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AOQDQDQD HCW-03 12V Relay Module with Infinite Cycle/Single Time/Delay Dual Adjustable/Multifunctional Relay Module/Delay Circuit Module — image 1
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AOQDQDQD HCW-03 12V Relay Module with Infinite Cycle/Single Time/Delay Dual Adjustable/Multifunctional Relay Module/Delay Circuit Module

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product for everyday users

The AOQDQDQD HCW-03 12V Relay Module with Infinite Cycle/Single Time/Delay Dual Adjustable/Multifunctional Relay Module/Delay Circuit Module is a value-for-money product designed for everyday users. Customers praise its great value for money.

great value for money
₹775
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Total: ₹775
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Estimated delivery: 21 Aug4 Sept
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About This Product

The AOQDQDQD HCW-03 12V Relay Module with Infinite Cycle/Single Time/Delay Dual Adjustable/Multifunctional Relay Module/Delay Circuit Module is a value-for-money designed for everyday users. Customers highlight its great value for money.

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Features: 1. It adopts industrial grade single-chip microcomputer to control time with high precision and stable performance. 2. Two adjustable resistors are used to adjust the time, and the on-time and off-time can be independently adjusted. 3. The external contact is activated, and the timing is started by short-circuiting with the self-reset button. It is also possible to short the triggers together and start counting down when power is turned on. If it is triggered again during operation, it will be disconnected immediately. 4. Suitable for fish tank pump intermittent pumping oxygen, other time control equipment. Specifications: Voltage: 12V

Dimension: 61.5*23.2mm Single mode: 1. Does not operate after power-on, the relay is turned on after the trigger, and disconnected after the arrival time. 2. During the delay after the relay is turned on, trigger again and the delay will be interrupted immediately. Loop mode: 1. After the power is turned on, it will not operate. After the trigger, the relay will be turned on and will be disconnected after reaching the T1 time. Turns on after reaching T2 time. In this cycle, T1 and T2 are set by two adjustable resistors. 2. In the delayed working process, if it is triggered again, the delay will be interrupted immediately. Typical application reference: 1. Time-limited working equipment, for example, automatic power-off after 5 minutes of button triggering. 2. The machine repeats the test circuit, for example, a test that is energized for 1 minute and then powered off for 1 minute. 3. The aquarium water pump intermittently pumps water to pump oxygen. 4. Other time control equipment. Performance: Jumper OP1: 1 second to 100 seconds, adjustment accuracy 0.1 second Jumper OP2: 1 second to 15 minutes, accuracy 1 second Delay error of no more than 2% under various temperatures and humidity Basic working principle: Taking the factory standard setting as an example, the red LED will light when the power is turned on, and the relay is in the off state. When the trigger terminal is shorted, the green LED of the module lights up and immediately enters the working state. When it is triggered again in the working state, it will stop working. In the working state, the relay will pass T1 seconds, break T2 seconds, pass T1 seconds, break T2 seconds.....infinite loop. T1, T2 are the length of time the user adjusts through the adjustable resistor. 

 

Package Include:

1× Module Board


How to use:


Adjust the time counterclockwise to decrease, and adjust it clockwise to increase. The resistance range is about 0~5KΩ. When T1 is adjusted to 0Ω, the relay does not work. Formula: T1, T2 time (seconds or minutes) = voltage value (MV) /32.8095 For example: the measured voltage value is 273MV. If the working time unit is seconds, the timer time is about: 237/32.8=7.2 seconds; If the working time unit is minutes, the timer time is about: 237/38.8=7.2 minutes For example: the measured voltage value is 1.37V. If the working time unit is seconds, the timer time is about: 1370/32.8=41.8 seconds; If the working time unit is minutes, the timer time is about: 1370/32. 8=41.8 minutes



Product Safety Information

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.