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FREQCFPT-5301BSC

Description
HCMOS Output Clock Oscillator, 1.25MHz Min, 40MHz Max, RESISTANCE WELDED, HERMATICALLY SEALED, DIP-14/4
CategoryPassive components    oscillator   
File Size64KB,3 Pages
ManufacturerC-MAC Automotive
Websitehttps://cmac.com
Download Datasheet Parametric View All

FREQCFPT-5301BSC Overview

HCMOS Output Clock Oscillator, 1.25MHz Min, 40MHz Max, RESISTANCE WELDED, HERMATICALLY SEALED, DIP-14/4

FREQCFPT-5301BSC Parametric

Parameter NameAttribute value
Reach Compliance Codeunknown
Ageing2 PPM/FIRST YEAR
maximum descent time8 ns
Frequency Adjustment - MechanicalNO
frequency stability0.8%
Manufacturer's serial numberCFPT-5300
Installation featuresTHROUGH HOLE MOUNT
Maximum operating frequency40 MHz
Minimum operating frequency1.25 MHz
Maximum operating temperature70 °C
Minimum operating temperature-20 °C
Oscillator typeHCMOS
Output load15 pF
physical size20.7mm x 13.08mm x 5.08mm
longest rise time8 ns
Maximum supply voltage3.63 V
Minimum supply voltage2.97 V
Nominal supply voltage3.3 V
surface mountNO
maximum symmetry45/55 %
Base Number Matches1
CFPT-5300 SERIES
ISSUE 1; 15 OCTOBER 2004
Delivery Options
Please contact our sales office for current lead times
Description
Package Outline
Low Profile DIL 14 resistance welded enclosure,
hermetically sealed
Ageing
The CFPT-5300 series of temperature compensated
crystal oscillators (TCXOs), provide for ultra high stabilities
down to ±0.3ppm and operating temperature ranges as
wide as -55 to 95°C. Housed in an industry standard 4 pin
DIL 14 package, the oscillator uses C-MAC’s latest custom
ASIC “Pluto” a single chip oscillator and analogue
,
compensation circuit. Its wide frequency range, operating
temperature range, coupled with it’s high stability and linear
frequency pulling make it the ideal reference oscilator. Its
ability to function down to supply voltage of 2.4V and low
power consumption makes it suitable for a wide range of
applications
±1ppm
±3ppm
±2ppm
±5ppm
maximum
maximum
maximum
maximum
in first year, frequency < 20MHz
for 10 years, frequency < 20MHz
in first year, frequency > 20MHz
for 10 years, frequency > 20MHz
Frequency Stability
Temperature: see table
Supply Voltage Variation ±10% < ±0.2ppm*
Load co-efficient 15pF ±5pF < ±0.2ppm*
* Dependent on frequency and output type
Standard Frequency
Frequency Adjustment
3.2, 4.096, 5.0, 6.4, 8.192, 9.6, 10.0, 12.8, 13.0, 14.4,
14.85, 16.384, 16.8, 19.2, 19.44, 19.8, 20, 32.768, 38.88,
40.0 MHz
Non - standard frequencies in the range 1.25MHz to
40.0MHz are available on request, please contact our
sales office
Waveform
Square HCMOS 15pF load
The following non-standard outputs are available on
request, contact sales office:
Option A (standard):
Control Voltage 1.5V±1.0V, applied to pin 1
> ±5ppm*, frequency < 20MHz
> ±7ppm, frequency > 20MHz
Linearity
<3%
Slope
Positive
Input resistance
>100kΩ
Modulation Bandwidth
>2kHz
Option B:
> ±5ppm *(>±7ppm if frequency >20MHz) by means
of an external 100kΩ potentiometer connected as a
variable resistor from pin 1 to GND
Square ACMOS 50pF max load
Sinewave, > 1.0pk-pk, 10kΩ // 10pF load
Clipped Sinewave, >0.8Vpk-pk, 10kΩ // 10pF load
Sinewave and clipped sinewave signals are superimposed
on a DC offset, to remove this offset insert an external
coupling capacitor in series with the output
* Higher adjustment range up to ±50ppm and
non standard control voltage ranges are available on
request. This may not be compatible with all stability
options, contact sales office
LEADED TCXOs
Supply Voltages
Option C:
No frequency adjustment, initial calibration @25°C
<±1.0ppm
3.3V or 5.0V
(non standard supply voltages in the range 2.4V to 6.0V are
available on request, please contact our sales office)
Storage Temperature Range
-55 to 95°C
Current Consumption
HCMOS Typically
»
1+Frequency(MHz)*Supply(V)*{Load(pF)+15}*10-3mA
Eg 20MHz, 5V, 15pF
»
4mA
Sinewave, < 8mA
Clipped sinewave,
1+Frequency(MHz)*1.2*{Load(pF)+30}*10-3mA
Europe Tel: +44 (0)1460 270200
Americas Tel: +1 919 941 9333
Asia
Tel: +86 755 8826 5991
Fax: +44 (0)1460 72578
Fax: +1 919 941 9371
Fax: +86 755 8826 5990
Website: www.cmac.com
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