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Timing Delay Switch Circuit with Double MOSFET Control

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MOSFET Drivers and Trigger Modules for everyday users

The Timing Delay Switch Circuit with Double MOSFET Control is a value-for-money mosfet drivers and trigger modules designed for everyday users. It features Operating Voltage (VDC): 5 to 36 and Quiescent Current: 20mA.

₹640
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Total: ₹640
Buying tip: A smart budget buy — solid performance without breaking the bank.
Estimated delivery: 17 Aug31 Aug
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Quick Specs

Operating Voltage (VDC): 5 to 36
Quiescent Current: 20mA
Operating Current (mA): 50mA
Operating Current (A): 30 A
Operating Temperature (°C): -40 - 85 ºC
Continuous Discharge Current (A): 15A

Ideal For

Hobbyist flyingOutdoor recreationKids entertainment
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SKU: robu-699620Category: MOSFET Drivers and Trigger Modules

About This Product

The Timing Delay Switch Circuit with Double MOSFET Control is a value-for-money mosfet drivers and trigger modules designed for everyday users. It delivers reliable performance at an accessible price.

Key Specifications

  • Operating Voltage (VDC): 5 to 36 — works with standard household power
  • Quiescent Current: 20mA
  • Operating Current (mA): 50mA
  • Operating Current (A): 30 A
  • Operating Temperature (°C): -40 - 85 ºC
  • Continuous Discharge Current (A): 15A
  • Power Rating: 400W
  • Width (mm): 34

Why Buy from Pricio?

Pricio sources this product directly, cutting out multiple middlemen. Every order includes free shipping, a 15-day return policy, and secure payment via Razorpay.

Buy the Timing Delay Switch Circuit with Double MOSFET Control Board Instead Of Relay Module 12 24V. This product is easy to use and has many applications.


Features:

Module characteristics and uses:

  1. To achieve fast turn-on and off the circuit, an unlimited number of switching;
  2. Conducting and cutting process does not produce noise, no spark, no electromagnetic interference;
  3. Compared with electromagnetic relay products, longer life;
  4. The dual-MOS parallel drive, lower resistance, more current, strong power; at room temperature, operating current of up to 15A, power up to 400W, to meet the most use of the equipment;
  5. A method for controlling the motor, lights, LED, DC motors, micro-pumps, solenoid valves, etc., very convenient.

Highlights:

  1. Wide voltage input (5 ~ 36V), most devices can be used, very convenient;
  2. The interface is clear and simple, powerful, easy to understand, meet almost all your needs;
  3. The emergency stop function ("STOP" key),  With reverse polarity protection, reverse polarity will not burn the product.
  4. Increase the sleep mode, if this mode is enabled, without any operation within 5 minutes, then automatically turn off the monitor, any key wake-up;
  5. You can set a different OP, CL, LOP parameters, which are independent of each other, and are automatically saved;
  6. After the module is powered down, all parameter settings are not lost.

Operating mode:

P1: trigger signal, the relay is on "OP" time, and then disconnect; in the "OP" time, as follows:

P1.1: Signal Retrigger, invalid

P1.2: The signal is triggered again, the clock is reset

P1.3: Signal trigger again, relay off, stop the clock;

P-2: trigger signal, the relay off "CL" of time, the relay on "OP" time, and then disconnect relay;

P3.1: trigger signal, the relay is turned on after the "OP" time, the relay off "CL" time, then the operation cycle, if the trigger signal period, the relay off, stop the clock; the number of cycles ( "LOP ") can be set.

P3.2: without triggering signal, the relay is on "OP" time, the relay off "CL" time, and has been cycling; frequency ( "LOP") cycle can be set;

P-4: signal holding function. If there is a trigger signal timing is cleared, the relay remains on; when the signal disappears, after the timing "OP" time, the relay is; if another signal during timing, timing is cleared;


Package Includes:

1 x Timing Delay Switch Circuit, Double MOSFET Control Board Instead Of Relay Module 12 24V

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.