Water level measuring apparatus

A water level measurement and instrument technology, applied in the field of water level detection and control devices, can solve the problems of large consumption of electrolytic corrosion, electrode corrosion, backward compensation methods, etc., and achieve the effect of extensive operation control

Inactive Publication Date: 2005-03-16
李虬
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The shunt resistance of the device must be compensated by manually finding the probe where the scale is accumulated, and then finding the corresponding processing sub-circuit of the probe to manually adjust the shunt current. Obviously, the compensation method of the device is very backward, and in the probe The direct current flows between the electrodes, and there are still problems of large power consumption and electrode corrosion
[0005] The Chinese patent No. 94236213.6 discloses a high-precision probe with a wave-proof sleeve around the electrode for water level detection and control in an electric heating steam boiler. The protective barrier composed of the anti-wave sleeve and the cock head is provided with a damping water inlet hole on the lower end of the anti-wave sleeve. Such a structure can indeed prevent impurities in boiling water from scaling on the surface of the electrode to a certain extent, but Since fouling is also possible on the surface of the damping water inlet hole, the blocking of the damping water inlet hole will affect the measurement accuracy of the water level and the accuracy of the compensation calculation, so it is only suitable for occasions where the accuracy of the liquid level measurement is not high, and this technology The solution cannot solve the electrolytic corrosion effect of the measurement current on the metal electrode during the uninterrupted measurement process for many years, and the life of the electrode will be difficult to last; similarly, a considerable part of the electrical energy consumed by the measurement is also consumed on the electrolysis of the electrode, which will increase A lot of useless work wasted
[0006] Another example is that the document of Chinese patent 01244538.X discloses a water level detection device that adopts a single-chip microcomputer to add resistance and a probe. When the input voltage of the two probes is connected to each other due to the rise of the water level, it is equivalent to connecting a shunt resistor with a lower value in parallel between the resistor and the I / O interface 20 and 18, so that the original resistor When the voltage drops below 4 volts, a water-full signal is sent to the single-chip microcomputer; although this device uses a computer single-chip microcomputer as a detection / control circuit, it is still a direct current that flows between the two probes that go deep into the water. The consumption between the two metal probes is greater and the corresponding electrolytic corrosion still exists

Method used

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Examples

Experimental program
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Embodiment 1

[0025] Such as figure 1 Shown: a water level measuring instrument, the instrument includes the following components: a detection electrode 100, a display circuit 200, a detection control circuit 300, and a power supply circuit 400, wherein the power supply circuit 400 provides power to other circuits, and the detection electrodes 100 are many There are two, including the liquid level electrode 110 and a return electrode 120 located at the bottom of the liquid level, and the detection control circuit 300 includes a pulse generation circuit 310, a processing circuit 320 composed of semiconductor switching tubes and each liquid level electrode 110 A coupled coupling circuit 330, wherein the coupling circuit 330 has three heads, which are respectively connected to the output end of the pulse generating circuit 310, the input end of the processing circuit 320, and one of the liquid level electrodes 110; and the return electrode 120 is connected to the The ground wire of the power s...

Embodiment 2

[0030] Such as figure 2 Shown: a kind of water level measuring instrument of the present invention, this instrument comprises following parts:

[0031] The detection electrodes 100 are divided into two types according to their functions: two liquid level electrodes 110 : 110B and 110C are respectively set at different liquid level heights; one return electrode 120 is set at the bottom of the liquid level. The two liquid level electrodes 110B and 110C are respectively connected to the gate circuits 7 and 9 through R3 and R4, and the lower ends are respectively inserted into the liquid at different depths. One end of the return electrode 120 is connected to the ground wire of the power supply through a large-capacity capacitor C8, and the other end goes deep into the liquid. To the bottom of the measured liquid, forming a current loop with a liquid level electrode 110;

[0032] The display circuit 200 includes a display signal generation circuit composed of gate circuits 3 and...

Embodiment 3

[0038] Such as image 3 Shown: a pen-type water level measuring instrument used in hydroponic potted plants according to the present invention. The external dimensions of the water level measuring instrument are: length 115 mm, diameter 15 mm, which can be easily inserted into the cultivation pot. The pen-type water level measuring instrument is composed of upper and lower long cylinders 511, 512 connected detachably; the upper cylinder 511 is equipped with a detection control circuit 300, a power supply circuit 400, and a display circuit 200; The bottom of the lower cylinder 512 is provided with several permeable holes 513, the upper part of the lower cylinder 512 is provided with a ventilating liquid level upper limit hole 514, the top 516 of the lower cylinder 512 is a sealing end surface, and the detection electrode 100 is fixed on the top 516 of the lower cylinder 512. The upper end of the detection electrode 100 protrudes from the upper surface of the top end 516 to conn...

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Abstract

This invention relates to a liquid measure device which comprises measure electrode, display circuit, measure and control electrode and power circuit. The measure electrodes are more than two, which comprises liquid electrode and a loop circuit on the liquid bottom. And the measure and control circuit comprises pulse generator circuit, process circuit composed of semi-conductor switches and couple circuit connected with each liquid level electrode. The couple circuit has three ends and each of them is separately connected with the output end of the pulse generator circuit, input end of process circuit and liquid level electrode. The loop circuit electrode is connected with earth line of the power. The pulse generator circuit sends out pulse electricity wave with certain dutycycle to the liquid level electrode through couple circuit. The process circuit processes the electricity level of the liquid level electrode through relevant couple circuit and sends out the liquid level signals to the display circuit or outer circuit.

Description

【Technical field】 [0001] The invention relates to a detection and control device for water level, more specifically, the invention relates to a monitoring and adjustment device for liquid level in hydroponics. 【Background technique】 [0002] Hydroponics has been widely used in today's flowers and factory planting and cultivation. As a conductive and weakly polar liquid, water liquid plays a decisive role in the existence, development and continuation of nature and human society. It is widely used in various fields and aspects. Correspondingly, the monitoring and adjusting device of water level is also of great significance to people's social activities and development in all aspects. The technologies and equipment in this field are also complicated and diverse. These Existing technologies and equipment each have certain advantages and disadvantages. For example, float probes are widely used in many water storage containers, but the buoyancy of float probes is affected by li...

Claims

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Application Information

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IPC IPC(8): G01F23/24
Inventor 李虬
Owner 李虬
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