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AP4438GYT-HF

Advanced Power Electronics

N-CHANNEL ENHANCEMENT MODE POWER MOSFET


AP4438GYT-HF
AP4438GYT-HF

PDF File AP4438GYT-HF PDF File


Description
AP4438GYT-HF Halogen-Free Product Advanced Power Electronics Corp.
▼ Simple Drive Requirement ▼ Small Size & Lower Profile ▼ RoHS Compliant & Halogen-Free G N-CHANNEL ENHANCEMENT MODE POWER MOSFET D BVDSS RDS(ON) ID D 30V 12mΩ 13.
7A S Description Advanced Power MOSFETs from APEC provide the designer with the best combination of fast switching, ruggedized device design, low onresistance and cost-effectiveness.
The PMPAK® 3 x 3 package is special for DC-DC converters application and lower 1.
0mm profile with backside heat sink.
S S D D D S G PMPAK ® 3 x 3 Absolute Maximum Ratings Symbol VDS VGS ID@TA=25℃ ID@TA=70℃ IDM PD@TA=25℃ TSTG TJ Parameter Drain-Source Voltage Gate-Source Voltage Continuous Drain Current Continuous Drain Current Pulsed Drain Current 1 3 3 Rating 30 +20 13.
7 11 50 3.
57 -55 to 150 -55 to 150 Units V V A A A W ℃ ℃ Total Power Dissipation Storage Temperature Range Operating Junction Temperature Range Thermal Data Symbol Rthj-c Rthj-a Parameter Maximum Thermal Resistance, Junction-case Maximum Thermal Resistance, Junction-ambient 3 Value 4.
5 35 Unit ℃/W ℃/W 1 201108082 Data and specifications subject to change without notice AP4438GYT-HF Electrical Characteristics@Tj=25oC(unless otherwise specified) Symbol BVDSS RDS(ON) VGS(th) gfs IDSS IGSS Qg Qgs Qgd td(on) tr td(off) tf Ciss Coss Crss Rg Parameter Drain-Source Breakdown Voltage Static Drain-Source On-Resistance Gate Threshold Voltage Forward Transconductance Drain-Source Leakage Current Gate-Source Leakage Total Gate Charge Gate-Source Charge Gate-Drain ("Miller") Charge Turn-on Delay Time Rise Time Turn-off Delay Time Fall Time Input Capacitance Output Capacitance Reverse Transfer Capacitance Gate Resistance 2 Test Conditions VGS=0V, ID=250uA VGS=10V, ID=11A VGS=4.
5V, ID=5A VDS=VGS, ID=250uA VDS=10V, ID=11A VDS=24V, VGS=0V VGS=+20V, VDS=0V ID=11A VDS=15V VGS=4.
5V VDS=15V ID=1A RG=3.
3Ω VGS=10V VGS=0V VDS=15V f=1.
0MHz f=1.
0MHz Min.
30 1 - Typ.
9 15 1.
5 20 10 3 4.
5 9 5 21 4.
5 125 ...



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