2N3904-AP Micro Commercial Components (MCC), 2N3904-AP Datasheet - Page 3

200mA, 40V 600mW NPN Transistor, TO-92 / AMMO

2N3904-AP

Manufacturer Part Number
2N3904-AP
Description
200mA, 40V 600mW NPN Transistor, TO-92 / AMMO
Manufacturer
Micro Commercial Components (MCC)
Type
Amplifier, Medium Powerr
Datasheets

Specifications of 2N3904-AP

Transistor Type
NPN
Current - Collector (ic) (max)
200mA
Voltage - Collector Emitter Breakdown (max)
40V
Vce Saturation (max) @ Ib, Ic
400mV @ 5mA, 50mA
Dc Current Gain (hfe) (min) @ Ic, Vce
100 @ 10mA, 1V
Power - Max
600mW
Frequency - Transition
250MHz
Mounting Type
Through Hole
Package / Case
TO-92
Current, Collector
200 mA
Current, Gain
100
Frequency
250 MHz
Package Type
TO-92
Polarity
NPN
Power Dissipation
600 mW
Primary Type
Si
Voltage, Breakdown, Collector To Emitter
40 V
Voltage, Collector To Base
60 V
Voltage, Collector To Emitter
40 V
Voltage, Collector To Emitter, Saturation
0.4 V
Voltage, Emitter To Base
6 V
Transistor Polarity
NPN
Collector Emitter Voltage V(br)ceo
40V
Power Dissipation Pd
600mW
Dc Collector Current
200mA
Dc Current Gain Hfe
30
No. Of Pins
3
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Collector Cutoff (max)
-
Lead Free Status / Rohs Status
RoHS Compliant part
Other names
2N3904-APTB
Revision: A
2N3904
P
D(MAX)
NF - (dB)
V
- (mW)
CE
- (V)
800
400
200
600
10
12
8
6
2
0
1
0
4
6
5
4
3
2
0
0.1
0.1
0
Maximum Power Dissipation vs
Ambient Temperature
Contours of Constant Gain
Bandwidth Product (f
Noise Figure vs
Frequency
I
SOT-23
C
= 100µA R
I
C
*100MHz increments from
200 to 500MHz
= 50µA R
50
www.mccsemi.com
1.0
1.0
S
I
T
I
C
C
S
= 500Ω
f - (kHz)
A
= 0.5mA R
- (mA)
= 1.0kΩ
100
- (°C)
T
)
TO-92
10
10
V
150
CE
S
= 200Ω
= 5.0V
100
200
100
3 of 5
NF - (dB)
T - (ns)
h
fe
1000
12
10
2
8
4
0
100
6
1000
0.1
10
100
1.0
Noise Figure vs
Source Resistance
10
0.1
I
Current Gain
1.0
C
= 1.0mA
Switching Times vs
Collector Current
1.0
t
R
r
S
Micro Commercial Components
- (kΩ)
I
1.0
C
M C C
I
C
- (mA)
10
I
- (mA)
C
f = 1.0kHz
10
I
= 100µA
B1
= I
V
f = 1.0kHz
t
CE
f
B2
t
s
= 10V
= I
C
/10
100
2011/01/01
10
100
TM

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