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AO4704L Datasheet(PDF) 2 Page - Alpha & Omega Semiconductors |
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AO4704L Datasheet(HTML) 2 Page - Alpha & Omega Semiconductors |
2 / 5 page AO4704 Symbol Typ Max 28 40 54 75 RθJL 21 30 Symbol Typ Max 36 40 67 75 RθJL 25 30 Maximum Junction-to-Lead C Steady-State °C/W Parameter Units Maximum Junction-to-Ambient A t ≤ 10s RθJA °C/W Maximum Junction-to-Ambient A Steady-State °C/W °C/W Maximum Junction-to-Ambient A Steady-State Thermal Characteristics: Schottky Maximum Junction-to-Lead C Steady-State °C/W Thermal Characteristics Parameter Units Maximum Junction-to-Ambient A t ≤ 10s RθJA °C/W A: The value of R θJA is measured with the device mounted on 1in 2 FR-4 board with 2oz. Copper, in a still air environment with T A=25°C. The value in any given application depends on the user's specific board design. The current rating is based on the t ≤ 10s thermal resistance rating. B: Repetitive rating, pulse width limited by junction temperature. C. The R θJA is the sum of the thermal impedence from junction to lead R θJL and lead to ambient. D. The static characteristics in Figures 1 to 6 are obtained using 80 µs pulses, duty cycle 0.5% max. E. These tests are performed with the device mounted on 1 in 2 FR-4 board with 2oz. Copper, in a still air environment with T A=25°C. The SOA curve provides a single pulse rating. F. The Schottky appears in parallel with the MOSFET body diode, even though it is a separate chip. Therefore, we provide the net forward drop, capacitance and recovery characteristics of the MOSFET and Schottky. However, the thermal resistance is specified for each chip separately. Rev5: August 2005 THIS PRODUCT HAS BEEN DESIGNED AND QUALIFIED FOR THE CONSUMER MARKET. APPLICATIONS OR USES AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS ARE NOT AUTHORIZED. AOS DOES NOT ASSUME ANY LIABILITY ARISINGOUT OF SUCH APPLICATIONS OR USES OF ITS PRODUCTS. AOS RESERVES THE RIGHT TO IMPROVE PRODUCT DESIGN,FUNCTIONS AND RELIABILITY WITHOUT NOTICE. Alpha & Omega Semiconductor, Ltd. |
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