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Battery Eliminator Circuit

Studio photography

Studio photography

Tripod-mounted cameras in photography studios are often use a BEC to avoid having to interrupt lengthy shooting sessions to replace batteries. The use of the tripod can also interfere with access to the battery hatch.

Radio-controlled (R/C) models

In an electric-powered radio controlled model, the BEC is typically part of the electronic speed control (ESC). BEC allows such a model to carry only one battery (the motive power battery) instead of two (motive power, and a separate battery to operate the R/C equipment). A BEC-equipped ESC meant for airplane use often incorporates a low-voltage-cutoff (LVC) circuit which can sense the voltage drop caused when the battery has little charge left in it. It then cuts the power to the 'drive' motor in order to provide the 'steering' servo(s) with enough power to be able to bring the model safely back to the operator. The power to the propeller would be cut but the operation of the control surfaces would be maintained in order to perform a dead-stick landing. Without this feature, all control would be lost when the battery expired, probably resulting in the destruction of the model. In some cases, the BEC is part of the radio control receiver, instead of being part of the ESC.

R/C BECs in their simplest form use a linear fixed voltage regulator with its standard circuit suggested in the manufacturers datasheet - usually the power supply of the receiver needs 5 V. Low drop types are preferred - especially for batteries with only a few cells. For small models 1.5 to 2 A are enough, for mid-size models a 3A type needs to be considered. BEC's for large models have to provide current of 5A or more. Here a more complicated switched mode regulator should be used, as the BEC has to deal with losses. These Losses are proportional to the difference of the target voltage of 5 volts and the voltage of the main battery, as well as they are proportional to the provided current. For example a 10 cell (NiMh) accumulator with a normal voltage of 12 volts. With a peak current of 5A the BEC will have losses of (12V-5V)*5A = 35W. With a linear regulator these 35W will be converted to heat and so require a large heat sink. In all cases it is a good idea to mount some large capacitors to buffer the regulated output. In large plane or ship models another possibility is to buffer the power supply with a further capacitor near the actuators (Servos).

Vehicles

BECs are also used in some motorcycle and ATV applications to reduce the weight penalty involved in carrying a battery. The battery is typically replaced by one or more large but light-weight capacitors which smooth out the fluctuating electrical pulses coming from the alternator, without themselves generating power. As there is no electrical power source, electrical starters cannot be used. Inertial starters and zero-point energy rotary devices have found their way into the circuit on such vehicles in the racing industry.

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Categories: Electrical circuits

Battery Eliminator Circuit

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