EEWORLDEEWORLDEEWORLD

Part Number

Search

3G534D-80M-16.000

Description
CMOS/TTL Output Clock Oscillator, 16MHz Nom, SMD, 4 PIN
CategoryPassive components    oscillator   
File Size107KB,2 Pages
ManufacturerEuroquartz
Websitehttp://www.euroquartz.co.uk/
Environmental Compliance
Download Datasheet Parametric View All

3G534D-80M-16.000 Overview

CMOS/TTL Output Clock Oscillator, 16MHz Nom, SMD, 4 PIN

3G534D-80M-16.000 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid1294422037
package instructionSMD, 4 PIN
Reach Compliance Codecompliant
Maximum control voltage3 V
Minimum control voltage0.3 V
maximum descent time6 ns
Frequency Adjustment - MechanicalNO
Frequency offset/pull rate80 ppm
frequency stability25%
linearity10%
Installation featuresSURFACE MOUNT
Nominal operating frequency16 MHz
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Oscillator typeCMOS/TTL
Output load2 TTL, 15 pF
physical size5.0mm x 3.2mm x 1.2mm
longest rise time6 ns
Maximum supply voltage3.465 V
Minimum supply voltage3.135 V
Nominal supply voltage3.3 V
surface mountYES
maximum symmetry60/40 %
EURO
QUARTZ
5.0 x 3.2 x 1.2mm 4 pad SMD
Industry-standard 5 x 3.2 x 1.2mm 4 pad SMD package
Frequency range 625kHz to 50.0MHz
CMOS/TTL Output
Supply Voltage 1.8, 2.5, 3.3 or 5.0VDC
Integrated Phase Jitter 1ps maximum
DESCRIPTION & APPLICATIONS
G534 VCXOs are packaged in the industry-standard 5 x 3.2 x 1.2mm,
4 pad SMD package. G series VCXOs use fundamental mode crystal
oscillators for low phase noise. Applications include phase lock loop,
SONET/ATM, set-top boxes, MPEG , audio/video modulation, video
game consoles, Fibre Channel, FPGAs, Data Acquisition and HDTV.
G534 VCXO
625.0kHz ~ 50.0MHz
Page 1 of 2
SUPPLY VOLTAGE-DEPENDENT SPECIFICATION
Input Voltage (Vdd):
Frequency Range*:
Output Waveform:
Initial Frequency Accuracy:
TTL:
Output Logic HIGH '1'
CMOS:
TTL:
Output Logic LOW '0'
Frequency Deviation Range:
Control Voltage Centre
Control Voltage Range:
CMOS:
Vdd = +1.8VDC ±5% Vdd = +2.5VDC ±5% Vdd = +3.3VDC ±5% Vdd = +5.0VDC ±10%
16.0MHz ~ 50.0MHz
TTL/CMOS
To tune to nominal fr.
with Vc=0.9±0.15V
----
1.62V (min.)
----
0.183V (max.)
Standard: ±80ppm
(min.)
0.9VDC
0V to 1.8V
0.625MHz ~ 50.0MHz
TTL/CMOS
To tune to nominal fr.
with Vc=1.25±0.2V
----
2.25V (min.)
----
0.25V (max.)
Standard: ±80ppm
(min.)
1.25VDC
025V to 2.25V
0.625MHz ~ 50.0MHz
TTL/CMOS
To tune to nominal fr.
with Vc=1.65±0.2V
2.4V (min.)
2.97V (min.)
0.4V (max.)
0.33 (max.)
Standard: ±80ppm
(min.)
1.62VDC
0.3V to 3.0V
1.0MHz ~ 50.0MHz
TTL/CMOS
To tune to nominal fr.
with Vc=2.5±0.2V
2.4V (min.)
4.5V (min.)
0.4V (max.)
0.5V (max.)
Std: ±80ppm (min.)
±200ppm available
2.5VDC
0.5V to 1.5V
GENERAL SPECIFICATION
Frequency Stability:
Frequency Change
vs. Input Voltage:
Input Voltage:
Output Load
TTL:
CMOS:
Rise/Fall Time
TTL:
CMOS:
Duty Cycle:
Integrated Phase Jitter:
Period Jitter RMS:
Period Jitter Peak to Peak:
Start-up time:
Current Consumption:
6ns max, 4ns typ. (0.4V to 2.4V)
6ns max, 4ns typ. (20%~80% Vdd)
50±10% standard, 50±5% option
1ps maximum (12kHz to 20MHz)
2.0ps typical
14ps
10ms max., 3ms typical
10 to 45mA, frequency dependant
(27MHz: 10mA typical at 3.3V,
20mA typical at 5.0VDC)
6% typical, 10% maximum
10kHz min., measured at Vcont =
1.65V or2.5V.
1MΩ typical
Monotonic and Positive, increasing
control voltage increases output
frequency.
±3ppm per year maximum
RoHS Compliant and lead (Pb) free
2TTL gates
15pF
OUTLINE & DIMENSIONS
±5ppm max. (V
DD
±5%)
+1.8V±5%, +2.5V±5%,
+3.3V±5% or 5.0V±10%
Linearity:
Modulation Bandwidth:
Input Impedance:
Slope Polarity:
Ageing:
RoHS Status:
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
Read the good book "Operational Amplifier Parameter Analysis and LTspice Application Simulation" 05 Offset Voltage Case Analysis
I don't know when it started, but I've become so impressed by the typical values of op amp parameters that I've paid less attention to the maximum and minimum values. The gold medalists are always the...
1nnocent Analog electronics
Question + How to create a 3D scene
I'm doing some experiments on gesture recognition recently, and I don't know how to build a 3D scene like the one below. I checked the information, and it's basically OpenGL, but it's a bit difficult....
lonerzf Integrated technical exchanges
Why can't Keil compile?
I recently wrote a program for infrared temperature measurement on SMbus, but I don't know why it can't be compiled. I would like some advice from the experts. The specific code is as follows #include...
sillman 51mcu
Digital tube glyph code automatic generator
This is a very small and practical software, which can quickly calculate the 8-segment digital tube glyph code of any connection method. It is a very good thing, share it with others...
1985rose Analog electronics
ADS1258 analog-to-digital converter data reading rate problem
I am using the ADS1258 chip recently. The chip is configured with a data rate of 23.7KSPS/channel and 16 single-ended input channels, of which /DRDY is connected to the interrupt input IO of the MCU. ...
Aaron Analogue and Mixed Signal
PCB Type
How to use ProtelDXP to design the PCB board into a large semicircle (i.e. a small part of the circle is cut off), which is the appearance of the board. I know that it is possible to place a circular ...
eplj_163 PCB Design

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 220  1141  640  592  2256  5  23  13  12  46 
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