• Part: 88SMO
  • Description: Low Voltage Differential Signaling Oscillators
  • Manufacturer: SMI
  • Size: 128.67 KB
Download 88SMO Datasheet PDF
SMI
88SMO
88SMO is Low Voltage Differential Signaling Oscillators manufactured by SMI.
Appendix Low Voltage Differential Signaling Oscillators 87SMO & 88SMO (+3.3V LVDS MODELS) 87SMO & 88SMO STANDARD SPECIFICATIONS Item Generic part number Frequency range Frequency stability STANDARD SMD CLOCK OSCILLATORS LVDS Condition Specifications 87SMO or 88SMO 1 10.9000 MHz to 670.000 MHz 87SMO(B) : 50 ppm 88SMO(B) : 50 ppm 87SMO(C) : 30 ppm 88SMO(C) : 30 ppm 87SMO(D) : 25 ppm 88SMO(D) : 25 ppm 87SMO(E) : 20 ppm 88SMO(E) : 20 ppm -10˚C to 70˚C -40˚C to 85˚C (W) 3.3V DC 10% Vi H: 2.0V min. Vi L: 0.8V max. -0.5V to 5.0V -55˚C to 125˚C 80 m A max. 20 A max. 47% to 53% 230 p S max. VOL : 0.90V min. VOH : 1.60V max. 100 (OUT-OUTN) LVDS 250 to 450 m V 1.125 to 1.375 V 50 m V max. 10 n S max. 10 n S max. 5 m S max. 50 K min. -20 m A max. 0.6 p S max. 2.8 p S max. 5 ppm max. For all supply voltages, load changes, shock, vibration and temperature. 87SMO & 88SMO 7.0±0.2 #6 #5 #4 5.0±0.2 Operating Conditions Operating temperature Input voltage(VDD) Stand-by control voltage Absolute Max. Ratings Supply voltage Storage temperature Input current Stand-by current 2 Output Symmetry Rise and fall times "0" level "1" level Load Waveform Differential output voltage Output offset voltage Differential output Error Enable time Disable time Startup time Enable/Disable Internal Pull-up Output short circuit corrent RMS jitter Aging Reflow condition Standard temperature range Extended temperature range Referenced to Ground Referenced to Ground #1 #2 #3 1.14 1.14 0.26 1.4 1.4 1.4 #1 #6 #2 #5 2.54 2.54 5.08 #3 #4 1.2 2.6 1.2 1.7max. Referenced to 50% of amplitude or crossing point Vth is 20% and 80% of wave form 87SMO PIN 1 2 3 4 5 6 CONNECTION OPEN or "H" "L" N.C. GND Z OUTPUT Z C-OUTPUT VDD Z : high impedance PIN 1 2 3 4 5 6 "L" CONNECTION N.C. OPEN or "H" GND OUTPUT Z Z C-OUTPUT VDD Z : high impedance OUTPUT WAVEFORM t TR T VPP VOS VOL GND TF VOH 80% VPP 50% VPP 20% VPP Symmetry=t/T 100(%) Time for output to reach a logic state Time for output to reach a high Z state...