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                    ...zero voltage, zero current turn off; 2. Optical isolation between the input circuit and output circuit; 3. Isolation between the input - output voltage 2500 v. 4. 100% load current aging test, through the Eu...
 
                    ...zero voltage, zero current turn off; 2. Optical isolation between the input circuit and output circuit; 3. Isolation between the input - output voltage 2500 v. 4. 100% load current aging test, through the Eu...
 
                    ...zero voltage, zero current turn off; 2. Optical isolation between the input circuit and output circuit; 3. Isolation between the input - output voltage 2500 v. 4. 100% load current aging test, through the Eu...
 
                    ...zero voltage, zero current turn off; 2.Optical isolation between the input circuit and output circuit; 3. Isolation between the input - output voltage 2500 v. 4. 100% load current aging test, through the Eur...
 
                    ...zero voltage, zero current turn off; 2. Optical isolation between the input circuit and output circuit; 3. Isolation between the input - output voltage 2500 v. 4. 100% load current aging test, through the Eu...
 
                    ... in a second (i.e., once every 10 ms). It is desirable that the current is interrupted when it is passing through zero value, otherwise overvoltage will be induced due to current chopping. Therefore, for suc...
 
                    ... in a second (i.e., once every 10 ms). It is desirable that the current is interrupted when it is passing through zero value, otherwise overvoltage will be induced due to current chopping. Therefore, for suc...
 
                    ...state. At this time, the applied energy includes various types such as heat, alternating current, direct current, and RF. In the case of plasma, a direct current is used as an energy source. · Spark discharg...
 
                    ...h as heat, alternating current, direct current, and RF. In the case of plasma, a direct current is used as an energy source. · Spark discharge sequence generated by direct current, the heat generated by spar...
 
                    ...h as heat, alternating current, direct current, and RF. In the case of plasma, a direct current is used as an energy source. · Spark discharge sequence generated by direct current, the heat generated by spar...
 
                    ...h as heat, alternating current, direct current, and RF. In the case of plasma, a direct current is used as an energy source. · Spark discharge sequence generated by direct current, the heat generated by spar...
 
                    ... communication. Communication barrier-free, world zero distance. 119 languages translation/offline translation/photo translation/Al assistant/speaking learning. Intelligent language neural network system. By...
 
                    Technical parameters Monitoring of 3-phase mains: - voltage in 2 levels (undervoltage and overvoltage) in range 120-277V (3P+N) or 208-480V (3P3W). - phase asymmetry (can be switched off) - phase sequence - p...
 
                    Technical parameters Monitoring of 3-phase mains: - voltage in 2 levels (undervoltage and overvoltage) in range 120-277V (3P+N) or 208-480V (3P3W) - phase asymmetry (can be switched off) - phase sequence - ph...
 
                    Technical parameters Monitoring of 3-phase mains: - voltage in levels (undervoltage and overvoltage) in range 120-277V (3P+N) or 208-480V (3P3W) - phase asymmetry (can be switched off) - phase sequence - phas...
 
                    Technical parameters Monitoring of 3-phase mains: - voltage in 2 levels (undervoltage and overvoltage) in range 120-277V (3P+N) or 208-480V (3P3W). - phase asymmetry (can be switched off) - phase sequence - p...
 
                    Technical parameters Monitoring of 3-phase mains: - voltage in levels (undervoltage and overvoltage) in range 120-277V (3P+N) or 208-480V (3P3W) - phase asymmetry (can be switched off) - phase sequence - phas...
 
                    Technical parameters Monitoring of 3-phase mains: - voltage in 2 levels (undervoltage and overvoltage) in range 120-277V (3P+N) or 208-480V (3P3W). - phase asymmetry (can be switched off) - phase sequence - p...
 
                    ... voltage insulation Ui V 690V 3 Rated voltage Ue V 400V 4 Rated current In A 630A~100A 5 Short-term tolerance current ability lew kA 20KA 6 Shell IP protection grade IP30/IP55/IP65 7 Environment temperature ...
 
                    ... Main technical parameters Sequence number Project Name Unit Electrical parameters 1 standards GB 7251.1-2005 2 The rated voltage insulation Ui V 690V 3 Rated voltage Ue V 400V 4 Rated current In A 630A~100A...