Editor Version ×
Standard

1.Easy to use and quick to get started

2.The process supports design scales of 300 devices or 1000 pads

3.Supports simple circuit simulation

4.For students, teachers, creators

Profession

1.Brand new interactions and interfaces

2.Smooth support for design sizes of over 5,000 devices or 10,000 pads

3.More rigorous design constraints, more standardized processes

4.For enterprises, more professional users

Ongoing

STD Adjustable Timer Relay Switch

License: GPL 3.0

Mode: Editors' pick

  • 1.1k
  • 0
  • 3
Update time: 2023-05-21 04:54:57
Creation time: 2019-06-04 12:52:44
Description
Learn how to make a precisely adjustable timer with a variable delay from 1 - 100 seconds that uses the 555 IC. The 555 timer is configured as a Monostable Multivibrator. The output load is driven by the relay switch which is in turn controlled by the timer circuit. [YouTube Video:](https://youtu.be/eH5MnaChGu0) # Step 1: Parts & Tools # ![focuscompress 2 of 2.jpg](//image.easyeda.com/pullimage/4CmPTR9Yi438mNgLMK1GW17F7gtoYQvvsejQjGey.jpeg) # Step 2: 555 Explained # ![](https://cdn.instructables.com/FCC/POFK/JU31UZIU/FCCPOFKJU31UZIU.LARGE.jpg) The 555 is a highly stable device for generating accurate time delays or oscillation. Additional terminals are provided for triggering or resetting if desired. In the time delay mode of operation, the time is precisely controlled by one external resistor and capacitor. The circuit may be triggered and reset on falling waveforms, and the output circuit can source or sink up to 200mA or drive TTL circuits. In the Monostable mode, the LM555 timer acts as a one-shot pulse generator. The pulses being when the LM555 timer receives a signal at the trigger input that falls below a 1/3 of the voltage supply. The width of the output pulse is determined by the time constant of an RC network. The output pulse ends when the voltage on the capacitor equals 2/3 of the supply voltage. The output pulse width can be extended or shortened depending on the application by adjusting the R and C values. The external capacitor is initially discharged by a transistor inside the timer. Upon application of a negative trigger pulse of less than 1/3 VCC to pin 2, the internal flip-flop is set which both releases the short circuit across the capacitor and drives the output high. The voltage across the capacitor then increases exponentially for a period of t = 1.1RC , at the end of which the voltage equals 2/3 VCC. The internal comparator then resets the flip-flop which in turn discharges the capacitor and drives the output to its low state. # Step 3: Circuit Schematic # ![](https://cdn.instructables.com/F5R/E1RN/JU31UZO4/F5RE1RNJU31UZO4.LARGE.jpg) The LM555 has a maximum typical supply voltage rating of 16V while the relay's armature coil is enabled at 12V. Hence a 12V power supply is used to minimize the number of components such as linear voltage regulators. When pin 2 of the LM555 is triggered (by shorting it to ground) through the momentary switch S1, the timer is started. The timer generates an output pulse with an ON time period determined by the RC network i.e t = 1.1RC . In this case, the fixed value of the capacitor is 100uF. The value of R consists of a 10KΩ resistor in series with a 1MΩ potentiometer. We can vary the potentiometer to change the time period of the output pulse. For example, if the potentiometer is set to 0Ω, the value of R is equal to 10KΩ. Hence t = 1.1 x 10K x 100u = 1 second. But if the pot is set to 1MΩ, the value of R is equal to 1MΩ + 10KΩ = 1010KΩ. Hence t = 1.1 x 1010K x 100u = 100 seconds. When pin 4 of the LM555 is triggered (by shorting it to ground) through the momentary switch S2, the timer is reset. When the timer starts, the relay turns ON. Hence the Common(COM) terminal of the relay is shorted to the Normally Open (NO) terminal. A high power load can be connected to this terminal such as a light bulb or water pump. A transistor Q1 acts as a switch an ensures sufficient drive current is provided to the relay. Diode D1 acts as a flyback diode which protects the transistor Q1 from voltage spikes caused by the relay coil. LED2 turns on in order to indicate when the relay is turned ON. LED1 indicates the circuit is powered ON. An SPDT switch S3 is used to switch the circuit ON. Capacitors C2 and C4 are used to filter noise in the supply line. # Step 4: Start and Reset the Timer # ![IMG_1568.jpg](//image.easyeda.com/pullimage/hB3MnMuIXBetlbXA9vPVkbrcNh151Rqwh7m7N6HZ.jpeg) ![IMG_1623.jpg](//image.easyeda.com/pullimage/89jL6L2DFPBRosKYNimulqyljPaeI1o2HsWPmaiY.jpeg) ![IMG_1625.jpg](//image.easyeda.com/pullimage/iSKmQGXhSH9F5gAJFawzqgw12OHhQ9zOGfGYDzDa.jpeg) I connected a 24VDC indicator light across the Common & Normally Open terminals of the relay. When the timer is ON, these terminals are shorted thereby completing the circuit. You can vary the Potentiometer to adjust and set the time delay. Momentary switch S1 is used to Start the timer. The timer can be reset during the timing cycle by pressing the momentary switch S2. # Follow me: # **YouTube: [Electro Guruji](Electro Guruji) Instagram: @[electroguruji](electroguruji) Twitter: [ElectroGuruji](ElectroGuruji) Facebook:[ Electro Guruji]( Electro Guruji)**
Design Drawing
schematic diagram
1 /
PCB
1 /
The preview image was not generated, please save it again in the editor.
ID Name Designator Footprint Quantity
1 0.1uF C1,C2 C025-050X050 2
2 100uF/25V C3,C4 E2,5-6 2
3 1N4004 D1 DO41-10 1
4 555 IC1 SOCKET-08 1
5 Supply J1 SCREWTERMINAL-5MM-2 1
6 Relay O/P J2 SCREWTERMINAL-5MM-3 1
7 LED5MM LED1,LED2 LED5MM 2
8 BC547 Q1 TO92 1
9 3K R1,R6 0207/10 2
10 10K R2,R3,R4,R5 0207/10 4
11 1M R7 3RP/1610N 1
12 MOMENTARY-SWITCH-SPST-PTH-6.0MM S1,S2 TACTILE_SWITCH_PTH_6.0MM 2
13 TL36YO S3 TL3XYO 1
14 ZF112 K1 ZF112 1

Unfold

Project Attachments
Empty
Project Members
Target complaint
Related Projects
Change a batch
Loading...
Add to album ×

Loading...

reminder ×

Do you need to add this project to the album?

服务时间

周一至周五 9:00~18:00
  • 0755 - 2382 4495
  • 153 6159 2675

服务时间

周一至周五 9:00~18:00
  • 立创EDA微信号

    easyeda

  • QQ交流群

    664186054

  • 立创EDA公众号

    lceda-cn