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 S amHop Microelectronics C orp.
S T S 2300
MAR . 10 2004
N-C hannel E nhancement Mode Field E ffect Trans is tor
P R ODUC T S UMMAR Y
V DS S
20V
F E AT UR E S
( m W ) Max
ID
3.8A
R DS (ON)
S uper high dense cell design for low R DS (ON).
40 @ V G S = 4.5V 60 @ V G S = 2.5V 75 @ V G S = 1.8V
R ugged and reliable. S OT-23 package.
D
S OT-23
D S G
G
S
AB S OL UTE MAXIMUM R ATING (TA=25 C unles s otherwis e noted)
P arameter Drain-S ource Voltage Gate-S ource Voltage Drain C urrent-C ontinuous a @ TJ=125 C b -P ulsed Drain-S ource Diode Forward C urrent a Maximum P ower Dissipation a Operating Junction and S torage Temperature R ange S ymbol VDS VGS ID IDM IS PD TJ, TS TG Limit 20 10 3.8 15 1.25 1.25 -55 to 150 Unit V V A A A W C
THE R MAL CHAR ACTE R IS TICS
Thermal R esistance, Junction-to-Ambient a R thJA 100 C /W
1
S T S 2300
E LE CTR ICAL CHAR ACTE R IS TICS (TA =25 C unless otherwise noted)
Parameter OFF CHAR ACTE R IS TICS
Drain-S ource Breakdown Voltage Zero Gate Voltage Drain Current Gate-Body Leakage BVDSS IDSS IGSS VGS(th) R DS (ON) VGS = 0V, ID = 250uA VDS = 20V, VGS =0V VGS = 10V, VDS = 0V VDS = VGS, ID = 250uA VGS = 4.5V, ID =5.0A VGS = 2.5V, ID =4.0A VGS = 1.8V, ID =1.0A On-S tate Drain Current Forward Transconductance ID(ON) g FS
c
S ymbol
Condition
Min Typ C Max Unit
20 1 100 0.6 0.78 1.5 32 50 62 18 5 888 144 115 40 60 75 V uA nA V
m-ohm m-ohm m-ohm
ON CHAR ACTE R IS TICS b
Gate Threshold Voltage Drain-S ource On-S tate R esistance
VDS = 5V, VGS = 4.5V VDS = 5V, ID = 5A
A S
DYNAMIC CHAR ACTE R IS TICS
Input Capacitance Output Capacitance R everse Transfer Capacitance
CISS COSS CRSS
c
VDS = 15V, VGS = 0V f =1.0MHZ
PF PF PF
S WITCHING CHAR ACTE R IS TICS
Turn-On Delay Time R ise Time Turn-Off Delay Time Fall Time Total Gate Charge Gate-S ource Charge Gate-Drain Charge
tD(ON) tr tD(OFF) tf Qg Qgs Qgd
VDD = 10V, ID = 1A, VGS = 4.5V, R L = 10 ohm R GE N = 6 ohm VDS = 10V, ID = 3.5A, VGS = 4.5V
31.8 14.5 50.3 31.9 16.8 2.5 5.4
ns ns ns ns nC nC nC
2
S T S 2300
E LE CTR ICAL CHAR ACTE R IS TICS (TA=25 C unless otherwise noted)
Parameter
5
Diode Forward Voltage
S ymbol
VSD
Condition
VGS = 0V, Is =1.25A
Min Typ Max Unit
0.825 1.2 V
C
DR AIN-S OUR CE DIODE CHAR ACTE R IS TICS b
Notes a.S urface Mounted on FR 4 Board, t 10sec. b.Pulse Test:Pulse Width 300us, Duty Cycle 2%. c.Guaranteed by design, not subject to production testing.
10
V G S =10.5~2.5V
25 25 C 20 -55 C
8
ID, Drain C urrent(A)
ID, Drain C urrent (A)
T j=125 C 15
6
4 2 0
V G S =1.5V
10
5 0 0.0
0
1
2
3
4
5
6
0.5
1
1.5
2
2.5
3
V DS , Drain-to-S ource Voltage (V )
V G S , G ate-to-S ource Voltage (V )
F igure 1. Output C haracteris tics
R DS (ON), On-R es is tance(Ohms )
2.2 1.8 1.4 1.0 0.6 0.2 0
F igure 2. Trans fer C haracteris tics
V G S =4.5V ID=5A
1000
C , C apacitance (pF )
800 C is s 600 400 200 0
C os s C rs s 0 5 10 15 20 25 30
-50
-25
0
25
50
75
100 125 T j( C )
V DS , Drain-to S ource Voltage (V )
F igure 3. C apacitance
F igure 4. On-R es is tance Variation with Temperature
3
S T S 2300
B V DS S , Normalized Drain-S ource B reakdown V oltage V th, Normalized G ate-S ource T hres hold V oltage
1.3 1.2 1.1 1.0 0.9 0.8 0.7 0.6 -50 -25 0 25 50 75 100 125 V DS =V G S ID=250uA 1.3 ID=250uA 1.2 1.1 1.0 0.9 0.8 0.7 -50 -25 0 25 50 75 100 125
T j, J unction T emperature ( C )
T j, J unction T emperature ( C )
with T emperature
30
F igure 6. B reakdown V oltage V ariation with T emperature
20
gFS , T rans conductance (S )
20 15 10 5 0 0 5 10 15 V DS =5V 20 25
Is , S ource-drain current (A)
25
10
1 0 0.4 0.6 0.8 1.0 T J =25 C 1.2 1.4
IDS , Drain-S ource C urrent (A)
V S D, B ody Diode F orward V oltage (V )
F igure 7. T rans conductance V ariation with Drain C urrent
25
ID, Drain C urrent (A)
F igure 8. B ody Diode F orward V oltage V ariation with S ource C urrent
50
V G S , G ate to S ource V oltage (V )
20 15 10 5 0 0
VDS =10V ID=3.5A
10
R
(O DS
N)
L im
it
10
10 0m s
ms
11
DC
1s
0.1 0.03
VGS =4.5V S ingle P ulse T c=25 C 0.1 1 10 20 50
5
10
15
20 25 30 35 40
Qg, T otal G ate C harge (nC )
V DS , Drain-S ource V oltage (V )
F igure 9. G ate C harge
F igure 10. Maximum S afe O perating Area
4
S T S 2300
V DD ton V IN D VG S R GE N G
90%
5
toff tr
90%
RL V OUT
td(on) V OUT
td(off)
90% 10%
tf
10%
INVE R TE D
S
V IN
50% 10%
50%
P ULS E WIDTH
F igure 11. S witching T es t C ircuit
10
F igure 12. S witching Waveforms
Normalized Transient
Thermal Resistance
1
0.5 0.2
P DM t1
on
0.1
0.1 0.05 0.02 1. 2. 3. 4.
t2
0.01 0.00001
0.01
Single Pulse 0.0001 0.001 0.01 0.1 1 10
R thJ A (t)=r (t) * R thJ A R thJ A=S ee Datas heet T J M-T A = P DM* R thJ A (t) Duty C ycle, D=t1/t2
100
1000
Square Wave Pulse Duration(sec) Normalized Thermal Transient Impedance Curve
5
S T S 2300
A
L G F M
J
B
C
I
H
E
D (TYP .)
2. 70 2. 40 1. 40 0. 35 0
3. 10 2. 80 1. 60 0. 50 0. 10 0. 55 1. 30 0. 20 1. 15 10X
0. 106 0. 094 0. 055 0. 014 0
0. 122 0. 110 0. 063 0. 020 0. 004
F
G
0. 45 1. 90 R F. E 1. 00 0. 10 0. 40 0. 45 0X
0. 022 0. 018 0. 075 R EF. 0. 039 0. 004 0. 016 0. 033 0X 0. 051 0. 008 0. 045 10X
I J L M
6
S T S 2300
SOT-23 Tape and Reel Data
SOT-23 Carrier Tape
UNIT:P PACKAGE
SOT-23
A0 3.20 O 0.10
B0 3.00 O 0.10
K0 1.33 O 0.10
D0 i 1.00 +0.25
D1 i 1.50 +0.10
E
8.00 +0.30 -0.10
E1 1.75 O 0.10
E2 3.50 O 0.05
P0 4.00 O 0.10
P1 4.00 O 0.10
P2 2.00 O 0.05
T 0.20 O 0.02
SOT-23 Reel
UNIT:P TAPE SIZE 8P REEL SIZE i 178 M i 178 O 1 N i 60 O 1 W 9.00 O 0.5 W1 12.00 O 0.5 H i 13.5 O 0.5 K 10.5 S 2.00 O 0.5 G i 10.0 R 5.00 V 18.00
7


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