Allicdata Part #: | SIT1602BC-83-33E-19.200000T-ND |
Manufacturer Part#: |
SIT1602BC-83-33E-19.200000T |
Price: | $ 0.39 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | SiTime |
Short Description: | -20 TO 70C, 7050, 50PPM, 3.3V, 1 |
More Detail: | Oscillator |
DataSheet: | SIT1602BC-83-33E-19.200000T Datasheet/PDF |
Quantity: | 1000 |
3000 +: | $ 0.35314 |
Series: | * |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
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Oscillators are widely used in electronic engineering, such as SIT1602BC-83-33E-19.200000T. Those oscillators are available in various frequencies, ranging from standard low frequencies to very high frequencies. They are designed to generate stable, continuous waveforms with low harmonics. Often they are used to keep electronics synchronized or reduce voltage fluctuations. The main applications of oscillators include frequency synthesis, clock-signal processing, frequency-agile communications, power-supply regulation, signal filtering and radar capabilities.
SIT1602BC-83-33E-19.200000T oscillator is a type of MEMS oscillator, which uses the silicon-based micromechanical resonator as its oscillation element. The resonator circuit consists of a resonator actuator element, a MEMS capacitor, a MEMS resistor and other passive components. This device has good temperature stability, meaning that the oscillation frequency will not change much with temperature. The operating frequency is 19.2 MHz. It also has good shock resistance due to its low mass and stiff mechanical structure.
The working principle of the oscillator is based on the electrical resonance of the MEMS resonator. The capacitance and electrical resistance of the MEMS capacitors and resistors form a tuned circuit which resonates due to the resonance between the inductance and capacitance values.
At the start of the oscillations, a small voltage is applied to the capacitors, inducing an electrical current across the resistors. The current then circulates in a loop, causing the capacitors to charge. As the capacitors charge up, the inductive reactance of the circuit causes the frequency of the oscillations to increase. This continues until the oscillations reach a maximum frequency determined by the capacitance and inductance values of the circuit.
The frequency of the oscillations is then maintained by the capacitance and inductance of the circuit along with the mechanical properties of the MEMS resonator. The output frequency is stable and can be programmed to programmable limits. The circuit also features low power consumption.
In summary, SIT1602BC-83-33E-19.200000T oscillator is a type of MEMS oscillator used in many electronic devices. It works on the principle of electrical resonance of the MEMS resonator, and is capable of generating highly stable and accurate signals with low power consumption. It is widely used in frequency synthesis, clock-signal processing, frequency-agile communications, power-supply regulation, signal filtering and radar capabilities.
The specific data is subject to PDF, and the above content is for reference
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SIT1602BI-72-30S-33.333330D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
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SIT1602BI-72-30S-38.400000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-4.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-4.096000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-40.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-40.500000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-48.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-50.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-54.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-6.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-60.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-62.500000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-65.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-66.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-66.600000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-66.660000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-66.666000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-66.666600D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-66.666660D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-7.372800D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-72.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-74.175824D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-74.176000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-74.250000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-75.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-77.760000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-30S-8.192000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-33E-10.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-33E-14.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-33E-18.432000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-33E-19.200000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-33E-20.000000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
SIT1602BI-72-33E-24.576000D | SiTime | 0.43 $ | 1000 | -40 TO 85C, 2016, 25PPM, ... |
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