CVS Series, Isolation Transformers and Autotransformers, Step Up, Step Down

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ImageProduct DetailPriceAvailabilityECAD ModelSeriesTypeVoltage - PrimaryVoltage - Secondary1st Connector2nd ConnectorPower - Max
23-23-210-8
1000VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V, 208V, 240V, 480V
-
Screw Terminal
Screw Terminal
1000VA
23-23-220-8
2000VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V, 208V, 240V, 480V
-
Screw Terminal
Screw Terminal
2000VA
23-13-060-2
60VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V
120V
Screw Terminal
Screw Terminal
60VA
23-23-125-8
250VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
-
120V
Screw Terminal
Screw Terminal
250VA
23-13-030-2
30VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V
120V
-
-
-
23-22-112-2
120VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V, 240V
120V
Screw Terminal
Screw Terminal
120VA
23-23-150-8
500VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V, 208V, 240V, 480V
-
Screw Terminal
Screw Terminal
500VA
23-28-275-6
7500VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
240V, 480V
-
-
-
7500VA
23-23-230-8
3000VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V, 208V, 240V, 480V
-
-
-
3000VA
23-23-250-8
5000VA CVS VOLTAGE REGULATOR
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Quantity
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PCB Symbol, Footprint & 3D Model
CVS
Isolation
120V, 208V, 240V, 480V
-
-
-
5000VA

Isolation Transformers and Autotransformers, Step Up, Step Down

The products within this category are intended to be used in conjunction with AC utility power for various safety or functional purposes. Two common types of transformers in this family are isolation transformers and autotransformers. Isolation transformers are specifically designed to transfer electrical power from one circuit to another without establishing a direct electrical connection. They provide galvanic isolation, which means they prevent the flow of electric current between the input and output circuits. Isolation transformers are frequently utilized in repair or product development environments where the mitigation of shock hazards is crucial. By isolating the circuits, these transformers ensure that any potential electrical faults or leakage currents do not pose a risk to the user, thereby enhancing overall safety. On the other hand, autotransformers are used for voltage scaling purposes. They can increase or decrease the voltage of an available power source to meet specific functional requirements. Unlike isolation transformers, autotransformers do not provide galvanic isolation between the input and output circuits. Therefore, they are employed when electrical isolation is not necessary. Autotransformers are commonly used in scenarios where voltage conversion is needed, such as stepping up or stepping down the voltage for specific equipment or devices. In summary, products within this category serve different purposes in relation to AC utility power. Isolation transformers are utilized to transfer electrical power without establishing a galvanic connection, ensuring safety by mitigating shock hazards. Autotransformers, on the other hand, are used to scale the voltage of an available source to meet functional requirements when isolation between input and output circuits is unnecessary.