KEC KTA1552T

SEMICONDUCTOR
KTA1552T
TECHNICAL DATA
EPITAXIAL PLANAR PNP TRANSISTOR
DC-DC CONVERTERS RELAY DRIVERS, LAMP DRIVERS,
MOTOR DRIVERS, STROBES APPLICATION.
E
FEATURES
B
K
DIM
A
B
ᴌAdoption of FBET, MBIT Processes.
1
C
3
D
D
G
ᴌHigh-Speed Switching.
2
F
A
ᴌLow Collector-to-Emitter Saturation Voltage.
G
ᴌHigh Current Capacitance.
ᴌUltrasmall Package Facilitates Miniaturization in end Products.
CHARACTERISTIC
SYMBOL
RATING
UNIT
VCBO
-50
V
VCES
-50
VCEO
-50
VEBO
-6
DC
IC
-3
Pulse
ICP
-6
Collector-Base Voltage
Collector-Emitter Voltage
Emitter-Base Voltage
Collector Current
L
J
Base Current
Collector Power Dissipation
Junction Temperature
Storage Temperature Range
2.8+0.2/-0.3
_ 0.2
1.9 +
0.95
_ 0.05
0.16 +
0.00-0.10
0.25+0.25/-0.15
0.60
0.55
H
I
C
ᴌComplementary to KTC3552T.
MAXIMUM RATING (Ta=25ᴱ)
E
F
G
H
I
J
K
L
ᴌHigh Allowable Power Dissipation.
MILLIMETERS
_ 0.2
2.9 +
1.6+0.2/-0.1
_ 0.05
0.70 +
_ 0.1
0.4 +
J
1. EMITTER
2. BASE
3. COLLECTOR
V
V
TSM
A
IB
-600
mA
PC *
0.9
W
Tj
150
ᴱ
Tstg
-55ᴕ150
ᴱ
Marking
Lot No.
SL
Type Name
* Package mounted on a ceramic board (600Ὅᴧ0.8Ὂ)
ELECTRICAL CHARACTERISTICS (Ta=25ᴱ)
CHARACTERISTIC
SYMBOL
Collector Cut-off Current
Collector-Emitter Breakdown Voltage
Emitter-Base Breakdown Voltage
Collector-Emitter Saturation Voltage
Base-Emitter Saturation Voltage
ICBO
VCB=-40V, IE=0
MIN.
TYP.
MAX.
UNIT
-
-
-0.1
Ọ
A
IEBO
VEB=-4V, IC=0
-
-
-0.1
Ọ
A
V(BR)CBO
IC=-10Ọ
A, IE=0
-50
-
-
V
V(BR)CES
IC=-100ỌA, VBE=0
-50
-
-
V
V(BR)CEO
IC=-1mA, IB=0
-50
-
-
V
V(BR)EBO
IE=-10ỌA, IC=0
-6
-
-
V
VCE(sat)1
IC=-1A, IB=-50mA
-
-100
-200
mV
VCE(sat)2
IC=-2A, IB=-100mA
-
-185
-500
mV
VBE(sat)
IC=-2A, IB=-100mA
-
-0.88
-1.2
V
Emitter Cut-off Current
Collector-Base Breakdown Voltage
TEST CONDITION
DC Current Gain
hFE
VCE=-2V, IC=-100mA
200
-
560
Transition Frequency
fT
VCE=-10V, IC=-500mA
-
360
-
MHz
VCB=-10V, f=1MHz
-
24
-
pF
-
30
-
-
230
-
-
15
-
Collector Output Capacitance
Turn-On Time
Cob
PW=20µs
DC <= 1%
ton
INPUT
Swiitching
Time
Storage Time
tstg
IB1
I B2
RB
50Ω
tf
RL
VR
100µF
Fall Time
OUTPUT
nS
470µF
V BE =5V
VCC =-25V
-10IB1=10IB2=IC =-1A
2001. 6. 28
Revision No : 0
1/3
KTA1552T
h FE - I C
I C - V CE
1K
mA 30mA
-
A
-20m
-40
-1.6
DC CURRENT GAIN h FE
COLLECTOR CURRENT I C (A)
-2.0
A
-10m
A
m
.0
-8
A
m
.0
-6
-1.2
-4.0mA
-0.8
-2.0mA
-0.4
0
-0.2
-0.4
-0.6
-0.8
Ta=75 C
300
Ta=25 C
Ta=-25 C
100
50
30
VCE =-2V
IB=0mA
0
500
10
-0.01
-1.0
COLLECTOR-EMITTER VOLTAGE VCE (V)
-0.03
COLLECTOR-EMITTER SATURATION
VOLTAGE VCE(sat) (mV)
COLLECTOR-EMITTER SATURATION
VOLTAGE VCE(sat) (mV)
-500
-300
-100
75
Ta=
-30
-10
-0.01
25
Ta=
-0.03
C
25
=-
C
Ta
C
-0.3
-0.1
-3
-1
-1K
I C /I B =50
-300
-100
5
C
75
=-2
Ta
Ta=
C
25
Ta=
-50
-30
-10
-0.01
-0.03
Ta=-25 C
Ta=75 C
-300
-0.1
-0.3
-1
COLLECTOR CURRENT I C (A)
2001. 6. 28
-3
Revision No : 0
-3
-10
VCE =-2V
-2.5
-2.0
Ta=75
C
Ta=25
C
Ta=-25
C
-3K
-0.03
-1
-3.0
COLLECTOR CURRENT IC (A)
BASE-EMITTER SATURATION
VOLTAGE VBE(sat) (mV)
I C /I B =50
-5K
-100
-0.01
-0.3
I C - V BE
-10K
Ta=25 C
-0.1
C
COLLECTOR CURRENT I C (A)
VBE(sat) - I C
-500
-3
-500
COLLECTOR CURRENT I C (A)
-1K
-1
VCE(sat) - I C
I C /I B =20
-50
-0.3
COLLECTOR CURRENT I C (A)
VCE(sat) - I C
-1K
-0.1
-1.5
-1.0
-0.5
0
0
-0.1 -0.2 -0.3 -0.4 -0.5 -0.6 -0.7 -0.8 -0.9 -1.0
BASE-EMITTER VOLTAGE V BE (V)
2/3
KTA1552T
C ob - V CB
1K
COLLECTOR OUTPUT CAPACITANCE
C ob (pF)
TRANSITION FREQUENCY f T (MHz)
f T - IC
VCE =-10V
500
300
100
50
30
10
-0.01
-0.03
-0.1
-0.3
-1
100
50
30
10
5
3
f=1MHz
1
-3
-1
-3
-10
-30
-100
COLLECTOR-BASE VOLTAGE VCB (V)
COLLECTOR CURRENT I C (A)
SAFE OPERATING AREA
COLLECTOR POWER DISSIPATION
PC (W)
AT
IO
N
*
S*
mS
0m
ER
S*
-0.05
-0.03
10
OP
10
-0.1
0µ
50
DC
-0.5
-0.3
S*
0µ
S*
-1
I C MAX
(CONTINUOUS)
10
-5
-3
Pc - Ta
I C MAX.(PULSED)
1m
COLLECTOR CURRENT I C (A)
-10
* SINGLE NONREPETITIVE
PULSE Ta=25 C
CURVES MUST BE DERATED
LINEARLY WITH INCREASE
IN TEMPERATURE
MOUNTED ON A CERAMIC BOARD
(600mm 2 `0.8mm)
-0.01
-0.1
-0.3
-1
-3
-10
-30
-100
1.0
MOUNTED ON A
CERAMIC BOARD
(600mm 2 `0.8mm)
0.8
0.6
0.4
0.2
0
0
20
40
60
80
100
120
140
160
AMBIENT TEMPERATURE Ta ( C)
COLLECTOR-EMITTER VOLTAGE VCE (V)
2001. 6. 28
Revision No : 0
3/3
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