PANJIT MMBT3904

MMBT3904-AU
NPN GENERAL PURPOSE SWITCHING TRANSISTOR
VOLTAGE
POWER
40 Volts
225 mWatts
SOT-23
Unit:inch(mm)
FEATURES
• NPN epitaxial silicon, planar design
0.120(3.04)
• Collector-emitter voltage VCE = 40V
0.110(2.80)
• Collector current IC = 200mA
• Transition frequency f T >300MHz @ I C =10mAdc,
V CE =20Vdc,f=100MHz
• Acqire quality system certificate : TS16949
• AEC-Q101 qualified
0.056(1.40)
0.047(1.20)
• Lead free in comply with EU RoHS 2002/95/EC directives.
• Green molding compound as per IEC61249 Std. . (Halogen Free)
0.008(0.20)
0.079(2.00)
0.003(0.08)
0.070(1.80)
MECHANICAL DATA
Case: SOT-23, Plastic
Terminals: Solderable per MIL-STD-750, Method 2026
Approx. Weight: 0.0003 ounces, 0.0084 grams
0.004(0.10)
0.044(1.10)
0.000(0.00)
0.035(0.90)
0.020(0.50)
Marking: S1A
0.013(0.35)
Top View
3
Collector
3
Collector
1
Base
1
Base
2
Emitter
2
Emitter
ABSOLUTE RATINGS
PARAMETER
Symbol
Value
Units
Collector - Emitter Voltage
VCEO
40
V
Collector - Base Voltage
VCBO
60
V
Emitter - Base Voltage
VEBO
6.0
V
IC
200
mA
Symbol
Value
Units
Max Power Dissipation (Note 1)
PTOT
225
mW
Thermal Resistance , Junction to Ambient
RθJA
556
Junction Temperature
TJ
-55 to 150
O
Storage Temperature
TSTG
-55 to 150
O
Collector Current - Continuous
THERMAL CHARACTERISTICS
PARAMETER
C/W
O
C
C
Note 1: Transistor mounted on FR-5 board 1.0 x 0.75 x 0.062 in.
REV.0.1-OCT.21.2008
PAGE . 1
MMBT3904-AU
ELECTRICAL CHARACTERISTICS
PA RA M E TE R
S ym b o l
Te s t C o n d i t i o n
M IN .
T YP.
MA X .
U ni t s
C o lle c to r - E mi tte r B re a k d o wn Vo lta g e
V ( B R) C E O IC = 1 . 0 m A , I B = 0
40
-
-
V
C o lle c to r - B a s e B re a k d o wn Vo lta g e
V ( B R) C B O IC = 1 0 u A , I E = 0
60
-
-
V
E mi tte r - B a s e B re a k d o wn Vo lta g e
V ( B R) E B O
6 .0
-
-
V
B a s e C ut o f f C ur r e nt
C o l l e c t o r C ut o f f C ur r e nt
D C C ur r e nt G a i n ( N o t e 2 )
IE = 1 0 u A , I C = 0
IB L
V C E =3 0 V, V E B =3 .0 V
-
-
50
nA
IC E X
V C E =3 0 V, V E B =3 .0 V
-
-
50
nA
hFE
IC = 0 . 1 m A , V C E = 1 . 0 V
IC = 1 . 0 m A , V C E = 1 . 0 V
IC = 1 0 m A , V C E = 1 . 0 V
IC = 5 0 m A , V C E = 1 . 0 V
IC = 1 0 0 m A , V C E = 1 . 0 V
40
70
100
60
30
-
300
-
-
C o l l e c t o r - E m i t t e r S a t ur a t i o n Vo l t a g e
(No te 2 )
V C E ( S AT)
IC = 1 0 m A , I B = 1 . 0 m A
IC = 5 0 m A , I B = 5 . 0 m A
-
-
0 .2
0 .3
V
B a s e - E m i t t e r S a t ur a t i o n Vo l t a g e ( N o t e 2 )
V B E ( S AT)
IC = 1 0 m A , I B = 1 . 0 m A
IC = 5 0 m A , I B = 5 . 0 m A
0 .6 5
-
-
0 .8 5
0 .9 5
V
C o l l e c t o r - B a s e C a p a c i t a nc e
C CBO
V C B = 5 V , IE = 0 , f = 1 M H z
-
-
4 .0
pF
E m i t t e r - B a s e C a p a c i t a nc e
C EBO
V E B = 0 . 5 V , IC = 0 ,
f=1 MHz
-
-
8 .0
pF
D e l a y Ti m e
td
V C C =3 V,V B E =-0 .5 V,
IC = 1 0 m A , I B = 1 . 0 m A
-
-
35
ns
R i s e Ti m e
tr
V C C =3 V,V B E =-0 .5 V,
IC = 1 0 m A , I B = 1 . 0 m A
-
-
35
ns
S t o r a g e Ti m e
ts
V C C = 3 V , IC = 1 0 m A
IB 1 = I B 2 = 1 . 0 m A
-
-
200
ns
F a l l Ti m e
tf
V C C = 3 V , IC = 1 0 m A
IB 1 = I B 2 = 1 . 0 m A
-
-
50
ns
Note 2: Pulse Test: Pulse Width < 300 us, Duty Cycle < 2.0%.
SWITCHING TIME EQUIVALENT TEST CIRCUITS
Storage and Fall Tim e Equivalent Test Circuit
REV.0.1-OCT.21.2008
PAGE . 2
ELECTRICAL CHARACTERISTICS CURVE
300
1.400
VCE = 1V
TJ = 150 ˚C
250
1.000
200
TJ = 100 ˚C
TJ = 100 ˚C
VBE (V)
hFE
1.200
150
TJ = 25 ˚C
0.800
TJ = 25 ˚C
0.600
100
0.400
50
TJ = 150
0.200
0
VCE = 1V
0.000
0.01
0.1
1
10
100
1000
0.01
0.1
Collector Current, I C (mA)
1
10
100
1000
Collector Current, IC (mA)
Fig. 1. Typical hFE vs Collector Current
Fig. 2. Typical VBE vs Collector Current
1.0
1.000
TJ = 25 ˚C
IC/IB = 10
TJ = 150 ˚C
VBE(sat) (V)
VCE(sat) (V)
TJ = 100 ˚C
0.100
TJ = 25 ˚C
TJ = 150 ˚C
IC/IB = 10
0.1
0.010
0.01
0.1
1
10
100
1000
0.01
0.1
1
10
100
Collector Current, I C (mA)
Collector Current, I C (mA)
Fig. 3. Typical VCE (sat) vs Collector Current
Fig. 4. Typical VBE (sat) vs Collector Current
10
TJ = 25 ˚C
Capacitance (pF)
CIB (EB)
COB (CB)
1
0.1
1
10
100
Reverse Voltage, VR (V)
Fig. 5. Typical Capacitances vs Reverse Voltage
REV.0.1-OCT.21.2008
PAGE . 3
MMBT3904-AU
MOUNTING PAD LAYOUT
Unit:inch(mm)
0.035 MIN.
(0.90) MIN.
SOT-23
0.078
(2.00)
0.037
(0.95)
0.043
(1.10)
0.031 MIN.
(0.80) MIN.
0.043
(1.10)
0.106
(2.70)
ORDER INFORMATION
• Packing information
T/R - 12K per 13" plastic Reel
T/R - 3K per 7” plastic Reel
REV.0.1-OCT.21.2008
PAGE . 4
MMBT3904-AU
Part No_packing code_Version
MMBT3904-AU_R1_000A1
MMBT3904-AU_R2_000A1
For example :
RB500V-40_R2_00001
Serial number
Version code means HF
Packing size code means 13"
Packing type means T/R
Part No.
Packing Code XX
Packing type
Tape and Ammunition Box
(T/B)
Tape and Reel
(T/R)
Bulk Packing
(B/P)
Tube Packing
(T/P)
Tape and Reel (Right Oriented)
(TRR)
Tape and Reel (Left Oriented)
(TRL)
FORMING
REV.0.1-OCT.21.2008
Version Code XXXXX
1st Code
Packing size code
A
N/A
0
HF
0
serial number
R
7"
1
RoHS
1
serial number
B
13"
2
T
26mm
X
S
52mm
Y
L
F
PANASERT T/B CATHODE UP
(PBCU)
PANASERT T/B CATHODE DOWN
(PBCD)
2nd Code HF or RoHS 1st Code 2nd~5th Code
U
D
PAGE . 5
MMBT3904-AU
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document anytime without notification. Please refer to our website for the latest
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use of any product including damages incidentally and consequentially occurred.
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warranties of fitness for particular purpose, non-infringement and merchantability.
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Applications shown on the herein document are examples of standard use and
operation. Customers are responsible in comprehending the suitable use in particular
applications. Panjit International Inc. makes no representation or warranty that such
applications will be suitable for the specified use without further testing or modification.
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The products shown herein are not designed and authorized for equipments requiring
high level of reliability or relating to human life and for any applications concerning
life-saving or life-sustaining, such as medical instruments, transportation equipment,
aerospace machinery et cetera. Customers using or selling these products for use in
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International Inc. for any damages resulting from such improper use or sale.
REV.0.1-OCT.21.2008
PAGE . 6