HDW8 MERCURY | Alldatasheet
Document overview
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Technical content
Outline Dimensions ( Unit : mm ) -119 -120Phase Noise ( typical ) [ 156.250 MHz ] Offset 10 Hz 100 Hz 1K Hz 10 KHz -115 -125 -140 BC For example : " I20 " ± 20 ppm over -40°C to +85°CEF Frequency Stability (1) Codes Frequency Stability over
0.9 V ( RL = 100 Ω )
typical 1.1 V ( RL = 100 Ω ) ± 25 ppm ± 50 ppm ± 100 ppm Industrial ( -40°C to +85°C ) D Aging ± 3 ppm per year (max.) desired stability after the " C " or " I " Commercial ( -10°C to +70°C ) A " C20 " ±20 ppm over -10°C to +70°C ; Mercury www .mercury-crystal.com Output Logic High " 1 " typical 1.43 V ( RL = 100 Ω ) max. 1.60 V ( RL = 100 Ω ) Output Logic Low " 0 " 100KHz 1 MHz 10 MHz dBc / Hz -60 -90 If non-standard , please enter the Operating Temperature Range 96.1 ~ 800.0 MHz 25 mA ( max. ) 65 mA ( max. ) 100 mA ( max. ) - 50°C to 100°C Start - Up Time (Ts) 10 m sec.( typical ) Storage Temperature Integrated Phase Noise ( 12 KHz to 20 MHz ) 2.6 ps ( typical ) ; 4.0 ps ( max.) Output Voltage Swing 350 mV min. ( VDD = +2.5V ) Duty Cycle 50% ± 10% [ 50% ± 5% is also available ] Load 50 Ω into Vcc - 2V or Thevenin equivalent Current Consumption ( 15 pF load ) < 24.0 MHz 24.1 ~ 96.0 MHz min. Paramenters Electrical Spec. Input Voltage ( VDD) 3.3 V ± 5 % Frequency Range / Load 750 KHz ~ 800,0 MHz General Specifications Output Wave Form LVDS output
Applications
- For high frequency LVDS output clock oscillators .
- " HDW " use a high-Q fundamental crystal and a multiplier circuit for low cost applications. Oscillators Series [ Differential LVDS ] HDW8 series 3.3 V Dip type LVDS output 12.8 x 12.8 x 5.5 mm