SEMICONDUCTOR
TECHNICAL DATA
SWITCHING APPLICATION. INTERFACE CIRCUIT AND DRIVER CIRCUIT APPLICATION FEATURES
With Built-in Bias Resistors. Reduce a Quantity of Parts and Manufacturing Process. Simplify Circuit Design.
KRA116S~KRA122S
EPITAXIAL PLANAR PNP TRANSISTOR
L
E B
L
2
3
1
EQUIVALENT CIRCUIT
OUT R1 R2
BIAS RESISTOR VALUES
TYPE NO. KRA116S KRA117S KRA118S KRA119S KRA120S R1(k 1 2.2 2.2 4.7 10 47 100 ) R2(k 10 2.2 )
C N
P
P
DIM A B C D E G H J K L M N P
MILLIMETERS _ 2.93 + 0.20 1.30+0.20/-0.15 1.30 MAX 0.45+0.15/-0.05 2.40+0.30/-0.20 1.90 0.95 0.13+0.10/-0.05 0.00 ~ 0.10 0.55 0.20 MIN 1.00+0.20/-0.10 7
A
G
H
M
IN
1. EMITTER
10 10 4.7 10 100
2. BASE 3. COLLECTOR
COMMON(+)
KRA121S KRA122S
K
SOT-23
MAXIMUM RATING (Ta=25
)
SYMBOL KRA116S 122S VO RATING -50 -10, 5 -12, 10 -12, 5 VI -20, 7 -30, 10 -40, 15 -40, 10 IO PD KRA116S 122S Tj Tstg -100 200 150 -55 150 mA mW V UNIT V
CHARACTERISTIC Output Voltage
KRA116S KRA117S KRA118S Input Voltage KRA119S KRA120S KRA121S KRA122S Output Current Power Dissipation Junction Temperature Storage Temperature Range
Marking
MAXIMUM RATING (Ta=25
TYPE MARK
)
Type Name
J
D
KRA116S KRA117S KRA118S KRA119S KRA120S KRA121S KRA122S P2 P4 P5 P6 P7 P8 P9
Lot No.
2002. 7. 9
Revision No : 3
1/6
KRA116S~KRA122S
ELECTRICAL CHARACTERISTICS (Ta=25 )
CHARACTERISTIC Output Cut-off Current KRA116S 122S SYMBOL IO(OFF) TEST CONDITION VO=-50V, VI=0 VO=-5V, IO=-5mA VO=-5V, IO=-20mA VO=-5V, IO=-10mA GI VO=-5V, IO=-10mA VO=-5V, IO=-10mA VO=-5V, IO=-5mA VO=-5V, IO=-5mA IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA VO(ON) IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA IO=-5mA, II=-0.25mA VO=-0.3V, IO=-20mA VO=-0.3V, IO=-20mA VO=-0.3V, IO=-20mA VI(ON) VO=-0.3V, IO=-20mA VO=-0.3V, IO=-2mA VO=-0.3V, IO=-2mA VO=-0.3V, IO=-1mA MIN. 33 20 33 30 24 33 62 -0.3 -0.5 -0.3 VI(OFF) VCC=-5V, IO=-100 A -0.3 -0.8 -1 -0.5 f T* VO=-10V, IO=-5mA II VI=-5V TYP. -0.1 -0.1 -0.1 -0.1 -0.1 -0.98 -1.83 -1.22 -1.76 -2 -3.9 -1.64 -0.63 -1.15 -0.67 -0.82 -1.68 -3.09 -1.17 250 MAX. -500 -0.3 -0.3 -0.3 -0.3 -0.3 -0.3 -0.3 -3 -3 -3 -2.5 -3 -5 -3 -7.2 -3.8 -3.8 -1.8 -0.88 -0.16 -0.15 mA MHz V V V UNIT nA
KRA116S KRA117S KRA118S DC Current Gain KRA119S KRA120S KRA121S KRA122S KRA116S KRA117S KRA118S Output Voltage KRA119S KRA120S KRA121S KRA122S KRA116S KRA117S KRA118S Input Voltage (ON) KRA119S KRA120S KRA121S KRA122S KRA116S KRA117S KRA118S Input Voltage (OFF) KRA119S KRA120S KRA121S KRA122S Transition Frequency KRA116S 122S
KRA116S KRA117S KRA118S Input Current KRA119S KRA120S KRA121S KRA122S Note : * Characteristic of Transistor Only.
2002. 7. 9
Revision No : 3
2/6
KRA116S~KRA122S
-100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1
KRA116S
I O - V I(ON)
OUTPUT CURRENT I O (mA) -100 -50 -30 -10 -5 -3 -1 -0.5 -0.3
KRA117S
I O - V I(ON)
Ta=100 C
Ta=25 C Ta=-25 C
Ta=25 C Ta=-25 C Ta=100 C
-0.5 -0.3 -0.1
VO =-0.2V
-0.3
-1
-3
-10
-0.1 -0.1
VO =-0.2V
-0.3
-1
-3
-10
INPUT ON VOLTAGE V I(ON) (V)
INPUT ON VOLTAGE V I(ON) (V)
-3k OUTPUT CURRENT I O (µA)
KRA116S
I O - V I(OFF)
-3k OUTPUT CURRENT I O (µA)
KRA117S
I O - V I(OFF)
-1k -500
Ta=25 C
-1k -500
Ta=25 C Ta=100 Ta=-25 C
Ta=-25 C
Ta=100
-300
-300
C
-100 -50 -30 0 -0.2 -0.4 -0.6
-100 -50 -30 0 -0.5
C
VO =-5V
VO =-5V
-0.8
-1.0
-1.2
-1.4
-1.0
-1.5
-2.0
-2.5
-3.0
INPUT OFF VOLTAGE V I(OFF) (V)
INPUT OFF VOLTAGE V I(OFF) (V)
200 DC CURRENT GAIN G I 100 50 30
KRA116S
GI - IO
100 DC CURRENT GAIN G I
C 100 Ta= 25 C Ta=
KRA117S
GI - IO
50 30
Ta =1 00 C
25 C Ta=-
10 5
Ta=25 C Ta=-25 C
10 -1 -3 -10 -30
VO =-5V
2 -100 -1 -3 -10 -30
VO =-5V
-100
OUTPUT CURRENT I O (mA)
OUTPUT CURRENT I O (mA)
2002. 7. 9
Revision No : 3
3/6
KRA116S~KRA122S
-100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1
KRA118S
I O - V I(ON)
-100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1
KRA119S
I O - V I(ON)
Ta=25 C Ta=-25 C Ta=100 C
Ta=25 C Ta=-25 C Ta=100 C
-0.5 -0.3 -0.1
VO =-0.2V
-0.3
-1
-3
-10
-0.5 -0.3 -0.1
VO =-0.2V
-0.3
-1
-3
-10
INPUT ON VOLTAGE V I(ON) (V)
INPUT ON VOLTAGE V I(ON) (V)
-3k OUTPUT CURRENT I O (µA) -1k -500
KRA118S
I O - V I(OFF)
-3k OUTPUT CURRENT I O (µA)
KRA119S
I O - V I(OFF)
-1k -500
0C Ta=10
Ta=-25 C
Ta=25 C
Ta=-25 C
-300
-300
C
-100 -50 -30 0 -0.2
Ta=100
-100 -50 -30 -0.2 -0.4 -0.6 -0.8 -1.0 -1.2
VO =-5V
VO =-5V
-0.4
-0.6
-0.8
-1.0
-1.2
-1.4
Ta=25
C
-1.4 -1.6
-1.8
INPUT OFF VOLTAGE V I(OFF) (V)
INPUT OFF VOLTAGE V I(OFF) (V)
200 DC CURRENT GAIN G I 100 50 30
KRA118S
GI - IO
200 DC CURRENT GAIN G I 100 50 30
KRA119S
GI - IO
00 =1 Ta
C
Ta=25 C Ta=-25 C
= Ta
10
0
C
Ta=25 C Ta=-25 C
10 -1 -3 -10 -30
VO =-5V
10 -100 -1 -3 -10 -30 OUTPUT CURRENT I O (mA)
VO =-5V
-100
OUTPUT CURRENT I O (mA)
2002. 7. 9
Revision No : 3
4/6
KRA116S~KRA122S
-100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1
KRA120S
I O - V I(ON)
-30 OUTPUT CURRENT IO (mA)
KRA121S
I O - V I(ON)
-10 -5 -3
Ta=100 C Ta=25 C Ta=-25 C
Ta=25 C Ta=-25 C Ta=100 C
-1 -0.5 -0.3 -1 -3 -5 -10
VO =-0.2V
-0.5 -0.3 -0.1
VO =-0.2V
-0.3
-1
-3
-10
-30
INPUT ON VOLTAGE V I(ON) (V)
INPUT ON VOLTAGE V I(ON) (V)
-3k OUTPUT CURRENT I O (µA)
KRA120S
I O - V I(OFF)
-3k OUTPUT CURRENT I O (µA)
KRA121S
I O - V I(OFF)
-1k -500
Ta=1 00 C
-1k -500
Ta= 100 C
Ta=25 C
5C
Ta=2
-100 -50 -30 -0.8 -1.2 -1.6 -2.0 -2.4
VO =-5V
-100 -50 -30 -1.0 -2.0
Ta=-2
Ta=2
5C
5C
-300
-300
VO =-5V
-2.8
-3.0
-4.0
-5.0
-6.0
INPUT OFF VOLTAGE V I(OFF) (V)
INPUT OFF VOLTAGE V I(OFF) (V)
GI - IO
300 DC CURRENT GAIN G I KRA120S 200 DC CURRENT GAIN G I 100 50 30
KRA121S
GI - IO
100 50 30
T 1 a= 00 C
Ta=25 C Ta=-25 C
= Ta
10
0
C
Ta=25 C Ta=-25 C
10 5 0.5
VO =-5V
10 -1 -3 -10 -30 OUTPUT CURRENT I O (mA)
VO =-5V
1
3
10
30
100
-100
OUTPUT CURRENT I O (mA)
2002. 7. 9
Revision No : 3
5/6
KRA116S~KRA122S
I O - V I(ON)
-100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1
KRA122S
Ta=25 C Ta=-25 C Ta=100 C
-0.5 -0.3 -0.1
VO =-0.2V
-0.3
-1
-3
-10
-30
-100
INPUT ON VOLTAGE V I(ON) (V)
-3k OUTPUT CURRENT I O (µA)
KRA122S
I O - V I(OFF)
-1k
00
-500 -300
C
C
=1
=2
Ta
-100 -50 -30 -0.6 -0.8 -1.0 -1.2 -1.4 -1.6
VO =-5V
Ta
Ta
=-
25
5
C
-1.8
-2.0
INPUT OFF VOLTAGE V I(OFF) (V)
GI - IO
1k DC CURRENT GAIN G I 500 300
00 C Ta=1
Ta=25 C Ta=-25 C
KRA122S
100 50
20 -1 -3 -10 -30 OUTPUT CURRENT I O (mA)
VO =-5V
-100
2002. 7. 9
Revision No : 3
6/6
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