KEC KRA742E, KRA741E, KRA740E, KRA739E, KRA737E Datasheet

...
2002. 7. 9 1/6
SEMICONDUCTOR
TECHNICAL DATA
KRA736E~KRA742E
EPITAXIAL PLANAR PNP TRANSISTOR
Revision No : 2
SWITCHING APPLICATION. INTERFACE CIRCUIT AND DRIVER CIRCUIT APPLICATION
FEATURES
With Built-in Bias Resistors. Simplify Circuit Design. Reduce a Quantity of Parts and Manufacturing Process.
EQUIVALENT CIRCUIT
MAXIMUM RATING (Ta=25 )
MARK SPEC
TYPE NO.
R1(k ) R2(k ) KRA736E 1 10 KRA737E 2.2 2.2 KRA738E 2.2 10 KRA739E 4.7 10 KRA740E 10 4.7 KRA741E 47 10 KRA742E 100 100
CHARACTERISTIC SYMBOL RATING UNIT
Output Voltage
KRA736E 742E
V
O
-50 V
Input Voltage
KRA736E
V
I
-10, 5
V
KRA737E -12, 10 KRA738E -12, 5 KRA739E -20, 7 KRA740E -30, 10 KRA741E -40, 15 KRA742E -40, 10
Output Current
KRA736E 742E
I
O
-100 mA
Power Dissipation
PD *
200 mW
Junction Temperature
T
j
150
Storage Temperature Range
T
stg
-55 150
TYPE KRA736E KRA737E KRA738E KRA739E KRA740E KRA741E KRA742E
MARK J2 J4 J5 J6 J7 J8 J9
EQUIVALENT CIRCUIT (TOP VIEW)
BIAS RESISTOR VALUES
* : Total Rating.
Marking
OUT
R1
IN
R2
COMMON(+)
B
B1
1
C
A
A1
2
C
3
P
H
1. Q COMMON (EMITTER)
1
2. Q COMMON (EMITTER)
2
3. Q IN (BASE)
2
4. Q OUT (COLLECTOR)
2
5. Q IN (BASE)
1
6. Q OUT (COLLECTOR)
1
6
DIM MILLIMETERS
5
D
4
P
J
_
A
1.6 0.05
+ _
A1
1.0 0.05
+ _
1.6 0.05
+
B
_
B1
1.2 0.05
+
C
0.50 _
+
0.2 0.05
D
_ +
0.5 0.05
H
_ +
0.12 0.05
J
P5
TES6
65 4
Q1
1
23
Q2
6
Type Name
54
123
2002. 7. 9 2/6
KRA736E~KRA742E
Revision No : 2
ELECTRICAL CHARACTERISTICS (Ta=25 )
Note : * Characteristic of Transistor Only.
CHARACTERISTIC SYMBOL TEST CONDITION MIN. TYP. MAX. UNIT
Output Cut-off Current
KRA736E 742E
I
O(OFF)
VO=-50V, VI=0
- - -500 nA
DC Current Gain
KRA736E
G
I
VO=-5V, IO=-5mA
33 - -
KRA737E
VO=-5V, IO=-20mA
20 - -
KRA738E
VO=-5V, IO=-10mA
33 - -
KRA739E
VO=-5V, IO=-10mA
30 - -
KRA740E
VO=-5V, IO=-10mA
24 - -
KRA741E
VO=-5V, IO=-5mA
33 - -
KRA742E
VO=-5V, IO=-5mA
62 - -
Output Voltage
KRA736E
V
O(ON)
IO=-10mA, II=-0.5mA
- - -0.3
V
KRA737E
IO=-10mA, II=-0.5mA
- -0.1 -0.3
KRA738E
IO=-10mA, II=-0.5mA
- - -0.3
KRA739E
IO=-10mA, II=-0.5mA
- -0.1 -0.3
KRA740E
IO=-10mA, II=-0.5mA
- -0.1 -0.3
KRA741E
IO=-10mA, II=-0.5mA
- -0.1 -0.3
KRA742E
IO=-5mA, II=-0.25mA
- -0.1 -0.3
Input Voltage (ON)
KRA736E
V
I(ON)
VO=-0.3V, IO=-20mA
- -0.98 -3
V
KRA737E
VO=-0.3V, IO=-20mA
- -1.83 -3
KRA738E
VO=-0.3V, IO=-20mA
- -1.22 -3
KRA739E
VO=-0.3V, IO=-20mA
- -1.76 -2.5
KRA740E
VO=-0.3V, IO=-2mA
- -2 -3
KRA741E
VO=-0.3V, IO=-2mA
- -3.9 -5
KRA742E
VO=-0.3V, IO=-1mA
- -1.64 -3
Input Voltage (OFF)
KRA736E
V
I(OFF)
VCC=-5V, IO=-100 A
-0.3 -0.63 -
V
KRA737E -0.5 -1.15 ­KRA738E -0.3 -0.67 ­KRA739E -0.3 -0.82 ­KRA740E -0.8 -1.68 ­KRA741E -1 -3.09 ­KRA742E -0.5 -1.17 -
Transition Frequency
KRA736E 742E
fT* VO=-10V, IO=-5mA
- 250 - MHz
Input Current
KRA736E
I
I
VI=-5V
- - -7.2
mA
KRA737E - - -3.8 KRA738E - - -3.8 KRA739E - - -1.8 KRA740E - - -0.88 KRA741E - - -0.16 KRA742E - - -0.15
2002. 7. 9 3/6
KRA736E~KRA742E
Revision No : 2
KRA736E
-100
-50
-30
O
-10
-5
-3
Ta=100 C
-1
OUTPUT CURRENT I (mA)
-0.5
-0.3
-0.1 -0.3 -1 -3
INPUT ON VOLTAGE V (V)
KRA736E
-3k
I - V
O
I - V
O
I(ON)
Ta=25 C
Ta=-25 C
I(OFF)
I(ON)
V =-0.2V
O
-10
KRA737E
-100
-50
-30
O
-10
-5
-3
-1
Ta=100 C
-0.5
-0.3
OUTPUT CURRENT I (mA)
-0.1
-0.1
-0.3
INPUT ON VOLTAGE V (V)
KRA737E
-3k
I - V
O
-1
I - V
O
I(ON)
I(OFF)
Ta=25 C
Ta=-25 C
-3
I(ON)
V =-0.2V
O
-10
OUTPUT CURRENT I (µA)
OUTPUT CURRENT I (µA)
-1k
O
-500
-300
a=25 C
T
-100
Ta=100 C
-50
-30
-0.5 -2.0-1.5 -2.5
INPUT OFF VOLTAGE V (V)
KRA737E
100
I
50
Ta=-25 C
G - I
I
V =-5V
O
-3.0-1.00
I(OFF)
O
30
Ta=100 C
10
Ta=25 C
Ta=-25 C
-1k
O
-500
-300
Ta=100 C
Ta=25 C
G - I
I
Ta=100 C
Ta=-25 C
O
Ta=25 C
Ta=-25 C
I(OFF)
V =-5V
O
-100
-50
-30 0
-0.2 -0.4 -0.6 -0.8 -1.0 -1.2 -1.4
INPUT OFF VOLTAGE V (V)
KRA736E
200
I
100
50
30
DC CURRENT GAIN G
V =-5V
10
-1 -3
OUTPUT CURRENT I (mA)
-10 -30 -100
O
O
DC CURRENT GAIN G
5
V =-5V
2
-3-1
OUTPUT CURRENT I (mA)
-10 -30 -100
O
O
2002. 7. 9 4/6
KRA736E~KRA742E
Revision No : 2
KRA738E
-100
-50
-30
O
-10
-5
-3
Ta=100 C
-1
OUTPUT CURRENT I (mA)
-0.5
-0.3
-0.1
-0.3
INPUT ON VOLTAGE V (V)
KRA738E
-3k
I - V
O
-1 -3
I - V
O
I(ON)
Ta=25 C
Ta=-25 C
I(OFF)
I(ON)
V =-0.2V
O
-10
KRA739E
-100
-50
-30
O
-10
-5
-3
Ta=100 C
-1
OUTPUT CURRENT I (mA)
-0.5
-0.3
-0.1
-0.3
INPUT ON VOLTAGE V (V)
KRA739E
-3k
I - V
O
-1 -3
I - V
O
I(ON)
I(OFF)
Ta=25 C
Ta=-25 C
I(ON)
V =-0.2V
O
-10
OUTPUT CURRENT I (µA)
-1k
O
-500
-300
25 C
-
a=
Ta=25 C
-100
-50
-30
Ta=100 C
0
-0.2
-0.4
INPUT OFF VOLTAGE V (V)
G - I
T
V =-5V
O
-0.8-0.6
-1.0
I(OFF)
O
I
-1.4
KRA738E
200
I
100
50
30
Ta=100 C
Ta=25 C
Ta=-25 C
OUTPUT CURRENT I (µA)
-1k
O
-500
-300
Ta=25 C
Ta=100 C
Ta=-25 C
-100
-50
-30
-0.4
-0.2 -0.8-0.6
-1.0
-1.2
INPUT OFF VOLTAGE V (V)
KRA739E
G - I
200
I
100
C
50
30
Ta=100
I
O
Ta=25 C
a=-25 C
T
-1.4
I(OFF)
V =-5V
O
-1.6 -1.8-1.2
DC CURRENT GAIN G
V =-5V
10
-3-1
OUTPUT CURRENT I (mA)
-10 -30 -100
O
O
DC CURRENT GAIN G
10
-3-1
OUTPUT CURRENT I (mA)
-10 -30 -100
O
V =-5V
O
2002. 7. 9 5/6
KRA736E~KRA742E
Revision No : 2
KRA740E
-100
-50
-30
O
-10
-5
-3
-1
OUTPUT CURRENT I (mA)
-0.5
-0.3
-0.1
-0.3
INPUT ON VOLTAGE V (V)
KRA740E
-3k
I - V
O
Ta=100 C
I(ON)
-1 -3 -10
I(ON)
I - V
I(OFF)
O
Ta=25 C Ta=-25 C
V =-0.2V
O
KRA741E
-30
-10
O
-5
-3
-1
Ta=100 C
OUTPUT CURRENT I (mA)
-0.5
-0.3
INPUT ON VOLTAGE V (V)
KRA741E
-3k
I - V
O
-3-1
I - V
O
I(ON)
Ta=25 C
Ta=-25 C
-5 -10 -30
I(ON)
I(OFF)
V =-0.2V
O
OUTPUT CURRENT I (µA)
OUTPUT CURRENT I (µA)
-1k
O
-500
-300
Ta=25 C
-100
Ta=100 C
-50
-30
-2.0 -6.0
-3.0-1.0
INPUT OFF VOLTAGE V (V)
G - I
KRA741E
200
I
100
50
a=100 C
T
30
I
Ta=25 C
a=-25 C
T
Ta=-25 C
-4.0 -5.0
I(OFF)
O
V =-5V
O
-1k
O
-500
-300
Ta=100 C
Ta=25 C
Ta=-25 C
-100
-50
-30
-1.2
-1.6-0.8
INPUT OFF VOLTAGE V (V)
G - I
KRA740E
300
I
O
I
V =-5V
O
-2.4-2.0 -2.8
I(OFF)
100
50
30
Ta=100 C
Ta=25 C
Ta=-25 C
DC CURRENT GAIN G
10
5
0.5 1 3 10
OUTPUT CURRENT I (mA)
O
V =-5V
O
30 100
DC CURRENT GAIN G
10
-3-1
OUTPUT CURRENT I (mA)
-10 -30 -100
O
V =-5V
O
2002. 7. 9 6/6
KRA736E~KRA742E
Revision No : 2
KRA742E
-100
-50
-30
O
-10
-5
-3
Ta=100 C
-1
OUTPUT CURRENT I (mA)
-0.5
-0.3
-0.1 -0.3 -1 -3
INPUT ON VOLTAGE V (V)
KRA742E
-3k
I - V
O
I - V
O
I(ON)
Ta=25 C
Ta=-25 C
I(OFF)
-10
I(ON)
V =-0.2V
O
-30 -100
OUTPUT CURRENT I (µA)
-1k
O
-500
-300
Ta=100 C
Ta=25 C
Ta=-25 C
-100
-50
-30
-1.0-0.6
-0.8 -1.4-1.2 -1.6
INPUT OFF VOLTAGE V (V)
G - I
KRA742E
1k
I
500
O
I
I(OFF)
V =-5V
O
-1.8
-2.0
300
Ta=100 C
Ta=25 C
100
Ta=-25 C
DC CURRENT GAIN G
50
V =-5V
20
-3-1
OUTPUT CURRENT I (mA)
-10 -30 -100
O
O
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