ROHM DTA144VKA

DTA144VUA / DTA144VKA / DTA144VSA
Transistors
Digital transistor (built-in resistors)
DTA144VUA / DTA144VKA / DTA144VSA
!External dimensions (Units : mm)
2.0
0.9
(1) Emitter(Source)
(2) Base(Gate)
(3) Collector(Drain)
0to0.1
ROHM : UMT3
EIAJ : SC-70
0.7
0.15
0.2
2.1
0.1to0.4
Each lead has same dimensions
(3)
(2)
0.95 0.95
1.9
2.9
(1)
DTA144VKA
1.6
ROHM : SMT3
EIAJ : SC-59
R2
0.8
0to0.1
OUT
0.3to0.6
1.1
2.8
0.15
R1
1.3
(2)
(3)
0.3
1.25
!Equivalent circuit
IN
0.65 0.65
(1)
DTA144VUA
0.4
!Features
1) Built-in bias resistors enable the configuration of an
inverter circuit without connecting external input
resistors.
2) The bias resistors consist of thin-film resistors with
complete isolation to allow positive biasing of the input,
and parasitic effects are almost completely eliminated.
3) Only the on / off conditions need to be set for
operation, making device design easy.
4) Higher mounting densities can be achieved.
(1) Emitter(Source)
(2) Base(Gate)
(3) Collector(Drain)
Each lead has same dimensions
GND(+)
IN
OUT
DTA144VSA
4
2
(15Min.)
3Min.
3
GND(+)
0.45
2.5
0.5 0.45
5
ROHM : SPT
EIAJ : SC-72
Symbol
Limits
Unit
Type
DTA144VUA
DTA144VKA
DTA144VSA
VCC
VI
−50
−40~+15
V
V
Package
Marking
UMT3
156
mA
Packaging code
Basic ordering unit (pieces)
T106
3000
SMT3
E56
T146
3000
SPT
−
TP
5000
Supply voltage
Input voltage
IO
−30
IC(Max.)
−10
200
300
Output current
DTA144VUA / DTA144VKA
Power
dissipation DTA144VSA
Pd
Junction temperature
Tj
150
°C
Storage temperature
Tstg
−55~+150
°C
mW
!Electrical characteristics (Ta = 25°C)
Parameter
Input voltage
Output voltage
Input current
Output current
DC current gain
Input resistance
Resistance ratio
Transition frequency
∗ Transition frequency of the device.
Symbol
Typ.
Max.
VI(off)
−
−
−1
VI(on)
VO(on)
−6
−
−
−
−
−0.1
−
−
−
−0.3
−0.16
−0.5
33
32.9
−
47
−
61.1
−
kΩ
0.17
−
0.21
250
0.26
−
−
MHz
II
IO(off)
GI
R1
R2/R1
fT
Taping specifications
!Packaging, marking and packaging specifications
!Absolute maximum ratings (Ta = 25°C)
Parameter
(1) (2) (3)
(1) Emitter
(2) Collector
(3) Base
Min.
Unit
V
V
mA
µA
Conditions
VCC=−5V , IO=−100µA
VO=−0.3V , IO=−2mA
IO=−10mA , II=−0.5mA
VI=−5V
VCC=−50V , VI=0V
IO=−5mA , VO=−5V
−
−
VCE=−10V , IE=5mA , f=100MHz
∗