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Details, datasheet, quote on part number:PJ-A2947
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| Part: | PJ-A2947 |
| Category: | Timing Circuits => Oscillators => XO Oscillators => XO PECL Oscillators |
| Description: | Surface Mount 6 J Leads Frequency Range (Mhz) : 80.0 - 200.0 Output/input : Fast Edge Differential, 3.3V |
| Company: | NEL Frequency Controls Inc. |
| Datasheet: | Download PJ-A2947 datasheet File size : 344 kB |
| Request For quote: | Find where to buy PJ-A2947
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Datasheet text preview:
CRYSTAL CLOCK OSCILLATORS
Differential Positive ECL (DPECL) Fast Edge
Data Sheet 0149B Rev. E
PJ-A2940 Series
Preliminary Description
The PJ-A2940 Series of quartz crystal oscillators provide DPECL Fast Edge compatible signals. Systems designers may now specify space-saving, cost-effective packaged PECL oscillators to meet their timing requirements.
Features
· Wide frequency range80.0MHz to 200.0MHz · User specified tolerance available · Will withstand vapor phase temperatures of 253°C for 4 minutes maximum · Space-saving alternative to discrete component oscillators · High shock resistance, to 3000g · 3.3 volt operation · Fast rise and fall times <600 ps · Metal lid electrically connected to ground to reduce EMI Electrical Connection Pin 1 2 3 4 5 6 Connection Enable/Disable NC VE E Output Output Complement VCC · High Reliability - NEL HALT/HASS qualified for crystal oscillator start-up conditions · Low Jitter - Wavecrest jitter characterization available · Overtone technology · High Q Crystal actively tuned oscillator circuit · Power supply decoupling internal · No internal PLL avoids cascading PLL problems · High frequencies due to proprietary design · Gold plated leads - Solder dipped leads available upon request
357 Beloit Street, P.O. Box 457, Burlington, WI 53105-0457 U.S.A. Phone 262/763-3591 FAX 262/763-2881 Email: nelsales@nelfc.com www.nelfc.com
CRYSTAL CLOCK OSCILLATORS
PJ-A2940 Series Continued Differential Positive ECL (DPECL) Fast Edge Operating Conditions and Output Characteristics
Electrical Characteristics
Parameter Frequency Duty Cycle Logic 0 (2) Logic 1(2) Rise & Fall Time Tpd (4) Jitter, RMS(3) Frequency Stability (1) Symbol Conditions Min --------80.0MHz 45/55% ----@ VCC-1.29V VOL ----1.35V VOH ----2.28V tr,tf 20-80%VO with 50 ohm load to VCC-2V -------------200 psec ------------dF/F Overall conditions including: -100ppm voltage, calibration, temp., 10 yr aging, shock, vibration
Data Sheet 0149B Rev. E
Typical ---------------------------------
Max 200.0MHz 55/45% 1.70V 2.56V 600 psec +200 psec 3 psec +100ppm
General Characteristics
Parameter Supply Voltage Supply Current Output current Operating temperature Storage temperature Power Dissipation Lead temperature Load Start-up time Conditions Min ----3.15V 50 ohm termination 0.0 mA To 2.00V below VCC IO Low level Output Current 0.0 mA TA -----0°C -----55°C TS PD --------TL Soldering, 10 sec. ----50 Ohm to VCC-2V or Thevenin Equivalent, Bias Required tS --------Symbol VCC ICC Typical 3.3V ------------------------2 ms Max 3.45V 110 mA ±50.0 mA 70°C 125°C 276 mW 300°C 10 ms
Environmental and Mechanical Characteristics
Mechanical Shock Thermal Shock Vibration Soldering Condition Hermetic Seal Per MIL-STD-202, Method 213, Condition E Per MIL-STD-833, Method 1011, Condition A 0.060" double amplitude 10 Hz to 55 Hz, 35g's 55Hz to 2000 Hz 300°C for 10 seconds Leak rate less than 1 x 10 -8 atm.cc/sec
Footnotes: 1) Standard frequency stability (±20,±25,±50ppm & others available) 2) VOL, VOH, referenced to ground (VEE) with VCC = 3.3V 3) Jitter performance is frequency dependent. Please contact factory for full Wavecrest characterization. 4) Tpd is phase shift between the falling edge of pin 3 at 2.0V and the rising edge of pin 1 at 2.01V.
Creating a Part Number PJ - A294X - FREQ Package Code PJ 6 J Lead SMD Input Voltage Code Specification A 3.3V 5V Tolerance/Performance 0 ±100ppm 0-70°C 1 ±50ppm 0-70°C 7 ±25ppm 0-70°C 9 Customer Specific A ±20ppm 0-70°C B ±50ppm -40 to +85°C C ±100ppm -40 to +85°C
357 Beloit Street, P.O. Box 457, Burlington, WI 53105-0457 U.S.A. Phone 262/763-3591 FAX 262/763-2881 Email: nelsales@nelfc.com www.nelfc.com
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