The invention relates to a 
voltage-stabilization 
electricity-saving device, and particularly relates to an undisturbed switching mechanism of the 
voltage-stabilization 
electricity-saving device. The undisturbed switching mechanism comprises a power source, a compensation 
transformer connected with the power source and a 
voltage-regulating 
transformer connected in series between the power source and the compensation 
transformer. The undisturbed switching mechanism further comprises a load connected in parallel at the two ends of the compensation transformer, and a bidirectional 
thyristor mechanism connected in series with the compensation transformer. The undisturbed switching mechanism is characterized in that the undisturbed switching mechanism further comprises a series circuit formed by a 
resistor and a bidirectional 
thyristor, wherein the series circuit is connected in parallel to the secondary coil of the compensation transformer. Compared with the prior art, the undisturbed switching mechanism in the invention solves the problem of strong 
impact generated during 
thyristor switching, and obvious 
noise cannot be generated during switching, so that the stability of the 
system is greatly improved, the service life of the thyristor is prolonged, and the capacity of the intelligent voltage-stabilization 
electricity-saving device can be greatly increased when the thyristors with same capacity and withstand voltage level are adopted.