Panasonic UNR2111 Technical data

Transistors with built-in Resistor
2.8
+0.2 –0.3
1.5
+0.25 –0.05
0.65±0.15 0.65±0.15
3
1
2
0.950.95
1.9±0.2
0.4
+0.1
–0.05
1.1
+0.2
–0.1
0.8
0.4±0.2
0 to 0.1
0.16
+0.1
–0.06
1.45
0.1 to 0.3
2.9
+0.2
–0.05
B
C
R1
R2
E
UNR2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/ 211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z
(UN2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/ 211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z)
Silicon PNP epitaxial planer transistor
For digital circuits
Features
Costs can be reduced through downsizing of the equipment and reduction of the number of parts.
Mini type package, allowing downsizing of the equipment and automatic insertion through tape packing and magazine packing.
Resistance by Part Number
UNR211 1 6A 10k 10kΩ
UNR2112 6B 22k 22kΩ
UNR2113 6C 47k 47kΩ
UNR2114 6D 10k 47kΩ
UNR2115 6E 10k
UNR2116 6F 4.7k
UNR2117 6H 22k
UNR2118 6I 0.51k 5.1k
UNR2119 6K 1k 10kΩ
UNR2110 6L 47k
UNR211D 6M 47k 10kΩ
UNR211E 6N 47k 22kΩ
UNR211F 6O 4.7k 10kΩ
UNR211H 6P 2.2k 10kΩ
UNR211L 6Q 4.7k 4.7kΩ
UNR211M EI 2.2k 47kΩ
UNR211N EW 4.7k 47kΩ
UNR211T EY 22k 47kΩ
UNR211V FC 2.2k 2.2k
UNR211Z FE 4.7k 22kΩ
Absolute Maximum Ratings (Ta=25˚C)
Parameter Symbol Ratings Unit
Collector to base voltage V Collector to emitter voltage Collector current I Total power dissipation P Junction temperature T Storage temperature T
Marking Symbol (R1)(R
CBO
V
CEO
C
T
j
stg
–100 mA
–55 to +150 ˚C
)
2
1:Base 2:Emitter EIAJ:SC-59 3:Collector Mini Type Package
Internal Connection
–50 V –50 V
200 mW 150 ˚C
Note)The part numbers in the parenthesis show conventional part number.
Unit: mm
1
UNR2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/
Transistors with built-in Resistor
Electrical Characteristics (Ta=25˚C)
Parameter Symbol Conditions min typ max Unit
I
Collector cutoff current
UNR211 1 – 0.5 UNR2112/2114/211E/211D/211M/211N/211T UNR2113 – 0.1
Emitter cutoff current
UNR2115/2116/2117/2110 – 0.01 UNR211F/211H UNR2119 –1.5 UNR2118/211L/211V –2.0
UNR211Z – 0.4 Collector to base voltage V Collector to emitter voltage V
UNR211 1 35
UNR2112/211E 60
UNR2113/2114/211M 80
Forward current transfer ratio
UNR2115*/2116*/2117*/2110*
UNR2119/211F/211D/211H h
UNR2118/211L 20
UNR211N/211T 80 400
UNR211V 6 20
UNR211Z 60 200 Collector to emitter saturation voltage
UNR211V IC = –10mA, IB = –1.5mA – 0.07 – 0.25 V Output voltage high level V Output voltage low level VCC = –5V, VB = –2.5V, RL = 1k – 0.2
UNR2113
UNR211D VCC = –5V, VB = –10V, RL = 1k – 0.2
UNR211E VCC = –5V, VB = –6V, RL = 1k – 0.2 Transition frequency f
UNR2111/2114/2115 10 UNR2112/2117/211T 22
Input resis­tance
UNR2113/2110/211D/211E 47 UNR2116/211F/21 1L/211N/211Z UNR2118 0.51 UNR2119 1 UNR211H/211M/211V 2.2
I
I
V
V
R
CBO
CEO
EBO
T
CBO
CEO
FE
CE(sat)
OH
OL
1
211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z
VCB = –50V, IE = 0 – 0.1 µA VCE = –50V, IB = 0 – 0.5 µA
VEB = –6V, IC = 0
IC = –10mA, IE = 0 –50 V IC = –2mA, IB = 0 –50 V
160 460
VCE = –10V, IC = –5mA 30
IC = –10mA, IB = – 0.3mA – 0.25 V
VCC = –5V, VB = – 0.5V, RL = 1k –4.9 V
VCC = –5V, VB = –3.5V, RL = 1k – 0.2
VCB = –10V, IE = 1mA, f = 200MHz 80 MHz
(–30%) 4.7 (+30%) k
– 0.2
–1.0
mA
V
* hFE rank classification (UNR2115/2116/2117/2110)
Rank Q R S
h
FE
160 to 260 210 to 340 290 to 460
2
UNR2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/
Transistors with built-in Resistor
Electrical Characteristics (continued) (Ta=25˚C)
Parameter Symbol Conditions min typ max Unit
UNR2111/2112/2113/211L 0.8 1.0 1.2 UNR2114 0.17 0.21 0.25 UNR2118/2119 0.08 0.1 0.12 UNR211D 4.7
Resis­tance ratio
UNR211E 2.14 UNR211F/211T R1/R UNR211H 0.17 0.22 0.27 UNR211M 0.047 UNR211N 0.1 UNR211V 1.0 UNR211Z 0.21
211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z
2
0.47
3
Transistors with built-in Resistor
Common characteristics chart
— Ta
P
T
250
)
200
mW
(
T
150
100
50
Total power dissipation P
0
02040 8060 140120100 160
Ambient temperature Ta (˚C
Characteristics charts of UNR2111
)
UNR2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/
211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z
— V
I
C
–160
–140
)
–120
mA
(
C
–100
–80
–60
–40
Collector current I
–20
0
0 –12–2 –10–4 –8–6
Collector to emitter voltage VCE (V
Cob — V
6
) pF
(
5
ob
4
3
CE
IB=–1.0mA
CB
–0.9mA
f=1MHz
I
E
Ta=25˚C
Ta=25˚C
–0.8mA
–0.7mA –0.6mA –0.5mA
–0.4mA –0.3mA
–0.2mA
–0.1mA
=0
V
— I
CE(sat)
–100
)
V
(
–30
CE(sat)
–10
–3
–1
–0.3
–0.1
–0.03
Collector to emitter saturation voltage V
–0.01
–0.1 –0.3
)
25˚C
–25˚C
–1 –3 –10 –30 –100
Collector current IC (mA
IO — V
–10000
–3000
)
–1000
µA
(
O
–300
–100
C
IC/IB=10
Ta=75˚C
160
FE
120
80
40
Forward current transfer ratio h
0
–1 –3
)
IN
)
V
(
IN
–100
–30
–10
–3
–1
VO=–5V Ta=25˚C
hFE — I
C
VCE=–10V
–10 –30 –100 –300 –1000
Collector current IC (mA
VIN — I
O
Ta=75˚C
25˚C
–25˚C
)
VO=–0.2V Ta=25˚C
2
1
Collector output capacitance C
0
–0.1 –0.3
–1 –3 –10 –30 –100
Collector to base voltage VCB (V
4
–30
–10
Output current I
3
–1
–0.4
)
Input voltage VIN (V
–1.4–1.2–1.0–0.8–0.6
)
–0.3
Input voltage V
–0.1
–0.03
–0.01
–0.1 –0.3
Output current IO (mA
–1 –3 –10 –30 –100
)
Transistors with built-in Resistor
Characteristics charts of UNR2112
UNR2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/
211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z
— V
I
C
–160
–140
)
–120
mA
(
C
–100
–80
–60
–40
Collector current I
–20
0
0 –12–2 –10–4 –8–6
Collector to emitter voltage VCE (V
Cob — V
6
) pF
(
5
ob
4
3
CE
IB=–1.0mA
–0.9mA
CB
–0.8mA
f=1MHz
I
E
Ta=25˚C
Ta=25˚C
–0.7mA
–0.6mA
–0.5mA –0.4mA
–0.3mA
–0.2mA
–0.1mA
=0
V
— I
CE(sat)
–100
)
V
(
–30
CE(sat)
–10
–3
–1
–0.3
–0.1
–0.03
Collector to emitter saturation voltage V
–0.01
)
–25˚C
–0.1 –0.3
–1 –3 –10 –30 –100
Collector current IC (mA
IO — V
–10000
–3000
)
–1000
µA
(
O
–300
–100
25˚C
C
IC/IB=10
Ta=75˚C
400
FE
300
200
100
Forward current transfer ratio h
0
–1 –3
)
IN
)
V
(
IN
–100
–30
–10
–3
–1
VO=–5V Ta=25˚C
hFE — I
C
VCE=–10V
Ta=75˚C
25˚C
–25˚C
–10 –30 –100 –300 –1000
Collector current IC (mA
VIN — I
O
VO=–0.2V Ta=25˚C
)
2
1
Collector output capacitance C
0 –0.1 –0.3
–1 –3 –10 –30 –100
Collector to base voltage VCB (V
Characteristics charts of UNR2113
— V
I
C
–160
–140
)
–120
mA
(
C
–100
–80
–60
–40
Collector current I
–20
0
0 –12–2 –10–4 –8–6
Collector to emitter voltage VCE (V
CE
IB=–1.0mA
–0.9mA
–0.8mA
–0.7mA
Ta=25˚C
–0.6mA
–0.5mA
–0.4mA
–0.3mA
–0.2mA
–0.1mA
)
–30
–10
Output current I
–3
–1
–0.4
)
–100
)
V
(
CE(sat)
–0.3
–0.1
–0.03
Collector to emitter saturation voltage V
–0.01
Input voltage VIN (V
–30
–10
–3
–1
–25˚C
–0.1 –0.3
V
— I
CE(sat)
25˚C
–1 –3 –10 –30 –100
Collector current IC (mA
–1.4–1.2–1.0–0.8–0.6
)
C
IC/IB=10
Ta=75˚C
)
–0.3
Input voltage V
–0.1
–0.03
–0.01
–0.1 –0.3
–1 –3 –10 –30 –100
Output current IO (mA
hFE — I
400
FE
300
200
100
C
VCE=–10V
Forward current transfer ratio h
0
–1 –3
–10 –30 –100 –300 –1000
Collector current IC (mA
)
Ta=75˚C
25˚C
–25˚C
)
5
Transistors with built-in Resistor
UNR2111/2112/2113/2114/2115/2116/2117/2118/2119/2110/
211D/211E/211F/211H/211L/211M/211N/211T/211V/211Z
) pF
(
Cob — V
6
5
ob
4
3
2
1
CB
f=1MHz
I
=0
E
Ta=25˚C
Collector output capacitance C
0 –0.1 –0.3
–1 –3 –10 –30 –100
Collector to base voltage VCB (V
Characteristics charts of UNR2114
— V
I
C
CE
–160
–140
)
–120
mA
(
C
–100
–80
–60
–40
Collector current I
–20
0
IB=–1.0mA
0 –12–2 –10–4 –8–6
Collector to emitter voltage VCE (V
–0.9mA
–0.8mA
Ta=25˚C
–0.7mA
–0.6mA –0.5mA
–0.4mA
–0.3mA
–0.2mA
–0.1mA
)
IO — V
IN
–10000
–3000
)
–1000
µA
(
O
–300
–100
–30
–10
Output current I
–3
–1
–0.4
)
–100
)
V
(
CE(sat)
–0.03
Collector to emitter saturation voltage V
–0.01
Input voltage VIN (V
–30
–10
–3
–1
–0.3
–0.1
–25˚C
–0.1 –0.3
V
CE(sat)
25˚C
–1 –3 –10 –30 –100
Collector current IC (mA
— I
VO=–5V Ta=25˚C
C
Ta=75˚C
–1.4–1.2–1.0–0.8–0.6
)
IC/IB=10
)
–100
–30
)
–10
V
(
IN
–3
–1
–0.3
Input voltage V
–0.1
–0.03
–0.01
–0.1 –0.3
400
FE
300
200
100
Forward current transfer ratio h
0
–1 –3
VIN — I
O
VO=–0.2V Ta=25˚C
–1 –3 –10 –30 –100
Output current IO (mA
hFE — I
C
VCE=–10V
Ta=75˚C
25˚C
–25˚C
–10 –30 –100 –300 –1000
Collector current IC (mA
)
)
) pF
(
Cob — V
6
5
ob
4
3
2
1
CB
Collector output capacitance C
0 –0.1 –0.3
–1 –3 –10 –30 –100
Collector to base voltage VCB (V
6
f=1MHz
=0
I
E
Ta=25˚C
IO — V
IN
–10000
–3000
)
–1000
µA
(
O
–300
–100
–30
–10
Output current I
–3
–1
–0.4
)
Input voltage VIN (V
VO=–5V Ta=25˚C
)
–1.4–1.2–1.0–0.8–0.6
–1000
–300
)
–100
V
(
IN
–30
–10
–3
Input voltage V
–1
–0.3
–0.1
–0.1 –0.3
VIN — I
O
VO=–0.2V Ta=25˚C
–1 –3 –10 –30 –100
Output current IO (mA
)
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