Oscillator structure capable of generating high-stability frequency in full condition
A high-stability, oscillator technology, applied in the direction of pulse generation, generation of electrical pulses, electrical components, etc., can solve the problems of large influence of temperature and voltage, inability to stabilize the oscillation frequency, and achieve the effect of stable output frequency
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[0013] Such as figure 1 As shown, P1, R1, and R2 form a current source reference, and P2 mirrors the current of P1 to charge C1. When the potential of C1 is higher than VR, the output of the comparator (CMP) is reversed, resulting in a Schmitt trigger with hysteresis. The output of the (Schmitt trigger) flips, controlling the conduction of the N1 tube, so that C1 discharges. At this time, the potential of C1 drops, far below VR, and the output of the comparator (CMP) flips, resulting in a Schmitt trigger with hysteresis ( The output of Schmitt trigger) is reversed to control the closing of the N1 tube, and P2 continues to charge C1 to complete an oscillation process. The above process goes round and round, and the oscillator outputs a fixed frequency.
[0014] The biggest requirement for the frequency of the clock is to achieve the stability of the output frequency under various conditions, but due to the change of the power supply voltage, it will lead to the change of the re...
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