Man in the city using his smart-watch app

Seamless connectivity needs total synchronization

The emergence of the connected intelligent edge is dependent on underlying innovations such as MEMS technology. SiTime MEMS timing helps ensure reliable connectivity in IoT devices by providing ultra stable performance in just about any operating condition. Plus, our timing solutions help reduce the size and power consumption in IoT devices. Our timing solutions shrink IoT products with smaller oscillator packages and integrated features that reduce component count. MEMS oscillators can replace two or three crystal devices because they can drive multiple loads. To extend battery life, our products operate at ultra-low current and offer greater stability, allowing IoT devices to stay in sleep mode longer.

Smaller PCB area

Tiny 1.2 mm2 CSP footprint

Drives multiple loads

Longer battery life

Ultra-low power, as low as <1 μA

3 ppm stability maximizes sleep time

Ultra robust

Resilient to shocks, drops, noise, and more

Up to 30,000 g shock survivability

Explore Applications

fitness tracker sitime

Smartwatches / Fitness Trackers

Lower power, smaller footprint, high-accuracy timing
asset tracking sitime

Asset Tracking

Robust operation and accurate positioning even when GPS signals are limited
smart farming sitime

Smart Agriculture

Smaller footprint, Higher accuracy, More robust
smart city sitime

Smart City

Smaller footprint, higher accuracy, more robust
home automation

Smart Home

Small footprint, low power consumption
retail electronics sitime

Retail Electronics

Drives multiple loads–smaller size, lower power
security sitime

Commercial Security

Lower EMI, better power supply noise rejection (PSNR)
indoor positioning sitime

Indoor Positioning

Better stability, higher accuracy

Featured Products

• Small footprint at 1.2 mm2 (1.5 x 0.8 mm) in a chip-scale package
• Ultra-low power, as low as <1 μA
• NanoDrive™ programmable output swing minimizes power compared to LVCMOS output
• Frequency stability as good as ±3 ppm

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• Small footprint at 1.2 mm2 (1.5 x 0.8 mm) in a chip-scale package
• Ultra-low power, as low as <1 μA
• NanoDrive™ programmable output swing minimizes power compared to LVCMOS output
• Frequency stability as good as ±5 ppm
• Flexible frequencies, down to 1 Hz. provide new architectural options 

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• 1 MHz to 220 MHz, ±5 to ±20 ppb
• Better dynamic stability with ±0.3 ppb/°C frequency slope (ΔF/ΔT)
• -40°C to +105°C temperature operation
• Resilient to rapid temp change, airflow and vibration

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SiTime is transforming the world of timing.