In this project we will create a tea maker using Android application using Internet of Things (IOT based tea). If we were in at home or away from home, we will send him an order through the app and he make tea before going home. We add professional file system to add users the best is tea recipes so
Iot tea maker
In this project we will create a tea maker using Android application using Internet of Things (IOT based tea). If we were in at home or away from home, we will send him an order through the app and he make tea before going home. We add professional file system to add users the best is tea recipes so users always get what they like mostly black tea and basic tea. For the communication system, we will use Wi-Fi the module controls the device according to the data commands of the Application. This will also work for a different individual profile, as each person has a different preference (Hard tea, soft tea). You can set the amount of ingredients using Mobile application. An automatic notification will be received if the cabin components are reduction. It will save us time.
The goal of our team is to provide the best tea machine using IOT. To make two different things in one machine. To make the best features ever in apps which are interesting, easy to use and easy to make tea with different flavors.
In traditional approach wherever the Tea Maker is placed or installed, man need to be physically
present there to serve the Tea and to continuously monitor the system. But sometimes it is not possible for man to be
physically present there. This proposed system is designed in such a way that a customer can order his Tea via a
mobile app. It provides complete authentication of the user to Make tea.
It consists of the stepper motor ,ESP-32, temperature sensor, UltraSonic Sensor. Here the relay driver is used to give a start to Tea heater, Tea selector and the
pump.
The level of the ingredient in the machine is continuously monitored by the sensor. Microcontroller ESP-32 is
used to read the data from the sensor. The temperature sensor will maintain the constant water temperature.
In this project ESP-32 microcontroller reads data from the IR sensor. The IR Sensor sends 12 bytes of data at
9600 baud rate. The data is send to the Wi-Fi module at 9600 baud rate.Then we must click on Prepare Tea button on the app. The app sends data on cloud. The microcontroller receives the
data from the cloud and starts the procedure. The microcontroller first checks if water in the tank is available or not. It
displays Water Level Low message and waits until sufficient water level is reached. Then it starts the heater and when
the temperature reaches 70 degree it stops the heater. Then it adds 1 spoon of Tea mixture in heated water with the
help of dispenser. Next it pumps the ready Tea to the cup by a 12V Dc pump.
Technical Details of Hardware components.
a) Stepper motor:
A stepper motor, also known as step motor or stepping motor, is a brushless DC electric motor that divides a full rotation into a number of equal steps. The motor's position can be commanded to move and hold at one of these steps without any position sensor for feedback (an open-loop controller), as long as the motor is correctly sized to the application in respect to torque and speed.
Switched reluctance motors are very large stepping motors with a reduced pole count, and generally are closed-loop commutated.
b) ESP 32 Arduino:
ESP32 is a series of small and fast microcontroller boards like Arduino but comes with inbuilt Wi-Fi and Bluetooth features. The ESP32 boards can be programmed using many different programming languages. For example, you can program your ESP32 board in C++ language (like the Arduino) or Micro Python.
c) DC water pump:
This DC 3-6 V Mini Micro Submersible Water Pump is a low-cost, small-size Submersible Pump Motor that can be operated from a 2.5 ~ 6V power supply. It can take up to 120 liters per hour with a very low current consumption of 220mA. Just connect the tube pipe to the motor outlet, submerge it in water, and power it.
d) Ultrasonic Sensor:
An ultrasonic sensor is an instrument that measures the distance to an object using ultrasonic sound waves. An ultrasonic sensor uses a transducer to send and receive ultrasonic pulses that relay back information about an object’s proximity.
e) IR Sensor:
IR technology is used in daily life and also in industries for different purposes. For example, TVs use an IR sensor to understand the signals which are transmitted from a remote control. The main benefits of IR sensors are low power usage, their simple design & their convenient features. IR signals are not noticeable by the human eye. The IR radiation in the electromagnetic spectrum can be found in the regions of the visible & microwave.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Stepper Motor | Equipment | 2 | 2000 | 4000 |
| ESP-32 | Equipment | 1 | 2500 | 2500 |
| DC-Pump | Equipment | 2 | 1500 | 3000 |
| Ultra Sonic Sensor | Equipment | 2 | 800 | 1600 |
| IR Sensor | Equipment | 2 | 300 | 600 |
| Acrylic Frame | Miscellaneous | 1 | 9500 | 9500 |
| Jumper wires | Miscellaneous | 50 | 10 | 500 |
| 3D Printed parts(Design and Printing) | Equipment | 20 | 600 | 12000 |
| Total in (Rs) | 33700 |
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