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1000VA Toroidal Transformer, 240V To 30-0-30V

1000VA Toroidal Transformer, 240V To 30-0-30V
1000VA Toroidal Transformer, 240V To 30-0-30V
1000VA Toroidal Transformer, 240V To 30-0-30V
1000VA Toroidal Transformer, 240V To 30-0-30V
1000VA Toroidal Transformer, 240V To 30-0-30V
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$383.25
Ex Tax: $383.25
  • Stock: In Stock
  • Model: RDDLZ-T-C1000VA
  • Weight: 1.00
  • SKU: RDDLZ-T-C1000VA

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RDDLZ 1 phase 1000VA high-quality open type toroidal transformer with a single primary winding tapped at 240VAC 50/60Hz and 2x15V/2x30V dual secondary windings, short circuit, and overload protected with thermal fuse on the primary side. Twin secondary windings may be connected in series or parallel or used independently.

Advantages of RDDLZ Toroidal Transformer

  1. High Efficiency: Winding matches the core perfectly, which makes the transformer more efficient.
  2. Long Service Life: With high-quality materials and manufacturing technology, the transformer can be used for 30 years.
  3. Less Noise: The core is seamlessly rolled and the winding is set evenly over it, which makes the transformer quiet when it is working.
  4. Less Radiation: Toroidal structure and winding technology reduce electromagnetic radiation.
  5. Low Temperature Rise: Even if it is overloaded at 120%, the temperature rise will be less than 70℃.

1000VA Toroidal Transformer Specifications

ModelRDDLZ-T-C1000VA
PhaseSingle phase
Power1000VA (1000W)
Primary Voltage240V AC (Optional: 110V, 120V, 220V, 230V, 240V)
Secondary Voltage2x30V (30-0-30) (Optional: 12V, 24V, 48V, 110V, 220V, 2x6V, 2x12V, 2x15V, 2x24V, 2x30V, 2x35V, 2x40V, 2x50V, can be customized)
Secondary Current33.3A
No. of Inputs1 input
No. of Outputs2 outputs, 4-wire (1 output is available)
Note: For the transformer with 2 outputs 4-wire, each output provides the same voltage and current level, the sum of 2 output power capacities is equal to the total capacity.
Frequency50Hz/60Hz
Winding MaterialCopper Wire
Coil StructureToroidal
Efficiency90%-96%
No-load Loss<5.23W
Voltage StrengthDC2500V
Insulation Impedance≥500MΩ
Cooling MethodNatural air cooling
Temperature+40℃
CertificationCE, RoHS, ISO
Warranty12 months
External Diameter161mm
Height78mm
Pedestal160*160mm
Mounting Hole Distance150*150mm
Weight9kg
Package Included1*Toroidal transformer + 1*Accesorries sets (Nut, Shim, Metal disk, Rubber gasket, Pedestal, Screw)

Toroidal Transformer Accessories

Toroidal Transformer Mounting Methods

Toroidal Transformer Internal Structure

Tips: What are the rectification modes of toroidal transformers?

The toroidal transformer converts alternating current to alternating current, so can the toroidal transformer be used in some devices with direct current? The answer is yes, but you need to complete the direct current output of the transformer through rectification.

Common rectifier circuits include half-wave rectifiers, full-wave rectifiers and bridge rectifiers.

1. The advantage of a half-wave rectifier circuit is that the circuit is simple, and only one rectifier is needed. Accordingly, the disadvantage is that the output DC voltage is low, and the ripple is large. Moreover, since the direct current flows through the secondary winding of the transformer, the ratio of the volt-ampere value to DC power of the rectifier transformer is large.

2. The advantage of a full-wave rectifier circuit is that it has lower ripple factor and smaller ratio of volt-ampere value of transformer to DC power than those of half-wave rectifier, and its DC magnetization can almost be neglected. Accordingly, the disadvantage is that a central tap should be added to the secondary circuit of the transformer, and the utilization coefficient of the transformer is not as high as that of the single-phase bridge circuit.

3. The transformer of the bridge rectifier circuit is easy to produce, has high utilization coefficient and no DC magnetization, and the reverse voltage of the rectifier is half lower than that of the full-wave circuit, but it consumes too many rectifier elements. Generally speaking, bridge rectifier circuit is the most widely used, which is also the most common rectifier circuit of toroidal transformer.

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