-200mA / -30V Low V
CE
(sat) Digital transistors
(with built-in resistors)
DTB723YE / DTB723YM
Applications
Inverter, Interface, Driver
Feature
1) V
CE
(sat) is lower than conventional products.
2) Built-in bias resistors enable the configuration of
an inverter circuit without connecting external input resistors
(see equivalent circuit).
3) The bias resistors consist of thin-film resistors
with complete isolation to allow positive biasing of the input.
They also have the advantage
of almost completely eliminating parasitic effects.
4) Only the on / off conditions need to be set for operation,
making the device design easy.
Structure
PNP epitaxial plannar silicon transistor
(Resistor built-in type)
Packaging specifications
Package
Packaging type
Code
Part No.
DTB723YE
DTB723YM
−
Basic ordering
unit (pieces)
EMT3
Taping
TL
3000
VMT3
Taping
T2L
8000
−
VMT3
Each lead has same dimensions
Dimensions
(Unit : mm)
DTB723YE
1.6
0.3
(3)
0.7
0.55
0.8
(2)
(1)
1.6
0.2
0.5 0.5
1.0
EMT3
JEITA No. (SC-75A)
JEDEC No. <SOT-416>
0.2
0.15
0.1Min.
0.13
(1) GND
(2) IN
(3) OUT
Each lead has same dimensions
Abbreviated symbol : M52
DTB723YM
0.2
0.8
1.2
0.22
(1)(2)
1.2
0.32
(3)
0.4 0.4
0.8
0.5
(1) IN
(2) GND
(3) OUT
Abbreviated symbol : M52
Absolute maximum ratings
(Ta=25°C)
Parameter
Supply voltage
Input voltage
Collector current
Power dissipation
Junction temperature
Storage temperature
∗1
∗2
Inner circuit
Limits
Unit
R
1
OUT
Symbol
V
CC
V
IN
I
C (max)
P
D
Tj
Tstg
DTB723YE DTB723YM
−30
−15
to
+5
−200
150
150
−55
to
+150
V
V
IN
R
2
GND(+)
mA
mW
C
C
IN
GND(+)
OUT
∗1
Characteristics of built-in transistor.
∗2
Each terminal mounted on a recommended land.
R
1
=2.2kΩ / R
2
=10kΩ
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c
○
2009 ROHM Co., Ltd. All rights reserved.
0.2
1/2
2009.10 - Rev.C
DTB723YE / DTB723YM
Electrical characteristics
(Ta=25°C)
Parameter
Input voltage
Output voltage
Input current
Output current
DC current gain
Transition frequency
∗
Input resistance
Resistance ratio
∗
Characteristics of built-in transistor.
Data Sheet
Symbol
V
I(off)
V
I(on)
V
O(on)
I
I
I
O(off)
G
I
f
T
R
1
R
2
/R
1
Min.
−
−2.5
−
−
−
140
−
1.54
3.6
Typ.
−
−
−70
−
−
−
260
2.2
4.5
Max.
−0.3
−
−300
−3.0
−500
−
−
2.86
5.5
Unit
V
mV
mA
nA
−
MHz
kΩ
−
Conditions
V
CC
=
−5V,
I
O
=
−100µA
V
O
=
−0.3V,
I
O
=
−20mA
I
O
/I
I
=
−50mA
/
−2.5mA
V
I
=
−5V
V
CC
=
−30V,
V
I
=0V
V
O
=
−2V,
I
O
=
−100mA
V
CE
=
−10V,
I
E
=5mA, f=100MHz
−
−
Electrical characteristic curves
200
180
OUTPUT CURRENT : IO (mA)
160
140
120
100
80
60
40
20
0
0
0.5
1
1.5
2
OUTPUT VOLTAGE : V
O
(V)
Fig.1 Output Current vs. Output Voltage
Ii=0.1mA
Ii=0mA
Ii=0.5mA
Ii=0.4mA
Ii=0.3mA
Ii=0.2mA
Ta=25℃
Ii=1.0mA
Ii=0.9mA
Ii=0.8mA
Ii=0.7mA
Ii=0.6mA
10
Ta=
-
40
℃
INPUT VOLTAGE : Vin (V)
V
0
=0.3V
(mA)
100
V
CC
=5V
10
25
℃
85
℃
125
℃
1
OUTPUT CURRENT : I
O
1
Ta=125
℃
85
℃
25
℃
-
40
℃
0.1
0.1
1
10
100
1000
OUTPUT CURRENT : I
O
(mA)
Fig.2 Input Voltage vs. Output Current
0.01
0
0.5
1
1.5
2
INPUT VOLTAGE : Vin(off) (V)
Fig.3 Output Current vs. Input Voltage
1000
OUTPUT VOLTAGE : V
O
(on) (V)
Ta=125
℃
85
℃
DC CURENT GAIN : G
I
25
℃
100
-
40
℃
V
O
=5V
1
Ta=125
℃
85
℃
25
℃
-
40
℃
0.1
I
O
/I
I
= 20/1
10
1
0.01
0.01
0.1
1
10
100
1000
1
10
100
1000
OUTPUT CURENT : I
O
(mA)
OUTPUT CURRENT : I
O
(mA)
Fig.5 Output Voltage vs. Output Current
Fig.4 DC Current Gain vs. Output Current
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c
○
2009 ROHM Co., Ltd. All rights reserved.
2/2
2009.10 - Rev.C
Notice
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