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SEMICONDUCTOR KTC3207T
TECHNICAL DATA TRIPLE DIFFUSED NPN TRANSISTOR


HIGH VOLTAGE SWITCHING APPLICATION.
COLOR TV HORIZONTAL DRIVER APPLICATION.
COLOR TV CHROMA OUTPUT APPLICATION. E

K B
DIM MILLIMETERS
FEATURES A _
2.9 + 0.2
High Voltage : V(BR)CEO=300V B 1.6+0.2/-0.1
C _
0.70 + 0.05
2
Small Collector Output Capacitance : Cob=3.0pF(Typ.)




G
3 _
D 0.4 + 0.1




D
A
E 2.8+0.2/-0.3




F
Complementary to KTA1073T. F _
1.9 + 0.2
1




G
G 0.95
H _
0.16 + 0.05
I 0.00-0.10
J 0.25+0.25/-0.15
K 0.60
MAXIMUM RATINGS (Ta=25 )




C
L 0.55




L
H
I
CHARACTERISTIC SYMBOL RATING UNIT J J


Collector-Base Voltage VCBO 300 V
1. EMITTER
Collector-Emitter Voltage VCEO 300 V 2. BASE
3. COLLECTOR
Emitter-Base Voltage VEBO 6 V
Collector Current IC 100 mA
Base Current IB 50 mA
TSM
Collector Power Dissipation PC * 0.9 W
Junction Temperature Tj 150
Storage Temperature Range Tstg -55 150
* Package mounted on a ceramic board (600 0.8 )
Marking
h FE Rank Lot No.

Type Name
LX


ELECTRICAL CHARACTERISTICS (Ta=25 )
CHARACTERISTIC SYMBOL TEST CONDITION MIN. TYP. MAX. UNIT
Collector Cut-off Current ICBO VCB=240V, IE=0 - - 1.0 A
Emitter Cut-off Current IEBO VEB=6V, IC=0 - - 1.0 A
hFE(1) VCE=10V, IC=1mA 30 - -
DC Current Gain
hFE(2) (Note) VCE=10V, IC=20mA 50 - 200
Collector-Emitter Saturation Voltage VCE(sat) IC=10mA, IB=1mA - - 1.0 V
Base-Emitter Saturation Voltage VBE(sat) IC=10mA, IB=1mA - - 1.0 V
Transition Frequency fT VCE=10V, IC=20mA 50 - - MHz
Collector Output Capacitance Cob VCB=20V, IE=0, f=1MHz - 3.0 - pF

Note : hFE(2) Classification O:50 150, Y:100 200




2002. 11. 7 Revision No : 1 1/3
KTC3207T


I C - V CE I C - V BE
120 100
COMMON EMITTER COMMON




COLLECTOR CURRENT IC (mA)
COLLECTOR CURRENT I C (mA)




6 Ta=25 C
100 EMITTER
4 3 80
2 VCE =10V




C
0 C



Ta=-25 C
80




Ta=25
1 60




Ta=10
60 0.6
40
40 0.4
I B =0.2mA 20
20
0
0 0
0 4 8 12 16 20 24 0.2 0.4 0.6 0.8 1.0 1.2

COLLECTOR-EMITTER VOLTAGE VCE (V) BASE-EMITTER VOLTAGE V BE (V)




h FE - I C h FE - I C
500 500
COMMON EMITTER COMMON EMITTER
300 300
Ta=25 C VCE =10V
DC CURRENT GAIN h FE




DC CURRENT GAIN h FE
VC




Ta=100 C
100 100
E
=2 CE = V




Ta=25 C
0V 10V
V
V CE




50 50 Ta=-25 C
=5




30 30



10 10
0.3 0.5 1 3 5 10 30 50 100 0.3 0.5 1 3 5 10 30 50 100

COLLECTOR CURRENT I C (mA) COLLECTOR CURRENT I C (mA)




VCE(sat) - I C VCE(sat) - I C
COLLECTOR-EMITTER SATURATION




5 5
COLLECTOR-EMITTER SATURATION




COMMON EMITTER COMMON EMITTER
3 3
Ta=25 C I C /I B =5
VOLTAGE V CE(sat) (V)




VOLTAGE VCE(sat) (V)




1 1

0.5 0.5
0.3 0.3

I C /I B =10 =5 Ta=100 C
I C /I B
0.1 I C /I B =2 0.1 Ta=25 C
Ta=-25 C
0.05 0.05
0.3 0.5 1 3 5 10 30 50 100 0.3 0.5 1 3 5 10 30 50 100

COLLECTOR CURRENT I C (mA) COLLECTOR CURRENT I C (mA)



2002. 11. 7 Revision No : 1 2/3
KTC3207T


VBE(sat) - I C fT - IC
5 500




TRANSITION FREQUENCY f T (MHz)
COMMON EMITTER COMMON EMITTER
BASE-EMITTER SATURATION




3 I C /IB =5 300
Ta=25 C
VOLTAGE VBE(sat) (V)




Ta=25 C


1 100




VC
E
=2
VC
VC




0
0.5 50




V
E
E


=1
=5


0V
0.3 30




V
0.1 10
0.3 1 3 5 10 30 50 100 0.3 1 3 5 10 30 50 100

COLLECTOR CURRENT I C (mA) COLLECTOR CURRENT I C (mA)




C ob - VCB Pc - Ta
COLLECTOR OUTPUT CAPACITANCE




50 1.4
COLLECTOR POWER DISSIPATION




I E =0 MOUNTED ON A
30 f=1MHz
1.2 CERAMIC BOARD
Ta=25 C
(600mm 2 0.8mm)
1.0
C ob (pF)




10 0.8
PC (W)




5 0.6
3 0.4

0.2

1 0
1 3 5 10 30 50 100 300 0 20 40 60 80 100 120 140 160

COLLECTOR-BASE VOLTAGE VCB (V) AMBIENT TEMPERATURE Ta ( C)




2002. 11. 7 Revision No : 1 3/3