Automatic soymilk circuit

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Automatic soymilk circuit

The automatic soymilk machine circuit is shown in the figure. The working principle is as follows: after adding an appropriate amount of water to the machine, the power is turned on, and the circuit reset is cleared. The pins 11, 12 and 13 of IC2 are all "O", the output of pin 10 is "1", the switch tube V1 is turned on, the J2 is electrically closed, and the heating tube starts to heat up. At this time, the 3, 4 pins of IC2 and the 13 pins of IC3 are all "0". The clock CP signal oscillator composed of the two NAND gates and timing elements R14 and C2 works, generating a signal with a period of 0.21 seconds to IC4. 11 feet, IC4 is divided on the basis of the signal, its 2-pin 13-divided output is low and the high period is 29 minutes pulse signal, and the rising edge after 14.5 minutes is used to end the whole process and humming prompt . The 6-pin of IC4 is a pulse signal with a divide-by-7 output period of 27 seconds, which is used to trigger the drive motor. Its 15 feet are divided by 10, the output period is 3.6 minutes pulse, the first 1.8 minutes of low level half cycle is allowed to beat 4 times, and after 1.8 minutes, the rising edge will lock IC4's 4 feet in the “0” state, so that V2 is cut off. End the beating process and maintain heating. When the soy milk is heated and boiled, the overflow switch K is closed, and the 9th leg of the ICI changes from "1" to "O", and the circuit stops heating. When the boiled soymilk drops to break K, the soymilk is heated again, which is designed to effectively kill the harmful aflatoxin in the soy milk.



High Speed Slip Ring

A high-speed slip ring is an electromechanical device that allows electrical current to pass between a stationary and a rotating assembly. It is typically used in applications where the speed requirement exceeds that which is achievable with a standard slip ring. High-speed slip rings are available in a variety of sizes and configurations to meet the needs of most applications. They are commonly used in military, aerospace, and medical applications where speed and reliability are critical.


The speed is required to be at least tens of thousands of revolutions per minute, the structure of the Conductive Slip Ring directly determines the contact of high speed, as well as the size of impedance. High-speed slip ring materials have high wear resistance, high life characteristics, and multi-contact contact can ensure signal transmission and power reliability, with the development of science and technology, high-speed slip rings will be more and more widely used.



If you need to transfer large amounts of data or power between two stationary objects, a high-speed conductive slip ring is what you need. Traditional slip rings only offer a few thousand revolutions per minute (RPM), which is more than enough for most applications, but can be limiting in some circumstances. Some applications, like those found in the medical or military field, require speeds of tens of thousands of RPM in order to function properly. That's where our high-speed conductive slip ring comes in. With speeds up to a certain range, it can handle even the most demanding applications.


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