CLARE LBB120

LBB120
DUAL POLE OptoMOS® Relay
Load Voltage
Load Current
Max RON
LBB120
250
170
20
Description
LBB120 is a 250V, 170mA, 20Ω 2-Form-B relay. It features low on-resistance combined with enhanced peak
load current handling capability.
Units
V
mA
Ω
Features
• Small 8 Pin DIP Package
• Low Drive Power Requirements (TTL/CMOS
Compatible)
• No Moving Parts
• High Reliability
• Arc-Free With No Snubbing Circuits
• 3750VRMS Input/Output Isolation
• FCC Compatible
• VDE Compatible
• No EMI/RFI Generation
• Machine Insertable, Wave Solderable
• Current Limiting, Surface Mount and Tape & Reel
Versions Available
Applications
• Telecommunications
• Telecom Switching
• Tip/Ring Circuits
• Modem Switching (Laptop, Notebook, Pocket Size)
• Hookswitch
• Dial Pulsing
• Ground Start
• Ringer Injection
• Instrumentation
• Multiplexers
• Data Acquisition
• Electronic Switching
• I/O Subsystems
• Meters (Watt-Hour, Water, Gas)
• Medical Equipment—Patient/Equipment Isolation
• Security
• Aerospace
• Industrial Controls
Approvals
• UL Recognized: File Number E76270
• CSA Certified: File Number LR 43639-10
• BSI Certified to:
• BS EN 60950:1992 (BS7002:1992)
Certificate #: 7344
• BS EN 41003:1993
Certificate #: 7344
Ordering Information
Part #
LBB120
LBB120S
LBB120STR
Description
8 Pin DIP (50/Tube)
8 Pin Surface Mount (50/Tube)
8 Pin Surface Mount (1000/Reel)
Pin Configuration
Pinout
AC/DC Configuration
+ Control - Switch #1
– Control - Switch #1
+ Control - Switch #2
– Control - Switch #2
1
8
2
7
3
6
4
5
Load - Switch #1
Load - Switch #1
Load - Switch #2
Load - Switch #2
Switching Characteristics of
Normally Closed (Form B) Devices
10ms
CONTROL
+90%
+
90%
+10%
TOFF
DS-LBB120-R6
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TON
1
LBB120
Absolute Maximum Ratings (@ 25˚ C)
Parameter
Min
Input Power Dissipation
-
-
1501
mW
Input Control Current
Peak (10ms)
-
-
50
1
mA
A
Reverse Input Voltage
-
-
5
V
Total Power Dissipation
-
-
8002
mW
Isolation Voltage
Input to Output
3750
-
-
VRMS
Operational Temperature
-40
-
+85
°C
Storage Temperature
-40
-
+125
°C
-
-
+260
+220
°C
°C
Soldering Temperature
DIP Package
Surface Mount Package
(10 Seconds Max.)
1
Derate Linearly 1.33 mw/˚C
2
Derate Linearly 6.67 mw/˚C
Absolute Maximum Ratings are stress ratings. Stresses
in excess of these ratings can cause permanent damage
to the device. Functional operation of the device at these
or any other conditions beyond those indicated in the
operational sections of this data sheet is not implied.
Exposure of the device to the absolute maximum ratings
for an extended period may degrade the device and effect
its reliability.
Typ Max Units
Electrical Characteristics
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Load Voltage (Peak)
-
VL
-
-
250
V
Load Current* (Continuous)
AC/DC Configuration
-
IL
-
-
170
mA
Output Characteristics @ 25°C
Peak Load Current
10ms
IL
-
-
400
mA
On-Resistance
AC/DC Configuration
IL=120mA
RON
-
16
20
Ω
Off-State Leakage Current
VL=250V
-
-
-
1
µA
Switching Speeds
Turn-On
Turn-Off
IF=5mA,VL=10V
IF=5mA,VL=10V
TON
TOFF
-
-
5
5
ms
ms
Output Capacitance
50V; f=1MHz
-
-
50
-
pF
-
-
-
3
-
pF
Input Control Current
IL=170mA
IF
5
-
50
mA
Input Dropout Current
-
IF
0.4
0.7
-
mA
Capacitance
Input to Output
Input Characteristics @ 25°C
Input Voltage Drop
IF=5mA
VF
0.9
1.2
1.4
V
Reverse Input Voltage
-
VR
-
-
5
V
Reverse Input Current
VR=5V
IR
-
-
10
µA
Input to Output Capacitance
-
VC/O
-
3
-
pF
Input to Output Isolation
-
VI/O
3750
-
-
VRMS
Common Characteristics @ 25°C
*Note: If both poles operate simulataneously load current must be derated so as not to exceed the package power dissipation value.
2
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Rev. 6
LBB120
PERFORMANCE DATA*
LBB120
Typical On-Resistance Distribution
(N=50 Ambient Temperature = 25°C)
(Load Current = 120mADC)
Device Count (N)
25
20
15
10
5
35
35
30
30
25
20
15
10
5
0
1.19
1.21
1.23
10.4
10.8
11.2
11.6
12.0
10
12.4
291.25 293.75 296.25 298.75 301.25 303.75
Blocking Voltage (V)
LBB120
Typical Turn-On Time
(N=50 Ambient Temperature = 25°C)
(Load Current = 120mADC; IF = 5mADC)
LBB120
Typical IF for Switch Dropout
(N=50 Ambient Temperature = 25°C)
(Load Current = 120mADC)
35
35
25
25
30
20
15
10
20
15
10
5
5
0
0
0.81
0.99
1.17
1.35
0.45
Load Current (mA)
30
25
20
15
10
5
0
0.63
0.81
0.99
1.17
1.35
0.30
1.625
0.030
200
0.025
150
5mA
100
50
LBB120
Typical Blocking Voltage
vs. Temperature
0.12
305
0.10
Turn-On (ms)
310
300
295
290
-20
0
20
40
60
80
100
20
40
60
Temperature (°C)
80
100
0.90
0.020
0.015
0.010
0
120
-40
-20
0
20
40
60
80
100
Temperature (°C)
LBB120
Typical Turn-On vs. Temperature
(Load Current = 170mADC)
LBB120
Typical Turn-Off vs. Temperature
(Load Current = 170mADC)
2.500
5mA
2.000
0.08
0.06
0.04
5mA
1.500
1.000
10mA
0.500
20mA
0
0
0.78
Temperature (°C)
0.02
285
0.66
0.005
-40
1.875
0.54
LBB120
Typical Leakage vs. Temperature
(Measured across Pins 5 & 6 or 7 & 8)
250
Turn-Off (ms)
-20
0.42
Turn-On (ms)
0
-40
10
LBB120
Typical Load Current vs. Temperature
35
1.375
15
LED Current (mA)
LBB120
Typical Turn-Off Time
(N=50 Ambient Temperature = 25°C)
(Load Current = 120mADC; IF = 5mADC)
1.125
20
0
1.53
LED Current (mA)
0.625 0.875
25
5
Leakage (µA)
0.63
Device Count (N)
30
Device Count (N)
Device Count (N)
15
On-Resistance (Ω)
LBB120
Typical IF for Switch Operation
(N=50 Ambient Temperature = 25°C)
(Load Current = 120mADC)
Device Count (N)
20
0
1.25
LED Forward Voltage Drop (V)
Blocking Voltage (VRMS)
25
5
0
1.17
Turn-Off (ms)
Device Count (N)
30
LBB120
Typical Blocking Voltage Distribution
(N=50 Ambient Temperature = 25°C)
Device Count (N)
35
LBB120
Typical LED Forward Voltage Drop
(N=50 Ambient Temperature = 25°C)
IF = 5mADC
0
-40
-20
0
20
40
60
Temperature (°C)
80
100
-40
-20
0
20
40
60
80
100
Temperature (°C)
The Performance data shown in the graphs above is typical of device performance. For guaranteed parameters not indicated in the written specifications, please contact
our application department.
Rev. 6
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3
LBB120
PERFORMANCE DATA*
0.634
1.2
1.6
0.632
1.0
1.4
50mA
30mA
20mA
10mA
5mA
1.2
1.0
Turn-Off (ms)
1.8
0.630
0.628
0.626
0
20
40
60
80
100
120
0.6
0.4
0
0.622
-20
0.8
0.2
0.624
0.8
-40
0
5
10
15
20
25
30
35
40
45
0
50
10
15
20
25
30
35
40
45
LED Forward Current (mA)
LED Forward Current (mA)
LBB120
Typical On-Resistance vs. Temperature
(Load Current = 170mADC; IF = 5mADC)
LBB120
Typical IF for Switch Operation
vs. Temperature
(Load Current = 170mADC; IF = 5mADC)
LBB120
Typical IF for Switch Dropout
vs. Temperature
(Load Current = 170mADC)
3.0
3.0
50.000
2.5
2.5
40.000
30.000
20.000
2.0
1.5
1.0
10.000
0.5
0
0
-40
-20
0
20
40
60
80
100
1.5
1.0
0
20
40
60
80
100
-40
-20
0
20
40
60
80
100
Temperature (°C)
LBB120
Energy Rating Curve
1.2
150
1.0
Load Current (A)
100
50
0
-50
-100
0.8
0.6
0.4
0.2
-150
-200
-2.0
2.0
0
-20
Temperature (°C)
LBB120
Typical Load Current vs. Load Voltage
(Ambient Temperature = 25°C)
IF = 5mADC
50
0.5
-40
Temperature (°C)
200
LED Current (mA)
60.000
Load Current (mA)
5
Temperature (°C)
LED Current (mA)
On-Resistance (Ω)
LBB120
Typical Turn-Off vs. LED Forward Current
(Load Current = 170mADC)
LBB120
Typical Turn-On vs. LED Forward Current
(Load Current = 170mADC)
Turn-On (ms)
LED Forward Voltage Drop (V)
LBB120
Typical LED Forward Voltage Drop
vs. Temperature
-1.5 -1.0 -0.5
0
0.5
Load Voltage (V)
1.0
1.5
2.0
0
10µs 100µs 1ms 10ms 100ms
1s
10s 100s
Time
*The Performance data shown in the graphs above is typical of device performance. For guaranteed parameters not indicated in the written specifications, please contact
our application department.
4
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Rev. 6
LBB120
Mechanical Dimensions
9.652 ± .381
(.380 ± .015)
8 Pin DIP Through Hole (Standard)
2.540 ± .127
8-.800 DIA. (.100 ± .005)
(8-.031 DIA.)
2.540 ± .127
(.100 ± .005)
7.620 ± .254
(.300 ± .010)
7.239 TYP.
(.285)
PC Board Pattern
(Top View)
3.302
(.130)
9.144 ± .508
(.360 ± .020)
6.350 ± .127
(.250 ± .005)
9.144 TYP.
(.360)
.457 ± .076
(.018 ± .003)
7.620 ± .127
(.300 ± .005)
8.077 ± .127
(.318 ± .005 )
9.652 ± .381
(.380 ± .015)
8 Pin DIP Surface Mount (“S” Suffix)
4.445 ± .127
(.175 ± .005)
3.302
(.130)
.254 TYP.
(.010)
(.100 ± .005)
9.525 ± .254
(.375 ± .010)
6.350 ± .127
(.250 ± .005)
.635 TYP.
(.025)
PC Board Pattern
(Top View)
2.540 ± .127
2.540 ± .127
(.100 ± .005)
7.620 ± .254
(.300 ± .010)
8.305 ± .127
(.327 ± .005)
1.905 ± .127
(.075 ± .005)
.457 ± .076
(.018 ± .003)
1.498 ± .127
(.059 ± .005)
8.077 ± .127
(.318 ± .005)
9.652 ± .381
(.380 ± .015)
2.540 ± .127
(.100 ± .005)
8 Pin Flatpack (“P” Suffix)
2.159 TYP.
(.085)
PC Board Pattern
(Top View)
2.540 ± .127
(.100 ± .005)
7.620 ± .254
(.300 ± .010)
2.286 MAX.
.635 ± .127
(.090)
(.025)
7.620 ± .127
(.300 ± .005)
6.350 ± .127
(.250 ± .005)
6.350 ± .127
(.250 ± .005)
9.398 ± .127
(.370 ± .005)
8.763 ± .127
(.345 ± .005)
.203
(.008)
1.193
(.047)
.457 ± .076
(.018 ± .003)
8.077 ± .127
(.318 ± .005)
.787
(.031)
Dimensions
mm
(inches)
Rev. 6
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5
LBB120
Mechanical Dimensions
Tape and Reel Packaging for 8 Pin Surface Mount Package
330.2 DIA.
(13.00)
6.731 MAX.
1.753 ± .102
(.265)
(.069 ± .004)
.406 MAX.
(.016)
Top Cover
Tape Thickness
.102 MAX.
(.004)
2.007 ± .102 1.498 ± .102 3.987 ± .102
(.079 ± .004) (.059 ± .004) (.157 ± .004)
7.493 ± .102
(.295 ± .004)
1
8
12.090
(.476)
10.300
(.405)
4.877
(.192)
Top Cover
Tape
Embossed Carrier
16.002 ± .305
(.630 ± .012)
.050R TYP.
11.989 ± .102
(.472 ± .004)
10.300 ± .102
(.405 ± .004)
1.549 ± .102
(.061 ± .004)
User Direction of Feed
Embossment
Tape and Reel Packaging for 8 Pin Flatpack Package
330.2 DIA.
(13.00)
Top Cover
Tape Thickness
.102 MAX.
(.004)
6.731 MAX.
1.753 ± 0.102
(.265)
(.069 ± .004)
.406 MAX.
(.016)
2.007 ± .102 1.498 ± .102 3.987 ± .102
(.079 ± .004) (.059 ± .004) (.157 ± .004)
7.493 ± .102
(.295 ± .004)
1
8
12.090
(.476)
10.287
(.405)
4.877
(.192)
Top Cover
Tape
Embossed Carrier
Embossment
16.002 ± .305
(.630 ± .012)
.050R TYP.
11.988 ± .102
(.472 ± .004)
10.287 ± .102
(.405 ± .004)
1.549 ± .102
(.061 ± .004)
User Direction of Feed
Dimensions
mm
(inches)
6
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Rev. 6
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Germany
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http://www.clare.com
Clare cannot assume responsibility for use of any circuitry other
than circuitry entirely embodied in this Clare product. No circuit
patent licenses nor indemnity are expressed or implied. Clare
reserves the right to change the specification and circuitry, without notice at any time. The products described in this document
are not intended for use in medical implantation or other direct life
support applications where malfunction may result in direct physical harm, injury or death to a person.
Specification: DS-LBB120-R6
©Copyright 2000, Clare, Inc.
OptoMOS® is a registered trademark of Clare, Inc.
All rights reserved. Printed in USA.
2/6/01