EEWORLDEEWORLDEEWORLD

Part Number

Search

OC-160-CJD-509DA-19.44MHZ

Description
Sine Output Oscillator, 19.44MHz Nom,
CategoryPassive components    oscillator   
File Size63KB,2 Pages
ManufacturerMicrosemi
Websitehttps://www.microsemi.com
Download Datasheet Parametric View All

OC-160-CJD-509DA-19.44MHZ Overview

Sine Output Oscillator, 19.44MHz Nom,

OC-160-CJD-509DA-19.44MHZ Parametric

Parameter NameAttribute value
MakerMicrosemi
Reach Compliance Codecompli
Ageing0.1 PPM/YEAR
Frequency Adjustment - MechanicalNO
frequency stability0.005%
Frequency Stability - Voltage0.0005 ppm
input power2.5 W
Installation featuresTHROUGH HOLE MOUNT
offset frequency1 kHz
Nominal operating frequency19.44 MHz
Maximum operating temperature50 °C
Minimum operating temperature-20 °C
Oscillator typeSINE
Output impedance50 Ω
Output level0.5 V
Oven power supply voltage5V
phase noise-145 dBc/Hz
physical size36.07mm x 27.18mm x 19.3mm
Nominal supply voltage5 V
surface mountNO
Preheating power6 W
Maximum warm-up time4 Minute
Oven Controlled Crystal Oscillators (OCXO’s)
OC-160 Series (CO-730C)
Description:
The OC-160 Series offers low aging and excellent stability
options with quick warm-up performance with a standard
European CO-08 footprint.
Features:
Frequencies: 5, 10, 12.8, 13, 16.384, 19.44, 20, 20.48 MHz
European CO-08 Package
Excellent Temperature Stability
Superior Aging Characteristics
Very Fast Warm-up
Performance Characteristics
Parameter
Standard
Frequencies:
Package Size:
Supply Voltage:
Input Power:
Output Type:
Output Level (HCMOS):
Rise/Fall Time tr/tf (HCMOS):
Symmetry (Duty/Cycle,HCMOS):
Harmonics/subs:
Spurious:
Temperature Stability:
Characteristics
5, 10, 12.8, 13, 16.384, 19.44, 20, 20.48 MHz, Available 1 MHz to 80 MHz
35.3 x 26.9 x 19.4 mm (1.4” x 1.06” x 0.76”)
A:
15 Vdc ±5%
B:
12 Vdc ±5%
C:
5 Vdc ±5%
<6W turn-on (-20
o
C/70°C);
A:
HCMOS
<2.5W steady-state @ +25°C (-20°C/70°C)
K:
Sinewave ( >+10 dBm into 50 ohm)
Aging:
Short Term Stability (Allan Deviation):
Phase Noise (Typical @ 10 MHz):
Frequency vs. Supply:
Warm-up (Restabilization):
(Frequency relative to two hours after
turn-on following 24 hours off time
at +25
o
C with a maximum ambient
of <70
o
C)
Electrical Frequency Adjust:
Mechanical Configuration:
J:
Sinewave ( >+7 dBm into 50 ohm)
L:
Sinewave ( >+13 dBm into 50 ohm)
“0” <0. 5V, “1” >4.5V
(HCMOS)
<10 ns (10% - 90%)
(HCMOS)
50/50 ±10% (@50% level)
(HCMOS)
-20 dBc (reduced level sinewave, for optional output)
-70 dBc (for sinewave output)
B-308:
±3 x 10
-8 over
0/50°C
B-109:
±1 x 10
-9 over
0/50°C
D-508:
±5 x 10
-8 over
-20/70°C
D-509:
±5 x 10
-9 over
-20/70°C
Note: Tighter stability options
F-107:
±1 x 10
-7 over
-40/85°C
are available, contact factory.
F-108:
±1 x 10
-8 over
-40/85°C
A:
1 x 10
-8
/day, 2x10
-6
/year
B:
3 x 10
-9
/day, 1x10
-6
/year
C:
1 x 10
-9
/day, 3x10
-7
/year
D:
5 x 10
-10
/day, 1x10
-7
/year
5 x 10
-11
/second (with aging
A
or
B);
5 x 10
-12
/second (with aging
C
or
D)
With Aging:
A or B
Aging: C or D
10 Hz
-100 dBc/Hz
-120 dBc/Hz
100 Hz
-135 dBc/Hz
-140 dBc/Hz
1 kHz
-145 dBc/Hz
-145 dBc/Hz
10 kHz
-150 dBc/Hz
-150 dBc/Hz
50 kHz
-150 dBc/Hz
-150 dBc/Hz
2 x 10-9 per % change in supply (with Aging
A
or
B)
5 x 10-10 per % change in supply (with Aging
C
or
D)
With Aging:
A or B
Aging: C or D
-6
: 6 minutes 1 x 10
-6
: 2 minutes
1 x 10
1 x 10
-7
: 8 minutes 1 x 10
-7
: 2.5 minutes
3 x 10
-8
: 10 minutes 3 x 10
-8
: 3 minutes
3 x 10
-8
: 30 minutes 1 x 10
-8
: 4 minutes
10 x 10-6 typical range (with Aging
A or B)
2 x 10-6 typical range (with Aging
C
or
D)
Pins for PCB mounting
Vectron International • 267 Lowell Road, Hudson, NH 03051 • Tel: 1-88-VECTRON-1 • Web: www.vectron.com
46
Who is familiar with FPGA and CPLD?
I have an FPGA on my board to read the data of the gyroscope. The gyroscope is a synchronous serial port. The FPGA implements three synchronous serial ports and a UART interface, as well as an interfa...
DHCJOHN Analogue and Mixed Signal
Four-wire measurement technique for measuring the resistance of superconductors
At very low temperatures, certain metals and alloys lose their resistance to electric current and become superconductors. The transition temperature and critical current density of a superconductor ar...
maker Test/Measurement
Can I update the program developed on WINCE from the database through the network?
I want the program on WINCE to check whether the version on the server is consistent when accessing the database. If it is inconsistent, it will start the update program and download the program from ...
daisyquan Embedded System
Audio Circuit Debugging Tips
Audio debug tipsExternal component placementGrounding ProblemsPower Supply and DecouplingPWM FilterHeat dissipation issuesI2C/I2S Communication1. Component placementThe Class D amplifier generates PWM...
qwqwqw2088 Analogue and Mixed Signal
Konka's EFI products face extreme testing challenges
Chang Jing, general manager of Konka Automotive Electronics, revealed that the company's electronic fuel injection control system has officially started plateau environmental experiments. It is report...
frozenviolet Automotive Electronics
About the return value of stream driver XXX_Init() and XXX_Open() functions
Stream driver interface function DWORD XXX_Init( DWORD dwContext); DWORD XXX_Open(DWORD hDeviceContext, DWORD AccessCode, DWORD ShareMode); What do the return values of these two functions mean? Are t...
sofy231 Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1346  2500  772  2386  2915  28  51  16  49  59 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号