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节水报警

2011/5/19 14:00:28;
来源:<a href='http://bbs.hqew.com/viewthread.php?tid=156330' target='_blank'>wangliuguo</a> 作者:华仔 浏览:872

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摘要: 下面是 [节水报警 ]的   The conductivity of the water is used to active the circuit built around IC1a. The two electrodes (probes) are fitted at the lowest point where water will come to stand. They can be two tinned copper wires, but you can also use two pieces of circuit board with the copper surface coated with solder. The combination of IC1a, resistor R2 and capacitor C2 forms a sim

下面是 [节水报警 ]的
  


The conductivity of the water is used to active the circuit built around IC1a. The two electrodes (probes) are fitted at the lowest point where water will come to stand. They can be two tinned copper wires, but you can also use two pieces of circuit board with the copper surface coated with solder. The combination of IC1a, resistor R2 and capacitor C2 forms a simple oscillator that produces the intermittent (on/off) effect of the alarm. If no water is present between the probes, the input of IC1a is held low by R1 and the output of IC1b is also low.

The oscillator is not active in this state. If moisture is sensed, the supply voltage pulls input 1 of gate IC1a high via the conductive water, causing the gate to start oscillating. Whenever the output of IC1b is high, the tone generator built around IC1c is enabled, and in turn it energizes buzzer BZ1. The net result is a periodic, intermittent beeping tone. You can adjust the intermittent effect of the sound produced by the water alarm to suit your taste by simply adjusting the value of R2 or C2. You can also set the pitch of the sound with P1.

The closer the pitch is to the resonant frequency of buzzer BZ1, the louder the tone will be. You should set the sound to the most irritating level possible. Gate IC1d is used to boost the amount of power than can be pumped into the buzzer. It inverts the output signal from IC1c to double the voltage applied to the buzzer. Naturally, the circuit of the alarm must be fitted somewhere that will remain high and dry. Use a pair of thin twisted wires to connect the electrodes (probes) to the board. Naturally, you should use insulated, flexible wire for this purpose.

Twisting the wires together makes the relatively long connection between the probes and the circuit less sensitive to false alarms due to external electromagnetic interference. The current consumption is very low (less than 0.1µA) when everything is dry. When the buzzer is energized, the current consumption can rise to around 2mA. We measured 3mA with the frequency set to the maximum value. The battery will thus last for several years as long as no water is detected. Of course, you should bear in mind that the battery might start leaking after a while…

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型号 厂商 价格
EPCOS 爱普科斯 /
STM32F103RCT6 ST ¥461.23
STM32F103C8T6 ST ¥84
STM32F103VET6 ST ¥426.57
STM32F103RET6 ST ¥780.82
STM8S003F3P6 ST ¥10.62
STM32F103VCT6 ST ¥275.84
STM32F103CBT6 ST ¥130.66
STM32F030C8T6 ST ¥18.11
N76E003AT20 NUVOTON ¥9.67
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