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AO3403 uses advanced trench technology provide excellent RDS(ON) gate


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AO3403 P-Channel Enhancement Mode Field Effect Transistor
AO3403 uses advanced trench technology provide excellent RDS(ON) gate charge. This device suitable load switch applications. Standard Product AO3403 Pb-free (meets ROHS Sony specifications). AO3403L Green Product ordering option. AO3403 AO3403L electrically identical.
-30V -2.6 (VGS -10V) RDS(ON) 130m (VGS -10V) RDS(ON) 180m (VGS -4.5V) RDS(ON) 260m (VGS -2.5V)
TO-236 (SOT-23) View
Absolute Maximum Ratings TA=25°C unless otherwise noted Parameter Symbol Drain-Source Voltage Gate-Source Voltage Continuous Drain Current Pulsed Drain Current TA=25°C Power Dissipation
Maximum -2.6 -2.2
Units
TA=25°C TA=70°C TSTG
TA=70°C
Junction Storage Temperature Range Thermal Characteristics Parameter Maximum Junction-to-Ambient Maximum Junction-to-Ambient Maximum Junction-to-Lead
Symbol
Steady-State Steady-State
Units °C/W °C/W °C/W
Alpha Omega Semiconductor, Ltd.
AO3403
Electrical Characteristics J=25°C unless otherwise noted) Symbol Parameter Conditions ID=-250µA, VGS=0V VDS=-24V, VGS=0V TJ=55°C VDS=0V, VGS=±12V VDS=VGS ID=-250µA VGS=-4.5V, VDS=-5V VGS=-10V, ID=-2.6A RDS(ON) Static Drain-Source On-Resistance TJ=125°C VGS=-4.5V, D=-2A VGS=-2.5V, D=-1A Forward Transconductance VDS=-5V, ID=-2.5A IS=-1A,VGS=0V Diode Forward Voltage Maximum Body-Diode Continuous Current -0.6 -0.85 VGS=0V, VDS=-15V, f=1MHz VGS=0V, VDS=0V, f=1MHz VGS=-4.5V, VDS=-15V, ID=-2.5A 1.32 VGS=-10V, VDS=-15V, RL=6, RGEN=3 IF=-2.5A, dI/dt=100A/µs 31.5 15.8 ±100 -1.4 Units
STATIC PARAMETERS BVDSS Drain-Source Breakdown Voltage IDSS IGSS VGS(th) ID(ON) Zero Gate Voltage Drain Current Gate-Body leakage current Gate Threshold Voltage state drain current
DYNAMIC PARAMETERS Ciss Input Capacitance Coss Crss Output Capacitance Reverse Transfer Capacitance Gate resistance
SWITCHING PARAMETERS Total Gate Charge Gate Source Charge tD(on) tD(off) Gate Drain Charge Turn-On DelayTime Turn-On Rise Time Turn-Off DelayTime Turn-Off Fall Time Body Diode Reverse Recovery Time
Body Diode Reverse Recovery Charge IF=-2.5A, dI/dt=100A/µs
value measured with device mounted 1in2 FR-4 board with 2oz. Copper, still environment with =25°C. value given application depends user's specific board design. current rating based thermal resistance rating. Repetitive rating, pulse width limited junction temperature. thermal impedence from junction lead lead ambient. static characteristics Figures 6,12,14 obtained using 80µs pulses, duty cycle 0.5% max. These tests performed with device mounted FR-4 board with 2oz. Copper, still environment with TA=25°C. curve provides single pulse rating. June 2005
THIS PRODUCT BEEN DESIGNED QUALIFIED CONSUMER MARKET. APPLICATIONS USES CRITICAL COMPONENTS LIFE SUPPORT DEVICES SYSTEMS AUTHORIZED. DOES ASSUME LIABILITY ARISING SUCH APPLICATIONS USES PRODUCTS. RESERVES RIGHT IMPROVE PRODUCT DESIGN, FUNCTIONS RELIABILITY WITHOUT NOTICE.
Alpha Omega Semiconductor, Ltd.
AO3403
TYPICAL ELECTRICAL THERMAL CHARACTERISTICS
-10V -4.5V -ID(A) VGS=-3.5V -2.5V -2.0V -VDS (Volts) On-Region Characteristics RDS(ON) VGS=-4.5V VGS=-10V Figure On-Resistance Drain Current Gate Voltage VGS=-2.5V Normalized On-Resistance VGS=-10V VGS=-4.5V VGS=-2.5V -VGS(Volts) Figure Transfer Characteristics 125°C VDS=-5V 25°C
ID=-2A
Temperature (°C) Figure On-Resistance Junction Temperature
RDS(ON) -VGS (Volts) Figure On-Resistance Gate-Source Voltage 25°C ID=-2A 125°C
1.0E+01 1.0E+00 1.0E-01 1.0E-02 1.0E-03 1.0E-04 1.0E-05 1.0E-06 -VSD (Volts) Figure Body-Diode Characteristics 25°C 125°C
Alpha Omega Semiconductor, Ltd.
AO3403
TYPICAL ELECTRICAL THERMAL CHARACTERISTICS
-VGS (Volts) (nC) Figure Gate-Charge Characteristics VDS=-15V ID=-2.5A Capacitance (pF) Coss -VDS (Volts) Figure Capacitance Characteristics Crss Ciss
100.0
TJ(Max)=150°C TA=25°C RDS(ON) limited 0.1s 100µs 10ms
TJ(Max)=150°C TA=25°C Power 10µs
(Amps)
10.0
-VDS (Volts) Figure Maximum Forward Biased Safe Operating Area (Note
0.001
0.01
1000
Pulse Width Figure Single Pulse Power Rating Junction-toAmbient (Note
Normalized Transient Thermal Resistance
D=Ton/T TJ,PK=TA+PDM.ZJA.RJA RJA=90°C/W
descending order D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse
Single 0.0001 Pulse 0.001 0.01
0.01 0.00001
1000
Pulse Width Figure Normalized Maximum Transient Thermal Impedance
Alpha Omega Semiconductor, Ltd.

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