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  manufacturer category series package voltage class rev . date ecliptek corp. oscillator el13d8 ceramic 3.3v os4q 10/07 el13d8 series oscillator el13d8 electrical specifications 800-ecliptek www.ecliptek.com for latest revision specifications subject to change without notice. ? rohs compliant (pb-free) ? lvds output oscillators ? 3.3v supply voltage ? ceramic 6-pad smd package ? stability to 25ppm ? tri-state output ? complementary output ? available on tape and reel ? wide range of available frequencies h 2.0 l 7.0 w 5.0 75mhz, 77.76mhz, 80mhz, 100mhz, 106.25mhz, 125mhz, 150mhz, 155.52mhz, 156.25mhz, 159.375mhz, 187.5mhz, 212.5mhz, 250mhz, 311.04mhz, 312.5mhz 0c to +70c, or -40c to +85c -55c to 125c 3.3v dc 5% 85ma maximum 50ppm maximum, or 25ppm maximum 1.45v dc typical, 1.6v dc maximum 1.1v dc typical, 0.9v dc minimum -50mv minimum, +50mv maximum 247mv minimum, 350mv typical, 454mv maximum 1.125vdc minimum, 1.250vdc typical, 1.375vdc maximum 300psec typical, 600psec maximum 50 5(%) -150mv minimum, +150mv maximum 100 ohms tri-state and complementary output enables output enables output disables output: high impedance 600a maximum 10 mseconds maximum 0.7psec typical, 1 psec maximum -60dbc/hz at 10hz offset -90dbc/hz at 100hz offset -115dbc/hz at 1khz offset -129dbc/hz at 10khz offset -130dbc/hz at 100khz offset -131dbc/hz at 1mhz offset -148dbc/hz at 10mhz offset nominal frequency operating temperature range storage temperature range supply voltage (v cc ) input current frequency tolerance / stability output voltage logic high (v oh ) output voltage logic low (v ol ) v od magnitude change ( d v od ) differential output voltage (v od ) offset voltage (v os ) rise time / fall time duty cycle v os magnitude change ( d v os ) load drive capability logic control / additional output tri-state input voltage standby current start up time rms phase jitter typical phase noise with load inclusive of all conditions: calibration tolerance at 25c, frequency stability over the operating temperature range, supply voltage change, output load change, 1st year aging at 25c, shock, and vibration 20% to 80% of waveform at 50% of waveform between output and complementary output v ih of 70% of v cc minimum no connection v il of 30% of v cc maximum disabled output, high impedance, without load fj = 12khz to 20mhz fo=156.250mhz
line 1: ecliptek line 2: xx.xxx m frequency in mhz (5 digits maximum + decimal) line 3: xx y zz week of year last digit of year ecliptek manufacturing identifier manufacturer category series package voltage class rev . date ecliptek corp. oscillator el13d8 ceramic 3.3v os4q 10/07 mechanical dimensions all dimensions in millimeters environmental/mechanical specifications marking specifications tape and reel dimensions all dimensions in millimeters suggested solder pad layout all dimensions in millimeters 800-ecliptek www.ecliptek.com for latest revision specifications subject to change without notice. el13d8 d 2 f - 155.520m tr part numbering guide available options blank=tubes tr=tape and reel (standard) frequency logic control/additional output f=tri-state and complementary output duty cycle 2=50 5(%) frequency tolerance & stability/ operating temperature range c=25ppm maximum over 0c to +70c d=50ppm maximum over 0c to +70c g=25ppm maximum over -40c to +85c h=50ppm maximum over -40c to +85c a b c d e f 16.3-.1 7.5.1 6.75.1 4 .1 2.1 f g h j k l 8.1 b0* 1.5 +.1-0 a0* .3 .05 k0* tape m n o p q 1.5 min 50 min 20.2 min 13.2 40 min r s t u v qty/reel 2.5 min 10 min 22.4 max 360 max 16.4+2-0 1,000 reel *compliant to eia 481a tolerances= +0.1 characteristic specification fine leak test mil-std-883, method 1014, condition a gross leak test mil-std-883, method 1014, condition c mechanical shock mil-std-202, method 213, condition c vibration mil-std-883, method 2007, condition a solderability mil-std-883, method 2002 temperature cycling mil-std-883, method 1010 resistance to soldering heat mil-std-202, method 210 resistance to solvents mil-std-202, method 215 pin 1: tri-state pin 2: no connect pin 3: case ground pin 4: output pin 5: complementary output pin 6: supply voltage


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