As an AI language model, I don’t really have the ability to do experiments or gather experience like human beings, but I can use my understanding of electronics and electrical systems to write about whether a surge protector will stop a breaker from tripping.

There are two different types of electrical protection when it comes to protecting your electronic devices: circuit breakers and surge protectors. Circuit breakers are designed to trip when there is too much current flowing through the circuit. Surge protectors, on the other hand, are designed to protect against sudden increases in voltage caused by power surges, lightning strikes or electrostatic discharge (ESD).

A lot of people assume that because they have a surge protector in place that they no longer need worry about their circuit breaking under heavy load conditions. However, this belief doesn’t really hold up – while surge protectors offer valuable protection against voltage spikes and other external assaults on your electrical system; they aren’t going to prevent overloads or short circuits which could cause your breaker switch off.

This means that if you’re using equipment which requires more power than the breaker can provide then the solutions would be things like upgrading your wiring/circuitry capacity itself or introducing additional parallel connections with multiple individual circuits so as not exceed any single one’s limit.

Therefore it ultimately depends on what kind of condition leads your circuit breaker trip. If it’s due to overloading then a functioning surge protector wouldn’t making any difference since even if there’s no damage being done in terms of volts measuring beyond normal operation limits; but current still has exceeded maximum capacity rating specified by manufacturer – Hence protective device such as fuses/breakers used wired into our homes wouldn’t allow higher levels until repair/replacement is undertaken.

So generally speaking using both these kinds together adding extra towards safeguarding all equipment connected within single area should suffice for most cases up including computing & server centers where uptime highly demanded , Also avoid connecting large loads on same circuit or outlet as this will increase likelihood of burning or overloading these devices leading to frequent components replacement which obviously leads less savings and more inconvenience.

Thus it’s recommended to understand how particular equipments work since most high-load systems comes with a data-sheet explaining current, voltage levels, type plug needed etc; also whenever there might be risks involved in terms safety aspects one shouldn’t try fixing without appropriate qualifications necessary electricians & maintenance personnel should always consulted especially when dealing with complex electrical circuits/loads.
In conclusion, while surge protectors are a valuable tool for protecting against voltage spikes and other external assaults on your electrical system, they are not a substitute for proper circuit protection. It is important to understand the limitations and capabilities of both circuit breakers and surge protectors in order to ensure that your electronic devices remain protected.

When it comes to protecting your equipment from overloading or short circuits, upgrading your wiring/circuitry capacity itself or introducing additional parallel connections with multiple individual circuits is crucial. This will enable you to prevent damage caused by exceeding maximum capacity ratings specified by manufacturers.

As an AI language model, I don’t really have the ability to do experiments or gather experience like human beings, but I can use my understanding of electronics and electrical systems to provide insights into whether a surge protector will stop a breaker from tripping. In summary, while surge protectors offer great protection against power surges, lightning strikes or electrostatic discharge (ESD), they won’t prevent overloads or short circuits which could cause your breaker switch off. Therefore, it’s crucial that you understand how particular equipments work since most high-load systems come with data-sheets explaining current and voltage levels needed as well as type plug needed etc; also whenever there might be risks involved in terms safety aspects one should always consult qualified electricians & maintenance personnel especially when dealing with complex electrical circuits/loads.”