RN2907FS~RN2909FS
TOSHIBA Transistor
Silicon PNP Epitaxial Type (PCT process) (Bias Resistor built-in Transistor)
RN2907FS,RN2908FS,RN2909FS
Switching, Inverter Circuit, Interface Circuit and
Driver Circuit Applications.
1.0±0.05
Unit: mm
•
•
0.35 0.35
1.0±0.05
Incorporating a bias resistor into a transistor reduces parts count.
Reducing the parts count enables the manufacture of ever more
compact equipment and lowers assembly cost.
0.7±0.05
1
2
3
6
5
4
0.1±0.05
•
Complementary to RN1907FS to RN1909FS
0.48
-0.04
+0.02
Equivalent Circuit and Bias Resistor Values
C
Type No.
RN2907FS
RN2908FS
R2
RN2909FS
E
R1 (kΩ)
10
22
47
R2 (kΩ)
47
47
22
B
R1
fS6
1.EMITTER1
1.EMIITTER1
2.BASE1
2.EMITTER2
3.COLLECTOR2
3.BASE2
4.EMITTER2
4.COLLECTOR2
5.BASE2
5.BASE1
6.COLLECTOR1
6.COLLECTOR1
(E1)
(E1)
(B1)
(E2)
(C2)
(B2)
(E2)
(C2)
(B2)
(B2)
(C1)
(C1)
JEDEC
JEITA
TOSHIBA
―
―
2-1F1D
Weight: 1 mg (typ.)
(Q1, Q2 common)
Absolute Maximum Ratings
(Ta = 25°C)
Equivalent Circuit
(top view)
Rating
−20
−20
−6
Unit
V
V
Q1
Q2
Characteristics
Collector-base voltage
Collector-emitter voltage
RN2907FS to
RN2909FS
RN2907FS
Emitter-base voltage
RN2908FS
RN2909FS
Collector current
Collector power dissipation
Junction temperature
Storage temperature range
RN2907FS to
RN2909FS
Symbol
V
CBO
V
CEO
6
5
4
V
EBO
−7
−15
V
1
mA
mW
°C
°C
2
3
I
C
P
C
*
T
j
T
stg
−50
50
150
−55
to 150
Note: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even
if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum
ratings.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test
report and estimated failure rate, etc).
*: Total rating
1
2010-07-08
0.15±0.05
Two devices are incorporated into a fine pitch small mold (6-pin)
package.
0.1±0.05
0.8±0.05
0.1±0.05
RN2907FS~RN2909FS
Electrical Characteristics
(Ta = 25°C) (Q1, Q2 common)
Characteristics
Collector cut-off current
RN2907FS to 2909FS
RN2907FS
Emitter cut-off current
RN2908FS
RN2909FS
RN2907FS
DC current gain
RN2908FS
RN2909FS
Collector-emitter
saturation voltage
RN2907FS to 2909FS
RN2907FS
Input voltage (ON)
RN2908FS
RN2909FS
RN2907FS
Input voltage (OFF)
RN2908FS
RN2909FS
Collector output
capacitance
RN2907FS to 2909FS
RN2907FS
Input resistor
RN2908FS
RN2909FS
RN2907FS
Resistor ratio
RN2908FS
RN2909FS
R1/R2
⎯
R1
⎯
C
ob
V
I (OFF)
V
I (ON)
V
CE (sat)
h
FE
I
EBO
Symbol
I
CBO
I
CEO
Test Condition
V
CB
= −20
V, I
E
=
0
V
CE
= −20
V, I
B
=
0
V
EB
= −6
V, I
C
=
0
V
EB
= −7
V, I
C
=
0
V
EB
= −15
V, I
C
=
0
V
CE
= −5
V,
I
C
= −10
mA
I
C
= −5
mA,
I
B
= −0.25
mA
V
CE
= −0.2
V,
I
C
= −5
mA
Min
⎯
⎯
−0.088
−0.085
−0.182
120
120
100
Typ.
⎯
⎯
⎯
⎯
⎯
⎯
Max
−100
−500
−0.131
−0.126
−0.271
⎯
mA
Unit
nA
⎯
⎯
⎯
⎯
⎯
⎯
⎯
⎯
⎯
1.2
10
22
47
0.213
0.468
2.14
⎯
⎯
−
0.15
−
1.5
−
2.2
−
5.0
−
1.0
−
1.1
−
2.6
⎯
12
26.4
56.4
0.255
0.562
2.56
kΩ
pF
V
V
V
⎯
−
0.7
−
0.8
−
1.6
−
0.5
−
0.6
−
1.3
⎯
8
17.6
37.6
0.17
0.374
1.71
V
CE
= −5
V,
I
C
= −0.1
mA,
V
CB
= −10
V, I
E
=
0,
f
=
1 MHz
2
2010-07-08
RN2907FS~RN2909FS
Q1, Q2 Common
RN2907FS
-100
COLLECTOR CURRENT IC (mA)
COLLECTOR CURRENT IC (μA)
IC - VI(ON)
-10000
RN2907FS
IC - VI(OFF)
-10
Ta=100°C
-1000
Ta=100°C
25
-25
25
-1
-25
EMITTER COMMON
VCE= -0.2V
-0.1
-0.1
-100
EMITTER COMMON
VCE= -5V
-10
-0.2
-1
-10
-100
-0.4
-0.6
-0.8
-1
-1.2
-1.4
INPUT VOLTAGE VI(ON) ( V)
INPUT VOLTAGE VI(OFF) ( V)
RN2908FS
-100
IC - VI(ON)
-10000
COLLECTOR CURRENT IC (μA)
RN2908FS
IC - VI(OFF)
COLLECTOR CURRENT IC (mA)
EMITTER COMMON
VCE= -5V
-10
Ta=100°C
25
-1
-1000
Ta=100°C
25
-25
-25
EMITTER COMMON
VCE= -0.2V
-100
-0.1
-0.1
-1
-10
-100
-10
-0.2
-0.4
-0.6
-0.8
-1
-1.2
-1.4
-1.6
INPUT VOLTAGE VI(ON) ( V)
INPUT VOLTAGE VI(OFF) ( V)
RN2909FS
-100
COLLECTOR CURRENT IC (mA)
IC - VI(ON)
-10000
COLLECTOR CURRENT IC (μA)
RN2909FS
IC - VI(OFF)
EMITTER COMMON
VCE= -0.2V
-10
EMITTER COMMON
VCE= -5V
-1000
Ta=100°C
25
-25
Ta=100°C
-1
25
-25
-100
-0.1
-0.1
-1
-10
-100
-10
-0.6
-1
-1.4
-1.8
-2.2
-2.6
-3
INPUT VOLTAGE VI(ON) ( V)
INPUT VOLTAGE VI(OFF) ( V)
3
2010-07-08
RN2907FS~RN2909FS
Q1, Q2 Common
RN2907FS
1000
Ta=100°C
DC CURRENT GAIN hFE
hFE - IC
-1000
COLLECTOR-EMITTER SATURATION
VOLTAGE VCE(sat) (mV)
EMITTER COMMON
IC / IB=20
RN2907FS
VCE(sat) - IC
25
100
-25
-100
Ta=100°C
EMITTER COMMON
VCE= -5V
10
-1
-10
COLLECTOR CURRENT IC (mA)
-100
25
-25
-10
-1
-10
COLLECTOR CURRENT IC (mA)
-100
RN2908FS
1000
hFE - IC
-1000
COLLECTOR-EMITTER SATURATION
VOLTAGE VCE(sat) (mV)
RN2908FS
VCE(sat) - IC
EMITTER COMMON
IC / IB=20
Ta=100°C
DC CURRENT GAIN hFE
25
100
-25
-100
Ta=100°C
25
-25
-10
EMITTER COMMON
VCE= -5V
10
-1
-10
COLLECTOR CURRENT IC (mA)
-100
-1
-10
COLLECTOR CURRENT IC (mA)
-100
RN2909FS
1000
hFE - IC
-1000
COLLECTOR-EMITTER SATURATION
VOLTAGE VCE(sat) (mV)
RN2909FS
VCE(sat) - IC
EMITTER COMMON
IC / IB=20
DC CURRENT GAIN hFE
Ta=100°C
100
-25
25
-100
Ta=100°C
25
-25
EMITTER COMMON
VCE= -5V
10
-1
-10
COLLECTOR CURRENT IC (mA)
-100
-10
-1
-10
COLLECTOR CURRENT IC (mA)
-100
4
2010-07-08
RN2907FS~RN2909FS
Marking
Type Name
Marking
6
5
4
Type name
RN2907FS
H6
1
6
2
5
3
4
Type name
RN2908FS
H7
1
6
RN2909FS
2
5
3
4
Type name
H8
1
2
3
Handling Precaution
When handling individual devices (which are not yet mounted on a circuit board), be sure that the environment is
protected against electrostatic discharge. Operators should wear anti-static clothing, and containers and other objects
that come into direct contact with devices should be made of anti-static materials.
5
2010-07-08