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BU5255HFV ,BU5255SHFV
BU5255HFV ,BU5255SHFV

... (Note 3) The voltage difference between inverting input and non-inverting input is the differential input voltage. Then input terminal voltage is set to more than VSS. (Note 4) An excessive input current will flow when input voltages of more than VDD+0.6V or less than VSS-0.6V are applied. The input ...
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... To minimize power loss in the output circuits, this IC adopts a direct PWM drive technique. The output transistors are always saturated when on, and the IC adjusts the motor drive output by changing the output on duty. The low side output transistor is used for the output PWM switching. Both the hig ...
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... Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notic ...
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... commercial and industrial equipment. •The number of emitting devices is growing significantly. •Literature describes interference on electronic office equipment, in TV and audio studios and in power grid using power line communication due to HF- harmonics, to give some examples. ...
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... output during the switch-off period. Unfortunately, the input current is pulsed from the experimental results. In addition, it should be noticed that the low-level input voltages usually cause large input currents and current ripples to flow through ...
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... vary from 0.3 to 0.5 and increase towards unity as the motor accelerates and its KVA demand drops. With a 0.4 power-factor load, a typical genset is capable of producing nearly twice its continuous-rated KVA for the time required to accelerate a motor to the speed at which its KVA requirement drops ...
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Stray voltage



Stray voltage is the occurrence of electrical potential between two objects that ideally should not have any voltage difference between them. Small voltages often exist between two grounded objects in separate locations, due to normal current flow in the power system. Large voltages can appear on the enclosures of electrical equipment due to a fault in the electrical power system, such as a failure of insulation.
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