HTBF-81 Series Triple Frequency Generator Product Features
The triple frequency power generator adopts a three-core five-column structure, selecting the working magnetic flux density of the iron core above the saturation magnetic density, so that the vector sum of the fundamental electromotive force (positive sequence vector) in the secondary winding connected in an open triangle is zero, and the two ends of the open triangle should output the same phase 150Hz third harmonic (zero sequence).
Principle
The triple frequency power generator utilizes the saturation characteristics of the magnetic circuit to extract the third harmonic voltage with the largest component among harmonics as the power source of the generator, conducting frequency doubling and voltage doubling tests on inter-turn, inter-segment, and inter-layer of inductive coil electrical products; to assess the insulation strength and withstand voltage level of the coil.
Parameters
1. Rated capacity: 5-100kVA; input three-phase 380V, 50Hz sine wave
2. Output 0-300V, 0-500V, 0-1000V (special voltage customized), 150Hz,
3. Waveform distortion ≤5%
4. Capacity: 3-150kVA
5. No-load operation time: ≤5 minutes
6. Load operation time: 40-60 seconds
7. Adopts a three-phase five-column structure, with simple process, and reduces the internal impedance and leakage flux loss of the transformer body, improving the efficiency of the generator.
8. Weight and volume are smaller than the traditional three single-phase transformer groups, and equipped with a control box of corresponding capacity, convenient for on-site use.
9. This product can be used as a power source for induction withstand voltage tests on transformers and electrical appliances of corresponding capacity, or as a 150Hz power supply for short-term operation.
HTBF-81 Series Triple Frequency Generator
What is an Induction Withstand Voltage Tester?
The induction withstand voltage test refers to applying a voltage to the specified winding of the transformer, which is not less than 2 times the rated supply voltage, with a frequency not less than 2 times the minimum rated frequency; it is required that during the specified duration of this voltage, the winding shows no signs of burning, arcing, breakdown, or damage; it is also required that the no-load current and power consumption under the rated working power supply before and after the induction withstand voltage test show no significant changes. According to national testing standards, the induction test voltage for power transformers and voltage transformers is roughly considered to be 2-3 times the maximum working phase voltage. As is well known, at rated frequency and rated voltage, the iron core of a transformer is close to saturation. If a test voltage higher than the rated voltage is applied to both ends of the tested transformer winding using a power frequency supply, the no-load excitation current will increase sharply to an unacceptable level. The induction withstand voltage test for transformers and instrument transformers is an important test to verify that the product meets national standards.



