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PDF AP4503AGM-HF Data sheet ( Hoja de datos )

Número de pieza AP4503AGM-HF
Descripción N AND P-CHANNEL ENHANCEMENT MODE POWER MOSFET
Fabricantes Advanced Power Electronics 
Logotipo Advanced Power Electronics Logotipo



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Advanced Power
Electronics Corp.
AP4503AGM-HF
Halogen-Free Product
N AND P-CHANNEL ENHANCEMENT
MODE POWER MOSFET
Simple Drive Requirement
Low On-resistance
Fast Switching Performance
D2
D2
D1
D1
RoHS Compliant & Halogen-Free
Description
SO-8
Advanced Power MOSFETs from APEC provide the
designer with the best combination of fast switching,
ruggedized device design, low on-resistance and cost-
effectiveness.
G2
S2
G1
S1
N-CH
P-CH
BVDSS
RDS(ON)
ID
BVDSS
RDS(ON)
ID
D1
The SO-8 package is widely preferred for commercial-industrial
surface mount applications and suited for low voltage applications
such as DC/DC converters.
G1
G2
S1
30V
28mΩ
6.9A
-30V
36mΩ
-6.3A
D2
S2
Absolute Maximum Ratings
Symbol
Parameter
VDS
VGS
ID@TA=25
ID@TA=70
IDM
PD@TA=25
TSTG
TJ
Drain-Source Voltage
Gate-Source Voltage
Continuous Drain Current3
Continuous Drain Current3
Pulsed Drain Current1
Total Power Dissipation
Storage Temperature Range
Operating Junction Temperature Range
Rating
N-channel P-channel
30 -30
+20 +20
6.9 -6.3
5.5 -5
20 -20
2
-55 to 150
-55 to 150
Units
V
V
A
A
A
W
Thermal Data
Symbol
Rthj-a
Parameter
Maximum Thermal Resistance, Junction-ambient3
Data and specifications subject to change without notice
Value
62.5
Unit
/W
1
201011252
http://www.Datasheet4U.com

1 page




AP4503AGM-HF pdf
N-Channel
12
10
8
I D =6 A
V DS =2 4 V
6
4
2
0
0369
12 15 18
Q G , Total Gate Charge (nC)
Fig 7. Gate Charge Characteristics
100
10 Operation in this
area limited by
RDS(ON)
1
100us
1ms
10ms
100ms
0.1
T A =25 o C
Single Pulse
1s
DC
0.01
0.01
0.1 1 10
V DS , Drain-to-Source Voltage (V)
100
Fig 9. Maximum Safe Operating Area
AP4503AGM-HF
f=1.0MHz
1000
C iss
C100
oss
C rss
10
1 5 9 13 17 21 25 29
V DS , Drain-to-Source Voltage (V)
Fig 8. Typical Capacitance Characteristics
1
Duty factor=0.5
0.2
0.1
0.1
0.05
0.02
300.01
Single Pulse
-30
PDM
t
T
Duty factor = t/T
Peak Tj = PDM x Rthja + Ta
Rthja=135oC/W
0.01
0.0001
0.001
0.01 0.1 1 10
t , Pulse Width (s)
100 1000
Fig 10. Effective Transient Thermal Impedance
VDS
90%
10%
VGS
td(on) tr
td(off) tf
VG
4.5V
QG
QGS
QGD
Charge
Q
Fig 11. Switching Time Waveform
Fig 12. Gate Charge Waveform
5

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