PLA160STR [CLARE]
Single Pole OptoMOS Relay; 单极OptoMOS继电器型号: | PLA160STR |
厂家: | CLARE |
描述: | Single Pole OptoMOS Relay |
文件: | 总6页 (文件大小:93K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
PLA160
Single Pole OptoMOS® Relay
Description
PLA160
300
Units
V
mA
Ω
PLA160 is a 300V, 50mA, 100Ω 1-Form-A relay. This per-
formance leader features the fastest switching speed
(50us) available in an OptoMOS relay.
Load Voltage
Load Current
Max RON
50
100
Features
• Small 6 Pin SOP Package
• Low Drive Power Requirements (TTL/CMOS
Compatible)
• No Moving Parts
• High Reliability
• Arc-Free With No Snubbing Circuits
• 1500VRMS Input/Output Isolation
• FCC Compatible
• No EMI/RFI Generation
• Machine Insertable, Wave Solderable
• Tape & Reel Version Available
Approvals
• UL/C-UL Recognized Component
File #: E76270
• BSI Certified - Certificate #: 8416
Ordering Information
Part #
PLA160
PLA160S
PLA160STR
Description
6 Pin DIP (50/Tube)
6 Pin Surface Mount (50/Tube)
6 Pin Surface Mount (1000/Reel)
Applications
• Instrumentation
• Multiplexers
• Data Acquisition
• Electronic Switching
• I/O Subsystems
• Meters (Watt-Hour, Water, Gas)
• Medical Equipment—Patient/Equipment Isolation
• Security Systems
Pin Configuration
• Aerospace
• Industrial Controls
• Reed Relay Replacement
PLA160 Pinout
PLA160 Pinout
DC Only Configuration
AC/DC Configuration
1
2
3
1
6
5
4
6
5
4
+ Control
– Control
+ Control
Load
+ Load
2
– Control
Do Not Use
Load
– Load
3
Do Not Use
Do Not Use
Switching Characteristics of
Normally Open (Form A) Devices
10ms
CONTROL
+
90%
10%
+
+
10%
LOAD
TOFF
TON
DS-PLA160-R3
1
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PLA160
Absolute Maximum Ratings (@ 25˚ 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.
Parameter
Min
Typ Max Units
Input Power Dissipation
-
-
1501 mW
Input Control Current
Peak (10ms)
-
-
-
-
50
1
mA
A
Reverse Input Voltage
Total Power Dissipation
-
-
-
-
5
V
8002 mW
Isolation Voltage
Input to Output
3750
-40
-
-
-
-
V
RMS
Operational Temperature
Storage Temperature
+85
°C
-40
+125 °C
Soldering Temperature
DIP Package
Surface Mount Package
(10 Seconds Max.)
-
-
-
-
+260 °C
+220 °C
1
Derate Linearly 1.33 mw/˚C
2
Derate Linearly 6.67 mw/˚C
Electrical Characteristics
Parameter
Conditions
Symbol
Min
Typ
Max
Units
Output Characteristics @ 25°C
Load Voltage (Peak)
-
V
-
-
300
V
L
Load Current (Continuous)
AC/DC Configuration
DC Configuration
-
-
IL
IL
-
-
-
-
50
80
mA
mA
Peak Load Current
10ms
ILPK
-
-
200
mA
On-Resistance
AC/DC Configuration
DC Configuration
IL=50mA
IL=80mA
RON
-
-
60
15
100
30
Ω
Ω
Off-State Leakage Current
V =300V
ILEAK
ILEAK
-
-
-
1
25
10
nA
nA
L
V =100V
L
Switching Speeds
Turn-On
Turn-Off
IF=10mA, V =10V
TON
TOFF
-
-
25
25
50
50
µS
µS
L
IF=10mA, V =10V
L
Output Capacitance
50V; f=1MHz
-
COUT
-
-
3
-
pF
Capacitance
Input to Output
-
3
-
pF
Input Characteristics @ 25°C
Input Control Current
IL=50mA
IF
IF
10
0.4
1.8
-
-
0.7
2.4
-
50
-
mA
mA
V
Input Dropout Current
-
Input Voltage Drop
IF=10mA
-
V
2.8
5
F
Reverse Input Voltage
V
V
R
Reverse Input Current
V =5V
IR
-
-
10
µA
R
Common Characteristics @ 25°C
Input to Output Capacitance
Input to Output Isolation
-
-
C
-
3
-
-
-
pF
I/O
V
3750
V
I/O
RMS
Rev. 3
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2
PLA160
PERFORMANCE DATA*
PLA160
Typical On-Resistance Distribution
(N=50 Ambient Temperature = 25°C)
PLA160
PLA160
Typical Blocking Voltage Distribution
(N=50 Ambient Temperature = 25°C)
Typical LED Forward Voltage Drop
(N=50 Ambient Temperature = 25°C)
(Load Current = 50mADC; I = 10mADC)
F
18
16
14
12
10
8
35
35
30
25
20
15
10
5
30
25
20
15
10
5
6
4
2
0
0
0
335 340 345 350
355 360 365
60
61
62
63
64
65
2.34
2.38
2.42
2.46
2.50
Blocking Voltage (V)
On-Resistance (Ω)
LED Forward Voltage Drop (V)
PLA160
PLA160
PLA160
Typical I for Switch Dropout
Typical Turn-On Time
Typical I for Switch Operation
F
F
(N=50 Ambient Temperature = 25°C)
(N=50 Ambient Temperature = 25°C)
(Load Current = 50mADC; I = 10mADC)
F
(N=50 Ambient Temperature = 25°C)
)
(Load Current = 50mADC
(Load Current = 50mADC)
30
25
20
15
10
5
30
25
20
15
10
5
30
25
20
15
10
5
0
0
0
0.9
1.1
1.3
1.5
1.7
1.9
0.9
1.1
1.3
1.5
1.7
1.9
0.025 0.030 0.035 0.040 0.045 0.050
LED Current (mA)
LED Current (mA)
Turn-On (ms)
PLA160
Typical Turn-Off Time
(N=50 Ambient Temperature = 25°C)
(Load Current = 50mADC; I = 10mADC)
PLA160
Typical Leakage vs. Temperature
(Measured across Pins 4 & 6)
PLA160
Typical Load Current vs. Temperature
F
0.07
0.06
0.05
0.04
0.03
0.02
0.01
0
30
80
70
60
50
40
30
20
10
0
25
20
15
10
5
20mA
10mA
5mA
0
-40
-20
0
20
40
60
80
100
0.015 0.020 0.025 0.030 0.035 0.040
-40 -20
0
20
40
60
80 100 120
Temperature (°C)
Turn-Off (ms)
Temperature (°C)
PLA160
PLA160
PLA160
Typical Turn-Off vs. Temperature
(Load Current = 50mADC)
Typical Turn-On vs. Temperature
(Load Current = 50mADC)
Typical Blocking Voltage vs. Temperature
380
0.14
0.12
0.10
0.08
0.06
0.04
0.02
0
0.12
0.10
0.08
0.06
0.04
0.02
0
375
370
365
360
355
350
345
340
335
10mA
20mA
10mA
80 100
-40
-20
0
20
40
60
80
100
-40
-20
0
20
40
60
-40
-20
0
20
40
60
80
100
Temperature (°C)
Temperature (°C)
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. 3
3
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PLA160
PERFORMANCE DATA*
PLA160
PLA160
PLA160
Typical Turn-On vs. LED Forward Current
(Load Current = 50mADC)
Typical Turn-Off vs.LED Forward Current
(Load Current = 50mADC)
Typical LED Forward Voltage Drop
vs. Temperature
3.6
3.2
2.8
2.4
2.0
1.6
0.045
0.032
0.040
0.035
0.030
0.025
0.020
0.015
0.010
0.005
0.031
0.030
0.029
0.028
0.027
0.026
0.025
50mA
30mA
20mA
10mA
5mA
0
5
10 15 20 25 30 35 40 45 50
0
5
10 15 20 25 30 35 40 45 50
-40 -20
0
20
40
60
80 100 120
LED Forward Current (mA)
LED Forward Current (mA)
Temperature (°C)
PLA160
PLA160
Typical I for Switch Operation
F
PLA160
Typical I for Switch Dropout
F
vs. Temperature
(Load Current = 50mADC)
Typical On-Resistance vs. Temperature
(Load Current = 50mADC; IF = 10mADC)
vs. Temperature
(Load Current = 50mA)
6
5
4
3
2
1
0
6
5
4
3
2
1
0
80
70
60
50
40
30
20
10
-40
-20
0
20
40
60
80
100
-40
-20
0
20
40
60
80
100
-40
-20
0
20
40
60
80
100
Temperature (°C)
Temperature (°C)
Temperature (°C)
PLA160
Typical Load Current vs. Load Voltage
(Ambient Temperature = 25°C)
IF = 10mADC
PLA160
Energy Rating Curve
50
0.45
0.40
0.35
0.30
0.25
0.20
0.15
0.10
0.05
0
40
30
20
10
0
-10
-20
-30
-40
-50
-3
-2
-1
0
1
2
3
10µs 100µs 1ms 10ms 100ms 1s
10s 100s
Load Voltage (V)
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.
Rev. 3
4
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PLA160
Mechanical Dimensions
8.382 ± .635
(.330 ± .025)
6 Pin DIP Surface Mount (“S” Suffix)
PC Board Pattern
(Top View)
2.540 ± .127
(.100 ± .005)
2.540 ± .127
(.100 ± .005)
7.620 ± .254
(.300 ± .010)
9.525 ± .254
(.375 ± .010)
3.302
(.130)
4.445 ± .127
(.175 ± .005)
6.350 ± .127
(.250 ± .005)
8.305 ± .127
(.327 ± .005)
1.905 ± .127
(.075 ± .005)
.635 TYP.
(.025)
.254 TYP.
(.010)
.457 ± .076
(.018 ± .003)
1.499 ± .127
(.059 ± .005)
6 Pin DIP Through Hole (Standard)
8.382 ± .635
PC Board Pattern
(Top View)
(.330 ± .025)
2.540 ± .127
2.540 ± .127
(.100 ± .005)
6-.800 DIA.
(.100 ± .005)
7.620 ± .254
(.300 ± .010)
(6-.031 DIA.)
3.302
(.130)
7.620 ± .127
(.300 ± .005)
6.350 ± .127
(.250 ± .005)
9.144
(.360)
6.350 ± .127
(.250 ± .005)
7.239 TYP.
(.285)
9.144 ± .508
(.360 ± .020)
5.080 ± .127
(.200 ± .005)
.457 ± .076
(.018 ± .003)
Tape and Reel Packaging for 6 Pin Surface Mount Package
330.2 DIA.
2.007 ± .102 1.498 ± .102 3.987 ± .102
(.079 ± .004) (.059 ± .004) (.157 ± .004)
(13.00)
6.731 MAX.
(.265)
1.753 ± .102
(.069 ± .004)
.406 MAX.
(.016)
Top Cover
Tape Thickness
.102 MAX.
(.004)
7.493 ± .102
(.295 ± .004)
16.002 ± .305
(.630 ± .012)
1
6
12.090
(.476)
10.100
(.398)
4.877
(.192)
Top Cover
Tape
.050R TYP.
11.989 ± .102
(.472 ± .004)
10.100 ± .102
(.398 ± .004)
1.549 ± .102
(.061 ± .004)
Embossed Carrier
User Direction of Feed
Embossment
Dimensions
mm
(inches)
Rev. 3
5
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Worldwide Sales Offices
CLARE LOCATIONS
EUROPE
ASIA PACIFIC
Clare Headquarters
78 Cherry Hill Drive
Beverly, MA 01915
Tel: 1-978-524-6700
Fax: 1-978-524-4900
Toll Free: 1-800-27-CLARE
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Bampslaan 17
B-3500 Hasselt (Belgium)
Tel: 32-11-300868
Fax: 32-11-300890
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Clare
Room N1016, Chia-Hsin, Bldg II,
10F, No. 96, Sec. 2
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Tel: 886-2-2523-6368
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145 Columbia
Aliso Viejo, CA 92656-1490
Tel: 1-949-831-4622
Fax: 1-949-831-4628
France
Clare France Sales
Lead Rep
99 route de Versailles
91160 Champlan
France
Tel: 33 1 69 79 93 50
Fax: 33 1 69 79 93 59
SALES OFFICES
AMERICAS
Germany
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ActiveComp Electronic GmbH
Mitterstrasse 12
85077 Manching
Germany
Tel: 49 8459 3214 10
Fax: 49 8459 3214 29
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Clare
78 Cherry Hill Drive
Beverly, MA 01915
Tel: 1-978-524-6700
Fax: 1-978-524-4900
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Central Region
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3425 Harvester Road, Suite 202
Burlington, Ontario L7N 3N1
Tel: 1-905-333-9066
Fax: 1-905-333-1824
http://www.clare.com
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Clare UK Sales
Marco Polo House
Cook Way
Bindon Road
Taunton
UK-Somerset TA2 6BG
Tel: 44-1-823 352541
Fax: 44-1-823 352797
Western Region
Clare
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Tracy, CA 95376
Tel: 1-209-832-4367
Fax: 1-209-832-4732
Toll Free: 1-800-27-CLARE
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, with-
out 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 phys-
ical harm, injury or death to a person.
Canada
Clare Canada Ltd.
3425 Harvester Road, Suite 202
Burlington, Ontario L7N 3N1
Tel: 1-905-333-9066
Fax: 1-905-333-1824
Specification: DS-PLA160-R3
©Copyright 2000, Clare, Inc.
OptoMOS® is a registered trademark of Clare, Inc.
All rights reserved. Printed in USA.
2/22/01
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