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Part no. | Manufact. | Technology | Frequency Area | Footprint [mm] | Remarks | Details |
---|---|---|---|---|---|---|
CM519 (EOL. LTB 30 July 2021) |
Citizen | SMD | kHz | 4.9 x 1.8 |
di più >> |
|
52SMX |
SMI | SMD | kHz | 4.9 x 1.8 |
di più >> |
|
CM130 |
Citizen | SMD | kHz | 7 x 1.5 |
di più >> |
|
124SMX |
SMI | SMD | kHz | 7 x 1.5 |
di più >> |
|
CMJ206T |
Citizen | SMD | kHz | Ø2 |
di più >> |
|
2 x 6(LF)MJ_KHZ |
SMI | SMD | kHz | Ø2 |
di più >> |
|
CMR200T |
Citizen | SMD | kHz | Ø2 |
di più >> |
|
2 x 6(LF)_KHZ |
SMI | SMD | kHz | Ø2 |
di più >> |
|
CM200H (EOL. LTB 30 July 2021) |
Citizen | SMD | kHz | 8 x 3.7 |
di più >> |
|
CM200C (EOL. LTB 30 July 2021) |
Citizen | SMD | kHz | 8 x 3.8 |
di più >> |
Quartz crystals are silicon-dioxide based relatively simple, but critical components used in most electronic circuits mainly for timing and frequency generation applications for clocks, ucontrollers, analogue/ digital devices, microprocessors and many others. Although in very small size they exhibit extremely high Q (sharp frequency), temperature stability and low frequency shift.
A unique inherit property of quartz crystals is their piezoelectricity, namely the application of a electric field/voltage across the crystal will cause the crystal to oscillate/generate a signal of a very precise frequency. The opposite is also true, i.e. any applied pressure on the crystal will generate a voltage at the crystals terminals. The frequency generated by a quartz crystal is a function of the crystal size, shape, and chemical composition, but basically it can be designed to generate any desired frequency.
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Marcel Kaupp
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