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qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy

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Page 1: qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy
Page 2: qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy
Page 3: qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy
Page 4: qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy
Page 5: qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy
Page 6: qtc-energy.com...material from Silicon Steel to Amorphous Alloy, can reduce the exciting current, and the No-Load Loss(NLL) by up to 65-70% , comparing with Silicon Steel. QTC Energy