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DRF1301 bảng dữ liệu(PDF) 2 Page - Microsemi Corporation |
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DRF1301 bảng dữ liệu(HTML) 2 Page - Microsemi Corporation |
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2 / 4 page ![]() DRF1301 MOSFET Specifications (Per-Section) Symbol Parameter Min Typ Max Unit BV DSS Drain Source Voltage 1000 V I D Continuous Drain Current T HS = 25°C 15 A R DS(on) Drain-Source On State Resistance 1 Ω Dynamic Characteristics (Per-Section) Section A and B Output Switching Performance Symbol Characteristic Min Typ Max Typ T ON Leading Edge 10% to 90% 2 3 4 ns T OFF Trailing Edge 10% to 90% 45 TBD 49 T DLY(ON) Total Throughput Delay Time, ON 45 TBD 47 T DLY(OFF) Total Throughput Delay Time, OFF 49 50 51 ∆T DLY(ON) Delta T ON Delay between Section A and B -0.5 0 1.5 ∆T DLY(OFF) Delta T OFF Delay between Section A and B 0 0.6 1.3 Symbol Parameter Min Typ Max Unit C ISS Input Capacitance 1800 pF C oss Output Capacitance 335 C rss Reverse Transfer Capacitance 75 Thermal Characteristics (Total Package) Symbol Parameter Ratings Unit RθJC Junction to Case Thermal Resistance .06 °C/W RθJHS Junction to Heat Sink Thermal Resistance .134 T JSTG Storage Junction Temperature -55 to 150 °C P D Maximum Power Dissipation @ T SINK = 25°C 1.1 KW P DC Total Power Dissipation @ T C = 25°C 2.5 Microsemi reserves the right to change, without notice, the specifications and information contained herein. Figure 1, DRF1301 Circuit Diagram The DRF1301 is configured as a Push Pull Hybrid incorporating two independent channels configured with a common source each consisting of a driver, a high voltage MOSFET and by-pass capacitors. The function of the by-pass capacitors C1 and C2 is to reduce the internal parasitic loop inductance. This coupled with the tight geometry of the hybrid allows optimal gate drive to the MOSFET. This low parasitic approach coupled with the Schmitt trigger input (IN), Kelvin signal ground (SG) and the Anti-Ring function; provide improved stability and control in Kilowatt to Multi- Kilowatt high frequency applications. The IN pin should be referenced to the Kelvin Ground (SG) and is applied to a Schmitt Trigger. The SG pin is a Kelvin return for the IN pin only. The signal is then applied to the intermediate drivers and level shifters; this section contains proprietary circuitry designed specifically for ring abatement. To further increase the utility of the device the driver die and the MOSFET die are adjacent die selected. This provides a very close match in the turn on and propagation delays. |
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