M525-012.8M [CONNOR-WINFIELD]

Clipped Sine Output Oscillator;
M525-012.8M
型号: M525-012.8M
厂家: CONNOR-WINFIELD CORPORATION    CONNOR-WINFIELD CORPORATION
描述:

Clipped Sine Output Oscillator

文件: 总4页 (文件大小:575K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Precision Sub-Miniature  
5.0x3.2mm TCXO / VCTCXO  
Designed for Telecom Applications  
Features:  
3.3V Operation  
Description:  
The Connor-Winfield  
5.0x3.2mm Temperature  
Compensated Crystal  
Oscillators and Voltage  
Controlled Temperature  
Compensated Crystal  
Oscillators are designed  
for use in applications requiring tight frequency  
stability in a small package. Through the use of  
Analog Temperature Compensation, this device is  
capable of holding sub 1-ppm stabilities over wide  
temperature ranges.  
2111 Comprehensive Drive  
Aurora, Illinois 60505  
Phone: 630-851-4722  
Fax: 630-851-5040  
LVCMOS or clipped Sinewave Output Logic  
Sub-Miniature 5.0x3.2mm SMT Package  
Frequency Stabilities Available:  
0.2ꢀ ppm with Stratum 3 Holdover  
0.50 ppm or 1.00 ppm  
Temperature Ranges Available:  
0 to 70°C; 0 to ꢀ5°C; -20 to 70°C; -40 to ꢀ5°C  
Low Power <10mA  
Low Jitter <1pS RMS  
Low Phase Noise  
Tape and Reel Packaging  
RoHS Compliant / Lead Free  
Recommended for new designs  
www.conwin.com  
US Headquarters:  
630-851-4722  
European Headquarters:  
+353-61-472221  
Package Layout  
Applications:  
STRATUM 3 Applications  
GPS Receivers  
Instrumentation  
Femtocells  
0.065  
(1.65mm)  
0.028  
(0.71mm)  
0.126  
(3.2mm)  
0.083 Max.  
(2.1mm)  
0.006 Typ.  
(0.15mm)  
0.042  
(1.07mm)  
0.016  
(0.41mm)  
0.197  
(5.0mm)  
0.050  
(1.27mm)  
FTTH, FTTC  
0.028  
(0.71mm)  
Pad 8  
Pad 1  
0.042  
(1.07mm)  
0.008 Typ.  
(0.20mm)  
Top  
View  
Bottom  
View  
Dimensional Tolerance:  
+/-0.005 (+/-0.127mm)  
Pad Connections  
Pad  
Connection  
1: Volltage Control or N/C  
2: Do Not Connect  
3: Do Not Connect  
4: Ground  
Alternate Package Layout for Select Frequencies  
0.065  
0.028  
(0.71mm)  
(1.65mm)  
0.125  
(3.2mm)  
0.09ꢀ Max  
(2.5mm)  
0.006 Typ.  
(0.15mm)  
0.042  
(1.07mm)  
0.016  
(0.41mm)  
5: Output  
0.197  
6: Do Not Connect  
7: Do Not Connect  
8: Supply, Vcc  
(5.0mm)  
0.050  
(1.27mm)  
0.028  
(0.71mm)  
Pad 8  
Pad 1  
0.042  
(1.07mm)  
0.008 Typ.  
(0.20mm)  
Bottom  
View  
Ordering Information  
6
0
012.ꢀM  
M
2
Frequency  
Stability  
Features  
Temperature  
Range  
Output Frequency  
Type:  
Precision  
TCXO  
Frequency Format  
-xxx.xM Min*  
-xxx.xxxxxxM Max*  
* Min 1 and Max 6 digits  
after the decimal point.  
M = MHz  
2 = TCXO, LVCMOS, 3.3 Vdc  
VCTCXO  
0 = 0.2ꢀ ppm 3 = TCXO, Clipped Sinewave, 3.3 Vdc  
1 = 0.50 ppm 4 = VCTCXO, LVCMOS, 3.3 Vdc  
2 = 1.00 ppm 5 = VCTCXO, Clipped Sinewave, 3.3 Vdc  
3 = 0 to ꢀ5°C  
5 = 0 to 70°C  
6 = -40 to ꢀ5°C  
7 = -20 to 70°C  
3.2x5.0mm  
* See page 3 for frequency range information on each part number.  
Example:  
Bulletin  
M602-012.ꢀM = 3.2x5mm, TCXO, LVCMOS,  
3.3Vdc, -40° to ꢀ5°C, 0.2ꢀppm, Output Frequency 12.ꢀMHz  
Tx214  
1 of 4  
Page  
Revision  
To order an M602 with an output frequency of: 6.4MHz = M602-006.4M  
Consult the factory for available frequencies  
09  
Date  
22 Nov 2016  
2111 Comprehensive Drive  
Aurora, Illinois 60505  
Phone: 630-851-4722  
Fax: 630-851-5040  
www.conwin.com  
Absolute Maximum Ratings  
Parameter  
Minimum  
-55  
Nominal  
Maximum  
85  
6.0  
Vcc + 0.5  
Units  
°C  
Vdc  
Notes  
Storage Temperature  
Supply Voltage (Vcc%  
Input Voltage (Vc%  
-
-
-
-0.5  
-0.5  
Vdc  
Operating Specifications  
Parameter  
Minimum  
Nominal  
Maximum  
1.0  
Units  
ppm  
ppm  
Notes  
1
TCXO Frequency Calibration @ 25°C  
Supply Voltage Variation. (Vcc 5ꢀ%  
Load Coefficient, 5ꢀ  
-1.0  
-0.2  
-0.2  
-
-
-
0.2  
0.2  
ppm  
Static Temperature Hysteresis  
Aging First Year  
-0.4  
-1.0  
-
-
0.4  
1.0  
ppm  
ppm  
2
Total Frequency Tolerance (20 Years%  
Supply Voltage (Vcc%  
Supply Current (Icc%  
-4.6  
3.135  
-
3.3  
6
4.6  
3.465  
10  
5
1.0  
ppm  
Vdc  
mA  
3
4
-
-
-
-
-
-
-
-
-
Period Jitter  
3
ps rms  
ps rms  
dBc/Hz  
dBc/Hz  
dBc/Hz  
dBc/Hz  
dBc/Hz  
ms  
Integrated Phase Jitter (BW=12kHz to 20MHz%  
SSB Phase Noise at 10Hz offset  
SSB Phase Noise at 100Hz offset  
SSB Phase Noise at 1KHz offset  
SSB Phase Noise at >10KHz offset  
SSB Phase Noise at >100KHz offset  
Start Up Time  
0.3  
-90  
-115  
-135  
-152  
-154  
-
-70  
-100  
-130  
-145  
-150  
10  
Input Characteristics for Voltage Control (Pad 1)  
Parameter  
Minimum  
Nominal  
1.65  
Maximum  
Units  
Vdc  
ppm  
Notes  
Control Voltage Range (Vcc = 3.3V% (Vc%  
Frequency Tuning measured @ 25°C  
Linearity  
0.3  
10  
5
3.0  
-
-
-
-
5
Slope  
Input Impedance  
Modulation Bandwidth (3dB%  
Positive  
100K  
10  
-
-
-
-
Ohms  
KHz  
LVCMOS Output Characteristics  
Parameter  
LOAD  
Voltage (High% (Voh%  
(Low% (Vol%  
Current (High% (loh%  
(Low% (lol%  
Minimum  
Nominal  
Maximum  
Units  
pF  
Notes  
6
-
15  
-
-
-
-
-
-
90ꢀ Vcc  
Vdc  
Vdc  
mA  
mA  
-
-
4
45  
-
10ꢀ Vcc  
-4  
-
55  
8
Duty Cycle at 50ꢀ of Vcc  
Rise / Fall Time 10ꢀ to 90ꢀ  
50  
-
ns  
Clipped Sinewave Output Characteristics  
Parameter  
Minimum  
Nominal  
Maximum  
Units  
Notes  
LOAD  
-
-
-
1.0  
0.8  
-
-
-
-
-
-
-
-
7
6
6
Output Load Resistance  
Output Load Capacitance  
Output Voltage (< 40 MHz%  
Output Voltage (=>40 MHz%  
Output Impedance  
Notes:  
10K  
10  
1.2  
1.0  
200  
Ohms  
pF  
V
pk-pk  
pk-pk  
V
Ohms  
1)ꢀ TCXO:ꢀInitialꢀcalibrationꢀ@ꢀ25°C.ꢀSpecificationsꢀatꢀtimeꢀofꢀshipmentꢀafterꢀ48ꢀhoursꢀofꢀoperation.  
2)ꢀ Frequencyꢀchangeꢀafterꢀreciprocalꢀtemperatureꢀrampedꢀoverꢀtheꢀoperatingꢀrange.ꢀFrequencyꢀmeasuredꢀbeforeꢀandꢀafterꢀatꢀ25°C.  
3)ꢀ Inclusiveꢀofꢀcalibrationꢀ@ꢀ25°C,ꢀfrequencyꢀvs.ꢀchangeꢀinꢀtemperature,ꢀchangeꢀinꢀsupplyꢀvoltageꢀ( 5%),ꢀloadꢀchangeꢀ( 5%),ꢀreflowꢀsolderingꢀprocessꢀandꢀ20ꢀyearsꢀaging.  
4)ꢀ Forꢀbestꢀinꢀapplicationꢀperformance,ꢀcarefulꢀselectionꢀofꢀanꢀexternalꢀpowerꢀsourceꢀisꢀcritical.ꢀSelectꢀanꢀexternalꢀregulatorꢀthatꢀmeetsꢀorꢀexceedsꢀtoꢀtheꢀfollowingꢀ  
specificationsꢀregardingꢀvoltageꢀregulationꢀtolerance,ꢀinitialꢀaccuracy,ꢀtemperatureꢀcoefficient,ꢀvoltageꢀnoise,ꢀandꢀlowꢀvoltageꢀnoiseꢀdensity.ꢀFactoryꢀTestꢀConditions:ꢀ  
InitialꢀAccuracyꢀ 2mv,ꢀNoiseꢀ(0.1Hzꢀtoꢀ10KHz)ꢀ15uVꢀp-p,ꢀVoltageꢀNoiseꢀDensityꢀ=ꢀ50nV/ꢀ(SquareꢀrootꢀHz),ꢀTemperatureꢀCoefficientꢀ<5ppm°C.  
Bulletin  
Tx214  
2 of 4  
09  
5)ꢀ Additionalꢀpullꢀrangesꢀareꢀavailable;ꢀpleaseꢀcontactꢀtheꢀfactoryꢀforꢀadditionalꢀinformation.  
6)ꢀ Attention:ꢀToꢀachieveꢀoptimalꢀfrequencyꢀstability,ꢀandꢀinꢀsomeꢀcasesꢀtoꢀmeetꢀtheꢀspecificationꢀstatedꢀonꢀthisꢀdatasheet,ꢀitꢀisꢀrequiredꢀthatꢀtheꢀcircuitꢀconnectedꢀtoꢀ  
Page  
thisꢀTCXOꢀoutputꢀmustꢀhaveꢀtheꢀequivalentꢀinputꢀcapacitanceꢀthatꢀisꢀspecifiedꢀbyꢀtheꢀnominalꢀloadꢀcapacitance.ꢀDeviationsꢀfromꢀtheꢀnominalꢀloadꢀcapacitanceꢀwillꢀ  
haveꢀaꢀgraduatedꢀeffectꢀonꢀtheꢀstabilityꢀofꢀapproximatelyꢀ20ppbꢀperꢀpFꢀloadꢀdifference.  
Revision  
Date  
22 Nov 2016  
7)ꢀ OutputꢀisꢀDCꢀcoupled.  
Specifications subject to change without notification. See Connor-Winfield's website for latest revision. All dimensions in inches.  
© Copyright 2016 The Connor-Winfield Corporation Not intended for life support applications.  
2111 Comprehensive Drive  
Aurora, Illinois 60505  
Phone: 630-851-4722  
Fax: 630-851-5040  
www.conwin.com  
Model Specifications  
Model Specifications  
Model Number  
Output Type  
M502  
M503  
M504  
M505  
Notes  
Model Number  
Output Type  
M702  
M703  
M704  
M705  
Notes  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 49.152 MHz  
0.28ppm  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 49.152 MHz  
0.28ppm  
1
1
3.3Vdc  
3.3Vdc  
Temperature Range  
Holdover Stability  
0 to 70°C  
0.32ppm  
Temperature Range  
Holdover Stability  
-20 to 70°C  
0.32ppm  
2
2
Model Number  
Output Type  
TCXO/VCTCXO  
M302  
M303  
M304  
M305  
Notes  
Model Number  
Output Type  
TCXO/VCTCXO  
M602  
M603  
M604  
M605  
Notes  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO TCXO VCTCXO VCTCXO  
TCXO  
VCTCXO  
VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 49.152 MHz  
0.28ppm  
Frequency Range 6.4 to 49.152 6.4 to 49.152 6.4 to 49.152 6.4 to 49.152 MHz  
1
Frequency Stability  
Supply Voltage  
0.28ppm  
3.3Vdc  
1
3.3Vdc  
Temperature Range  
Holdover Stability  
0 to 85°C  
0.32ppm  
Temperature Range  
Holdover Stability  
-40 to 85°C  
0.32ppm  
2
2
Model Number  
Output Type  
M512  
M513  
M514  
M515  
Notes  
Model Number  
Output Type  
M712  
M713  
M714  
M715  
Notes  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 49.152 MHz  
0.50ppm  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 49.152 MHz  
0.50ppm  
1
1
3.3Vdc  
3.3Vdc  
Temperature Range  
0 to 70°C  
Temperature Range  
-20 to 70°C  
Model Number  
Output Type  
M312  
M313  
M314  
M315  
Notes  
Model Number  
Output Type  
M612  
M613  
M614  
M615  
Notes  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 49.152 MHz  
0.50ppm  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 60  
6.4 to 49.152 6.4 to 49.152 6.4 to 49.152 MHz  
1
0.50ppm  
3.3Vdc  
1
3.3Vdc  
Temperature Range  
0 to 85°C  
Temperature Range  
-40 to 85°C  
Model Number  
Output Type  
M522  
M523  
M524  
M525  
Notes  
Model Number  
Output Type  
M722  
M723  
M724  
M725  
Notes  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
TCXO/VCTCXO  
TCXO  
TCXO  
VCTCXO  
VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 52 MHz  
Frequency Range  
Frequency Stability  
Supply Voltage  
6.4 to 52 MHz  
1.00ppm  
3.3Vdc  
1.00ppm  
3.3Vdc  
1
1
Temperature Range  
0 to 70°C  
Temperature Range  
-20 to 70°C  
Model Number  
Output Type  
M322  
M323  
M324  
M325  
Notes  
Model Number  
Output Type  
TCXO/VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
M622  
M623  
M624  
M625  
Notes  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO TCXO VCTCXO VCTCXO  
6.4 to 52 MHz  
LVCMOS Clipped Sinewave LVCMOS Clipped Sinewave  
TCXO TCXO VCTCXO VCTCXO  
6.4 to 52 MHz  
TCXO/VCTCXO  
Frequency Range  
Frequency Stability  
Supply Voltage  
Temperature Range  
Notes:  
1.00ppm  
3.3Vdc  
1
1.00ppm  
3.3Vdc  
1
0 to 85°C  
Temperature Range  
-40 to 85°C  
1)ꢀ Frequencyꢀstabilityꢀvs.ꢀchangeꢀinꢀtemperature.ꢀ[ (Fmaxꢀ-ꢀFmin)/2.Fo].  
2)ꢀ Inclusiveꢀofꢀfrequencyꢀstability,ꢀsupplyꢀvoltageꢀchangeꢀ( 1%),ꢀaging,ꢀforꢀ24ꢀhours.  
LVCMOS Test Circuit  
Clipped Sinewave Test Circuit  
DNC  
DNC  
DNC  
6
DNC  
7
AC Coupling  
Capacitor  
Output  
Vcc  
Vcc  
Supply  
Voltage  
7
6
5
8
1
Supply  
Voltage  
8
5
4
Output  
10 pF*  
10Kohm  
4
1
3
2
2
3
15 pF*  
0.1 uF  
Bypass  
10 nF  
Bypass  
0.1 uF  
Bypass  
10 nF  
Bypass  
Bulletin  
Page  
DNC DNC  
TCXO = N/C  
VCTCXO = Vc  
DNC  
DNC  
TCXO = N/C  
VCTCXO = Vc  
Tx214  
3 of 4  
09  
Revision  
Date  
DNC = Do Not Connect  
* NPO Grade Component  
DNC = Do Not Connect  
* NPO Grade Component  
22 Nov 2016  
Specifications subject to change without notification. See Connor-Winfield's website for latest revision. All dimensions in inches.  
© Copyright 2016 The Connor-Winfield Corporation Not intended for life support applications.  
2111 Comprehensive Drive  
Aurora, Illinois 60505  
Phone: 630-851-4722  
Fax: 630-851-5040  
www.conwin.com  
Suggested Pad Layout  
Environmental Characteristics  
Vibration:  
Shock:  
Soldering:  
Solderability  
Vibration per Mil Std 883E Method 2007.3 Test Condition A  
Mechanical Shock per Mil Std 883E Method 2002.4 Test Condition B.  
RoHS compliant lead free. See soldering profile below.  
Solderability per Mil Std 883E Method 2003  
To  
CMOS  
Output  
0.028  
(0.71mm)  
External AC  
Coupling Capacitor  
Used for Clipped  
Sinewave Output  
Typical Phase Noise  
0.053  
(1.35mm)  
5
Keep  
4
Out  
Area*  
Top  
View  
0.098  
(2.49mm)  
External  
Bypass  
Capacitor  
0.1 uF  
&
1
8
0.050  
(1.27mm)  
10 nF  
0.050  
(1.27mm)  
To  
Ground  
Solder Profile  
Tape and Reel Specifications  
Temperature  
260°C  
260°C  
220°C  
180°C  
150°C  
120°C  
0
10 s  
Up to 120 s  
Typical  
60 to 90 s  
Typical  
Meets IPC/JEDEC J-STD-020C  
Clipped Sinewave Output Waveform  
LVCMOS Output Waveform  
90%  
50%  
10%  
Bulletin  
Page  
Tx214  
4 of 4  
09  
Revision  
Date  
10ns 200mV  
22 Nov 2016  
Specifications subject to change without notification. See Connor-Winfield's website for latest revision. All dimensions in inches.  
© Copyright 2016 The Connor-Winfield Corporation Not intended for life support applications.  

相关型号:

M525-052.000M

Oscillator,
CONNOR-WINFIE

M52567TFP

Buffer/Inverter Based MOSFET Driver, PDSO36, 26P2R
MITSUBISHI

M5260FP

Operational Amplifier, 2 Func, 6000uV Offset-Max, BIPolar, PDSO8, 0.225 INCH, PLASTIC, SOP-8
MITSUBISHI

M5260L

Operational Amplifier, 2 Func, 6000uV Offset-Max, BIPolar, PSIP8, PLASTIC, SIP-8
MITSUBISHI

M5261L

Buffer/Inverter Based Peripheral Driver, 2 Driver, 2A, BIPolar, PSIP8, PLASTIC, SIP-8
MITSUBISHI

M5262L

Buffer/Inverter Based Peripheral Driver, 2 Driver, 2A, BIPolar, PSIP8, PLASTIC, SIP-8
MITSUBISHI

M5263L

Buffer/Inverter Based Peripheral Driver, 2 Driver, 2A, BIPolar, PSIP8, PLASTIC, SIP-8
MITSUBISHI

M5264L

Buffer/Inverter Based Peripheral Driver, 2 Driver, 2A, BIPolar, PSIP8, PLASTIC, SIP-8
MITSUBISHI

M52652ASP

Consumer Circuit, BICMOS, PDIP32, 32P4B
MITSUBISHI

M52653FP

Consumer Circuit, Bipolar, PDSO24, 24P2W
MITSUBISHI

M52654FP

Consumer Circuit, Bipolar, PDSO32, 32P2U
MITSUBISHI

M5265P

LOW SATURATION OUTPUT TYPE CURRENT DRIVER
MITSUBISHI