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AOB430 bảng dữ liệu(PDF) 2 Page - Alpha & Omega Semiconductors |
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AOB430 bảng dữ liệu(HTML) 2 Page - Alpha & Omega Semiconductors |
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2 / 5 page ![]() AOB430 Symbol Min Typ Max Units BVDSS 60 V 1 TJ=55°C 5 IGSS 100 nA VGS(th) 1 2.2 3 V ID(ON) 30 A 53 63 TJ=125°C 95 60 85 m Ω gFS 14 S VSD 0.74 1 V IS 12 A Ciss 450 540 pF Coss 61 pF Crss 27 pF Rg 1.35 2 Ω Qg(10V) 7.5 10 nC Qg(4.5V) 3.8 5 nC Qgs 1.2 nC Qgd 1.9 nC tD(on) 4.2 ns tr 3.4 ns tD(off) 16 ns tf 2ns trr 27.6 35 ns Qrr 30 nC 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 ARISING OUT OF SUCH APPLICATIONS OR USES OF ITS PRODUCTS. AOS RESERVES THE RIGHT TO IMPROVE PRODUCT DESIGN, FUNCTIONS AND RELIABILITY WITHOUT NOTICE. Rev0:Aug 2005 IF=12A, dI/dt=100A/µs Body Diode Reverse Recovery Time Drain-Source Breakdown Voltage On state drain current ID=10mA, VGS=0V VGS=10V, VDS=5V VGS=10V, ID=12A Reverse Transfer Capacitance VGS=0V, VDS=30V, f=1MHz SWITCHING PARAMETERS Electrical Characteristics (TJ=25°C unless otherwise noted) STATIC PARAMETERS Parameter Conditions IDSS µA Gate Threshold Voltage VDS=VGS, ID=250µA VDS=48V, VGS=0V VDS=0V, VGS=±20V Zero Gate Voltage Drain Current Gate-Body leakage current RDS(ON) Static Drain-Source On-Resistance Forward Transconductance Diode Forward Voltage m Ω VGS=4.5V, ID=6A IS=1A, VGS=0V VDS=5V, ID=12A VGS=0V, VDS=0V, f=1MHz Turn-Off Fall Time Total Gate Charge Gate Source Charge Gate Drain Charge Total Gate Charge VGS=10V, VDS=30V, ID=12A VGS=10V, VDS=30V, RL=2.5Ω, RGEN=3Ω Body Diode Reverse Recovery Charge IF=12A, dI/dt=100A/µs Maximum Body-Diode Continuous Current Input Capacitance Output Capacitance Turn-On DelayTime DYNAMIC PARAMETERS Turn-On Rise Time Turn-Off DelayTime Gate resistance 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 Power dissipation PDSM is based on R θJA and the maximum allowed junction temperature of 150°C. The value in any given application depends on the user's specific board design, and the maximum temperature fo 175°C may be used if the PCB allows it. B. The power dissipation PD is based on TJ(MAX)=175°C, using junction-to-case thermal resistance, and is more useful in setting the upper dissipation limit for cases where additional heatsinking is used. C: Repetitive rating, pulse width limited by junction temperature TJ(MAX)=175°C. D. The R θJA is the sum of the thermal impedence from junction to case R θJC and case to ambient. E. The static characteristics in Figures 1 to 6 are obtained using <300 µs pulses, duty cycle 0.5% max. F. These curves are based on the junction-to-case thermal impedence which is measured with the device mounted to a large heatsink, assuming a maximum junction temperature of TJ(MAX)=175°C. G. The maximum current rating is limited by bond-wires. H. These tests are performed with the device mounted on 1 in 2 FR-4 board with 2oz. Copper, in a still air environment with TA=25°C. The SOA curve provides a single pulse rating. Alpha & Omega Semiconductor, Ltd. |
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