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  • Compensating delay-induced phase shifts for high-frequency resonators
    Phase-Locked Loop (PLL) or other PID controllers on nano-mechanical resonators rely on clean phase signals that exhibit large slope, or significant phase shift, around the resonance frequency
  • Specifying Crystals for Use in VCXOx and TCXOs for Wireless Designs
    Quartz crystals can be an excellent choice for the frequency-determining component in wireless communication systems. Designers appreciate the high Q value (quality factor), reasonable cost, and temperature performance of quartz crystals relative to other options, such as inductor-capacitor
  • Using the PIC16F639 MCU for Smart Wireless Applications
    via SPI TM interface pads. The analog front-end section is optimized to detect 125 kHz low frequency (LF) signal. For the LF signal detection, it needs external LC resonant circuits. The device can detect amplitude-modulated 125 kHz input signals with a typical input sensitivity of 3 mVPP. This high
  • Laser Marking Guide (.pdf)
    When the laser medium is a solid crystal, the laser is known as a solid state laser. One of the differences between welding and marking solid state lasers, is the use of a Q-switch in marking lasers. This is a high speed switching element with in the resonator that can produce laser pulses down
  • Interfacing a Micro Crystal MS1V-T1K 32.768 kHz Tuning Fork Crystal to a PIC16F690/SS
    CAPACITORS operation for their particular application. CD * CG C = --------------------- + C MICRO CRYSTAL MS1V-T1K EffectiveLoad Stray D + CGC The Micro Crystal MS1V-T1K is a high-quality tuning fork quartz crystal resonator. It is packaged in a square- Overtone Mode Suppression bodied 2x2x6 mm metal-can

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