OAC10/32-L [PANASONIC]
Trigger Output SSR, 1-Channel, ROHS COMPLIANT PACKAGE-5;型号: | OAC10/32-L |
厂家: | PANASONIC |
描述: | Trigger Output SSR, 1-Channel, ROHS COMPLIANT PACKAGE-5 输出元件 光电 |
文件: | 总4页 (文件大小:113K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
INPUT/OUTPUT RELAYS
FOR INTERFACE BETWEEN
THE CPU AND THE LOAD
I/O-RELAYS
UL File No.: E43149
CSA File No.: LR26550
• Input and output modules for interfacing between
CPU and external input devices or loads
IAC: AC input (yellow)
10
.394
43
1.693
OAC: AC output (black)
IDC: DC input (white)
ODC: DC output (red)
• Excellent transient noise immunity
• Breakdown voltage: 4,000 V between input and output
20.5
.807
• Zero-cross switching for reducing EMI
• LED operation indication types available
mm inch
EXAMPLE OF I/O SYSTEM CONSTRUCTION
Recently, the microcomputer shown in
the left has come into use, with a rapid
increase in the use of feedback control
for process controllers. As an input/out-
put interface relay, it represents a fast
responding interface with long life, noise-
less, PC board mounting facility, making
circuit design and manufacture simple,
and providing amplification of mainte-
nance with space saving. Our company’s
I/O relays have been grouped for use
with either AC or DC devices as AC out-
put type, AC input type, DC output type,
and DC input. In addition, the I/O use
relay is modularized identically, respond-
ing to the various load types for PC
board mounting. Because combinations
can be freely used, circuit design has
been greatly facilitated. Accordingly, the
above diagram of interface PC board
mounting is a practical construction
which can be used.
PC board
5 V DC
5 V DC
5 V DC
5 V DC
5 V DC
5 V DC
120 V AC
120 V AC
24 V DC
24 V DC
120 V AC
24 V DC
AC Output
module
AC
motor
AC intput
module
DC Output
module
DC
solenoid
Micro-computor
or logic circuit
DC Input
module
Limit switch
AC Input
module
DC Input
module
Temperature
controller
TYPICAL APPLICATIONS
1. Optimum for minicomputer and micro-
computer use, and for feed back control
process control systems.
Robot, NC machine, Automatic
Assembling machine.
2. Programmable controllers controls for
motors, solenoids and solenoid valves.
ORDERING INFORMATION
I
AC
4/15
A
L
Logic supply or
control voltage
Input or Output
AC or DC
Input or Output Voltage
Operation indication
Input
Output
Nil: No operation
indication
L: Operation
AC: AC input or
AC output
DC: DC input or
DC output
3/15: 3 to 15 V DC
4/15: 4 to 15 V DC
10/32: 10 to 32 V DC
Nil
A
80 to 140 V AC
3 to 32 C DC
75 to 125 V AC
3 to 60 V DC
I: Input module
O: Output module
75 to 250 V AC
10 to 200 V DC
indication
160 to 280 V AC
(Note) Standard packing: Carton: 20 pcs.; Case: 200 pcs.
TYPES
Input modules
Output modules
Part No.
No LED With LED
Part No.
No LED With LED
OAC4/15-L
75 to 250 V AC OAC3/15-A OAC4/15-AL
75 to 125 V AC OAC10/32 OAC10/32-L
75 to 250 V AC OAC10/32-A OAC10/32-AL
3 to 60 V DC ODC3/15 ODC4/15-L
10 to 200 V DC ODC3/15-A ODC4/15-AL
3 to 60 V DC ODC10/32 ODC10/32-L
10 to 200 V DC ODC10/32-A ODC10/32-AL
Logic supply
voltage
Input
voltage
Logic supply
Type
Output
voltage
Type
voltage
80 to 140 V AC IAC4/15
160 to 280 V AC IAC4/15-A
80 to 140 V AC IAC10/32
IAC4/15-L
IAC4/15-AL
IAC10/32-L
75 to 125 V AC OAC3/15
3 to 15 V DC or
4 to 15 V DC
4 to 15 V DC
AC
AC
10 to 32 V DC
10 to 32 V DC
3 to 15 V DC or
160 to 280 V AC IAC 10/32-A IAC10/32-AL
4 to 15 V DC
10 to 32 V DC
3 to 32 V DC
3 to 32 V DC
IDC4/15
IDC4/15-L
DC
4 to 15 V DC
IDC10/32
IDC10/32-L
DC
10 to 32 V DC
SPECIFICATIONS
Rating (at 20°C 68°F, Voltage ripple of logic side: less than 1%)
1. Input module
IAC IAC IAC
4/15 4/15-L 10/32 10/32-L 4/15-A4/15-AL10/32-A10/32-AL
IAC
IAC
IAC
IAC
IAC
IDC4/15
IDC4/15-L
IDC10/32 IDC10/32-L
Input voltage
80 to 140 V AC
5 mA (100 V)
80 V AC
160 to 280 V AC
5 mA (200 V)
160 V AC
3 to 32 V DC
Input current, Max.
20 mA (32 V)
3 V
Input
side
Operate voltage, Max.
Release voltage Min.
Logic supply voltage
Logic supply current, Max.
Breakdown voltage
10 V AC
20 V AC
0.8 V
4 to 15 V
10 to 32 V
4 to 15 V
15 mA
10 to 32 V
4 to 15 V
10 to 32 V
15 mA
30 V
Logic
side
30 V
25 mA
100 µA
0.4 V
Output current, Max.
Max. “OFF-side” leakage current
Max. “ON-side” voltage drop
25 mA
100 µA
0.4 V
2. Output module
OAC
3/15
OAC
OAC
OAC
OAC
OAC
OAC
OAC
ODC
ODC
ODC
ODC
ODC
ODC
ODC
ODC
4/15-L 10/32 10/32-L 3/15-A 4/15-AL 10/32-A 10/32-AL 3/15
4/15-L 10/32 10/32-L 3/15-A 4/15-AL 10/32-A 10/32-AL
Logic voltage range
3 to 15 V 4 to 15 V
10 to 32 V
5 kΩ
3 to 15 V 4 to 15 V
10 to 32 V
6 kΩ 5 kΩ
3 to 15 V 4 to 15 V
10 to 32 V
6 kΩ 5 kΩ
3 to 15 V 4 to 15 V
10 to 32 V
6 kΩ 5 kΩ
Logic
side
Input Impedance (Approx.) 1.6 kΩ 1.7 kΩ 6 kΩ
1.6 kΩ 1.7 kΩ
1.6 kΩ 1.7 kΩ
1.6 kΩ 1.7 kΩ
Drop-out voltage, Min.
0.8V
0.8V
Max. load current
2 A (Ambient temperature: Max. 30°C)
2 A (Ambient temp.: Max. 40°C)
1 A (Ambient temp.: Max. 40°C)
Output voltage
75 to 125 V AC
75 to 250 V AC
5 mA (200 V)
3 to 60 V DC
10 to 200 V DC
Output
side
Non-repetitive surge current
Max. “OFF-state” leakage current
Max. “ON-state” voltage current
Min. load current
30 A (in one cycle at 60 Hz)
5 A (for 1 s)
5 mA (100 V)
1 mA (60 V)
1.6 V
1 mA (200 V)
2.3 V
1.6V
50 mA
5 mA
Characteristics (at 20°C 68°F, Voltage ripple of logic side: less than 1%)
Input modules
Out put module
IAC
IDC
5 ms
5 ms
OAC
ODC
0.5 ms
2 ms
Operate time, max.
Release time, max.
Insulation resistance
Breakdown voltage
20 ms
20 ms
(1/2 cycle of voltage sine wave) +1 ms
(1/2 cycle of voltage sine wave) +1 ms
109 Ω between input and output (at 500 V DC)
4,000 V AC between input and output
Functional
117.6 mm/s2 {12G}, 10 to 55 Hz at double amplitude of 2 mm (10 minutes for X, Y, Z axis)
117.6 mm/s2 {12G}, 10 to 55 Hz at double amplitude of 2 mm (1hour for X, Y, Z axis)
Min. 980 m/s2 {100G} (4 times each for X, Y, Z axis)
Vibration
resistance
Destructive
Functional
Destructive
Shock
resistance
Min. 980 m/s2 {100G} (5 times each for X, Y, Z axis)
Ambient temperature
Storage temperature
Operational method
–30°C to +80°C –22°F to +176°F
–30°C to +100°C –22°F to +212°F
—
–30°C to +80°C –22°F to +176°F
–30°C to +100°C –22°F to +212°F
Zero-cross (Turn-ON and Turn-OFF)
—
7
mm inch
PC board pattern (Copper-side view)
DIMENSIONS
.276
4.3
.169
Input module (IAC, IDC)
33.02
1.300
10
.394
Copper foil
1
2
3
4
5
43
1.693
10.16
.400
5.08 5.08
.200 .200
12.7
.500
5-1.2DIA.
5-.047DIA.
20
17.4
.787
.685
4
.157
IAC
IDC
5.08
.200
0.50
.020
ቢ
ባ
ቤ
ብ
ቦ
Input: AC
Input: AC
Vcc
Input: DC +
Input: DC –
Vcc
5.08
12.7
.500
10.16
.400
.200
5.08
5-0.8DIA.
.200
5-.031DIA.
Logic output Logic output
Grounding
Yellow
Grounding
White
4.7
Body color
.185
543
2
1
7
Output modules (OAC, ODC)
.276
4.3
.169
PC board pattern (Copper-side view)
27.94
10
1.100
Copper foil
.394
1
2
3
4
43
1.693
10.16
.400
5.08
.200
12.7
.500
4-1.2DIA.
4-.047DIA.
20
17.4
.787
.685
4
.157
OAC
ODC
5.08
.200
0.50
.020
ቢ
ባ
ቤ
ብ
Output: AC Output: DC +
Output: AC Output: DC –
5.08
.200
12.7
.500
10.16
.400
4-0.8DIA.
Input: DC +
Input: DC –
Black
Input: DC +
Input: DC –
Red
4-.031DIA.
Body color
4.7
.185
43
2
1
REFERENCE DATA
1-1. Load current vs. ambient temperature
1-2. Load current vs. ambient temperature
2-1. Surge current and time (OAC)
(OAC)
(ODC)
2.5
2.5
2 A type
2.0
2.0
1.5
1.0
0.5
0
30
20
10
0
1.5
1 A type
1.0
0.5
0
-30
0
20
40
60
80
-30
0
20
40
60
80
5
10
50 100
Ambient temperature, °C
Ambient temperature, °C
No. of cycles at 60 Hz
2-2. Surge current and time (IDC)
3. Input voltage and current (OAC, ODC)
10
OAC3/15, OAC3/15-A
ODC3/15, ODC3/15-A
22
20
18
16
14
12
10
8
OAC4/15-L, OAC4/15-AL
ODC4/15-L, ODC4/15-AL
OAC10/32-L, OAC10/32-AL
ODC10/32-L, ODC10/32-AL
5
6
OAC10/32, OAC10/32-A
ODC10/32, ODC10/32-A
4
2
0
0
10
20
30
50 100
500 1,000
Time, ms
Input voltage, V
BLOCK DIAGRAM
IAC without LED
IAC with LED
IDC without LED
IDC with LED
+
+
1
2
1
1
1
–
–
2
2
2
Vcc
Vcc
Vcc
Vcc
+
+
+
+
LED
3
3
4
5
3
4
5
3
4
5
LED
LED
LED
LED
4
5
OAC without LED
OAC with LED
ODC without LED
ODC with LED
+
+
1
1
1
1
Zero
Zero
–
–
switching
switching
circuit
2
2
2
2
circuit
Amp.
circuit
Amp.
circuit
LED
+
3
+
3
+
3
+
3
LED
LED
–
–
–
–
4
4
4
4
Module input/output
Wiring method (8 input/output example)
Wiring can be used commonly for input
modules and output modules.
Logic power
1
2 3 4 5 6 7 8 9 10 11 12 13 14 15 16
input
–
+
1
1
1
1
1
1
2
3
4
5
1
2
3
4
5
1
Therefore, wiring becomes simple.
2
3
4
5
2
3
4
5
2
3
4
5
2
3
4
5
2
3
4
5
2
3
4
5
Terminal Number of I/O modules.
1
2
GND
3
4
5
6
7
8
9
10
+Vcc
For Cautions for Use
6/1/1999
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