Document
PRELIMINARY
RT3T14M
Composite Transistor With Resistor For Switching Application Silicon Epitaxial Type
DESCRIPTION
RT3T14M is a composite transistor built with RT1N144 chip and RT1P144 chip in SC-88 package.
FEATURE
Silicon epitaxial type Each transistor elements are independent. Mini package for easy mounting
OUTLINE DRAWING
2.1 1.25
Unit mm
2.0 0.65 0.65
APPLICATION
Inverted circuit, switching circuit, interface circuit, driver circuit
0.13 0.2
0.9 0.65 0 0.1
PNP built in transistor of ” ”sign is abbreviation.
RTr1
R1
R2 R2
R1
RTr2
TERMINAL CONNECTOR
EMITTER1 BASE1 COLLECTOR2 EMITTER2 BASE2 :COLLECTOR1
JEITA SC-88
MAXIMUM RATING (Ta=25 )
SYMBOL VCBO VEBO VCEO IC ICM PC Tj Tstg
PARAMETER Collector to Base voltage Emitter to Base voltage Collector to Emitter voltage Collector current Peak Collector current Collector dissipation Total, Ta=25 Junction temperature Storage temperature
RATING 50 6 50 100 200 150 150
-55 150
UNIT V V V mA mA
mW
MARKING
.
ISAHAYA ELECTRONICS CORPORATION
PRELIMINARY
RT3T14M
Composite Transistor With Resistor For Switching Application Silicon Epitaxial Type
ELECTRICAL CHARACTERISTICS (Ta=25 )
Symbol
Parameter
Test conditions
V(BR)CEO ICBO hFE VCE(sat) VI(ON) VI(OFF) R1 R2/R1
fT
Collector to Emitter break down voltage Collector cut off current DC forward current gain Collector to Emitter saturation voltage Input on voltage Input off voltage Input resistor Resistor ratio
Gain band width product
IC=100 A,RBE= VCB =50V,IE=0 VCE=5V,IC=5mA IC=10mA,IB=5mA VCE=0.2V,IC=5mA VCE=5V,IC=100 A -
VCE=6V,IE=-10mA
Tr1 Tr2
Limits
Unit
Min Typ Max
50 -
-V
- - 0.1 A
50 -
--
- 0.1 0.3 V
- 1.0 1.8 V
0.4 0.7 - V
7 10 13 k
4.2 4.7 5.1 -
-
200 150
- MHZ
ISAHAYA ELECTRONICS CORPORATION
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. Notes regarding these materials
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originating in the use of any product data, diagrams, charts or circuit application examples contained in these materials.
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Jan.2003
.