ISAHAYA RTGN432P

〈SMALL-SIGNAL TRANSISTOR〉
RTGN432P
TRANSISTOR WITH RESISTOR
FOR SWITHING APPLICATION
SILICON NPN EPITAXIAL TYPE
DISCRIPTION
RTGN432P is a one chip transistor with
built-in bias transistor.
FEATURE
● Built-in bias resistor (R1=4.7kΩ,R2=10kΩ)
● High collector current IC=1A
● Built-in zener diode between collector and base
OUTLINE DRAWING
Unit:mm
4.6 MAX
1.6
E
C
1.5
2.5
B
4.2 MAX
0.8 MIN
0.4
0.53
MAX
APPLICATION
Motor driver circuit
0.48 MAX
1.5
3.0
MARKING
TERMINAL CONNECTOR
E: EMITTER
C: COLLECTOR
B: BASE
JEDEC :
EQUIVALENT CIRCUIT
MARKING
A part of EIAJ standard
C
N E
B
R1
R2
E
The last number
of fisical year
Marking month
MAXIMUM RATING(Ta=25℃)
SYMBOL
PARAMETER
RATING
UNIT
VCBO
Collector to Base voltage
60±10
V
VEBO
Emitter to Base voltage
10
V
VCEO
Collector to Emitter voltage
60±10
V
IC
Collector current (DC)
1
A
ICM
Collector current (pulse)
2
A
PC
Collector dissipation
500
mW
Tj
Junction temperature
+150
℃
Tstg
Storage temperature
-55~+150
℃
ISAHAYA ELECTRONICS CORPORATION
Running No.
〈SMALL-SIGNAL TRANSISTOR〉
RTGN432P
TRANSISTOR WITH RESISTOR
FOR SWITHING APPLICATION
SILICON NPN EPITAXIAL TYPE
ELECTRICAL CHARACTERISTICS(Ta=25℃)
Symbol
Parameter
Test conditions
Limits
Min
Typ
Max
Unit
ICBO
Collector cut off current
VCB=40V,IE=0
―
―
0.1
uA
VOL
Output voltage
VI=5V,IC=200mA
―
―
0.2
V
VIL
Input voltage (OFF)
VCE=5V,IC=100μA
0.3
―
―
V
hFE1
DC forward current gain
VCE=2V,IC=0.1A
200
―
―
―
hFE2
DC forward current gain
VCE=2V,IC=0.5A
300
―
―
―
DC forward current gain
VCE=2V,IC=1A
200
―
―
―
R1
Input resistor
―
3.29
4.70
6.11
KΩ
R2
Emitter – Base resistor
―
7
10
13
KΩ
hFE3
ISAHAYA ELECTRONICS CORPORATION
Marketing division, Marketing planning department
6-41 Tsukuba, Isahaya, Nagasaki, 854-0065 Japan
Keep safety first in your circuit designs!
·ISAHAYA Electronics Corporation puts the maximum effort into making semiconductor products better and more reliable, but
there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or
property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures
such as (1) placement of substitutive, auxiliary, (2) use of non-farmable material or (3) prevention against any malfunction or
mishap.
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herein.
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Jan.2003