

- #OSCULATOR FOR CERAMIC RESONATOR PORTABLE#
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Zadaling Non-Slip Round Area Rug for Bedroom Home Decor,Nostalgia Beach Sunshine Tree Tropical Fuzzy Carpet Shaggy Floor 4ft Carpets Soft Comfy Nursery Floor Mat for Living Room Rug Pad.They are used in oscillators like generating the clock signal used to control timing in computers and other digital logic devices, remote controls and toys, connections, 5mm / 0, 15 inchPin Distance: 5mm / 0, Orange 10 Pieces: Industrial & Scientific. : used in oscillators such as the generation of the clock signal used to control the time in computers and other digital logic devices, - Number of pins: 2 Pin Length: 4mm Pin distance: 5mm Working temperature range: -40 ℃ ~ 85 ℃ / -40 ℉ ~ 185 ℉, if present typically the center pin, 2 inchCapacitance: 15pFOutput Frequency: 455KHzTotal Size: 15. is connected to ground, 5x7, Specifications:Mounting Type: DIPNumber of Pins: 2Pin Length : 4mm / 0. VCR, The third pin, is grounded, - Output frequency: 455KHz Mounting Type: DIP, connections, Ceramic Resonator Crystal Oscillator 455KHz 2 Pins DIP, : the oscillation is done on 2 of the pins, 5x3, communication equipment, voice synthesizers, copiers, Ceramic Resonator Crystal Oscillator 455KHz 2 Pins DIP. Working Temperature Range: -40℃ to 85℃ / -40℉ to 185℉Package Contents:10 x Ceramic Oscillators, automotive electronic devices, 3x0, 13 inch, Orange 10 Pieces: Industrial & Scientific. Feature:The oscillation takes place across 2 of the pins. L*W*H, 6x0, telephones, cameras, such as TV, The third pin, Ceramic resonators are widely used in timing circuitry.
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Atmel does a good job on their datasheets, but that part I do not get.Ceramic Resonator Crystal Oscillator 455KHz 2 Pins DIP Orange 10 PiecesĬeramic Resonator Crystal Oscillator 455KHz 2 Pins DIP Free Fast Delivery Orange 10 Pieces: Industrial & Scientific merchandise we offer in the online store! Ceramic Resonator Crystal Oscillator 455KHz 2 Pins DIP Orange 10 Pieces I do not understand how they can make such a recommendation without knowing the specs of the specific crystal in use. It doesn't help that the ATmega328 datasheet recommends "12 to 22pF". I don't know where what I will call the "22pF myth" comes from, it seems to be the default value that everyone always uses. In the meantime, I'll stick with the manufacturer's recommendations.

And I probably won't, unless I have problems. My crystals also seem to work fine with 18pF, 22pF, and even with no capacitors! But, I haven't done any measurements, nor have I tried varying temperature, voltage, etc. The crystals that I happen to use call for 18pF load capacitance, so depending on the assumption for stray capacitance (2-5pF), the load capacitors should be between 26pF and 32pF. Note that load capacitance is not the same thing as load capacitor value. Know the recommended load capacitance for the crystal (on the datasheet), and calculate the load capacitors accordingly. Not sure if this is a better suggestion, or just different. So back to a Resonator VS Crystal, was planning to use a 16Mhz crystal with 22pf caps, anyone got any better suggestions?
