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SI2301

MCC
Part Number SI2301
Manufacturer MCC
Description P-Channel Enhancement Mode Field Effect Transistor
Published Dec 13, 2013
Detailed Description MCC TM Micro Commercial Components   omponents 20736 Marilla Street Chatsworth    !...
Datasheet PDF File SI2301 PDF File

SI2301
SI2301


Overview
MCC TM Micro Commercial Components   omponents 20736 Marilla Street Chatsworth    !"# $ %    !"# SI2301 Features • • • • • • • • Maximum Ratings @ 25OC Unless Otherwise Specified Symbol VDS ID IDM VGS PD RθJA TJ TSTG Parameter Drain-source Voltage Drain Current-Continuous Drain Current-Pulsed a Gate-source Voltage Total Power Dissipation Thermal Resistance Junction to Ambientb Operating Junction Temperature Storage Temperature Rating -20 -2.
8 -10 ±8 1.
25 100 -55 to +150 -55 to +150 Unit V A A V W ℃/W ℃ ℃ -20V,-2.
8A, RDS(ON)=120mΩ@VGS=-4.
5V RDS(ON)=150mΩ@VGS=-2.
5V High dense cell design for extremely low RDS(ON) Rugged and reliable High Speed Switching SOT-23 Package Marking Code: S1 Epoxy meets UL 94 V-0 flammability rating Moisture Sensitivity Level 1 P-Channel Enhancement Mode Field Effect Transistor SOT-23 A D 3 1.
GATE C B 2.
SOURCE 3.
DRAIN 1 F E 2 G K H J DIMENSIONS INCHES MIN .
110 .
083 .
047 .
035 .
070 .
018 .
0005 .
035 .
003 .
015 MM MIN 2.
80 2.
10 1.
20 .
89 1.
78 .
45 .
013 .
89 .
085 .
37 Internal Block Diagram D DIM A B C D E F G H J K MAX .
120 .
098 .
055 .
041 .
081 .
024 .
0039 .
044 .
007 .
020 MAX 3.
04 2.
64 1.
40 1.
03 2.
05 .
60 .
100 1.
12 .
180 .
51 NOTE G Suggested Solder Pad Layout .
031 .
800 .
035 .
900 .
079 2.
000 inches mm S .
037 .
950 .
037 .
950 www.
mccsemi.
com Revision: A 1 of 5 2011/01/01 Free Datasheet http://www.
datasheet4u.
com/ MCC TM Micro Commercial Components SI2301 TA = 25 C unless otherwise noted Symbol BVDSS IDSS IGSSF IGSSR VGS(th) RDS(on) gFS Ciss Coss Crss td(on) tr td(off) tf Qg Qgs Qgd IS VSD VGS = 0V, IS = -0.
75A VDS = -6V, ID = -2.
8A, VGS = -4.
5V VDD = -6V, ID = -1A, VGS = -4.
5V, RGEN = 6Ω Test Condition VGS = 0V, ID = -250µA VDS = -20V, VGS = 0V VGS = 8V, VDS = 0V VGS = -8V, VDS = 0V VGS = VDS, ID = -250µA VGS = -4.
5V, ID = -2.
8A VGS = -2.
5V, ID = -2.
0A VDS = -5V, ID = -2.
8A -0.
45 80 110 8 880 270 175 11 5 32 23 11 1.
5 2.
1 -0.
75 -1.
2 20 10 65 45 14.
5 120 150 Min -20 -1 100 -100...



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