Part Number Hot Search : 
ATS03 TE050200 MMSZ5226 M57704EL BUL46B 60NF06 KMOC3051 CY7C151
Product Description
Full Text Search
 

To Download X504 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 THE CONNOR-WINFIELD CORP.
2111 COMPREHENSIVE DRIVE. AURORA, IL 60505. FAX (630) 851-5040. PHONE (630) 851-4722. WWW.CONWIN.COM
PRODUCT
D ATA
SHEET
CRYSTAL CONTROLLED OSCILLATORS 3.3V SURFACE MOUNT 5.0 x 7.5mm LVDS CLOCK OSCILLATOR
ABSOLUTE M AXIMUM RATING S
PARAMETER Storage Temperature Supply Voltage Input Voltage (Vcc) UNITS MINIMUM -55 -0.5 -0.5 NOMINAL MAXIMUM 125 4.6 Vcc+0.5 UNITS C Vdc Vdc TABLE 2.0 MINIMUM (Fo) 200 -20 -40 (Vcc) (Icc) 3.135 NOMINAL 3.3 -75 -95 -110 -125 -120 MAXIMUM 800 20 85 3.465 100 10 2 UNITS MHz ppm C Vdc mA ps rms ps rms dBc/Hz dBc/Hz dBc/Hz dBc/Hz dBc/Hz 1 NOTE TABLE 1.0 NOTE
X504 0713 622.08M
X504
DESCRIPTION
OPERATING SPECIFIC ATIONS
PARAMETER Center Frequency Total Frequency Tolerance Operating Temperature Range Supply Voltage Supply Current Jitter (BW=10Hz to 20MHz) Jitter (BW=12kHz to 80MHz) SSB Phase Noise at 10Hz offset SSB Phase Noise at 100Hz offset SSB Phase Noise at 1KHz offset SSB Phase Noise at 10KHz offset SSB Phase Noise at 100KHz offset
The Connor-Winfield X504 is a 3.3V Crystal Controlled Oscillator (XO) with LVDS differential outputs. The X504 is designed for use with PLL systems requiring tight frequency stability vs. change in temperature and high frequency output over the industrial temperature range. The X504 is designed using a 2x or 4x PLL multiplication to achieve the high frequency output.
FEATURES
TABLE 3.0
INPUT CHARACTERISTICS
PARAMETER Enable Input Voltage (Low) Disable Input Voltage (High) (Vil) (Vih) MINIMUM 0.7Vcc NOMINAL MAXIMUM 0.3Vcc UNITS Vdc Vdc
NOTE 2 2 TABLE 4.0
3.3V OPERATION LOW JITTER <2pS RMS TOTAL FREQUENCY TOLERANCE: 20ppm TEMPERATURE RANGE: -40 to 85C DIFFERENTIAL LVDS OUTPUTS SURFACE MOUNT PACKAGE TAPE AND REEL PACKAGING
-
LVDS OUTPUT CHARACTERISTICS
PARAMETER LOAD Output Differential Voltage Duty Cycle at 50% Level Rise / Fall Time (Vod) MINIMUM 250 45 NOMINAL 50 0.6 MAXIMUM 100 450 55 1.0 UNITS Ohms mV % nS
NOTE 3
PACKAG E CHARACTERISTICS
Package Hermetically sealed crystal on a ceramic package
TABLE 5.0
RoHS COMPLIANT / LEAD FREE
PROCESS RECOMMENDATIONS
Solder Reflow Notes 1.0 2.0 3.0 See solder profile on page 2.
TABLE 6.0
ORDERING INFORMATION
Includes initial tolerance, deviation over temperature, supply and load variations, shock, vibration and 10 years aging. When oscillator is disabled both output are in a high impedance state (Tri-State) Vod measured with 100 ohm resistor between the true output and the complementary output.
X504 - 622.08M
LVDS CLOCK SERIES CENTER FREQUENCY
Specifications subject to change without notice. DATA SHEET #: DS018 PAGE 1 OF 2 REV: 02 DATE: 04/03/07
aCopyright 2001 Connor-Winfield all rights reserved.
THE CONNOR-WINFIELD CORP.
2111 COMPREHENSIVE DRIVE. AURORA, IL 60505. FAX (630) 851-5040. PHONE (630) 851-4722. WWW.CONWIN.COM
PRODUCT
D ATA
SHEET
CRYSTAL CONTROLLED OSCILLATORS
Package Layout Suggested Pad Layout
Vcc
X504 0713 622.08M
Top View
1
Pin 1 Bottom View
Top View Dimensional Tolerance: .005 (.127mm)
Output Waveforms
Pin 1 2 3 4 5 6
Pin Connections
Function N/C Enable / Disable Ground (Case) Output Q Comp Output Q Vcc
Test Circuit
Solder Profile
Temperature
Q
260C 220C 180C
260C
Vod
100 ohm
150C 120C
2
Q
N/C E/D
0 120 S Max. Time 10 S 60 S Max. 360 Sec. Max.
Specifications subject to change without notice. DATA SHEET #: DS018 PAGE 2 OF 2 REV: 02 DATE: 04/03/07
aCopyright 2001 Connor-Winfield all rights reserved.


▲Up To Search▲   

 
Price & Availability of X504

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X