Absolute Ratings: Stresses beyond those listed under "absolute maximum ratings" may cause permanent damage to the device. These are stress ratings only. The functional operation of the device at those
or any other conditions beyond those indicated under "recommended operating conditions" is not implied. Exposure to conditions outside the "recommended operating conditions" for any extended period of
time may adversely impact device reliability and result in failures not covered by warranty.
Operating Specifications for TX14-28xxx Series
Parameter
Minimum
Nominal
Maximum
50
1.0
0.28
0.32
50
50
3.0
40
4.63E-13
4.60
Units
MHz
ppm
ppm
ppm
ppb
ppb
ppm
ppb/day
ppm
Notes
1
2
3
±5%
±5%
Frequency Range: (Fo)
1.0
-
Frequency Calibration:
-1.0
-
Frequency Stability vs. Change in Temperature: (See Ordering Information)
Stability Code 28
-0.28
-
Holdover Stability:
-0.32
-
Frequency Stability vs. Load
-50
-
Frequency Stability vs. Voltage
-50
-
Aging / Life: (20 Years)
-3.0
-
Aging / Day:(@25 °C)
-40
-
Aging / Second:
-4.63E-13
-
Total Frequency Tolerance (20 Years)
-4.60
-
4
Operating Specifications for TX14-05xxx Series
Parameter
Minimum
Nominal
Maximum
100
1.0
0.50
50
50
3.0
4.60
Units
MHz
ppm
ppm
ppb
ppb
ppm
ppm
Notes
1
2
±5%
±5%
4
Frequency Range: (Fo)
1.0
-
Frequency Calibration:
-1.0
-
Frequency Stability vs. Change in Temperature: (See Ordering Information)
Stability Code 05
-0.50
-
Frequency Stability vs. Load
-50
-
Frequency Stability vs. Voltage
-50
-
Aging / Life: (20 Years)
-3.0
-
Total Frequency Tolerance (20 Years)
-4.60
-
Operating Specifications for TX14-10xxx Series
Parameter
Minimum
Nominal
Maximum
100
1.0
1.00
50
50
3.0
4.60
Units
MHz
ppm
ppm
ppb
ppb
ppm
ppm
Notes
1
2
±5%
±5%
4
Frequency Range: (Fo)
1.0
-
Frequency Calibration:
-1.0
-
Frequency Stability vs. Change in Temperature: (See Ordering Information)
Stability Code 10
-1.00
-
Frequency Stability vs. Load
-50
-
Frequency Stability vs. Voltage
-50
-
Aging / Life: (20 Years)
-3.0
-
Total Frequency Tolerance (20 Years)
-4.60
-
Operating Specifications for TX14-25xxx Series
Parameter
Minimum
Nominal
Maximum
100
1.0
2.50
50
50
3.0
6.1
Units
MHz
ppm
ppm
ppb
ppb
ppm
ppm
Bulletin
Page
Revision
Date
Notes
1
2
±5%
±5%
4
Tx343
2 of 4
04
11 Oct 2016
Frequency Range: (Fo)
1.0
-
Frequency Calibration:
-1.0
-
Frequency Stability vs. Change in Temperature: (See Ordering Information)
Stability Code 25
-2.50
-
Frequency Stability vs. Load
-50
-
Frequency Stability vs. Voltage
-50
-
Aging / Life: (20 Years)
-3.0
-
Total Frequency Tolerance (20 Years)
-6.1
-
Notes:
1.
2.
3.
4.
Initial calibration @ 25°C. Specifications at time of shipment after 48 hours of operation. For VCTCXO control voltage must be fixed.
Frequency stability vs. change in temperature. [±(Fmax - Fmin)/(2*Fo)].
Inclusive of frequency stability, supply voltage change (±1%), aging, for 24 hours.
Inclusive of calibration @ 25°C, frequency vs. change in temperature, change in supply voltage (±5%), load change (±5%), shock and vibration and 20 years aging.
Specifications subject to change without notification. See Connor-Winfield's website for latest revision. All dimensions in inches.
Enable / Disable Code T (See Ordering Information)
Enable Voltage (High) or Open Circuit
70%Vcc
Disable Voltage (Low) Output Tri-Stated
-
TX14-Series Package
Shock
Sinusoidal Vibration
Random Vibration
Moisture
Marking Permanency
Solder Process
Package Characteristics
4 Pin DIP Hermetically Sealed Metal Package
1
Environmental Characteristics
500 G’s 1ms, Halfsine, 3 shocks per direction, per MIL-STD 202G, Method 213B Test Condition D.
0.06” D.A. or 10G’s Peak, 10 to 500 Hz, per MIL-STD-202G, Method 204D, Test Condition A.
5.35 G’s rms. 20 to 2000 Hz per MIL-STD-202G, Method 214,Test Condition 1A, 15 minutes each axis.
10 cycles, 95% RH, Per MIL-STD-202G, Method 112.
Per MIL-STD-202G, Method 215J.
RoHS compliant, lead free. See solder profile below.
CMOS Test Circuit
Clipped Sinewave Test Circuit
Top
View
E/D
or
Vc
15pF
E/D
or
Vc
Top
View
10K 10pF
Ohm
Attention: To achieve optimal frequency stability, and in some cases to meet the specification stated on this data sheet, it is required that the circuit connected to this TCXO output must have the
equivalent input capacitance that is specified by the nominal load capacitance. Deviations from the nominal load capacitance will have a graduated effect on the stability
of approximately 20 ppb per pF load difference.
CMOS Output Waveform
Clipped Sinewave Output Waveform
0
200 mV/Div
1V/Div
Phase Noise Plot
RoHS Solder Profile
Temperature
260°C
220°C
180°C
150°C
120°C
260°C
0
10 s
Up to 120 s
60 to 90 s
Typical
Typical
Meets IPC/JEDEC J-STD-020C
Bulletin
Page
Revision
Date
Specifications subject to change without notification. See Connor-Winfield's website for latest revision. All dimensions in inches.
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