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  features - high reliability for low cost - available as tcxo and vctcxo - temperature stability of +-1 ppm available - excellent phase noise performance - low power consumption - cheapest available leaded smd-tcxo in 6 pin metal package series package hcmos / ttl clipped sine wave vs. temperature vs. supply voltage vs. load vs. aging operating temperature range storage temperature range voltage standard option rise and fall time for hcmos rise and fall time for ttl "0" level "1" level "0" level "1" level clipped sine wave hcmos ttl clipped sine wave standard option external control voltage 10 hz offset from carrier 100 hz offset from carrier 1 khz offset from carrier 10 khz offset from carrier 100 khz offset from carrier pin 1 pin 2 pin 3 pin 4 pin 5 pin 6 load output frequency stability hcmos pin connection signals frequency adjustment phase noise (typical) input ttl petermann-technik | amselweg 8 | d-86916 kaufering fon: 00 49 (0) 81 91 / 30 53 95 | fax: 00 49 (0) 81 91 / 30 53 97 http://www.petermann-technik.de | info@petermann-technik.de other parameters are available on request / create here your specification ground output supply voltage ground -150 dbc/hz 1.0 v peak to peak min. 2.4 vdc min. M4517 smd-package 11.4 x 9.6 x 4.0 mm3 with 6 pins 1.25 ~ 27.000 mhz 10.0 ~ 27.000 mhz +-1 ~ +-5 ppm +-0.5 ppm max. / 5vdc +-5% +-0.2 ppm max. / 10 pf ~ 20 pf +-1 ppm max. per year +-5 ppm min. by external control voltage 10% vdd max. 90% vdd min. +5.0 vdc +-5% 45/55% for hcmos / ttl 10 ns max. (0.4 to 2.4 volt) +-3 ppm min. per internal trimmer 2 ttl 20 ma max. for hcmos / ttl 3 ma max. for clipped sine wave - extended temperature range to -40/+85c available 10 ns max. (10% vdd to 90% vdd) hcmos / ttl clipped sine wave symmetry frequency range current -0/+50c ~ -40/+85c -40/+85c 40/60% for hcmos / ttl n.c. or control voltage 0.4 vdc max. 15 pf 10 k ? / 10 pf ground 2.5 vdc +-2 vdc -145 dbc/hz -80 dbc/hz -105 dbc/hz -130 dbc/hz petermann technik time & frequency components
petermann technik time & frequency components petermann-technik | amselweg 8 | d-86916 kaufering fon: 00 49 (0) 81 91 / 30 53 95 | fax: 00 49 (0) 81 91 / 30 53 97 http://www.petermann-technik.de | info@petermann-technik.de part numbering guide example M4517-s-j-10-s-v-27.000mhz series M4517 s = clipped sine wave t = ttl output signal h = hcmos j = 0/+50c n = -10/+60c x = 0/+70c m = -20/+70c k = -30/+75c temperature range w = -40/+85c 10 = +-1.0 ppm 15 = +-1.5 ppm 20 = +-2.0 ppm 25 = +-2.5 ppm 50 = +-5.0 ppm stability vs. temperature x = other value - please indicate your required value blank = 40/60% symmetry for hcmos / ttl s = 45/55% blank = tcxo vctcxo option v = vctcxo (external voltage control 2.5 +-2.0 vdc for +-5 ppm min.) frequency frequency in mhz tape and reel package -t outline drawing M4517 7.62 2.0 9 . 2 1.4 #3 #2 - - pin #1 #2 #3 #4 function ground output #5 #6 n.c. or control volt. v dd unit:mm - #1 #4 #5 #6 4 . 2 2.54 0.8 typ 7.62+0.3 - 2.54+0.3 - - #1 #6 #5 #4 #3 #2 2 . 5 + 0 . 3 - 4.0max ground ground 03.5+0.3 - reflow solder profile 240c 150c 25c reflow 240c max. time 1 - 2 minutes 10s max. 4c/s max. t e m p e r a t u r e cooling
petermann technik time & frequency components petermann-technik | amselweg 8 | d-86916 kaufering fon: 00 49 (0) 81 91 / 30 53 95 | fax: 00 49 (0) 81 91 / 30 53 97 http://www.petermann-technik.de | info@petermann-technik.de test circuit for hcmos test point + - ma m vm power supply + - + - 0,1f oscillator out gnd #1 #3 #4 #6 n.c. or control voltage note: cl includes probe and fixture capacitance v dd c=15pf l #2 #5 gnd test circuit for ttl test point + - ma m vm power supply + - + - 0,1f oscillator out gnd #1 #3 #4 #6 1n4148 or equiv n.c. or control voltage note: cl includes probe and fixture capacitance v dd r=390 l c=15pf l #2 #5 gnd test circuit for clipped sine wave test point + - ma m vm power supply + - + - 0,1f oscillator out gnd #1 #3 #4 #6 n.c. or control voltage note: cl includes probe and fixture capacitance v dd 10k c=10pf l #2 #5 gnd (hcmos load) tr tf th t v ol duty=th/t v oh 90%v dd 50%v dd 10%v dd (ttl load) tr tf th t v ol duty=th/t v oh 2.4v 1.4v 0.4v 0.0v dc v 1v min p-p clipped sine wave


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