BC182_03 [FAIRCHILD]
NPN General Purpose Amplifier; NPN通用放大器型号: | BC182_03 |
厂家: | FAIRCHILD SEMICONDUCTOR |
描述: | NPN General Purpose Amplifier |
文件: | 总4页 (文件大小:61K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
BC182, BC182B
Amplifier Transistors
NPN Silicon
Features
http://onsemi.com
• These are Pb−Free Devices*
COLLECTOR
1
2
BASE
MAXIMUM RATINGS
3
Rating
Collector−Emitter Voltage
Collector−Base Voltage
Emitter−Base Voltage
Symbol
Value
50
Unit
Vdc
EMITTER
V
CEO
V
CBO
V
EBO
60
Vdc
6.0
Vdc
TO−92
CASE 29
STYLE 17
Collector Current − Continuous
I
100
mAdc
C
Total Device Dissipation @ T = 25°C
P
350
2.8
mW
mW/°C
A
D
Derate above 25°C
1
Total Device Dissipation @ T = 25°C
P
D
1.0
8.0
W
mW/°C
1
C
2
2
3
Derate above 25°C
3
STRAIGHT LEAD
BULK PACK
BENT LEAD
TAPE & REEL
AMMO PACK
Operating and Storage Junction
Temperature Range
T , T
−55 to +150
°C
J
stg
THERMAL CHARACTERISTICS
Characteristic
MARKING DIAGRAM
Symbol
Max
357
125
Unit
°C/W
°C/W
Thermal Resistance, Junction−to−Ambient
Thermal Resistance, Junction−to−Case
R
q
JA
JC
R
q
BC
182B
AYWW G
G
Stresses exceeding Maximum Ratings may damage the device. Maximum
Ratings are stress ratings only. Functional operation above the Recommended
Operating Conditions is not implied. Extended exposure to stresses above the
Recommended Operating Conditions may affect device reliability.
A
Y
= Assembly Location
= Year
WW
= Work Week
G
= Pb−Free Package
(Note: Microdot may be in either location)
ORDERING INFORMATION
†
Device
BC182G
Package
Shipping
TO−92
(Pb−Free)
5000 Units / Bulk
5000 Units / Bulk
2000 / Tape & Reel
BC182BG
TO−92
(Pb−Free)
BC182BRL1G
TO−92
(Pb−Free)
†For information on tape and reel specifications,
including part orientation and tape sizes, please
refer to our Tape and Reel Packaging Specifications
Brochure, BRD8011/D.
*For additional information on our Pb−Free strategy and soldering details, please
download the ON Semiconductor Soldering and Mounting Techniques
Reference Manual, SOLDERRM/D.
© Semiconductor Components Industries, LLC, 2007
1
Publication Order Number:
March, 2007 − Rev. 5
BC182/D
BC182, BC182B
ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted)
A
Characteristic
Symbol
Min
Typ
Max
Unit
OFF CHARACTERISTICS
Collector−Emitter Breakdown Voltage
V
V
V
50
60
6.0
−
−
−
−
−
V
V
(BR)CEO
(BR)CBO
(BR)EBO
(I = 2.0 mA, I = 0)
C
B
Collector−Base Breakdown Voltage
(I = 10 mA, I = 0)
C
E
Emitter−Base Breakdown Voltage
(I = 100 mA, I = 0)
−
−
V
E
C
Collector Cutoff Current
(V = 50 V, V = 0)
I
0.2
−
15
15
nA
nA
CBO
CB
BE
Emitter−Base Leakage Current
(V = 4.0 V, I = 0)
I
−
EBO
EB
C
ON CHARACTERISTICS
DC Current Gain
h
FE
−
(I = 10 mA, V = 5.0 V)
C
BC182
40
−
−
CE
(I = 2.0 mA, V = 5.0 V)
BC182
BC182B
BC182
120
180
80
−
−
−
500
500
−
C
CE
(I = 100 mA, V = 5.0 V)
C
CE
Collector−Emitter On Voltage
(I = 10 mA, I = 0.5 mA)
V
V
CE(sat)
−
−
0.07
0.2
0.25
0.6
C
B
(I = 100 mA, I = 5.0 mA) (Note 1)
C
B
Base−Emitter Saturation Voltage
(I = 100 mA, I = 5.0 mA) (Note 1)
V
−
−
1.2
V
V
BE(sat)
C
B
Base−Emitter On Voltage
(I = 100 mA, V = 5.0 V)
V
BE(on)
−
0.55
−
0.5
0.62
0.83
−
0.7
−
C
CE
(I = 2.0 mA, V = 5.0 V)
C
CE
(I = 100 mA, V = 5.0 V) (Note 1)
C
CE
DYNAMIC CHARACTERISTICS
Current−Gain — Bandwidth Product
f
T
MHz
(I = 0.5 mA, V = 3.0 V, f = 100 MHz)
−
150
100
200
−
−
C
CE
(I = 10 mA, V = 5.0 V, f = 100 MHz)
C
CE
Common Base Output Capacitance
(V = 10 V, I = 0, f = 1.0 MHz)
C
−
−
−
5.0
pF
pF
−
ob
CB
C
Common Base Input Capacitance
(V = 0.5 V, I = 0, f = 1.0 MHz)
C
8.0
−
ib
EB
C
Small−Signal Current Gain
h
fe
(I = 2.0 mA, V = 5.0 V, f = 1.0 kHz)
BC182
BC182B
125
240
−
−
500
500
C
CE
Noise Figure
NF
dB
(I = 0.2 mA, V = 5.0 V, R = 2.0 kW, f = 1.0 kHz)
C
−
2.0
10
CE
S
1. Pulse Test: Tp 300 s, Duty Cycle 2.0%.
http://onsemi.com
2
BC182, BC182B
2.0
1.5
1.0
V
= 10 V
T = 25°C
A
CE
T = 25°C
0.9
0.8
0.7
0.6
0.5
0.4
A
V
@ I /I = 10
C B
BE(sat)
1.0
0.8
V
BE(on)
@ V = 10 V
CE
0.6
0.4
0.3
0.3
0.2
0.1
0
V
@ I /I = 10
C B
CE(sat)
0.2
0.2
0.5 1.0
2.0
5.0
10
20
50 100 200
0.1 0.2 0.3 0.5 0.7 1.0 2.0 3.0 5.0 7.0 10
20 30 50 70 100
I , COLLECTOR CURRENT (mAdc)
C
I , COLLECTOR CURRENT (mAdc)
C
Figure 1. Normalized DC Current Gain
Figure 1. “Saturation” and “On” Voltages
10
7.0
5.0
400
300
200
T = 25°C
A
C
ib
V
= 10 V
CE
T = 25°C
100
80
3.0
2.0
A
C
ob
60
40
30
20
1.0
0.5 0.7 1.0
2.0 3.0
5.0 7.0 10
20 30
50
0.4 0.6 0.8 1.0
2.0
4.0 6.0 8.0 10
20
40
I , COLLECTOR CURRENT (mAdc)
C
V , REVERSE VOLTAGE (VOLTS)
R
Figure 2. Current−Gain — Bandwidth Product
Figure 3. Capacitances
170
160
150
V
= 10 V
CE
f = 1.0 kHz
140
130
120
T = 25°C
A
0.1
0.2 0.3
0.5
1.0
2.0 3.0
5.0
10
I , COLLECTOR CURRENT (mAdc)
C
Figure 4. Base Spreading Resistance
http://onsemi.com
3
BC182, BC182B
PACKAGE DIMENSIONS
TO−92 (TO−226)
CASE 29−11
ISSUE AM
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. CONTOUR OF PACKAGE BEYOND DIMENSION R
IS UNCONTROLLED.
A
STRAIGHT LEAD
BULK PACK
B
R
4. LEAD DIMENSION IS UNCONTROLLED IN P AND
BEYOND DIMENSION K MINIMUM.
P
L
INCHES
DIM MIN MAX
MILLIMETERS
SEATING
PLANE
K
MIN
4.45
4.32
3.18
0.407
1.15
2.42
0.39
12.70
6.35
2.04
−−−
MAX
5.20
5.33
4.19
0.533
1.39
2.66
0.50
−−−
A
B
C
D
G
H
J
0.175
0.170
0.125
0.016
0.045
0.095
0.015
0.500
0.250
0.080
−−−
0.205
0.210
0.165
0.021
0.055
0.105
0.020
−−−
D
X X
G
J
H
V
K
L
−−−
−−−
N
P
R
V
0.105
0.100
−−−
2.66
2.54
−−−
C
SECTION X−X
0.115
0.135
2.93
3.43
1
N
−−−
−−−
N
NOTES:
1. DIMENSIONING AND TOLERANCING PER
ASME Y14.5M, 1994.
2. CONTROLLING DIMENSION: MILLIMETERS.
3. CONTOUR OF PACKAGE BEYOND
DIMENSION R IS UNCONTROLLED.
A
BENT LEAD
TAPE & REEL
AMMO PACK
B
R
4. LEAD DIMENSION IS UNCONTROLLED IN P
AND BEYOND DIMENSION K MINIMUM.
P
T
SEATING
PLANE
MILLIMETERS
K
DIM MIN
MAX
5.20
5.33
4.19
0.54
2.80
0.50
−−−
A
B
C
D
G
J
4.45
4.32
3.18
0.40
2.40
0.39
12.70
2.04
1.50
2.93
3.43
D
X X
G
K
N
P
R
V
J
2.66
4.00
−−−
V
C
−−−
SECTION X−X
1
N
STYLE 17:
PIN 1. COLLECTOR
2. BASE
3. EMITTER
ON Semiconductor and
are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice
to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability
arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages.
“Typical” parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All
operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. SCILLC does not convey any license under its patent rights
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intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur. Should
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BC182/D
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