IACM-IOLM4A4B-ECT/PN/EIP
Superisys
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Superisys 8-port (4A+4B) hybrid IO-Link master station is a strategically forward-looking engineering product designed for mid-to-high-end applications. It is particularly suitable for complex automation applications that simultaneously involve high-dynamic motion control, large-volume data acquisition, and numerous standard I/O devices. Choosing this master station signifies that performance bottlenecks, lifecycle costs, and system scalability have been fully considered from the initial project planning stages, making it an excellent choice for building high-performance, high-reliability intelligent production units.
The 8-port (4-input, 4-output) IO-LINK master is a hybrid industrial communication device that provides:
4 IO-LINK input ports (for connecting sensors, RFID and other devices)
4 IO-LINK output ports (for controlling actuators, valve islands, indicator lights, etc.)
Supports standard IO-LINK communication (COM1/COM2/COM3)
Can be configured as digital I/O (DI/DO) mode.
| Function | Advantage |
| Mixed I/O Configuration | 4 inputs (for sensors) + 4 outputs (for actuators), flexible to meet different needs |
| High-speed communication | Support IO-LINK V1.1 (230.4 kbps), PROFINET/EtherNet/IP optional |
| Remote parameterization | Directly configure device parameters through PLC or host computer to reduce downtime |
| Diagnostic function | Real-time monitoring of equipment status (short circuit, disconnection, overload, etc.) |
| Compact design | Save control cabinet space and support DIN rail installation |
Parameter
| Model | IACM-IOLM4A4B-ECT | IACM-IOLM4A4B-PN | IACM-IOLM4A4B-EIP |
| Communication protocol | ![]() | ![]() | ![]() |
Shell Material | Aluminum Alloy | ||
| Color | Silver | ||
| Product description | IO-LINK master module | ||
| 4 Class A port, 4 ClassB port, | |||
| IP67 protection class | |||
| I/O connection mode | M12, 5pin hole holder, A code | ||
| IO-Link master parameters | |||
| Number of master stations | The maximum configurable 8 ports | ||
| Master connection mode | M12, 5-core, A-code, female head | ||
| lO-link version | V1.1.2 | ||
| Communication rate | COM1:4.8KBps | ||
| COM2;38.4KBps | |||
| COM3:230.4KBps | |||
| The port voltage is L+ | type.24VDC(via US) | ||
| The port current is L+ | 2A(via US) | ||
| ClassB auxiliary voltage | type.24VDC(viaUA) | ||
| ClassB auxiliary voltage | 2A (via UA) | ||
| Class A | 4port ,X1.….X4 | ||
| Class B | 4port ,X5.….X8 | ||
| Master-master communication distance | ≤100meters | ||
| Digital input and output parameters | |||
| Number of inputs | 4 way, adaptive | ||
| Input port location | X1…X8 | ||
| Polarity of input | PNP | ||
| Signal "0" voltage | -0.3…5VDC | ||
| Signal "1" voltage | 12…30VDC | ||
| incoming current | type.5mA(via US) | ||
| Number of outputs | 4 way, adaptive | ||
| Output port location | X1…X4 | ||
| Polarity of input | PNP | ||
| current output | Single channel 2A(via UA) | ||
| Port protection | Power short circuit protection, power supply port overload protection | ||
Superisys 8-port (4A+4B) hybrid IO-Link master station is a strategically forward-looking engineering product designed for mid-to-high-end applications. It is particularly suitable for complex automation applications that simultaneously involve high-dynamic motion control, large-volume data acquisition, and numerous standard I/O devices. Choosing this master station signifies that performance bottlenecks, lifecycle costs, and system scalability have been fully considered from the initial project planning stages, making it an excellent choice for building high-performance, high-reliability intelligent production units.
The 8-port (4-input, 4-output) IO-LINK master is a hybrid industrial communication device that provides:
4 IO-LINK input ports (for connecting sensors, RFID and other devices)
4 IO-LINK output ports (for controlling actuators, valve islands, indicator lights, etc.)
Supports standard IO-LINK communication (COM1/COM2/COM3)
Can be configured as digital I/O (DI/DO) mode.
| Function | Advantage |
| Mixed I/O Configuration | 4 inputs (for sensors) + 4 outputs (for actuators), flexible to meet different needs |
| High-speed communication | Support IO-LINK V1.1 (230.4 kbps), PROFINET/EtherNet/IP optional |
| Remote parameterization | Directly configure device parameters through PLC or host computer to reduce downtime |
| Diagnostic function | Real-time monitoring of equipment status (short circuit, disconnection, overload, etc.) |
| Compact design | Save control cabinet space and support DIN rail installation |
Parameter
| Model | IACM-IOLM4A4B-ECT | IACM-IOLM4A4B-PN | IACM-IOLM4A4B-EIP |
| Communication protocol | ![]() | ![]() | ![]() |
Shell Material | Aluminum Alloy | ||
| Color | Silver | ||
| Product description | IO-LINK master module | ||
| 4 Class A port, 4 ClassB port, | |||
| IP67 protection class | |||
| I/O connection mode | M12, 5pin hole holder, A code | ||
| IO-Link master parameters | |||
| Number of master stations | The maximum configurable 8 ports | ||
| Master connection mode | M12, 5-core, A-code, female head | ||
| lO-link version | V1.1.2 | ||
| Communication rate | COM1:4.8KBps | ||
| COM2;38.4KBps | |||
| COM3:230.4KBps | |||
| The port voltage is L+ | type.24VDC(via US) | ||
| The port current is L+ | 2A(via US) | ||
| ClassB auxiliary voltage | type.24VDC(viaUA) | ||
| ClassB auxiliary voltage | 2A (via UA) | ||
| Class A | 4port ,X1.….X4 | ||
| Class B | 4port ,X5.….X8 | ||
| Master-master communication distance | ≤100meters | ||
| Digital input and output parameters | |||
| Number of inputs | 4 way, adaptive | ||
| Input port location | X1…X8 | ||
| Polarity of input | PNP | ||
| Signal "0" voltage | -0.3…5VDC | ||
| Signal "1" voltage | 12…30VDC | ||
| incoming current | type.5mA(via US) | ||
| Number of outputs | 4 way, adaptive | ||
| Output port location | X1…X4 | ||
| Polarity of input | PNP | ||
| current output | Single channel 2A(via UA) | ||
| Port protection | Power short circuit protection, power supply port overload protection | ||
1. High Dynamic Motion Control + Standard Sensor Monitoring
Scenario: A high-speed gripping and placement unit.
Class B Port Application: Connects to intelligent servo drives or high-precision pneumatic proportional valves that support IO-Link. These devices require communication at the fastest COM3 rate to achieve millisecond-level real-time parameter transmission (e.g., target position, velocity curve) and high-frequency status feedback (e.g., actual position, torque, diagnostics), ensuring fast and accurate movements.
Class A Port Application: Simultaneously connects to the unit's photoelectric sensors (detecting material arrival), vacuum sensors (confirming successful gripping), valve island (controlling auxiliary cylinders), and indicator lights. The data exchange frequency and magnitude of these devices can be fully met by the COM3 rate.
2. Complex Vision/Barcode Reading System Integration
Scenario: A quality inspection and traceability workstation.
Class B Port Application: Connecting to smart industrial cameras or high-performance barcode readers. These devices require the transmission of large amounts of data (such as image feature values and complete barcode strings) after each trigger. Using the COM3 rate can significantly shorten data transmission time and improve production cycle time.
Class A Port Application: Connecting to photoelectric sensors that trigger cameras, cylinder valve assemblies that control product stop/restriction, and audible and visual alarms.
1. High Dynamic Motion Control + Standard Sensor Monitoring
Scenario: A high-speed gripping and placement unit.
Class B Port Application: Connects to intelligent servo drives or high-precision pneumatic proportional valves that support IO-Link. These devices require communication at the fastest COM3 rate to achieve millisecond-level real-time parameter transmission (e.g., target position, velocity curve) and high-frequency status feedback (e.g., actual position, torque, diagnostics), ensuring fast and accurate movements.
Class A Port Application: Simultaneously connects to the unit's photoelectric sensors (detecting material arrival), vacuum sensors (confirming successful gripping), valve island (controlling auxiliary cylinders), and indicator lights. The data exchange frequency and magnitude of these devices can be fully met by the COM3 rate.
2. Complex Vision/Barcode Reading System Integration
Scenario: A quality inspection and traceability workstation.
Class B Port Application: Connecting to smart industrial cameras or high-performance barcode readers. These devices require the transmission of large amounts of data (such as image feature values and complete barcode strings) after each trigger. Using the COM3 rate can significantly shorten data transmission time and improve production cycle time.
Class A Port Application: Connecting to photoelectric sensors that trigger cameras, cylinder valve assemblies that control product stop/restriction, and audible and visual alarms.