The only time 2 beakers are run to one outlet is if the outlet is 240V. The breakers should have handle-ties connected to them to ensure that both breakers trip in the event of an overload. Nope its not 240 either,cause it continues to other outlets the same way.and can plug 110 accesories into them. I have come accross this everywhere. In rooms without a ceiling light, one half of a duplex receptacle is a switched lighting circuit and the other is a always on receptacle.
Yes, the outlets in a circuit can be arranged in different groupings to obtain the same result because the total load on the circuit remains the same regardless of how the outlets are grouped. As long as the total current draw does not exceed the circuit's capacity, changing the grouping of outlets will not affect the overall functionality.
Yes. If it a residential home then you can only have two breakers per neutral and they need to be on opposite legs of your panel. If it is a commercial 3phase panel then you can only put 3 breakers on a shared neutral. Here's why. In your panel assuming its residential you have two power wires and one neutral and these power wires are called legs. If you attach two breakers on the same leg that is across from each other on opposite sides of the panel or skipping a space between breakers on the same side at 15A apiece you return on the neutral will not be balanced and you will have the possibility of 30A coming back to your panel on the neutral which will fry a 14 Awg or even 12 Awg for that matter and cause a fire. Now if the breakers are in tandem that is they have the breaker tie that connects two breakers together they will be on separate legs and then only will your breakers/circuits be balanced and it will be safe to share a neutral on. If two tandem breakers are connected to a single neutral and they are all 15A breakers your return would be 30A again because although your tandem breakers are balanced now you have two tandem breakers returning a potential 15A per two breakers and that adds up to 30A. The next problem you have is when you share a neutral as per the National Electric Code if one breaker trips the other breaker also sharing that neutral must trip so that when the power is off any current that could possibly return through the neutral wire will be cut off. So now this creates another problem with 4 breakers sharing the same neutral is now there is no way to get all four to trip at the same time if there was a ground fault (a short) or an overload. and someone could get nailed by any current coming back on the shared neutral. All the same applies for 3phase except there are 3 power wires and you can use 3 breakers with a 3 breaker tie instead of just two. You either need to run one neutral per tandem breaker or four neutrals for four circuits/breakers. Tandem breakers controlling two separate circuits are a pain because when one breaker trips they trip the other circuit also. Tandems are mostly used for two circuits going to the same appliance so that no power on either leg reaches the appliance when it needs to be off.
GE circuit breakers with catalog numbers ranging from THQL1115 through to THQL1150 can be substituted like for like with Cutler-Hammer circuit breakers coded CL115 through to CL150, ITE Siemens circuit breakers coded Q115 through to Q150 and Square D circuit breakers coded HOM115 through to HOM150. These are single pole breakers. GE circuit breakers with catalog codes from THQL2115 through to THQL2150 can be substituted with Cutler-Hammer circuit breakers CL215 through to CL250, Square D circuit breakers HOM215 through to HOM250 and ITE Siemens circuit breakers Q215 through to Q250 of the same amperage and voltage. These are double pole breakers.
Siemen's is a brand of electrical breakers that will cross reference with GE thqb series breakers. Electrical breakers can be replaced by other brands if they are of the same type and fit in an electrical box.
Pinning breakers is becoming a thing of the past. This is due to the manufacturing of two pole breakers with one common trip reset handle. The electrical code states that on a 240 volt breaker if one leg trips the other leg must be disconnected from the supply also. This is a safety factor so that if they weren't tied together and one leg tripped the other half of the breaker would remain "hot". Any one working on that circuit in the tripped position could get a nasty shock from the un-tripped leg. Pinning the breakers on 240 volts was done because it was convenient to use single pole breakers in the distribution panel. To abide by the code the two single pole breakers were common tied together. When the branch circuits share a neutral to a common box they have to be common tied for the same reason above. This type of circuit is found on kitchen counter receptacles. Two separate circuits that share a neutral and go to separate junction boxes do not need the breakers tied.
To determine if the lights and outlets in a room are connected to the same circuit, you can check the circuit breaker panel. If the lights and outlets are on the same circuit, flipping the breaker for that circuit will turn off both the lights and outlets. If they are on separate circuits, turning off the breaker for the lights will only affect the lights, and the outlets will still have power.
To wire outlets and lights on the same circuit, you can connect them to the same electrical circuit breaker. Run the wiring from the breaker to the outlets and lights, making sure to follow proper electrical codes and safety precautions. Use separate wires for the outlets and lights, and connect them to the appropriate terminals on the outlets and light fixtures. It is recommended to consult a licensed electrician for guidance and to ensure the wiring is done correctly and safely.
No, those are separate controllers.No, those are separate controllers.
its an overload on the circuit breaker the 3 outlets are on.. many times groups of outlets are on different circuit breakers.. even though they are in the same room... especially if some are on a gfi outlet
The same name breakers as the manufacture of the load center.
Yes, different amperage rating circuit breakers can have the same short circuit characteristics.
fuses
No, the outlets in Japan are not the same as the outlets in the US. Japan typically uses Type A and Type B outlets, while the US uses Type A and Type B outlets as well as Type C and Type N outlets. It is important to check the type of outlet and voltage requirements before using electronic devices in a different country.
The options available for replacing challenger breakers include purchasing new breakers from the same manufacturer, using compatible breakers from other brands, or upgrading to a newer breaker panel system.
No. The voltage is the same but you'll need an adaptator to use either the English or the European electrical outlets.
No, Japan does not use the same outlets as the United States. Japan uses a unique type of electrical outlet that is different from the outlets used in the United States.
Yes, the outlets in a circuit can be arranged in different groupings to obtain the same result because the total load on the circuit remains the same regardless of how the outlets are grouped. As long as the total current draw does not exceed the circuit's capacity, changing the grouping of outlets will not affect the overall functionality.