Buck Booster For Tanning Bed How To Install
Tip before purchasing your tanning bed you will want to check to see whether or not it uses 120 volts or 220 volts it is probably a more affordable option for you to find a tanning bed that uses only 120 volts.
Buck booster for tanning bed how to install. Multiply this number by the kva and the result is the size of tanning bed buck booster you need. They come with a plug and socket so all you need to do is plug your tanning bed into the buck boost transformer then plug the transformer into your 220v 20a or 30a socket as required. Just cap off the white wire. Back to buck boosters.
They come with a plug and socket so all you have to do is plug your tanning bed into the buck boost transformer then plug the transformer into you 220v 20a socket. Unlike generic buck boost transformer these pre wired units do not require any special wiring. While higher voltage results in more tanning power you must keep the voltage below 240v for proper operation of the tanning bed. Next subtract the tanning bed voltage the v on the bed label from the high voltage.
In a buck boost the neutral is not used and therefore not needed. Always round up to the next highest size rather than down. F page 1 of 4 buck boost transformer installation sheet revised on april 2011 by t e. Once you have your voltage reading please contact your tanning consultant to choose the correct buck booster if required.
Contact the company you purchased the tanning bed from to determine whether or not a buck booster is needed. Buck boost installation sheet 004 0921 rev. No wiring diagrams and no mistakes. If you are using this unit as an isolation transformer with a primary of 120 or 240 or 480 volts and the secondary of 12 24 16 32 or 24 48 depending on the model use the wiring diagram located on the inside of.
Lastly take your grounding wire and attach that directly to the casing of the buckboost and to the grounding wire going to the unit. Black wire that goes out to tanning bed will attach to x2 x4. Take that number and divide it by the high voltage.