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Compare 314 Oscillator IP from 35 vendors (1 - 10)
  • Crystal Oscillators
    • The crystal oscillator macros are available in a wide range of industry-standard quartz crystals and MEMS resonators operating in the fundamental mode in the 32 kHz to 80 MHz range.
    • These oscillators, which are both power and area efficient, have a programmable transconductance to allow users to find the optimal balance between jitter and power consumption.
    Block Diagram -- Crystal Oscillators
  • 18-40MHz Crystal Oscillator on INTEL-16
    • Crystal Oscillator pad macro that supports many industry standard crystals in the 18-40MHz range (e.g. 19.2, 24MHz, 25MHz, 38.4MHz)
    • Uses standard CMOS transistors
    • Crystal Oscillation Mode: Fundamental
    • Power down option for IDDQ testing
    Block Diagram -- 18-40MHz Crystal Oscillator on INTEL-16
  • 18-40MHz Crystal Oscillator on TSMC CLN2P
    • Crystal Oscillator pad macro that supports industry standard crystals
    • Uses standard CMOS transistors
    • Crystal Oscillation Mode: Fundamental
    • Power down option for IDDQ testing
    Block Diagram -- 18-40MHz Crystal Oscillator on TSMC CLN2P
  • Clock Attack Monitor
    • The agileCAM is a Ring Oscillator (RO) based clock attack monitor designed to detect clock attacks due to violation of the set-up time requirements of critical circuits.
    • agileCAM can detect attacks based on changes in clock frequency, clock hold and clock glitch errors.
    • Additionally, it provides a relative frequency measurement of the monitored clock with programmable alarm thresholds.
    Block Diagram -- Clock Attack Monitor
  • 32KHz Low Power Oscillator
    • 850nW typical power @32KHz.
    • Available frequencies 10KHz – 100KHz.
    • No external components.
    • 60ppm/°C temperature sensitivity.
    • 0.3%/100mV vdd sensitivity.
    • Base cell area 0.005mm2.
    Block Diagram -- 32KHz Low Power Oscillator
  • Integrated Oscillator - TSMC 180n
    • The OT3912t is an integrated oscillator for TSMC 180n processes.
    • No external components are required. After a simple trim process a frequency stability of better than 1% is achieved over voltage and temperature ranges.
    Block Diagram -- Integrated Oscillator - TSMC 180n
  • 5MHz-35MHz Low Power Crystal Oscillator - TSMC 0.18µ
    • 4MHz-35MHz Frequency range.
    • No external bias or limit resistors required.
    • Current optimization for best power at frequency.
    • Amplitude control loop.
    • The OSCI pad input can be used as a CMOS input for test.
    • Uses single 1.8V supply.
    • Enable/power down provision.
    Block Diagram -- 5MHz-35MHz Low Power Crystal Oscillator - TSMC 0.18µ
  • 5MHz-35MHz Crystal Oscillator - Austriamicrosystems 0.18µ
    • 5MHz-35MHz Frequency range.
    • No external bias or limit resistors required.
    • Current optimization for best power at frequency.
    • Duty cycle control loop.
    • Amplitude control loop.
    • The OSCI pad input can be used as a CMOS input for test.
    Block Diagram -- 5MHz-35MHz Crystal Oscillator - Austriamicrosystems 0.18µ
  • Xtal Oscillator on TSMC CLN7FF
    • Crystal Oscillator pad macro that supports industry standard crystals
    • Uses standard CMOS transistors
    • Crystal Oscillation Mode: Fundamental
    • Power down option for IDDQ testing
    Block Diagram -- Xtal Oscillator on TSMC CLN7FF
  • Crystal-less Low Power Oscillator on TSMC CLN12FFC
    • Crystal-less oscillator
    • Uses standard CMOS transistors
    • Accuracy within +/-35% untrimmed, +/-8% post-trim
    • Under 50uA active power
    Block Diagram -- Crystal-less Low Power Oscillator on TSMC CLN12FFC
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