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DB107 1A Bridge Rectifier
₹13.00 Original price was: ₹13.00.₹10.00Current price is: ₹10.00. inc. GST
- Maximum Recurrent Peak Reverse Voltage VRRM: 1000V
- Maximum RMS Bridge Input Voltage VRMS: 700V
- Maximum DC Blocking Voltage VDC:Â 1000V
- Maximum Average Forward Output Current at TA = 40℃,  IO : 1.0 A
- Glass passivated die construction
- Low forward voltage drop
- High current capability
- High surge current capability
- Plastic material-UL flammability 94V-0
DB107 designed as a 1A Single-Phase Flat Bridge full-wave bridge rectifier with 1000V Peak Reverse Voltage. These are four terminals bridges, in which the anode and cathode labeled over the layer. They offer forward currents in the range of 1A. DB107 Bridge Rectifier is a highly reliable, with low-cost construction technique utilizing the molded plastic technique. Moreover, it features low revere leakage current, low power loss with high efficiency. And also the electric Current permitted during both positive and negative half cycles of the input AC signal. This rectifier offers a wide range of applications in Rectifier current, industrial automatic control, digital-controlled machine and remte control system.AC to DC full bridge rectifier.
Many electronic circuits require a rectified DC power supply to power various electronic basic components from available AC mains supply. Rectifier used to convert an AC power to a DC power. Among the rectifiers, the bridge rectifier is the most efficient rectifier circuit. A proper bridge rectifier selected based on the load current requirement.
We can define bridge rectifiers as a type of full-wave rectifier that uses four or more during a bridge configuration. It efficiently convert alternating (AC) current to an immediate (DC) current. A bridge rectifier provides full-wave rectification from a two-wire AC input, leading to lower cost and weight as compared to a rectifier with a 3-wire input from a transformer with a center-tapped secondary coil . Meanwhile, Flat bridge rectifiers widely wont to perform voltage, switch controlling and other electronic functions. In the figure below, the current flow during positive and negative half cycle is given in red and blue color respectively
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