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BY399 Fast Recovery Rectifier Diode
₹8.00 Original price was: ₹8.00.₹5.00Current price is: ₹5.00. inc. GST
- Maximum Repetitive Reverse Voltage, VRRM: 800V
- Average Rectified Forward Current at TA = 500C, IO: 3A
- Peak Surge Forward Current, IFSM: 100A
- Fast recovery diodes
- Diffused junction
- High surge capability
- The plastic material carries U/L recognition 94V-0
- Low forward voltage drop
- High current capability
- High reliability
- High surge current capability
BY399 Diode designed as a fast recovery rectifier diode with Low forward voltage drop, low reverse current and highly reliable diode. Basically, these types of diodes have a high surge current capacity with a maximum recurrent peak reverse voltage VRRM 800V. This diod also known as the Power rectifier diode. BY399 Power Rectifier series of devices designed explicitly for general-purpose use in the rectification of medium frequencies, snubber, or Bootstrap diodes Commercial grade.
Moreover, these power rectifier diode modules offer high thermal efficiency for long life and reliable product performance. Meanwhile, the Industry-standard S and A package sizes allow for a maximum output current of 200A for standard diodes. These dual ultrafast Power Diode manufactured in a DO-201AD Molded plastic. It is also rugged with a guaranteed electrostatic discharge voltage capability. It features very fast reverse recovery times as low as 15ns and voltage levels as high as 1500V.
A diode designed as a semiconductor device specifically acts as a one-way switch for current. It permits flow of current easily in one direction, but severely restricts current from flowing in the opposite direction. The two terminals of the diode known as the anode and cathode. The most common applications of diode includes converting AC to DC, isolating signals from a supply, and mixing signals. The 2 sides of the diode doped differently. One side is the “p-side”, this features a positive charge. The opposite side reffered as the “n-side”, this has a negative charge. Both of these sides layered together to form what known as the “n-p junction” where they meet

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