SiT7102AB-KW-33N0-A100.000000

SiT7102AB-KW-33N0-A100.000000

Specs Value
Device Type Ruggedized OCXOs
Frequency
100 MHz
Frequency Stability (ppm)
±0.005
Operating Temp. Range (°C)
-40 to 95
Supply Voltage (V)
3.3
Package Size (mm x mm)
9.0x7.0
Output Drive Strength*
LVCMOS
Feature Pin
OCXO NC
Pull Range (PPM PR)
±0
Special Features
Low Sensitivity, 0.1 ppb/g

*See datasheet for details

Benchmark holdover in real world conditions for Assured PNT systems

  • Less than 3.0 µs time error after 12 hrs without GPS synchronization
  • 5E-12 ADEV at 10 second averaging time, 4X better than vibration-rated quartz OCXOs
  • Up to 10X better aging with ±0.1 ppb/day aging

Ultra resilient operation in harsh environments

  • Up to 70X better g-sensitivity than vibration-rated quartz OCXOs
  • ±3 or ±5 ppb over-temp. stability from -40 to 95°C
  • ±0.02 ppb/°C frequency slope (ΔF/ΔT)
  • 20,000 g shock survivability

Lower size, weight, and power (SWaP)

  • Up to 3X lower power at 460 mW typical power consumption (3.3 V)
  • Up to 20X less volume in a robust 9.0 x 7.0 x 3.6 mm package
  • Up to 300X less weight at 0.35 g

Best phase noise under vibration

  • Minimizes link drops in high-vibration environments

No activity dips or microjumps

  • Reduces need for costly screening or burn-in tests

On-chip power-supply noise filtering for excellent PSNR

  • Reduces BOM by eliminating a dedicated LDO for OCXO

LVCMOS or clipped sinewave output

  • Optimizes for best balance between EMI and jitter

Rich programmable features

  • Any frequency between 60 to 220 MHz
  • 2.5, 2.8, and 3.3 V power supply options

Low-noise digital frequency tuning through I2C and SPI

  • Large pull range from ±3.125 to ±400 ppm
  • 5E-14 frequency pull resolution
  • Assured Positioning Navigation Timing (PNT)
  • GNSS Receivers
  • Guidance Systems
  • Data Communication Systems
  • SatCom Terminal
  • Radar
  • Manpack and Airborne Radios
  • Vehicle Communication Holdover and IEEE 1588 Synchronization

Frequency Slope (dF/dT) Calculator – Calculate frequency slope over temperature

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