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POWER DERATING FACTOR (%)
Complementary Silicon Power
Transistors
Advance Information
SEMICONDUCTOR TECHNICAL DATA
MOTOROLA
THERMAL CHARACTERISTICS
MAXIMUM RATINGS
Thermal Resistance, Junction to Case
Operating and Storage Junction
Temperature Range
Total Power Dissipation @ TC = 25
_
C
Derate above 25
_
C
Emitter Current — Continuous
Base Current — Continuous
Collector Current — Continuous
Emitter–Base Voltage
Collector–Base Voltage
Collector–Emitter Voltage
Characteristic
Rating
100
20
60
40
80
0
0
Symbol
Symbol
TJ, Tstg
VCBO
VCEO
VEBO
R
θJC
25
PD
IC
IE
IB
THERMAL DERATING
50
Figure 1. Power Derating
125
75
100
150
TC, CASE TEMPERATURE (°C)
MJ15018
MJ15019
200
200
– 65 to + 200
1.17
Max
150
0.86
6.0
2.0
4.0
7.0
SECOND BREAKDOWN
DERATING
MJ15020
MJ15021
250
250
Watts
W/
_
C
_
C/W
Unit
Unit
Adc
Adc
Adc
Vdc
Vdc
Vdc
_
C
175
200
MJ15015, MJ15016
4.0 AMPERES
COMPLEMENTARY
SILICON
POWER TRANSISTORS
200 AND 250 VOLTS
150 WATTS
MJ15021*
MJ15019
MJ15020*
MJ15018
(See 2N3055A)
*Motorola Preferred Device
Order this document
by MJ15018/D
CASE 1–07
TO–204AA
(TO–3)
NPN
PNP
1
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MJ15018 MJ15020 MJ15019 MJ15021
(1) Pulse Test: Pulse Width
ELECTRICAL CHARACTERISTICS
(TC = 25
_
C unless otherwise noted)
DYNAMIC CHARACTERISTICS
ON CHARACTERISTICS (1)
SECOND BREAKDOWN
OFF CHARACTERISTICS
Output Capacitance
(VCB = 10 Vdc, IE = 0, Ftest = 1.0 MHz)
Current–Gain — Bandwidth Product
(IC = 0.5 Adc, VCE = 10 Vdc, ftest = 1.0 MHz)
Base–Emitter on Voltage
(IC = 1.0 Adc, VCE = 4.0 Vdc)
Collector–Emitter Saturation Voltage
(IC = 1.0 Adc, IB = 0.1 Adc)
DC Current Gain
(IC = 1.0 Adc, VCE = 4.0 V)
(IC = 3.0 Adc, VCE = 4.0 V)
Second Breakdown Collector Current with Base Forward–Biased
(VCE = 50 Vdc, t = 0.5 s (non–repetitive)
Emitter Cutoff Current
(VEB = 7.0 Vdc, IC = 0)
Collector Cutoff Current
(VCE = 150 Vdc, IB = 0)
(VCE = 200 Vdc, IB = 0)
Collector–Emitter Sustaining Voltage (1)
(IC = 100 mAdc, IB = 0)
2
200
IC, COLLECTOR CURRENT (AMPS)
100
70
50
3.0
2.0
0.1
10
7.0
5.0
hFE, DC CURRENT GAIN
30
20
0.2 0.3
0.5 0.7 1.0
2.0 3.0
IC, COLLECTOR CURRENT (AMPS)
TJ = 25°C
VCE = 4.0 Vdc
Figure 2. DC Current Gain
v
300
µs,
Duty Cycle
v
2%
Characteristic
TYPICAL DYNAMIC CHARACTERISTICS
PNP
NPN
5.0 7.0
10
MJ15018, MJ15019
MJ15020, MJ15021
MJ15018, MJ15019
MJ15020, MJ15021
0.1
0.07
0.05
0.03
0.02
MJ15020/21
0.01
5.0 7.0 10
20 30
200 300
50 70 100
VCE, COLLECTOR–EMITTER VOLTAGE (VOLTS)
1.0
0.7
0.5
0.3
0.2
10
7.0
5.0
3.0
2.0
Motorola Bipolar Power Transistor Device Data
Figure 3. Maximum Rated Forward Biased
Safe Operating Area
WIRE BOND LIMIT
THERMAL LIMIT
SECOND BREAKDOWN
LIMIT
VCEO(sus)
VCE(sat)
VBE(on)
Symbol
ICEO
IEBO
Cob
hFE
IS/b
fT
MJ15018/19
Min
200
250
3.0
20
30
10
—
—
—
—
—
—
Max
500
500
500
500
2.0
1.0
—
—
—
—
—
—
TC = 25°C
µAdc
µAdc
MHz
Unit
Vdc
Vdc
Adc
Vdc
pF
500
MJ15018 MJ15020 MJ15019 MJ15021
PACKAGE DIMENSIONS
A
N
C
–T–
E
D
U
V
2
2 PL
SEATING
PLANE
K
M
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. ALL RULES AND NOTES ASSOCIATED WITH
REFERENCED TO–204AA OUTLINE SHALL APPLY.
0.13 (0.005)
L
G
1
T Q
M
Y
M
–Y–
H
B
–Q–
0.13 (0.005)
M
T Y
M
DIM
A
B
C
D
E
G
H
K
L
N
Q
U
V
INCHES
MIN
MAX
1.550 REF
–––
1.050
0.250
0.335
0.038
0.043
0.055
0.070
0.430 BSC
0.215 BSC
0.440
0.480
0.665 BSC
–––
0.830
0.151
0.165
1.187 BSC
0.131
0.188
MILLIMETERS
MIN
MAX
39.37 REF
–––
26.67
6.35
8.51
0.97
1.09
1.40
1.77
10.92 BSC
5.46 BSC
11.18
12.19
16.89 BSC
–––
21.08
3.84
4.19
30.15 BSC
3.33
4.77
STYLE 1:
PIN 1. BASE
2. EMITTER
CASE: COLLECTOR
CASE 1–07
TO–204AA (TO–3)
ISSUE Z
Motorola Bipolar Power Transistor Device Data
3
MJ15018 MJ15020 MJ15019 MJ15021
Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding
the suitability of its products for any particular purpose, nor does Motorola 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 consequential or incidental damages. “Typical” parameters can and do vary in different
applications. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does
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systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of
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associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part.
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