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New EB15E2 Series Alternative
We now offer a lower cost, quicker delivery alternative to the EB15E2 Series Oscillator (±50 and ±100 ppm only).
Our new MEMS oscillator is available in 2 days for samples and 5 to 10 days for quantities up to 10,000 pcs. All frequencies from
1.000MHz to 125.000MHz are offered at the same low cost. Click here for the alternative EMK32 Series
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EB15E2 Series Oscillator |
Check Stock
Quote/Sample
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- RoHS Compliant (Pb-Free)
- Ceramic surface mount package
- LVHCMOS output
- 2.5V supply voltage
- Stability to ±25ppm
- Available on tape & reel
- Standby Function
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Nominal Frequency |
1.8432MHz, 2.500MHz, 2.765MHz, 3.000MHz, 3.072MHz, 3.125MHz, 3.250MHz, 3.5795MHz, 3.6864MHz, 3.750MHz, 4.000MHz,
4.032MHz, 4.125MHz, 5.000MHz, 5.500MHz, 5.530MHz, 6.000MHz, 6.144MHz, 6.250MHz, 6.750MHz, 7.159MHz, 7.250MHz,
7.3728MHz, 8.000MHz, 8.064MHz, 8.250MHz, 8.2944MHz, 10.000MHz, 11.059MHz, 11.2896MHz, 12.000MHz, 12.288MHz, 12.800MHz,
13.000MHz, 13.500MHz, 14.3181MHz, 14.31818MHz, 14.746MHz, 15.000MHz, 16.000MHz, 16.9344MHz, 20.000MHz, 22.000MHz,
22.1184MHz, 24.000MHz, 24.576MHz, 25.000MHz, 26.000MHz, 27.000MHz, 28.375MHz, 28.636MHz, 29.4912MHz,
30.000MHz, 32.000MHz, 33.000MHz, 33.333MHz, 40.000MHz, 41.010MHz, 44.000MHz, 48.000MHz,
50.000MHz, 54.000MHz, 64.000MHz, 66.000MHz, 66.6666MHz, 72.000MHz, and 75.000MHz |
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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 Tolerance/Stability |
(Inclusive of all conditions: Calibration Tolerance at 25°C, Frequency Stability over the Operating Temperature Range,
Supply Voltage Change, Output Load Change, First Year Aging at 25°C, Shock and Vibration)
±100ppm Maximum
±50ppm Maximum
±25ppm Maximum
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This "inclusive" specification is the amount of frequency deviation
from the center frequency associated with a set of operating
conditions. These conditions include: Operating Temperature Range,
Supply Voltage, and Output Load. This parameter is specified with a
maximum and minimum frequency deviation, expressed in percent (%)
or parts per million (ppm).
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Operating Temperature Range |
-20°C to +70°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) |
2.5VDC ±5% |
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The DC input voltage necessary for oscillator operation, specified in
volts.
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Input Current |
5mA Maximum from 1.8432MHz to 20.000MHz
9mA Maximum from 20.001MHz to 40.000MHz
11mA Maximum from 40.001MHz to 60.000MHz
14mA Maximum from 60.001MHz to 75.000MHz
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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 Logic High (VOH) |
90% of VDD Minimum (IOH = -4mA) |
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Defined as the Output Voltage Logic High or "Logic 1"
(Figure 1 in oscillator
glossary of terms).
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Output Voltage Logic Low (VOL) |
10% of VDD Maximum (IOL = +4mA) |
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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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Duty Cycle |
Measured at 50% of Waveform
50 ±5(%)
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The measure of output waveform uniformity. This term, also referred
to as symmetry, is a measurement of the time that the output
waveform is in a logic high state, expressed as a percentage (%).
This parameter is measured at a specified voltage threshold or at a
percentage of the output waveform amplitude (Figure 1 in the oscillator glossary of terms).
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Rise Time/Fall Time |
Measured over 20% to 80% of Waveform
5nSec Maximum
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The Rise Time, measured in nanoseconds (nSec), is defined as the
transition time from an output logic low to an output logic high.
Conversely, the Fall Time, also measured in nanoseconds (nSec), is
defined as the transition time from an output logic high to an output
logic low. This transition time is measured at specified voltage
thresholds or at specified percentages of the output waveform
amplitude
(Figure 1 in the oscillator glossary of terms).
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Load Drive Capability |
15pF HCMOS Load Maximum |
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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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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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| Output Control Function |
Tri-State Enable High |
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| Tri-State Input Voltage |
>80% of VDD or No Connect to Enable Output.
<20% of VDD to Disable Output (High Impedance).
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| RMS Phase Jitter |
1pSec Maximum (Fj = 12kHz to 20MHz) |
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Start Up Time |
10mSec Maximum |
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The specified time from oscillator power-up to the time the oscillator
reaches steady state oscillation.
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| Standby Current |
10µA Maximum |
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| All Dimensions in Millimeters |
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| Pin 1: Tri-State |
Pin 3: Output |
| Pin 2: Case Ground |
Pin 4: 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 Webmaster. |
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| Line 1: |
EXX.X
- E = Ecliptek Designator
- XX.X = Frequency in MHz (3 Digits Maximum + Decimal)
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| Line 3: |
XX Y ZZ
- XX = Ecliptek Manufacturing Identifier
- Y = Last digit of Year
- ZZ = Week of Year
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| ESD Susceptibility: |
MIL-STD-883, Method 3015, Class 1, HBM:1500V |
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| Fine Leak Test: |
MIL-STD-883, Method 1014, Condition A |
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| Flammability: |
UL94-V0 |
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| Gross Leak Test: |
MIL-STD-883, Method 1014, Condition C |
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| Mechanical Shock: |
MIL-STD-883, Method 2002, Condition B |
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| Moisture Resistance: |
MIL-STD-883, Method 1004 |
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| Moisture Sensitivity: |
J-STD-020, MSL 1 |
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| Resistance to Soldering Heat: |
MIL-STD-202, Method 210, Condition K |
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| Resistance to Solvents: |
MIL-STD-202, Method 215 |
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| Solderability: |
MIL-STD-883, Method 2003 |
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| Temperature Cycling: |
MIL-STD-883, Method 1010, Condition B |
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| Vibration: |
MIL-STD-883, Method 2007, Condition A |
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