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SEL4815A-200.0000(T)

Description
XO, Clock, 200MHz Min, 670MHz Max, 200MHz Nom, LEADLESS, FR4, SMD, 6 PIN
CategoryPassive components    oscillator   
File Size321KB,2 Pages
ManufacturerDiodes Incorporated
Download Datasheet Parametric View All

SEL4815A-200.0000(T) Overview

XO, Clock, 200MHz Min, 670MHz Max, 200MHz Nom, LEADLESS, FR4, SMD, 6 PIN

SEL4815A-200.0000(T) Parametric

Parameter NameAttribute value
Objectid4000535195
package instructionDILCC6,.35
Reach Compliance Codecompliant
ECCN codeEAR99
Other featuresENABLE/DISABLE FUNCTION; COMPLEMENTARY OUTPUT; TAPE AND REEL
maximum descent time0.85 ns
Frequency Adjustment - MechanicalNO
frequency stability25%
Manufacturer's serial numberSEL481
Installation featuresSURFACE MOUNT
Number of terminals6
Maximum operating frequency670 MHz
Minimum operating frequency200 MHz
Nominal operating frequency200 MHz
Maximum operating temperature70 °C
Minimum operating temperature
Output load50 OHM
Package body materialMETAL
Encapsulate equivalent codeDILCC6,.35
physical size14.0mm x 9.0mm x 5.7mm
power supply3.3 V
Certification statusNot Qualified
longest rise time0.85 ns
Maximum slew rate110 mA
Nominal supply voltage3.3 V
surface mountYES
maximum symmetry45/55 %
Crystal Clock Oscillator
Technical Data
Frequency Range:
Frequency Stability:
*Aging:
Temperature Range:
Operating:
Storage:
Supply Voltage (V
CC
):
Supply Current:
Output Drive:
ACTUAL SIZE
3.3V, PECL, FR4
SEL481 / SEL482 Series
200 MHz to 670 MHz
±20, ±25, ±50 or ±100 ppm over all conditions: calibration tolerance,
operating temperature, rated input (supply) voltage, load, *aging, shock
and vibration.
30 days (±7ppm in 10 years typical)
0 to +70°C or -40 to +85°C
-55 to +125°C
+3.3V PECL
85mA typ, 110mA max
Description
A crystal controlled, high frequency,
highly stable oscillator, compatible with
LVPECL logic. The output can be disabled
to facilitate testing or combining with mul-
tiple clocks. The oscillator is packaged
in leadless SMD FR4 SO20 available in
four (4) or six (6) pad configurations (see
part number builder) and achieves excep-
tional frequency stability. This oscillator
is ideal for today's automated assembly
environments.
Applications & Features
• SONET/SDH/DWDM linecards
• XGigE NICs
• Optical SOHO FTTC/FTTP OC-12
& STM-4 first/last mile networking
• 3.3V PECL (LVPECL) capability
• Frequency range from 200 to
670MHz
• Disable output feature available
• Economical and rugged FR4 package
• Guaranteed long-term aging avail-
able, consult SaRonix for details
• Designed for standard reflow and
washing techniques
• Available on tape & reel; 16mm tape,
500pcs per reel
• See SEL393x Series for frequencies
≤ 200MHz
• See SEL381x Series for comparable
performance in a smaller ceramic
5x7mm package
• See SDS3811 Series for new LVDS
capability in a smaller ceramic
5x7mm package
Symmetry:
45/55% max @ V
BB
or Complementary Outputs Crossing
Rise & Fall Times:
550ps typ, 850ps max, 20% to 80% of waveform
Logic 0:
≤ V
CC
-1.620V (-40 to 85°C )
Logic 1:
≥ V
CC
-1.025V (0 to +70°C), V
CC
-1.085V (-40 to 85°C)
Load:
50Ω to V
CC
-2V
Accumulated Jitter:
10ps RMS (1-sigma) max, accumulated in 20,000 adjacent periods
Phase Jitter:
3ps RMS (1-sigma) max, in 12kHz to 40MHz Freq. Band
Total Jitter:
50ps peak-to-peak max in 100,000 random periods
Output Enable/Disable for SEL481x (n/a for SEL4810):
Output Enable Voltage:
≤ Level 0 or open
Disable Voltage:
≥ Level 1 (Q & Q outputs disabled to High Impedance)
Output Enable/Disable for SEL482x:
Output Enable:
≥ Level 1 or open
Output Disable:
≤ Level 0 (Q & Q outputs disabled to High Impdeance)
Mechanical:
Shock:
Solderability:
Terminal Strength:
Vibration:
Resistance to Soldering Heat:
Solvent Resistance:
Environmental:
Thermal Shock:
Moisture Resistance:
MIL-STD-883, Method 2002, Condition B
MIL-STD-883, Method 2003
MIL-STD-883, Method 2004, Condition D
MIL-STD-883, Method 2007, Condition A
MIL-STD-202, Method 210, Condition I or J
MIL-STD-202, Method 215
MIL-STD-883, Method 1011, Condition A
MIL-STD-833, Method 1004
Solder Reflow Guide
½½½½½½½½½½½ ½ ½½
½½½
½½½
½½½
½½½½½½ ½½½ ½½½½
½½½½½½½ ½½½
½½½½½½½ ½½½ ½½½½½
½½½½½½½
Output Waveform
½½½½½½½½½½½½½
½½½½½ ½
½½½
½
½½
½½½
½½½½½½½
½½½½½½½½
½½½
½½½½½ ½
½
½½
½½½
½½½½½½½½
½½½ ½½½½ ½½½ ½½½
½½½½½½½ ½½½
½½½½
½ ½ ½ ½½½½½½½
½ ½½½ ½½½
½½ ½½½ ½½½
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