Parallel gradient-adjustable capacitor with back space switch, water pump control system, and sewage processing equipment with water pump
A capacitor and gradient technology, applied in the electrical field, can solve the problems of difficult to use high-power circuits, complex and fragile results, high cost of capacitors, and achieve the effects of not easy to burn, long service life, and long contact life.
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Embodiment 1
[0036] Implementation example 1, such as Figure 1-2 As shown, a parallel gradient adjustable capacitor with an abdication switch is characterized in that it includes an insulating container G11, a conductive liquid G31, an entity G21, a common electrode G51, at least two gradient electrodes U31, U32, U33, U34, an electromagnetic Coil G41, the first node O+ of the controlled path, the second node O- of the controlled path, the first node P+ of the control end, the second node P- of the control end, at least two capacitors C1, C2, C3, and C4 with fixed capacitance reactance ;
[0037] The insulating container G11 has a stable shape. The shape of the insulating container G11 is cylindrical, and the container of the insulating container G11 is cylindrical.
[0038] The conductive liquid G31 is contained in the cavity of the insulating container G11, the volume of the conductive liquid G31 is smaller than the volume of the insulating container G11, and the volume of the conductiv...
Embodiment 2
[0050] Implementation Example 2: A modification is made on the basis of implementation example 1, so that a tilt switch K1 is connected in series between the common electrode G51 and the second node O- of the controlled channel, so as to prevent capacitors from being used when they are placed incorrectly.
Embodiment 3
[0051] Implementation example 3. A sewage treatment equipment with a water pump, which has the parallel gradient adjustable capacitor with an abdication switch described in implementation example 1.
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