Term ground mean in an ELECTRONIC circuit?

In summary: The ground connection in the context of an electronic circuit refers to the potential with respect to which all voltages are measured, usually defined as V = 0. It can also provide a return path for current in certain cases, such as when using a power supply across the rails of a breadboard. In circuit diagrams and instruments, ground often refers to earth ground, a low-impedance connection to the earth that is used to dissipate transient currents.
  • #1
Pranav Jha
141
1
term "ground" mean in an ELECTRONIC circuit?

What does the term "ground" mean in an ELECTRONIC circuit?
A bus strip usually contains two columns: one for GROUND and one for a supply voltage. What does ground mean in this context and how do we ground a circuit while using a breadboard?
 
Physics news on Phys.org
  • #2


Ground refers to the potential with respect to which all voltages are measured in the circuit. In other words, we define V = 0 here. Sometimes (but not always), the ground connection can also provide a return path for the current through the circuit. This is true in the case where you connect a power supply across the rails of your breadboard, so that the - terminal of the supply is at ground.
 
  • #3


Has Cepheid said, the ground, in theoretical circuits (it might not be true in real life, but you should't bother about this now!), is where you put the voltage to zero (i.e. since you only want voltage difference, it's a specified point where V=0).
 
  • #4


Pranav Jha said:
What does the term "ground" mean in an ELECTRONIC circuit?
A bus strip usually contains two columns: one for GROUND and one for a supply voltage. What does ground mean in this context and how do we ground a circuit while using a breadboard?

Good question, Pranav. In addition to the good answers provided so far...

"Ground" in electronic circuit diagrams and on instruments often refers to "Earth Ground", which is the 3rd wire routed to electrical outlets. This galvanic connection is supposed to be a low-impedance connection to Earth Ground, and is not supposed to support currents in the ground conductors. So it's a good place to dump transient currents (ESD, Surge, Burst, etc.), but it's not part of the regular differential power delivery connection from the AC Mains (Hot-Neutral).
E
 
  • #5


In an electronic circuit, the term "ground" refers to a reference point or node that has a zero voltage potential. It is typically represented by the symbol of a downward pointing triangle with a horizontal line through it. The ground serves as a common return path for electric current and provides a stable reference point for measuring voltages in a circuit.

In the context of a bus strip, the ground column is used to connect all the ground pins of components in a circuit. This ensures that all the components have the same reference point and helps in maintaining a stable voltage in the circuit.

When using a breadboard, the ground connection is usually made by connecting the ground pin of the power supply to the ground rail on the breadboard. This creates a common ground for all the components on the breadboard. It is important to ground a circuit to prevent any unwanted fluctuations in voltage and to ensure the proper functioning of the circuit.
 

1. What is the definition of a ground in an electronic circuit?

A ground in an electronic circuit is a reference point or node that serves as a common return path for electric current. It is typically connected to the earth or a metal rod buried in the ground to provide a stable and low-resistance path for current to flow back to the power supply.

2. Why is a ground necessary in electronic circuits?

A ground is necessary in electronic circuits to ensure proper functioning and safety. It helps to stabilize the voltage and prevent fluctuations, provides a return path for current, and helps to dissipate excess energy from the circuit. It also serves as a reference point for measuring voltage and allows for the safe discharge of any built-up static electricity.

3. Can a ground be connected to any point in the circuit?

No, a ground must be connected to a specific point in the circuit, typically the negative terminal of the power supply. This ensures that all components in the circuit are at the same potential and allows for the proper flow of current.

4. What are the different types of grounds in electronic circuits?

There are three main types of grounds in electronic circuits: chassis ground, signal ground, and earth ground. Chassis ground refers to the metal frame or casing of the equipment, signal ground is used for low-voltage signals and is often connected to the negative terminal of the power supply, and earth ground is connected to the actual ground or earth to provide a safe path for excess current.

5. How can a ground be tested in an electronic circuit?

A ground can be tested using a multimeter to measure the resistance between the ground and the negative terminal of the power supply. A low resistance indicates a good ground connection. It can also be tested by checking for continuity between different points in the circuit and the ground. If there is no continuity, there may be an issue with the ground connection.

Similar threads

Replies
7
Views
1K
Replies
14
Views
1K
Replies
18
Views
2K
  • Electromagnetism
Replies
7
Views
931
Replies
14
Views
3K
Replies
11
Views
853
  • Electromagnetism
Replies
4
Views
1K
  • Electromagnetism
Replies
6
Views
2K
Replies
7
Views
1K
Replies
1
Views
822
Back
Top