Minimum Nominal Frequency at 25 Degrees Celsius (ºC) Temperature Set Point |
N/A 10 MHz |
Maximum Nominal Frequency at 25 Degrees Celsius (ºC) Temperature Set Point |
N/A 50 MHz |
Maximum Acceleration Sensitivity1 | N/A 2.5 ppb/g7 ppb/g |
Maximum Frequency Versus Reflow after 24 Hour Recovery |
N/A 1 ppm |
Typical Aging Per Year at 10 Megahertz (MHz) Frequency |
N/A ±0.5 ppm |
Typical Frequency Stability (±) at-20 to +70 Degrees Celsius (ºC) Temperature |
N/A 0.1 ppm |
Typical Frequency Stability (±) at-40 to +85 Degrees Celsius (ºC) Temperature |
N/A 0.3 ppm |
Typical Frequency Stability (±) at-55 to +95 Degrees Celsius (ºC) Temperature |
N/A 1.0 ppm |
Typical Electronic Frequency Control (±) |
N/A 7 ppm |
Note for Typical Electronic Frequency Control (±) |
N/A EFC = 0 to VDD Positive slope |
Typical Frequency Stability (±) at 10 to 60 Degrees Celsius (ºC) Temperature |
N/A 0.1 ppm |
Maximum Aging Per Year at 10 Megahertz (MHz) Frequency |
N/A ±1 ppm |
Minimum Level at 3.3 Volt (V) Supply Voltage |
N/A + 2.8 V "1" Level |
Maximum Level at 3.3 Volt (V) Supply Voltage |
N/A + 0.2 V "0" Level |
Typical Load at 10 Kiloohm (kO) Resistance |
N/A 10 pF |
Typical Load |
N/A 15 pF |
Minimum Symmetry |
N/A 40 % |
Typical Symmetry |
N/A 50 % |
Maximum Symmetry |
N/A 60 % |
Minimum Level |
N/A +0.8 Vpp |
Minimum Level at 5.0 Volt (V) Supply Voltage |
N/A + 4.2 V "1" Level |
Maximum Level at 5.0 Volt (V) Supply Voltage |
N/A + 0.2 V "0" Level |
Minimum Direct Current (DC) Supply Voltage Drain to Drain (VDD) |
N/A 3.0 V4.75 V |
Typical Direct Current (DC) Supply Voltage Drain to Drain (VDD) |
N/A 3.3 V5.0 V |
Maximum Direct Current (DC) Supply Voltage Drain to Drain (VDD) |
N/A 3.6 V5.25 V |
Maximum Input Current for Metal-Oxide-Semiconductor (CMOS) |
N/A 6 mA |
Maximum Input Current for Clipped Sinewave |
N/A 3 mA |
Vibration |
N/A
Conditions MIL-STD-202G Method 214A, I-F Notes 0.3 PSD, 20.71 g RMS |
Shock |
N/A
Conditions MIL-STD-202G Method 213, I Notes 100 g, 5 ms, Sawtooth Shock available up to 50,000 g |
Applications |
N/A
|
Features |
N/A
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