EEWORLDEEWORLDEEWORLD

Part Number

Search

3G14B-80N-27.000

Description
14 pin Dual-in-Line
CategoryPassive components    oscillator   
File Size218KB,1 Pages
ManufacturerEuroquartz
Websitehttp://www.euroquartz.co.uk/
Environmental Compliance
Download Datasheet Parametric Compare View All

3G14B-80N-27.000 Overview

14 pin Dual-in-Line

3G14B-80N-27.000 Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerEuroquartz
package instructionROHS COMPLIANT, DIL-14/4
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 stability50%
linearity10%
Installation featuresTHROUGH HOLE MOUNT
Nominal operating frequency27 MHz
Maximum operating temperature70 °C
Minimum operating temperature-10 °C
Oscillator typeCMOS/TTL
Output load2 TTL, 15 pF
physical size20.2mm x 12.8mm x 5.08mm
longest rise time6 ns
Maximum supply voltage3.465 V
Minimum supply voltage3.135 V
Nominal supply voltage3.3 V
surface mountNO
maximum symmetry60/40 %
Base Number Matches1
EURO
QUARTZ
Frequency range 0.625MHz to 50.0MHz
CMOS/TTL Output
Supply Voltage 5.0 V or 3.3 VDC
Integrated Phase Jitter 1ps typical
DESCRIPTION
G14 VCXOs, are packaged in an industry-standard, 14 pin Dual in
Line package. Typical phase jitter for G series VCXOs is <1ps, output
CMOS/TTL. G series VCXOs use fundamental mode crystal
osccillators. Applications include phase lock loop, SONET/ATM, set-
top boxes, MPEG , audio/video modulation, video game consoles and
HDTV.
SPECIFICATION
Frequency Range
Vdd = +3.3VDC:
0.625MHz to 50.0MHz
Vdd = +5.0VDC:
1.0MHz to 50.0MHz
Supply Voltage:
+3.3 VDC ±5% or +5.0VDC±5%
Output Logic:
TTL/HCMOS
Integrated Phase Jitter:
1.0ps maximum 12kHz to 20MHz
Period Jitter RMS:
2.0ps typical
Period Jitter Peak to Peak:
14ps maximum
Phase Noise:
See table below
Initial Frequency Accuracy
Tune to the nominal frequency with:
+3.3VDC:
Vc= 1.65V ±0.2V
+5.0 VDC:
Vc= 2.5V ±0.2V
Output Voltage HIGH (1):
90% Vdd minimum
Output Voltage LOW (0):
10% Vdd maximum
Control Voltage Centre
+3.3VDC:
1.65V
+5.0VDC:
2.5V
Control Voltage Range
+3.3VDC:
0.3V to 3.0V
+5.0VDC:
0.5V to 4.5V
Pulling Range
+3.3VDC
±80ppm to ±120ppm (standard)
+5.0VDC:
±80ppm to ±150ppm
(±200ppm available)
Temperature Stability:
See table
Output Load:
CMOS = 15pF, TTL = 2 gates
Start-up Time:
10ms maximum, 5ms typical
Duty Cycle:
50% ±5% measured at 50% Vdd
Rise/Fall Times:
0.7ns typical (15pF load)
Current Consumption:
10 to 45mA, frequency
dependent
Linearity:
10% maximum, 6% typical
Modulation Bandwidth:
10kHz minimum
Input Impedance:
1 MW minimum
Slope Polarity:
Monotonic and Positive. (An
(Transfer function)
increase of control voltage
always increases output
frequency.)
Storage Temperature:
-50° to +100°C
Ageing:
±5ppm per year maximum
RoHS Status:
Fully compliant
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
OUTLINE & DIMENSIONS
G14 CMOS VCXO
14 pin Dual-in-Line
PHASE NOISE
Offset
10Hz
100Hz
1kHz
10kHz
1MHz
Frequency 27.0MHz
-70dBc/Hz
-105dBc/Hz
-132dBc/Hz
-142dBc/Hz
-150dBc/Hz
PART NUMBERING
Example:
Supply Voltage
3 = +3.3V
5 = +5.0V
Series Designator
G14
Stability over temperature range
(See table)
Pullability in ±ppm
Pullability determinator
N = minimum
M = maximum
T = Typical
Frequency in MHz
3 G14 B-80N-27.000
EUROQUARTZ LIMITED Blacknell Lane CREWKERNE Somerset UK TA18 7HE
Tel: +44 (0)1460 230000 Fax: +44 (0)1460 230001 Email: info@euroquartz.co.uk www.euroquartz.co.uk

3G14B-80N-27.000 Related Products

3G14B-80N-27.000 3G14A-80N-27.000 3G14C-80N-27.000 G14
Description 14 pin Dual-in-Line 14 pin Dual-in-Line CMOS/TTL Output Clock Oscillator, 27MHz Nom, ROHS COMPLIANT, DIL-14/4 14 pin Dual-in-Line
Thermal Considerations for Surface Mount Layouts
eeworldpostqq...
尘海月 Analogue and Mixed Signal
Does the low power consumption of MSP430F5418 really consume 2-3uA?
I recently used MSP430F5418 and found that even if the program enters LPM3 as soon as it starts running, my three-volt power supply consumes more than 300 uA. An example of the program found is as fol...
977845 Microcontroller MCU
[GD32F310 Review] The board has not yet arrived, so we will distribute it first
Motor drive resource planning According to the previous plan, it should be ensured that the chip has the ability to drive a three-phase bridge and determine the IO allocation of the chip. The chip sig...
javnson GD32 MCU
Embedded Learning
I want to learn embedded system by myself after work, but I feel that I am not familiar with the operating system! The progress is very slow! Do you have any good suggestions? How did you get started ...
zhangdaoyu Embedded System
Weekly highlights: 2017.11.20-2017.11.26
[size=4]Hello, good morning everyone~~November is almost over~Time flies so fast~Haha, after expressing my feelings, let’s take a look at the highlights of last week[/size] [size=4][color=#ff0000][b]R...
okhxyyo Robotics Development
[After-class exercises] LaunchPad After-class Exercise 11: Detailed explanation of LCD1602 display of Chinese characters
After-class Exercise 11: Detailed Explanation of LCD1602 Display of Chinese Characters 1. The role of DDRAM , CGROM and CGRAM in LCD display (partially from the Internet) DDRAM display uses RAM, which...
常见泽1 Microcontroller MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 325  1453  111  703  1605  7  30  3  15  33 
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