2SB1240TV2R Rohm Semiconductor, 2SB1240TV2R Datasheet - Page 2

TRANS DRIVER PNP 32V 2A ATV TB

2SB1240TV2R

Manufacturer Part Number
2SB1240TV2R
Description
TRANS DRIVER PNP 32V 2A ATV TB
Manufacturer
Rohm Semiconductor
Datasheet

Specifications of 2SB1240TV2R

Transistor Type
PNP
Current - Collector (ic) (max)
2A
Voltage - Collector Emitter Breakdown (max)
32V
Vce Saturation (max) @ Ib, Ic
800mV @ 200mA, 2A
Dc Current Gain (hfe) (min) @ Ic, Vce
180 @ 500mA, 3V
Power - Max
1W
Frequency - Transition
100MHz
Mounting Type
Through Hole
Package / Case
ATV
Pnp
Transistor Polarity
Collector Emitter Voltage V(br)ceo
32V
Power Dissipation Pd
1W
Dc Collector Current
2A
Operating Temperature Range
-55°C To +150°C
Transistor Case Style
ATV
No. Of Pins
3
Svhc
No
Transistor Polarity
PNP
Dc Current Gain Hfe
82
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Collector Cutoff (max)
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
2SB1240TV2R
Manufacturer:
ROHM
Quantity:
68 000
Packaging specifications and h
h
Electrical characteristic curves
2SB1182 / 2SB1240
c
Type
2SB1182
2SB1240
www.rohm.com
FE
−1000
Fig.1 Grounded emitter propagation
−0.05
500
200
100
−500
−200
−100
−0.5
−0.2
−0.1
50
20
Fig.7 Base-emitter saturation voltage
2010 ROHM Co., Ltd. All rights reserved.
−50
−20
−10
values are classified as follows :
Item
−1
−5
−2
−1
h
FE
Fig.4 DC current gain vs.
0 −0.2
Ta=25°C
−5 −10 −20
−5 −10 −20 −50 −100
Ta=100°C
BASE TO EMITTER VOLTAGE : V
COLLECTOR CURRENT : I
characteristics
vs. collector current
−40°C
COLLETOR CURRENT : I
25°C
−0.4
h
QR
QR
Ta=100°C
collector current ( )
120 to 270
−0.6 −0.8 −1.0 −1.2 −1.4 −1.6 −1.8 −2.0 −2.2
FE
−25°C
25°C
−50 −100
Q
Package
Code
Basic ordering unit (pieces)
−200
−200
−500 −1000 −2000
180 to 390
−500 −1000 −2000
I
C
/I
C
C
B
V
(mA)
=10
(mA)
R
CE
V
CE
= −3V
= −3V
BE
(V)
FE
2500
Fig.5 Collector-emitter saturation
TL
−500 Ta=25°C
−200
−100
500
200
100
−0.5
−0.4
−0.3
−0.2
−0.1
−50
50
Fig.8 Gain bandwidth product vs.
COLLECTOR TO EMITTER VOLTAGE : V
Taping
0
0
Fig.2 Grounded emitter output
Ta=25°C
−5 −10 −20
voltage vs. collector current ( )
5
COLLECTOR CURRENT : I
10
EMITTER CURRENT : I
2500
−0.4
emitter current
TV2
I
C
/I
characteristics
B
20
= 50
20
10
2/3
−0.8
−50 −100
50
100
−200
200
−1.2
−500 −1000 −2000
E
500 1000 2000
(mA)
C
Ta = 25°C
V
−1.6
(mA)
CE
= −5V
I
B
=0A
CE
−2
(V)
Fig.9 Collector output capacitance vs.
Fig.6 Collector-emitter saturation
−500 l
−200
−100
500
200
100
−50
−20
300
200
100
50
20
50
20
10
COLLECTOR TO BASE VOLTAGE : V
EMITTER TO BASE VOLTAGE
Fig.3 DC current gain vs.
−5 −10 −20
C
−5 −10 −20
collector-base voltage
Emitter input capacitance vs.
emitter-base voltage
−0.5
/l
voltage vs. collector current ( )
B
COLLECTOR CURRENT : I
COLLECTOR CURRENT : I
=10
Ta=100°C
−1
collector curren ( )
2010.04 - Rev.C
−40°C
25°C
−2
−50 −100
−50 −100
Cib
V
Data Sheet
CE
Cob
= −6V
−5
−200
−200
−3V
−1V
−10 −20 −30
−500 −1000 −2000
−500 −1000 −2000
C
C
Ta=25°C
(mA)
Ta = 25°C
f = 1MHz
I
I
(mA)
E
C
= 0A
= 0A
: V
CB
EB
(V)
(V)

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