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Электронный компонент: UMD12N

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EMD12 / UMD12N
Transistors
Rev.A
1/3
Power management
(dual digital transistors)
EMD12 / UMD12N

Features
1) Both the DTA144E and DTC144E in a EMT or UMT
package.

Equivalent circuit
(4)
(5)
(6)
(1)
(2)
(3)
R
1
DTr2
DTr1
R
2
R
2
R
1
R
1
=
47k
R
2
=
47k

Package, marking, and packaging specifications
Type
EMD12
EMT6
D12
T2R
8000
UMD12N
UMT6
D12
TR
3000
Package
Marking
Code
Basic ordering unit (pieces)
Absolute maximum ratings (Ta=25
C)
Parameter
1 120mW per element must not be exceeded.
PNP type negative symbols have been omitted
Symbol
V
CC
V
IN
I
O
I
C
Pd
Tj
Tstg
Limits
50
40
-
10
100
30
150(TOTAL)
150
-
55
~
+
150
Unit
V
V
mA
mA
mW
1
C
C
Supply voltage
Input voltage
Output current
Power dissipation
Junction temperature
Storage temperature
External dimensions (Units : mm)
Each lead has same dimensions
ROHM : EMT6
EMD12
UMD12N
Each lead has same dimensions
ROHM : UMT6
EIAJ : SC-88
0~0.1
( 6
)
2.0
1.3
0.9
0.15
0.7
0.1Min.
2.1
0.65
0.2
1.25
( 1
)
0.65
( 4
)
( 3
)
( 2
)
( 5
)
0.22
1.2
1.6
(1)
(2)
(5)
(3)
(6)
(4)
0.13
0.5
0.5
0.5
1.0
1.6

Electrical characteristics (Ta=25
C)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Conditions
Input resistance
V
I (off)
V
I (on)
V
O (on)
I
I
I
O (off)
G
I
f
T
R
1
-
3
-
-
-
68
32.9
0.8
-
-
0.1
-
-
-
47
-
-
1
0.5
-
0.3
0.18
0.5
-
61.1
1.2
V
V
V
mA
A
-
MHz
k
R
2
/
R
1
-
250
-
-
V
CC
=
5/
-
5V, I
O
=
100/
-
100
A
V
O
=
0.3/
-
0.3V, I
O
=
2/
-
2mA
I
O
=
10/
-
10mA, I
I
=
0.5/
-
0.5mA
V
I
=
5/
-
5V
V
CC
=
50/
-
50V, V
I
=
0V
I
O
=
5/
-
5mA, V
O
=
5/
-
5V
V
CE
=
10/
-
10V, I
E
=-
5/5mA, f
=
100MHz
Transition frequency of the device. PNP type negative symbols have been omitted
Input voltage
Output voltage
Input current
Output current
DC current gain
Transition frequency
Resistance ratio
EMD12 / UMD12N
Transistors
Rev.A
2/3

Electrical characteristics curves DTr1 (DTC144E)
V
O
=
0.3V
100
200
500
1m
2m
5m 10m 20m
50m 100m
100
50
20
10
5
2
1
500m
200m
100m
INPUT VOLTAGE : V
I(on)
(V)
OUTPUT CURRENT : I
O
(A)
Fig.1 Input voltage vs. output current
(ON characteristics)
25
C
100
C
Ta
=-
40
C
V
CC
=
5V
0.5
1.0
1.5
2.0
2.5
3.0
0
10m
5m
2m
1m
500
200
100
50
20
10
5
1
2
INPUT VOLTAGE : V
I(off)
(V)
OUTPUT CURRENT : Io
(A)
Ta
=
100
C
25
C
-
40
C
Fig.2 Output current vs. input voltage
(OFF characteristics)
OUTPUT CURRENT : I
O
(A)
DC CURRENT GAIN : G
I
V
O
=
5V
100
200
500
1m
2m
5m 10m 20m
50m 100m
1k
500
200
100
50
20
10
5
2
1
Fig.3 DC current gain vs. output
current
Ta
=
100
C
25
C
-
40
C

100
200
500
1m
2m
5m 10m 20m
50m 100m
1
500m
200m
100m
50m
20m
10m
5m
2m
1m
l
O
/l
I
=
20
OUTPUT CURRENT : I
O
(A)
OUTPUT VOLTAGE : V
O(on)
(V)
Fig.4 Output voltage vs. output
current
Ta
=
100
C
25
C
-
40
C















EMD12 / UMD12N
Transistors
Rev.A
3/3

Electrical characteristics curves DTr2 (DTA144E)
V
O
=
0.3V
100
200
500
1m
2m
5m 10m 20m
50m 100m
100
50
20
10
5
2
1
500m
200m
100m
INPUT VOLTAGE : V
I(on)
(V)
OUTPUT CURRENT : I
O
(A)
Fig.1 Input voltage vs. output current
(ON characteristics)
25
C
100
C
Ta
=-
40
C
V
CC
=
5V
0.5
1.0
1.5
2.0
2.5
3.0
0
10m
5m
2m
1m
500
200
100
50
20
10
5
1
2
INPUT VOLTAGE : V
I(off)
(V)
OUTPUT CURRENT : Io
(A)
Ta
=
100
C
25
C
-
40
C
Fig.2 Output current vs. input voltage
(OFF characteristics)
OUTPUT CURRENT : I
O
(A)
DC CURRENT GAIN : G
I
V
O
=
5V
100
200
500
1m
2m
5m 10m 20m
50m 100m
1k
500
200
100
50
20
10
5
2
1
Fig.3 DC current gain vs. output
current
Ta
=
100
C
25
C
-
40
C

100
200
500
1m
2m
5m 10m 20m
50m 100m
1
500m
200m
100m
50m
20m
10m
5m
2m
1m
l
O
/l
I
=
20
OUTPUT CURRENT : I
O
(A)
OUTPUT VOLTAGE : V
O(on)
(V)
Fig.4 Output voltage vs. output
current
Ta
=
100
C
25
C
-
40
C
Appendix
Appendix1-Rev1.1


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appliances and electronic toys).
Should you intend to use these products with equipment or devices which require an extremely high level of
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means without prior permission of ROHM CO.,LTD.
The contents described herein are subject to change without notice. The specifications for the
product described in this document are for reference only. Upon actual use, therefore, please request
that specifications to be separately delivered.
Application circuit diagrams and circuit constants contained herein are shown as examples of standard
use and operation. Please pay careful attention to the peripheral conditions when designing circuits
and deciding upon circuit constants in the set.
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