S3C44B0X, I am very grateful
I have just started learning the uCOS system. Now I have a S3C44B0X board and want to port uCOS to it. So I found some uCOS source codes based on S3C44B0X on the Internet, but I don’t know how to use ...
mbh1212 Real-time operating system RTOS

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 14  762  273  1918  1689  1  16  6  39  35 
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