EEWORLDEEWORLDEEWORLD

Part Number

Search

3GDW8-F-150M-60.000

Description
LVDS Output Clock Oscillator, 60MHz Nom, DIP-8/4
CategoryPassive components    oscillator   
File Size109KB,1 Pages
ManufacturerEuroquartz
Websitehttp://www.euroquartz.co.uk/
Download Datasheet Parametric View All

3GDW8-F-150M-60.000 Overview

LVDS Output Clock Oscillator, 60MHz Nom, DIP-8/4

3GDW8-F-150M-60.000 Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
Reach Compliance Codecompli
Maximum control voltage3 V
Minimum control voltage0.3 V
maximum descent time0.7 ns
Frequency Adjustment - MechanicalNO
Frequency offset/pull rate150 ppm
frequency stability100%
Installation featuresTHROUGH HOLE MOUNT
Nominal operating frequency60 MHz
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Oscillator typeLVDS
Output load50 OHM
physical size12.8mm x 12.8mm x 5.08mm
longest rise time0.7 ns
Maximum supply voltage3.465 V
Minimum supply voltage3.135 V
Nominal supply voltage3.3 V
surface mountNO
maximum symmetry55/45 %
Base Number Matches1
EURO
QUARTZ
8 pin Dual-in-Line
Frequency range 38MHz to 640MHz
LVDS Output
Supply Voltage 3.3 VDC
Phase jitter 0.4ps typical
Pull range from ±30ppm to ±150ppm
GDW8 LVDS VCXO
750.0kHz to 800.0MHz
DESCRIPTION
GDW8VCXOs are packaged in an industry-standard, 8pin dual-in-line
package. Typical phase jitter for GDW series VCXOs is 2.35ps. Output
is LVDS. Applications include phase lock loop, SONET/ATM, set-top
boxes, MPEG , audio/video modulation, video game consoles and
HDTV.
SPECIFICATION
Frequency Range:
Supply Voltage:
Output Logic:
RMS Period Jitter:
Peak to Peak Jitter:
Phase Jitter:
Initial Frequency Accuracy:
Output Voltage HIGH (1):
Output Voltage LOW (0):
Pulling Range:
Control Voltage Range:
Temperature Stability:
Output Load:
Rise/Fall Times:
Duty Cycle:
Start-up Time:
Current Consumption:
Static Discharge Protection:
Storage Temperature:
Ageing:
Enable/Disable:
RoHS Status:
OUTLINE & DIMENSIONS
750kHz to 800.0MHz
3.3 VDC ±5%
LVDS
4.3ps typical
27.0ps typical
2.35ps typical
Tune to the nominal frequency
with Vc= 1.65 ±0.2VDC
1.4 Volts typical
1.1 Volts typical
From ±30ppm to ±150ppm
1.65 ±1.35 Volts
See table
50W into Vdd or Thevenin equiv.
0.5ns typ., 0.7ns max.
20% Vdd to 80% Vdd
50% ±5%
(Measured at Vdd-1.3V)
10ms maximum, 5ms typical
55mA typical, 60mA maximum
(At 202.50MHz)
2kV maximum
-55° to +150°C
±2ppm per year maximum
Not implemented - 4 pin package
Fully compliant or non compliant
PART NUMBERING
Example:
Supply Voltage
3 = +3.3V
Series Designator
GDW
RoHS Status
G = RoHs compliant
Blank = RoHS non-compliant
Stability over temperature range
(See table)
Pullability in ±ppm
Pullability determinator
N = minimum
M = maximum
T = Typical
Frequency in MHz
3GDWG-B-80N-60.000
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
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
MSP430 Simulation & Programming
Whether it is simulation or burning program, MSP430 can generally be done through: JTAG, SBW, BSL interface. 1. JTAG uses boundary scan technology. There is a logic interface inside the 430 for JTAG. ...
火辣西米秀 Microcontroller MCU
I would like to ask a question about the sinusoidal commutation of brushless DC motors.
[i=s] This post was last edited by dontium on 2015-1-23 13:23 [/i] This has been bothering me for a long time. I use 2407A.My implementation method is to use EVA to control the motor's PWM and capture...
qwer1111 Analogue and Mixed Signal
MCU and power supply selection make your embedded circuit design more efficient
[size=4]1. MCU selection[/size] [size=4] [/size] [size=4]When selecting an MCU, you need to consider the functions that the MCU can perform, the price of the MCU, power consumption, power supply volta...
fish001 Microcontroller MCU
I2C works on Windows, but not without an operating system.
My question is this: I use the Ulong 2440 development board, remove the camera, and then use the camera port to connect the chip TW9910 on my other board. When I use i2c to drive the chip on the other...
gongjun51201314 Embedded System
Questions about SysTickIntHandler interrupt and lwIPEthernetIntHandler interrupt in enet_lwip routine
What is the use of SysTickIntHandler, the system tick timer interrupt? I saw that "lwIPTimer(SYSTICKMS);" was called in its interrupt service routine. In lwIPTimer(SYSTICKMS);, " SYSTICKMS " was simpl...
zzgezi Microcontroller MCU
Dear Zhaojun, is there any errata sheet for the Cortex-M0 book?
Master Zhaojun, I bought a copy of your book the day before yesterday. I took a quick look at it and found some errors in the printing . For example, CPU is written as cup. The interrupt response time...
at89c51cc01 NXP MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2160  586  1741  735  2192  44  12  36  15  45 
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