Bilingual edition: English is preserved and Chinese follows each unit. Terminology uses the confirmed v20260916 glossary; automated semantic review remains traceable.
中英双语版:英文原文完整保留,中文紧随对应单元;术语采用 v20260916 确认表,自动语义审校结果可追溯。

UJT Relaxation Oscillator

UJT 放电振荡器

The negative resistance characteristic of the unijunction transistor makes possible its use as an oscillator.

负电阻特性使单结晶体管得以用于振荡器。

after Diefenderfer & Holton p.223

见Diefenderfer & Holton第223页
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Relaxation Oscillator Concept

弛豫振荡概念

The concept of a relaxation oscillator is illustrated by this flasher circuit where a battery repeatedly charges a capacitor to the firing threshold of a bulb, so that the bulb flashes at a steady rate.

电容器的概念通过这个闪光电路得以说明,其中电池反复对电容器充电至灯泡的触发阈值,从而使灯泡以稳定频率闪烁。

When the capacitor is charged to the firing threshold of the bulb, the bulb begins to conduct and the capacitor discharges, dumping its energy to the bulb, flashing the bulb. After the flash, the battery begins charging the capacitor again.

当电容器充电至灯泡的点火阈值时,灯泡开始导电,电容器放电,将其能量传递给灯泡,使灯泡闪光。闪光之后,电池开始再次对电容器充电。

A relaxation oscillator is a repeating circuit (like the flasher circuit illustrated above) which achieves its repetitive behavior from the charging of a capacitor to some event threshold. The event discharges the capacitor, and its recharge time determines the repetition time of the events. In the simple flasher circuit, a battery charges the capacitor through a resistor, so that the values of the resistor and the capacitor (time constant) determine the flashing rate. The flashing rate can be increased by decreasing the value of the resistance.

一个弛张振荡器是一种重复的电路(如同上图所示的闪光电路),其重复行为源于电容器充到某个事件阈值的过程。事件发生时会放电,其重新充电时间决定了事件的重复时间。在简单的闪光电路中,电池通过电阻对电容器充电,因此电阻和电容器(时间常数)的值决定了闪光频率。通过减小电阻值可以增加闪光频率。

One of the reasons for the importance of the relaxation oscillator concept is that some neural systems act like relaxation oscillators. For example, the bundle of nerve fibers called the SA node (sino-atrial node) in the upper right hand part of the heart acts as the natural pacemaker of the heart, firing at a regular rate. The rate of this oscillator is variable, and can be increased in response to exertion or alarm. While this is an attactive simple picture of the hearts repeating electrical pattern, physiologists caution that this is a gross oversimplification of the electrical action of the heart. The heart's electrical system has several active components, and even the heart's muscle cells are electrically active and excitable in a different way than other muscle cells in the body.

放松振荡器概念的重要性之一在于,某些神经系统的行为类似于放松振荡器。例如,心脏上右上方称为窦房结(窦房结)的神经纤维束,作为心脏的天然起搏器,以规律的频率放电。该振荡器的频率可变,并能在运动或警觉时增加。虽然这提供了一个吸引人的简单心脏重复电活动的图像,但生理学家警告说,这是对心脏电活动的粗略简化。心脏的电气系统包含多个活跃组件,甚至心脏的肌细胞在电活动和可兴奋性方面也与其他身体肌肉细胞不同。

Other nerve cells recharge like a capacitor, but then wait for some kind of stimulus to fire. In response to some kind of trauma, it might be that the firing threshold is lowered enough to "self fire" and act as a relaxation oscillator. This is an intriquing possibility for explaining the ringing in the ears after a loud concert.

其他神经细胞像电容器一样充电,但随后等待某种刺激才能放电。在某种创伤作用下,可能使放电阈值降低到足以‘自发放电’,从而成为弛豫振荡器。这为解释音乐会后耳鸣提供了一个引人注目的解释。
Index

Electronics concepts

Oscillators
索引电子学概念振荡器
 
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