EMD22 ROHM Electronics, EMD22 Datasheet

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EMD22

Manufacturer Part Number
EMD22
Description
General Purpose (dual Digital Transistors)
Manufacturer
ROHM Electronics
Datasheet

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Transistors
General purpose
(dual digital transistors)
EMD22 / UMD22N
1) Both the DTA143Z chip and DTC143Z chip in an EMT
2) Mounting possible with EMT3 or UMT3 automatic
3) Transistor elements are independent, eliminating
4) Mounting cost and area can be cut in half.
A PNP and NPN digital transistor
(each with a single built in resistor)
Supply voltage
Input voltage
Output current
Power dissipation
Junction temperature
Storage temperature
Supply voltage
Input voltage
Output current
Power dissipation
Junction temperature
Storage temperature
120mW per element must not be exceeded
120mW per element must not be exceeded
Features
Structure
Absolute maximum ratings (Ta=25°C)
or UMT package.
mounting machines.
interference.
Parameter
Parameter
Symbol
Symbol
I
I
C (MAX)
Tstg
C (MAX)
Tstg
V
V
Pd
V
V
Pd
I
Tj
I
Tj
CC
O
IN
CC
O
IN
−55 to +150
−55 to +150
−5 to +30
−30 to +5
DTr 1
DTr 2
−100
−100
100
100
150
150
50
−50
150
150
Unit
mW
mA
Unit
mW
°C
°C
mA
V
V
°C
°C
V
V
External dimensions (Unit : mm)
Equivalent circuit
R
R
EMD22 / UMD22N
EMD22
ROHM : EMT6
1
2
UMD22N
=4.7kΩ
=47kΩ
ROHM : UMT6
EIAJ : SC-88
Abbreviated symbol : D22
0.1Min.
Abbreviated symbol : D22
DTr2
( 4 )
( 5 )
( 6 )
(3)
(4)
1.25
1.2
1.6
2.1
R2
Each lead has same dimensions
Each lead has same dimensions
R1
( 3 )
( 2 )
( 1 )
EMD22 / UMD22N
(2)
(5)
R1
R2
(1)
DTr1
(6)
Rev.A
1/3

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EMD22 Summary of contents

Page 1

... Pd Junction temperature Tj −55 to +150 Storage temperature Tstg ∗ 120mW per element must not be exceeded External dimensions (Unit : mm) EMD22 ROHM : EMT6 UMD22N ROHM : UMT6 EIAJ : SC-88 Equivalent circuit DTr 1 Unit EMD22 / UMD22N 100 mA 100 ∗ 150 mW °C 150 °C R =4.7kΩ =47kΩ ...

Page 2

... 3.29 4.7 6.11 kΩ 1 − − − f 250 MHz V =− 10V 3000 EMD22 / UMD22N Conditions = 100µ 5mA 10mA O − − ∗ − = 5mA 100MHz E Conditions =− 100µA O =− 5mA =− 10mA O − ...

Page 3

... OUTPUT CURRENT : I O Fig.8 Output voltage vs. output current EMD22 / UMD22N 1k = 500 Ta=100°C 25°C 200 −40°C 100 100µ 200µ ...

Page 4

Appendix No technical content pages of this document may be reproduced in any form or transmitted by any means without prior permission of ROHM CO.,LTD. The contents described herein are subject to change without notice. The specifications for the product ...

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