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IMZ4 Datasheet(数据表) 4 Page - Rohm

部件型号  IMZ4
说明  General purpose transistor (dual transistors)
下载  5 Pages
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制造商  ROHM [Rohm]
网页  http://www.rohm.com
标志 ROHM - Rohm

IMZ4 Datasheet(HTML) 4 Page - Rohm

  IMZ4 数据表 HTML 1Page - Rohm IMZ4 数据表 HTML 2Page - Rohm IMZ4 数据表 HTML 3Page - Rohm IMZ4 数据表 HTML 4Page - Rohm IMZ4 数据表 HTML 5Page - Rohm  
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 4 page
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IMZ4
Transistors
Rev.A
4/4
Tr2 (PNP)
0.2
0
−500
−200
−100
−50
−20
−10
−5
−2
−1
−0.5
−0.2
−0.1
0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 2.2
VCE
=
−3V
BASE TO EMITTER VOLTAGE : VBE (V)
Fig.8 Grounded emitter propagation
characteristics
Ta
=100
°C
25
°C
−55°C
−1
−40
−80
−3
0
−20
−60
−100
0
−2
−4
−5
COLLECTOR TO EMITTER VOLTAGE : VCE (V)
Ta
=25
°C
IB
=0A
−0.1mA
−0.2mA
−0.3mA
−0.4mA
−0.5mA
−0.6mA
−0.7mA
−0.8mA
−0.9mA
−1mA
Fig.9 Grounded emitter output
characteristics (
Ι )
−200
−400
−10
−5
0
−100
−300
−500
0
Ta
=25
°C
COLLECTOR TO EMITTER VOLTAGE : VCE (V)
Fig.10 Grounded emitter output
characteristics (
ΙΙ )
IB
=0A
−0.5mA
−1.0mA
−1.5mA
−2.0mA
−2.5mA
−3.0mA
−3.5mA
−4.0mA
−4.5mA
−5.0mA
500
1000
200
100
50
20
−1 −2
−5 −10 −20 −50 −100 −200 −500 −1000
Ta
=25
°C
VCE
=
−5V
−3V
−1V
COLLECTOR CURRENT : IC (mA)
Fig.11 DC current gain vs. collector
current (
Ι )
500
1000
200
100
50
20
−1 −2
−5 −10 −20 −50 −100 −200 −500 −1000
VCE
=
−3V
COLLECTOR CURRENT : IC (mA)
Fig.12 DC current gain vs. collector
current (
ΙΙ )
Ta
=100
°C
25
°C
−55°C
0.1
1 2
5 10 20
50 100 200 500
1
0.5
0.2
0.05
0.02
Ta
=25
°C
IC/IB
=50
20
10
COLLECTOR CURRENT : IC (mA)
Fig.13 Collector-emitter saturation
voltage vs. collector current (
Ι )
0.05
0.03
0.02
0.01
−1 −2
−5 −10 −20
−50 −100 −200 −500−1000
0.5
0.3
0.2
0.1
1.0
lC/lB
=10
COLLECTOR CURRENT : IC (mA)
Fig.14 Collector-emitter saturation
voltage vs. collector current (
Ι )
Ta
=100
°C
25
°C
− 55°C
50
0.5
20
50
100
200
500
1000
12
5
10
Ta
=25
°C
VCE
=
−5V
EMITTER CURRENT : IE (mA)
Fig.15 Gain bandwidth product vs.
emitter current
−50
−0.5
−20
2
5
10
50
100
−1
−2
−5
−10
20
Ta
=25
°C
f=1MHz
IC
=0A
IE
=0A
COLLECTOR TO BASE VOLTAGE : VCB (V)
EMITTER TO BASE VOLTAGE
: VEB (V)
Fig.16 Collector output capacitance vs.
collector-base voltage
Emitter input capacitance vs.
emitter-base voltage




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