EQTG32D8DH-15.359865M [ECLIPTEK]

LVPECL, Temperature Compensated Quartz Crystal Clock Oscillators TCXO LVPECL (PECL) 2.5Vdc 6 Pad 2.5mm x 3.2mm Ceramic Surface Mount (SMD) 15.359865MHz ±5.0ppm over -40°C to +85°C;
EQTG32D8DH-15.359865M
型号: EQTG32D8DH-15.359865M
厂家: Ecliptek    Ecliptek
描述:

LVPECL, Temperature Compensated Quartz Crystal Clock Oscillators TCXO LVPECL (PECL) 2.5Vdc 6 Pad 2.5mm x 3.2mm Ceramic Surface Mount (SMD) 15.359865MHz ±5.0ppm over -40°C to +85°C

石英晶振 温度补偿晶振
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Ecliptek | EQTG32 Series Oscillator  
http://www.ecliptek.com/oscillators/EQTG32/  
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EQTG32 Series Oscillator  
Temperature Compensated Quartz Crystal Clock Oscillators TCXO LVPECL (PECL) 2.5Vdc 6 Pad 2.5mm x 3.2mm Ceramic Surface  
Mount (SMD)  
Revision A 09/09/2015  
Electrical Specifications  
Nominal Frequency  
10.000MHz to 625.000MHz  
Some frequencies within this range may not be available.  
Frequency Stability  
Inclusive of Operating Temperature Range, at V =2.5V  
DD  
DC  
±5.0ppm Maximum  
±3.0ppm Maximum  
±2.5ppm Maximum  
±2.0ppm Maximum  
±1.5ppm Maximum  
±1.0ppm Maximum  
Frequency Stability vs. Frequency  
Tolerance  
At 25°C ±2°C, at V =2.5V , PreꢀReflow  
DD  
DC  
±2.0ppm Maximum  
±1.5ppm Maximum  
±1.0ppm Maximum  
Frequency Stability vs. Input Voltage  
Frequency Stability vs. Load  
±0.2ppm Maximum (±5%)  
±0.2ppm Maximum (±2pF)  
Frequency Stability vs. Reflow  
Frequency Stability vs. Aging  
Operating Temperature Range  
±1.0ppm Maximum (at 25°C, 24 hours after reflow, 1 time)  
±1ppm/Year Maximum (at 25°C)  
0°C to +50°C  
ꢀ10°C to +60°C  
0°C to +70°C  
ꢀ20°C to +70°C  
ꢀ30°C to +60°C  
ꢀ30°C to +75°C  
ꢀ30°C to +85°C  
ꢀ40°C to +85°C  
Supply Voltage  
2.5V ±5%  
DC  
Input Current  
75mA Maximum  
Output Voltage Logic High (Voh)  
V
V
ꢀ1.025V  
ꢀ1.85V  
Minimum, 1.6V  
Typical, V ꢀ0.6V  
DD  
Maximum  
Maximum  
DD  
DD  
DC  
DC  
DC  
Output Voltage Logic Low (Vol)  
Rise/Fall Time  
Minimum, 0.8V  
Typical, V ꢀ1.62V  
DC DD  
DC  
DC  
Measured at 10% to 90% of Waveform  
300pSec Maximum  
Duty Cycle  
Measured at 50% of Waveform  
50 ±5(%)  
Load Drive Capability  
Output Logic Type  
50 Ohms into V ꢀ2V  
DD  
DC  
LVPECL  
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Phase Noise  
Click to Open Phase Noise Table  
Output Enable (OE)  
Output Control Function  
Output Control Input Voltage Logic High  
(Vih)  
90% of V  
Minimum or No Connect to Enable Output and  
Complementary Output  
DD  
Output Control Input Voltage Logic Low  
(Vil)  
10% of V Maximum to Disable Output and Complementary Output  
DD  
(High Impedance)  
100nSec Maximum  
50nSec Maximum  
Output Enable Time  
Output Disable Time  
Output Enable Current  
Without Load (Pin 2 = Ground)  
15mA Maximum  
RMS Phase Jitter  
Click to Open RMS Phase Jitter Table  
0.2pSec Typical  
Period Jitter (Deterministic)  
Period Jitter (Random)  
Period Jitter (RMS)  
2pSec Typical  
3pSec Maximum  
Period Jitter (pkꢀpk)  
Start Up Time  
30pSec Maximum  
10mSec Maximum  
ꢀ55°C to +125°C  
Storage Temperature Range  
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Phase Noise  
All Values are Typical  
Nominal Frequency: 10MHz to 50MHz  
Offset  
10Hz  
Phase Noise  
-64dBc/Hz  
100Hz  
1kHz  
-96dBc/Hz  
-124dBc/Hz  
-131dBc/Hz  
-132dBc/Hz  
-149dBc/Hz  
-157dBc/Hz  
-159dBc/Hz  
10kHz  
100kHz  
1MHz  
10MHz  
20MHz  
Nominal Frequency: 50.000001MHz to 100MHz  
Offset  
10Hz  
Phase Noise  
-58dBc/Hz  
100Hz  
1kHz  
-90dBc/Hz  
-118dBc/Hz  
-125dBc/Hz  
-126dBc/Hz  
-145dBc/Hz  
-155dBc/Hz  
-157dBc/Hz  
10kHz  
100kHz  
1MHz  
10MHz  
20MHz  
Nominal Frequency: 100.000001MHz to 156.249999MHz  
Offset  
10Hz  
Phase Noise  
-57dBc/Hz  
100Hz  
1kHz  
-86dBc/Hz  
-114dBc/Hz  
-121dBc/Hz  
-122dBc/Hz  
-141dBc/Hz  
-151dBc/Hz  
-153dBc/Hz  
10kHz  
100kHz  
1MHz  
10MHz  
20MHz  
Nominal Frequency: 156.25MHz to 212.5MHz  
Offset  
10Hz  
Phase Noise  
-58dBc/Hz  
100Hz  
1kHz  
-86dBc/Hz  
-110dBc/Hz  
-116dBc/Hz  
-117dBc/Hz  
-136dBc/Hz  
-146dBc/Hz  
-148dBc/Hz  
10kHz  
100kHz  
1MHz  
10MHz  
20MHz  
Nominal Frequency: 212.500001MHz to 500MHz  
Offset  
10Hz  
Phase Noise  
-56dBc/Hz  
-95dBc/Hz  
100Hz  
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1kHz  
10kHz  
100kHz  
1MHz  
-100dBc/Hz  
-106dBc/Hz  
-107dBc/Hz  
-126dBc/Hz  
-136dBc/Hz  
-137dBc/Hz  
10MHz  
20MHz  
Nominal Frequency: 500.000001MHz to 625MHz  
Offset  
10Hz  
Phase Noise  
-54dBc/Hz  
-84dBc/Hz  
-97dBc/Hz  
-104dBc/Hz  
-105dBc/Hz  
-124dBc/Hz  
-134dBc/Hz  
-136dBc/Hz  
100Hz  
1kHz  
10kHz  
100kHz  
1MHz  
10MHz  
20MHz  
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RMS Phase Jitter  
Fj=12kHz to 20MHz (Random)  
Nominal Frequency Range  
10MHz to 50MHz  
RMS Phase Jitter  
1.5pSec Maximum  
1.4pSec Maximum  
1.3pSec Maximum  
50.000001MHz to 100MHz  
100.000001MHz to 625MHz  
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Mechanical Dimensions  
All Dimensions in Millimeters  
Pin 1: Do Not Connect  
Pin 2: Output Enable (OE)  
Pin 3: Case/Ground  
Pin 4: Output  
Pin 5: Complementary Output  
Pin 6: Supply Voltage  
Marking Specifications  
Line 1:  
EXXXXXX  
E = Ecliptek Designator  
XXXXXX = Nominal Frequency in MHz (5 digits + Decimal)  
Line 2:  
XXXXX  
XXXXX = Ecliptek Manufacturing Identifier  
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Environmental and Mechanical Specifications  
ESD Susceptibility  
Fine Leak Test  
MILꢀSTDꢀ883, Method 3015, Class 1, HBM: 1500V  
MILꢀSTDꢀ883, Method 1014, Condition A  
UL94ꢀV0  
Flammability  
Gross Leak Test  
MILꢀSTDꢀ883, Method 1014, Condition C  
MILꢀSTDꢀ883, Method 2002, Condition B  
MILꢀSTDꢀ883, Method 1004  
Mechanical Shock  
Moisture Resistance  
Moisture Sensitivity  
Resistance to Soldering Heat  
Resistance to Solvents  
Solderability  
JꢀSTDꢀ020, MSL 1  
MILꢀSTDꢀ202, Method 210, Condition K  
MILꢀSTDꢀ202, Method 215  
MILꢀSTDꢀ883, Method 2003  
Temperature Cycling  
Vibration  
MILꢀSTDꢀ883, Method 1010, Condition B  
MILꢀSTDꢀ883, Method 2007, Condition A  
45°C/W (degrees Celsius per Watt)  
Thermal Resistance (θ  
Thermal Resistance (θ  
)
)
JA  
JC  
19°C/W (degrees Celsius per Watt)  
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Tape & Reel Dimensions  
1000 pieces per reel  
Compliant to EIAꢀ481  
All Dimensions in Millimeters  
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Test Circuit for PECL Output  
Note 1: An external 0.01µF ceramic bypass capacitor in parallel with a 0.1µF high frequency ceramic bypass capacitor close  
(less than 2mm) to the package ground and supply voltage pin is required.  
Note 2: A low input capacitance (<12pF), 10X attentuation factor, high impedance (>10Mohms), and high bandwidth  
(>500MHz) passive probe is recommended.  
Note 3: Test circuit PCB traces need to be designed for a characteristic line impedance of 50 ohms.  
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Recommended Solder Pad Dimensions  
Tolerances = ±0.1  
All Dimensions in Millimeters  
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Solder Reflow Profile  
High Temperature Infrared/Convection  
Note: Temperatures shown are applied to body of  
device.  
T
MAX to T (Rampꢀup Rate)  
3°C/Second Maximum  
S
L
Preheat  
ꢀ Temperature Minimum (T MIN)  
S
150°C  
ꢀ Temperature Typical (T TYP)  
S
175°C  
ꢀ Temperature Maximum (T MAX)  
S
200°C  
ꢀ Time (t )  
S
60 ꢀ 180 Seconds  
3°C/Second Maximum  
Rampꢀup Rate (T to T )  
L
P
Time Maintained Above:  
ꢀ Temperature (T )  
L
217°C  
ꢀ Time (t )  
L
60 ꢀ 150 Seconds  
Peak Temperature (T )  
P
260°C Maximum for 10 Seconds Maximum  
250°C +0/ꢀ5°C  
Target Peak Temperature (T Target)  
P
Time within 5°C of actual peak (t )  
P
20 ꢀ 40 Seconds  
Rampꢀdown Rate  
6°C/Second Maximum  
8 Minutes Maximum  
Level 1  
Time 25°C to Peak Temperature (t)  
Moisture Sensitivity Level  
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Low Temperature Infrared/Convection 240°C  
Note: Temperatures shown are applied to body of  
device.  
T
MAX to T (Rampꢀup Rate)  
5°C/Second Maximum  
S
L
Preheat  
ꢀ Temperature Minimum (T MIN)  
S
N/A  
ꢀ Temperature Typical (T TYP)  
S
150°C  
ꢀ Temperature Maximum (T MAX)  
S
N/A  
ꢀ Time (t )  
S
60 ꢀ 120 Seconds  
5°C/Second Maximum  
Rampꢀup Rate (T to T )  
L
P
Time Maintained Above:  
ꢀ Temperature (T )  
L
150°C  
ꢀ Time (t )  
L
200 Seconds Maximum  
Peak Temperature (T )  
P
240°C Maximum  
Target Peak Temperature (T Target)  
P
240°C Maximum 2 Times / 230°C Maximum 1 Time  
10 Seconds Maximum 2 Times / 80 Seconds Maximum 1 Time  
Time within 5°C of actual peak (t )  
P
Rampꢀdown Rate  
5°C/Second Maximum  
Time 25°C to Peak Temperature (t)  
Moisture Sensitivity Level  
N/A  
Level 1  
High Temperature Manual Soldering  
Note: Temperatures shown are applied to body of device.  
260°C Maximum for 5 Seconds Maximum, 2 times Maximum.  
Low Temperature Manual Soldering  
Note: Temperatures shown are applied to body of device.  
185°C Maximum for 10 Seconds Maximum, 2 times Maximum.  
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1 - Build A Part Number  
2 - Next Page  
Select the parameters that meet your requirements and then click  
Access these Part Number specific  
resources and tools  
Next  
Frequency in Megahertz (10 to 625):  
Some frequencies within this range may not be  
available  
Frequency Stability vs. Frequency  
Tolerance:  
Operating Temperature Range:  
Frequency Stability:  
Packaging Options:  
Part Numbering Guide  
TOOLS  
PRODUCT  
ECLIPTEK  
TERMS  
Quick Quote  
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©2015 Ecliptek Corporation  
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