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PDF AO3700 Data sheet ( Hoja de datos )

Número de pieza AO3700
Descripción N-Channel Enhancement Mode Field Effect Transistor
Fabricantes Alpha & Omega Semiconductors 
Logotipo Alpha & Omega Semiconductors Logotipo



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AO3700
N-Channel Enhancement Mode Field Effect Transistor
with Schottky Diode
General Description
The AO3700 uses advanced trench technology to provide
excellent R DS(ON) and low gate charge. A Schottky diode is
provided to facilitate the implementation of a bidirectional
blocking switch, or for DC-DC conversion applications.
Standard Product AO3700 is Pb-free (meets ROHS & Sony
259 specifications). AO3700L is a Green Product ordering
option. AO3700 and AO3700L are electrically identical.
Features
VDS (V) = 30V
ID = 3.3A (VGS = 10V)
RDS(ON) < 65m(VGS = 10V)
RDS(ON) < 75m(VGS = 4.5V)
RDS(ON) < 160m(VGS = 2.5V)
SCHOTTKY
VDS (V) = 20V, IF = 1A, VF<[email protected]
SOT-23-5
Top View
G 15 D
S2
A 34 K
G
Absolute Maximum Ratings TA=25°C unless otherwise noted
Parameter
Symbol
Drain-Source Voltage
VDS
Gate-Source Voltage
VGS
Continuous Drain Current A
Pulsed Drain Current B
TA=25°C
TA=70°C
ID
IDM
Schottky reverse voltage
VKA
Continuous Forward Current A
Pulsed Forward Current B
TA=25°C
TA=70°C
IF
IFM
Power Dissipation
TA=25°C
TA=70°C
PD
Junction and Storage Temperature Range
TJ, TSTG
Parameter: Thermal Characteristics MOSFET
Maximum Junction-to-Ambient A
t 10s
Maximum Junction-to-Ambient A
Maximum Junction-to-Lead C
Steady-State
Steady-State
Thermal Characteristics Schottky
Maximum Junction-to-Ambient A
t 10s
Maximum Junction-to-Ambient A
Maximum Junction-to-Lead C
Steady-State
Steady-State
Symbol
RθJA
RθJL
RθJA
RθJL
DK
SA
MOSFET
30
±12
3.3
2.6
10
1.15
0.7
-55 to 150
Typ
80.3
117
43
109.4
136.5
58.5
Schottky
20
2
1
10
0.92
0.59
-55 to 150
Max
110
150
80
135
175
80
Units
V
V
A
V
A
W
°C
Units
°C/W
°C/W
Alpha & Omega Semiconductor, Ltd.

1 page




AO3700 pdf
AO3700
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS: SCHOTTKY
10
125°C
1
0.1
0.01
25°C
0.001
0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4
VF (Volts)
Figure 12: Schottky Forward Characteristics
100
f = 1MHz
80
60
40
20
0
0 5 10 15 20
VKA (Volts)
Figure 13: Schottky Capacitance Characteristics
0.5 1.0E-02
0.4 1.0E-03
IF=0.5A
0.3
1.0E-04
VR=16V
0.2 1.0E-05
0.1
0
25 50 75 100 125
Temperature (°C)
Figure 14: Schottky Forward Drop vs.
Junction Temperature
150
1.0E-06
0
25 50 75 100 125 150
Temperature (°C)
Figure 15: Schottky Leakage current vs. Junction
Temperature
10
D=Ton/T
TJ,PK=TA+PDM.ZθJA.RθJA
In descending order
D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse
RθJA=135°C/W
1
0.1
0.01
0.00001
Single Pulse
PD
Ton
T
0.0001
0.001
0.01
0.1
1
10
Pulse Width (s)
Figure 15: Schottky Normalized Maximum Transient Thermal Impedance
100
1000
Alpha & Omega Semiconductor, Ltd.

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