ROHM DTB723YE

-200mA / -30V Low VCE (sat) Digital transistors
(with built-in resistors)
DTB723YE / DTB723YM
zDimensions (Unit : mm)
zApplications
Inverter, Interface, Driver
DTB723YE
0.7
1.6
0.55
0.3
zFeature
1) VCE (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.
(2)
1.6
0.8
(3)
0.2
0.1Min.
(1)
0.2
0.15
0.5 0.5
1.0
EMT3
JEITA No. (SC-75A)
JEDEC No. <SOT-416>
Each lead has same dimensions
Abbreviated symbol : M52
zStructure
PNP epitaxial plannar silicon transistor
(Resistor built-in type)
0.2
DTB723YM
1.2
0.32
0.8
1.2
(3)
(1)(2)
0.2
0.22
0.4 0.4
0.13
0.5
0.8
Each lead has same dimensions
Package
EMT3
VMT3
Packaging type
Taping
Taping
TL
T2L
3000
8000
Code
Basic ordering
unit (pieces)
(1) IN
(2) GND
(3) OUT
VMT3
zPackaging specifications
Part No.
(1) GND
(2) IN
(3) OUT
Abbreviated symbol : M52
−
DTB723YE
−
DTB723YM
zAbsolute maximum ratings (Ta=25°C)
Symbol
Parameter
zInner circuit
Limits
DTB723YE DTB723YM
Unit
VCC
−30
V
Input voltage
VIN
−15 to +5
V
GND(+)
∗1
IC (max)
−200
mA
Power dissipation
∗2
PD
150
mW
Junction temperature
Tj
150
C
Storage temperature
Tstg
−55 to +150
C
∗1 Characteristics of built-in transistor.
∗2 Each terminal mounted on a recommended land.
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IN
R2
Collector current
c 2009 ROHM Co., Ltd. All rights reserved.
○
OUT
R1
Supply voltage
OUT
IN
GND(+)
R1=2.2kΩ / R2=10kΩ
1/2
2009.10 - Rev.C
DTB723YE / DTB723YM
Data Sheet
zElectrical characteristics (Ta=25°C)
Parameter
Symbol
Min.
Typ.
Max.
VI(off)
−
−
−0.3
VI(on)
−2.5
−
−
VO(on)
−
−70
−300
mV
IO/II= −50mA / −2.5mA
II
−
−
−3.0
mA
VI= −5V
IO(off)
−
−
−500
nA
VCC= −30V, VI=0V
DC current gain
GI
140
−
−
−
Transition frequency ∗
fT
−
260
−
MHz
Input resistance
R1
1.54
2.2
2.86
kΩ
−
Resistance ratio
R2/R1
3.6
4.5
5.5
−
−
Input voltage
Output voltage
Input current
Output current
Unit
V
Conditions
VCC= −5V, IO= −100µA
VO= −0.3V, IO= −20mA
VO= −2V, IO= −100mA
VCE= −10V, IE=5mA, f=100MHz
∗ Characteristics of built-in transistor.
zElectrical characteristic curves
200
10
Ii=0.6mA
120
Ii=0.5mA
100
Ii=0.4mA
80
60
Ii=0.3mA
40
Ii=0.2mA
VCC =5V
(mA)
140
25℃
85℃
10
O
160
100
V0 =0.3V
Ta=-40℃
125℃
OUTPUT CURRENT : I
Ii=1.0mA
Ii=0.9mA
Ii=0.8mA
Ii=0.7mA
Ta=25℃
INPUT VOLTAGE : Vin (V)
OUTPUT CURRENT : IO (mA)
180
1
Ta=125℃
1
85℃
25℃
-40℃
0.1
20
0
0
0.5
1
1.5
2
Ii=0.1mA
Ii=0mA
0.01
0.1
1
OUTPUT VOLTAGE : VO (V)
100
1000
0
0.5
1
1.5
2
INPUT VOLTAGE : Vin(off) (V)
OUTPUT CURRENT : IO (mA)
Fig.2 Input Voltage vs. Output Current
Fig.1 Output Current vs. Output Voltage
Fig.3 Output Current vs. Input Voltage
1
1000
VO=5V
OUTPUT VOLTAGE : VO(on) (V)
Ta=125℃
85℃
DC CURENT GAIN : GI
10
25℃
100
-40℃
10
1
0.01
Ta=125℃
IO/II = 20/1
85℃
25℃
-40℃
0.1
0.01
0.1
1
10
100
1000
OUTPUT CURENT : IO (mA)
Fig.4 DC Current Gain vs. Output Current
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c 2009 ROHM Co., Ltd. All rights reserved.
○
1
10
100
1000
OUTPUT CURRENT : IO (mA)
Fig.5 Output Voltage vs. Output Current
2/2
2009.10 - Rev.C
Notice
Notes
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which can be obtained from ROHM upon request.
Examples of application circuits, circuit constants and any other information contained herein
illustrate the standard usage and operations of the Products. The peripheral conditions must
be taken into account when designing circuits for mass production.
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However, should you incur any damage arising from any inaccuracy or misprint of such
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The technical information specified herein is intended only to show the typical functions of and
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