低通滤波器原理及电路图

在电压检测电路后接一个低通滤波器,滤掉高频,后接A/D转换
2025-01-12 16:01:15
推荐回答(3个)
回答1:

低通滤波器,英文名称为Low-pass filter,它是一类只允许低于截止频率的信号通过,但高于截止频率的信号全部不能通过的电子滤波装置。低通滤波器在信号处理过程中的作用等同于其它领域中如金融领域中的移动平均数所起的作用。对于不同滤波器而言,每个频率的信号的减弱程度不同。当使用在音频应用时,它有时被称为高频剪切滤波器, 或高音消除滤波器。

  1. 原理:利用电容通高频阻低频,以及电感通低频阻高频的原理。对于需要截止的高频,利用电容吸收、电感阻碍的方法阻碍它的通过,对于所需要的低频,利用电容高阻、电感低阻的特点使它通过。

  2. 电路图:


回答2:

LC低通滤波器原理

原理很简单,它就是利用电容同高频阻低频,电感通低频阻高频的原理.
对于需要截止的高频,利用电容吸收电感、阻碍的方法不使它通过,对于需要的低频,利用电容高阻、电感低阻的特点是它通过。
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LC串联无源滤波器的原理是什么

任何电流都有短路特性:什么地方阻小,该电流就向什么地方流动。
串联谐振是L、C在某次频率电流时,发生的谐振:此时,L、C串联回路对该次电流的阻抗为零(感抗大小等于容抗大小,且方向相反),对该次电流短路(理论上),这时该次谐波电流几乎都从此处流过,这就是无源滤波的原理。
但是,我认为说无源滤波这个说法不太准确,因为这并不是滤波,而是给有害的谐波提供一个短路通道,在这个通道中,只在本身的直流电阻上消耗一些谐波能量,大部分还都在谐波源和此L、C短路通道中流动。
由于感抗和容抗近似相等,所以在L、C两端的电压降是很小的,理论上可以认为是零。
但是单独在L或C上,其电压是非常高的,这就是谐振电压。
在电力网中,这个谐振电压造成电力设备损坏的例子比比皆是,就是造成电力网解列、崩溃瓦解的例子也不在少数。
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关于RC滤波器
高通滤波器,在输出端(R上)的电压是输入电压的0.707,相位移超前1/4派. 对应的低通滤波器在输出端(C上)的电压是输入电压的0.707,相位移之后1/4派,就这样一个电路,我不明白从哪里体现了滤波呢?按概念,滤波是只让低频信号通过的或者只让高频信号通过啊?但是计算得出的输入输出的关系哪里说明了滤波的作用呢?

这个问题就好像你设立了一个0.707米的障碍,如果一个人能跳过0.707米,他就过去了,要是不能跳过去呢?就过不去,这样你就把人能跳的高度分开了啊!
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RC滤波器是最简单的无源滤波器之一,属于"L"型滤波器

通过调整电路中的RC值可以达到需要的通频带,

但在通频带内平坦特性不很好.
(我ps:这里可以想想LC与RC滤波器其实本质是一样的,只是在把R变为L的时候,对电流的电阻变了,所以RC滤波器的平坦特性没LC滤波器的好)

低通滤波器电路图

回答3:

下图

这是有源滤波器和无源滤波器的最基本形态

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