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ES52C1 Series TCXO |
Stock Search
Quote/Sample
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- Temperature Compensated Crystal Oscillators (TCXO)
- Clipped Sinewave Output
- +3.3V Supply Voltage
- External Voltage Control Option
- 4 Pad Ceramic SMD Package
- RoHS Compliant (Pb-Free)
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Nominal Frequency |
10.000MHz, 10.240MHz, 12.000MHz, 12.288MHz, 12.800MHz,
13.000MHz, 14.000MHz, 14.400MHz, 14.7456MHz, 15.360MHz, 16.000MHz,
16.384MHz, 16.800MHz, 17.500MHz, 18.432MHz, 19.200MHz, 19.440MHz, 20.000MHz, 20.480MHz,
24.000MHz, 24.5535MHz, 24.576MHz, 25.000MHz, 27.000MHz, 30.000MHz, 30.720MHz, 32.000MHz, 38.880MHz or 40.000MHz
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The specified reference or "center" frequency of the oscillator.
Typically specified in megahertz (MHz)or kilohertz (kHz).
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| Frequency Stability |
| vs. Operating Temperature Range: |
±1.0ppm Maximum
±1.5ppm Maximum
±2.0ppm Maximum
±2.5ppm Maximum
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| vs. Frequency Tolerance (25°C ±2°C, VDD=3.3VDC, VC=1.5VDC): |
±1.0ppm Maximum |
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| vs. Input Voltage (±5%): |
±0.2ppm Maximum |
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| vs. Load (±1kΩ//±1pF): |
±0.2ppm Maximum |
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| vs. Aging (at 25°C): |
±1.0ppm/year Maximum |
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Operating Temperature Range |
0°C to 50°C
0°C to 70°C
-20°C to 70°C
-30°C to 85°C
-40°C to 85°C
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The maximum and minimum temperatures that
the oscillator device can be exposed to during oscillation. Over this
temperature range, all of the specified device operating
parameters are guaranteed.
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Supply Voltage (VDD) |
3.3VDC ±5% |
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The DC input voltage necessary for oscillator operation, specified in
volts.
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Input Current |
1.5mA Maximum from 10.000MHz to 14.999999MHz
2.0mA Maximum from 15.000MHz to 25.999999MHz
2.5mA Maximum from 26.000MHZ to 40.000MHz
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The amount of current consumption by an oscillator from the power
supply, typically specified in milliamps (mA).
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| Output Voltage |
0.8VP-P Clipped Sinewave Minimum |
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| External Trim(Voltage Control Option) |
1.5VDC±1.0VDC;Positive Transfer Characteristic ±8ppm Minimum |
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Defined as the Output Voltage Logic Low or "Logic 0"
(Figure 1 in oscillator
glossary of terms).
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Load Drive Capability |
10kΩ // 10pF |
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The maximum load the oscillator can drive specified in terms of the
number of gates or the type of load circuit (Figures 2, 3 and 4 in oscillator glossary of terms).
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| Linearity |
10% Maximum |
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| Modulation Bandwith |
3kHz Minimum Measured at -3dB, VC=1.5VDC |
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| Input Impedance |
100kΩ Minimum |
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| Start Up Time |
5mSec Maximum |
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Storage Temperature |
-55°C to +125°C |
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The minimum and maximum temperatures that the device can
be stored or exposed to when in a non-oscillation state. After exposing or
storing the device at the minimum or maximum temperatures for a length of
time, all of the operating specifications are guaranteed over the specified
Operating Temperature Range.
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| Typical Phase Noise |
Measured at 12.800MHz
-80dBc/Hz Typical at 10Hz Offset
-115dBc/Hz Typical at 100Hz Offset
-135dBc/Hz Typical at 1kHz Offset
-145dBc/Hz Typical at 10kHz Offset
-145dBc/Hz Typical at 100kHz Offset
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| All Dimensions in Millimeters |
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| Pin 1: Voltage Control or No Connect |
Pin 6: Output |
| Pin 2: Do Not Connect |
Pin 7: Do Not Connect |
| Pin 3: Do Not Connect |
Pin 8: Do Not Connect |
| Pin 4: Do Not Connect |
Pin 9: Do Not Connect |
| Pin 5: Case Ground |
Pin 10: Supply Voltage |
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| Please note that this form is intended to provide a listing
of standard options. If you require an option or configuration
that is not present here, you may want to fill out our
Custom Oscillator Part Number Request Form. If you have any trouble with
this form, or just have a suggestion as to how it might be improved, please
contact our Global Customer Support Team. |
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| Line 1: |
EXX.XXX
- E = Ecliptek
- XX.XXX = Frequency (5 Digits Maximum + Decimal)
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| Line 2: |
XXYZZ
- XX = Ecliptek Manufacturing Code
- Y = Last Digit of Year
- ZZ = Week of Year
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| Fine Leak Test: |
MIL-STD-883, Method 1014, Condition A |
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| Gross Leak Test: |
MIL-STD-883, Method 1014, Condition C |
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| Mechanical Shock: |
MIL-STD-202, Method 213, Condition C |
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| Vibration: |
MIL-STD-883, Method 2007, Condition A |
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| Solderability: |
MIL-STD-883, Method 2003 |
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| Temperature Cycling: |
MIL-STD-883, Method 1010 |
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| Resistance to Soldering Heat: |
MIL-STD-202, Method 210 |
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| Resistance to Solvents: |
MIL-STD-202, Method 215 |
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