DTA143EKAT146;DTA143EETL;DTA143EMT2L;DTA143EKAT246;DTA143EUAT106;中文规格书,Datasheet资料

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IN GND(+)
OUT
Packaging specifications Part No. DTA143EM DTA143EEB DTA143EE DTA143EUB DTA143EUA DTA143EKA Package VMT3 EMT3F EMT3 UMT3F UMT3 SMT3 Package size (mm) 1212 1616 1616 2021 2021 2928 Taping code T2L TL TL TL T106 T146 Basic Reel size Tape width ordering (mm) (mm) unit (pcs) 180 180 180 180 180 180 8 8 8 8 8 8 8,000 3,000 3,000 3,000 3,000 3,000 Marking 13 13 13 13 13 13
© 2012 ROHM Co., Ltd. All rights reserved.
2/10
2012.03 - Rev.A
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DTA143E series
Electrical characteristic curves(Ta = 25°C)
Data Sheet
Fig.1 Input voltage vs. output current (ON characteristics)
−100 −50 VO= −0.3V
Fig.2 Output current vs. input voltage (OFF characteristics)
−10m −5m −2m Ta=100°C 25°C −40°C VCC= −5V
−1m −500μ −200μ −100μ −50μ −20μ −10μ −5μ −2μ −1μ 0
−0.5
−1.0
−1.5
−2.0
−2.5
−3.0
OUTPUT CURRENT : IO [A]
INPUT VOLTAGE : VI(off)[V]
Fig.3 Output current vs. output voltage
Min. 3 30 3.29 0.8 -
Typ. 0.1 4.7 1 250
Max. 0.5 0.3 1.8 0.5 6.11 1.2 -
Unit V V mA A k MHz
*1 Characteristics of built-in transistor *2 Each terminal mounted on a reference footprint
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2012.03 - Rev.A
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DTA143E series
Electrical characteristic curves(Ta = 25°C)
Data Sheet
Fig.5 Output voltage vs. output current
−1 −500m Ta=100°C 25°C −40°C lO/lI=20
VCC.7k 4.7k
EMT3
DTA143EM (SC-105AA)
UMT3F OUT IN GND
DTA143EEB (SC-89)
OUT IN GND
Features 1) Built-In Biasing Resistors, R1 = R2 = 4.7k. 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 negative biasing of the input. They also have the advantage of completely eliminating parasitic effects. 4) Only the on/off conditions need to be set for operation, making the circuit design easy. 5) Complementary NPN Types :DTC143E series 6) Lead Free/RoHS Compliant. Application Switching circuit, Inverter circuit, Interface circuit, Driver circuit
-60
350μA 300μA
-40
250μA
-20
200μA 150μA 0A
0 0 -5
-10
1 −100μ −200μ −500μ −1m
−2m
−5m −10m −20m
−50m −100m
OUTPUT VOLTAGE : VO [V]
OUTPUT CURRENT : IO [A]
© 2012 ROHM Co., Ltd. All rights reserved.
DTA143E series
PNP -100mA -50V Digital Transistors (Bias Resistor Built-in Transistors)
Outline Parameter Value
VMT3 OUT IN GND IN GND EMT3F OUT
Datasheet
DIM A A1 b b1 c D E e HE L Lp x DIM e1 b2 b3 l1 MILIMETERS MIN MAX 0.45 0.55 0.00 0.10 0.17 0.27 0.27 0.37 0.08 0.18 1.10 1.30 0.70 0.90 0.40 1.10 1.30 0.10 0.30 0.20 0.40 0.10 MILIMETERS MIN MAX 0.80 0.37 0.47 0.50 INCHES MIN 0.018 0 0.007 0.011 0.003 0.043 0.028 0.02 0.043 0.004 0.008 INCHES MIN 0.03 0.015 0.019 0.02 MAX 0.051 0.004 MAX 0.022 0.004 0.011 0.015 0.007 0.051 0.035
© 2012 ROHM Co., Ltd. All rights reserved.
1/10
2012.03 - Rev.A
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DTA143E series
Absolute maximum ratings (Ta = 25C) Parameter Supply voltage Input voltage Output current Collector current Power dissipation DTA143EM DTA143EEB DTA143EE DTA143EUB DTA143EUA DTA143EKA Junction temperature Range of storage temperature Electrical characteristics(Ta = 25C) Parameter Input voltage Output voltage Input current Output current DC current gain Input resistance Resistance ratio Transition frequency Symbol VI(off) VI(on) VO(on) II IO(off) GI R1 R2/R1 fT
Data Sheet
EMT3F
D
A
x
S A
b e
HE
E
c
e
A2
A
A1
S
l1
b2
Patterm of terminal position areas
MILIMETERS MIN MAX 0.65 0.85 0.00 0.10 0.60 0.80 0.21 0.36 0.08 0.18 1.50 1.70 0.76 0.96 0.50 1.50 1.70 0.37 0.35 0.55 0.10 MILIMETERS MIN MAX 1.05 0.46 0.65 INCHES MIN 0 0.024 0.008 0.003 0.059 0.03 0.02 0.059 0.015 0.014 INCHES MIN MAX 0.041 0.018 0.026 0.022 0.004 0.067 MAX 0.004 0.031 0.014 0.007 0.067 0.038
-100 Ta=25ºC
II= 550μA 500μA 450μA 400μA
Fig.4 DC current gain vs. output current
1k 500 VO= −5V
OUTPUT CURRENT : IO [mA]
-80
DC CURRENT GAIN : GI
200 100 50 20 10 5 2 Ta=100°C 25°C −40°C
DTA143EE SOT-416 (SC-75A)
UMT3 OUT IN GND SMT3
DTA143EUB (SC-85)
OUT IN GND
DTA143EUA SOT-323 (SC-70)
DTA143EKA SOT-346 (SC-59)
Inner circuit
R1 IN R2 GND(+) OUT
*1
Data Sheet
Symbol VCC VIN IO IC(MAX.)*1