Your motor/ESC combination or RC model should indicate maximum current ratings and that is usually a good place to start. To choose an adequate connector for your RC powering application, the amount of current it can pull. ![]() This is pretty much the first thing you have to know/understand in order A voltage drop on the other hand which could occur in such an instance, can also cause bad things to happen such as restarts to microprocessor controlled electronics (modern day ESC's, Receivers, and flybarless systems) or voltage spikes/ripple. Overheating only occurs if the over current condition lasts for a sustained period of time so short over-current bursts, even double of what the connector is rated for, are not going to cause a hot & melted connector. If the RC LiPo battery connector can't pass enough current, it can overheat and/or introduce a voltage drop. The connection must be reliable, solid, and able to pass enough current to meet the maximum current demands of the model. Most RC connectors are "polarity protected", meaning it's very hard if not impossible to plug them in backwards which goes a long way to save expensive electronics from letting out the magic smoke. Model's ESC/Power system to complete the electrical circuit, allowing theĬurrent to flow from the Battery to the ESC and/or other electronic They offer aĬonvenient & easy way to connect our RC LiPo battery packs into our ![]() Purpose of all these RC LiPo Battery connectors is simple. Starting out if you don't know much about them yet. So which one to use can be a complicated decision when you are first Out there and those photos only shows a small smattering. Advanced - Learning 3D Aerobatic FlyingĬhoosing One Based On Current Handling Ability & Personal Preference Is Key.Īs shown in the above photos, there are all sorts of flavors and sizes of RC battery connectors.
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