open (1-Form-A) relay. It features one of the lowest
on-resistances available in a 350V OptoMOS relay.
Features
•
3750V
rms
Input/Output Isolation
•
Low Drive Power Requirements (TTL/CMOS
Compatible)
•
No Moving Parts
•
High Reliability
•
Arc-Free With No Snubbing Circuits
•
FCC Compatible
•
VDE Compatible
•
No EMI/RFI Generation
•
Small 6-Pin DIP Package
•
Machine Insertable, Wave Solderable
•
Surface Mount Tape & Reel Version Available
Approvals
•
UL Recognized Component: File # E76270
•
CSA Certified Component: Certificate # 1172007
•
EN/IEC 60950 Certified Component:
TUV Certificate # B 09 07 49410 004
Ordering Information
Part #
LCA100
LCA100S
LCA100STR
Description
6-Pin DIP (50/Tube)
6-Pin Surface Mount (50/Tube)
6-Pin Surface Mount (1,000/Reel)
Pin Configuration
Applications
•
Telecommunications
•
Telecom Switching
•
Tip/Ring Circuits
•
Modem Switching (Laptop, Notebook,
Pocket Size)
•
Hook Switch
•
Dial Pulsing
•
Ground Start
•
Ringing Injection
•
Instrumentation
•
Multiplexers
•
Data Acquisition
•
Electronic Switching
•
I/O Subsystems
•
Meters (Watt-Hour, Water, Gas)
•
Medical Equipment—Patient/Equipment Isolation
•
Security
•
Aerospace
•
Industrial Controls
+ Control
– Control
Do Not Use
AC/DC Configuration
1
2
3
6
5
4
Load
Do Not Use
Load
DC Only Configuration
+ Control
– Control
Do Not Use
1
2
3
6
5
4
+ Load
– Load
Switching Characteristics of
Normally Open Devices
Form-A
I
F
90%
I
LOAD
t
on
10%
t
off
Pb
DS-LCA100-R02
e
3
www.ixysic.com
1
I
NTEGRATED
C
IRCUITS
D
IVISION
Absolute Maximum Ratings @ 25˚ C
Parameter
Blocking Voltage
Reverse Input Voltage
Input Control Current
Peak (10ms)
Input Power Dissipation
1
Total Power Dissipation
2
Isolation Voltage, Input to Output
Operational Temperature
Storage Temperature
1
2
LCA100
Ratings
350
5
50
1
150
800
3750
-40 to +85
-40 to +125
Units
V
P
V
mA
A
mW
mW
V
rms
°C
°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 conditions
beyond those indicated in the operational sections of this
data sheet is not implied.
Derate linearly 1.33 mW / ºC
Derate linearly 6.67 mW / ºC
Electrical Characteristics @ 25ºC
Parameter
Output Characteristics
Load Current
AC/DC Configuration, Continuous
1
DC Configuration, Continuous
1
Peak
On-Resistance
2
AC/DC Configuration
DC Configuration
Off-State Leakage Current
Switching Speeds
Turn-On
Turn-Off
Output Capacitance
Input Characteristics
Input Control Current to Activate
Input Control Current to Deactivate
Input Voltage Drop
Reverse Input Current
Common Characteristics
Capacitance, Input to Output
1
2
Conditions
Symbol
Min
Typ
Max
Units
-
-
10ms
I
L
=120mA
I
L
=200mA
V
L
=350V
I
L
I
L
I
LPK
-
-
-
-
-
-
-
-
-
-
0.4
0.9
-
-
-
-
-
-
-
-
-
-
35
-
0.7
1.2
-
3
120
200
350
25
8
1
5
5
-
5
-
1.4
10
-
mA
rms
& mA
DC
mA
DC
mA
P
µA
ms
ms
pF
mA
mA
V
µA
pF
R
ON
I
LEAK
t
on
t
off
C
OUT
I
F
I
F
V
F
I
R
C
I/O
I
F
= 5mA, V
L
= 10V
50V, f=1MHz
I
L
= 120mA
-
I
F
= 5mA
V
R
= 5V
-
If both poles operate, then the load current must be derated so that the package power dissipation value is not exceeded.
Measurement taken within 1 second of on-time.
2
www.ixysic.com
R02
I
NTEGRATED
C
IRCUITS
D
IVISION
PERFORMANCE DATA @25ºC (Unless Otherwise Noted)*
35
30
Device Count (N)
25
20
15
10
5
0
1.17
1.19
1.21
1.23
1.25
LED Forward Voltage Drop (V)
Device Count (N)
LCA100
Typical LED Forward Voltage Drop
(N=50, I
F
=5mA)
25
20
15
10
5
0
1.72
Typical Turn-On Time
(N=50, I
F
=5mA, I
L
=120mA
DC
)
25
20
15
10
5
0
Typical Turn-Off Time
(N=50, I
F
=5mA, I
L
=120mA
DC
)
Device Count (N)
1.87
2.02
2.17
2.32
2.46
2.61
0.06
0.08
0.10
0.13
0.15
0.17
0.19
Turn-On Time (ms)
Turn-Off Time (ms)
25
20
15
10
5
0
Typical I
F
for Switch Operation
(N=50, I
L
=120mA
DC
)
25
20
15
10
5
0
Typical I
F
for Switch Dropout
(N=50, I
L
=120mA
DC
)
35
30
Device Count (N)
25
20
15
10
5
0
Typical On-Resistance Distribution
(N=50, I
L
=120mA
DC
)
Device Count (N)
0.85
0.90
0.95
1.00
1.05
1.10
1.15
Device Count (N)
0.85
0.90
0.95
1.00
1.05
1.10
1.15
13.93 14.05 14.17 14.29 14.41 14.54 14.66
On-Resistance ( )
LED Current (mA)
LED Current (mA)
Typical Blocking Voltage Distribution
(N=50)
35
30
Device Count (N)
25
20
15
10
5
0
369.8 374.6 379.4 384.1 388.9 393.7 398.4
Blocking Voltage (V
P
)
Typical LED Forward Voltage Drop
vs. Temperature
LED Forward Voltage Drop (V)
1.8
Turn-On Time (ms)
1.6
1.4
1.2
1.0
0.8
-40
-20
0
20
40
60
80
100
120
Temperature (ºC)
3.0
2.5
2.0
1.5
1.0
0.5
0
0
5
Typical Turn-On Time
vs. LED Forward Current
(I
L
=130mA
DC
)
0.30
Turn-Off Time (ms)
0.25
0.20
0.15
0.10
0.05
0
Typical Turn-Off Time
vs. LED Forward Current
(I
L
=130mA
DC
)
I
F
=50mA
I
F
=10mA
I
F
=5mA
10
15
20
25
30
35
40
45
50
0
5
10
15
20
25
30
35
40
45
50
LED Forward Current (mA)
LED Forward Current (mA)
*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.
R02
www.ixysic.com
3
I
NTEGRATED
C
IRCUITS
D
IVISION
PERFORMANCE DATA @25ºC (Unless Otherwise Noted)*
Typical Turn-On Time
vs. Temperature
(I
L
=80mA
DC
)
Turn-Off Time (ms)
LCA100
3.0
Turn-On Time (ms)
2.5
2.0
I
F
=5mA
1.5
1.0
0.5
0
-40
-20
0
20
40
60
80
100 120
Temperature (ºC)
I
F
=10mA
0.50
0.45
0.40
0.35
0.30
0.25
0.20
0.15
0.10
0.05
0
-40
-20
Typical Turn-Off Time
vs. Temperature
(I
L
=80mA
DC
)
30
On-Resistance ( )
25
Typical Steady-State
On-Resistance vs. Temperature
(I
L
=120mA
DC
)
I
F
=10mA
AC/DC Configuration
I
F
=5mA
20
15
10
DC Configuration
5
0
I
F
=5mA/10mA
0
20
40
60
80
100
120
-40
-20
0
20
40
60
80
100 120
Temperature (ºC)
Temperature (ºC)
5
LED Current (mA)
4
3
2
1
0
-40
Typical I
F
for Switch Operation
vs. Temperature
(I
L
=80mA)
5
LED Current (mA)
4
3
2
1
0
Typical I
F
for Switch Dropout
vs. Temperature
(I
L
=80mA)
Load Current (mA)
150
100
50
0
-50
-100
-150
Typical Load Current vs. Load Voltage
(I
F
=5mA)
-20
0
20
40
60
80
100 120
-40
-20
0
20
40
60
80
100 120
-3
-2
-1
0
1
2
3
Temperature (ºC)
Temperature (ºC)
Load Voltage (V)
Maximum Load Current
vs. Temperature
220
200
Load Current (mA)
180
160
140
120
100
80
60
0
-40
-20
0
20
40
60
80
100
120
Temperature (ºC)
AC/DC Configuration
I
F
=10mA
I
F
=5mA
Blocking Voltage (V
P
)
DC Configuration
I
F
=10mA
I
F
=5mA
410
405
Typical Blocking Voltage
vs. Temperature
0.016
0.014
Leakage ( A)
0.012
0.010
0.008
0.006
0.004
0.002
-40
-20
0
20
40
60
80
100
0
-40
Typical Leakage vs. Temperature
Measured across Pins 4&6
400
395
390
385
380
375
Temperature (ºC)
-20
0
20
40
60
80
100
Temperature (ºC)
Energy Rating Curve
1.0
0.9
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
10 s 100 s 1ms 10ms 100ms
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.
Load Current (A)
1s
10s
100s
4
www.ixysic.com
R02
I
NTEGRATED
C
IRCUITS
D
IVISION
Manufacturing Information
Moisture Sensitivity
LCA100
All plastic encapsulated semiconductor packages are susceptible to moisture ingression. IXYS Integrated
Circuits Division classified all of its plastic encapsulated devices for moisture sensitivity according to
the latest version of the joint industry standard,
IPC/JEDEC J-STD-020,
in force at the time of product
evaluation. We test all of our products to the maximum conditions set forth in the standard, and guarantee proper
operation of our devices when handled according to the limitations and information in that standard as well as to any
limitations set forth in the information or standards referenced below.
Failure to adhere to the warnings or limitations as established by the listed specifications could result in reduced
product performance, reduction of operable life, and/or reduction of overall reliability.
This product carries a
Moisture Sensitivity Level (MSL) rating
as shown below, and should be handled according
to the requirements of the latest version of the joint industry standard
IPC/JEDEC J-STD-033.
Device
LCA100 / LCA100S
Moisture Sensitivity Level (MSL) Rating
MSL 1
ESD Sensitivity
This product is
ESD Sensitive,
and should be handled according to the industry standard
JESD-625.
Reflow Profile
This product has a maximum body temperature and time rating as shown below. All other guidelines of
J-STD-020
must be observed.
Device
LCA100 / LCA100S
Maximum Temperature x Time
250ºC for 30 seconds
Board Wash
IXYS Integrated Circuits Division recommends the use of no-clean flux formulations. However, board washing to
remove flux residue is acceptable. Since IXYS Integrated Circuits Division employs the use of silicone coating as
an optical waveguide in many of its optically isolated products, the use of a short drying bake could be necessary
if a wash is used after solder reflow processes. Chlorine- or Fluorine-based solvents or fluxes should not be used.
Cleaning methods that employ ultrasonic energy should not be used.
主题:自备终端(BYOD)发展趋势;用员工自己的移动设备来控制对工作设施及设备的使用,会对信息安全产生怎样的影响;在不使公司有安全风险或不损害员工隐私的前提下,有哪些方式能安全地实现这样的设施及设备使用。 自备终端(Bring Your Own Device,简称BYOD),即企业允许员工离职时保留自己的手机,这种做法正日益流行。如今智能手机功能也越来越多,我们不仅能用自己的手机访问电脑、网...[详细]
C++ 属于面向对象的编程语言,OOP的思想不必多说,特别对于复杂的软件工程来说,利用OOP绝对是事半功倍,相对于传统的C来说; 当然用C来写单片机程序无可厚非,已经延续了一个传统,从大学时学的开始到工作岗位,好多人都是一直用C来做,但是既然Keil支持C++编译, 可以用C++来编写你的代码,可以利用高级语言来结构化,清晰化你的程序,为嘛不用呢!哈哈,个人看法!下面进入正题: C+...[详细]