Banner Engineering R90C 4-Port IO-Link Master
Banner Engineering R90C-4K-MQ IO-Link Master/Modbus Converter connects four IO-Link devices and provides access through the Modbus RTU interface. This converter includes matching RGB LED indicators on both sides for each IO-Link device port for installation needs. The R90C-4K-MQ converter consists of an Amber LED indicator on both sides specific to the Modbus communication. This converter operates from 18VDC to 30VDC input voltage range, -40°C to 70°C temperature range, and 90% maximum relative humidity (non-condensing) at 70°C temperature. The R90C-4K-MQ converter is IP65, IP67, and IP68 rated.Features
- Connects four IO-Link devices and provides access through the Modbus RTU interface
- 5-pin M12 male quick-disconnect connector
- Four 4-pin M12 female quick-disconnect connectors
- Built-in indication for four IO-Link master ports
- Protected against reverse polarity and transient voltages
- Built-in indication for Modbus RTU connection status
- Rugged over-molded design meets IP65, IP67, and IP68 ratings
- Easy installation with no assembly or individual wiring required
Specifications
- 18VDC to 30VDC input voltage range
- 24VDC at 4A input power
- 400μA leakage current immunity
- Indicators:
- RGB1: IO-Link Port 1 status
- RGB2: IO-Link Port 2 status
- RGB3: IO-Link Port 3 status
- RGB4: IO-Link Port 4 status
- Amber: Modbus communications
- IO-Link baud rates:
- COM1: 4.8kbps
- COM2: 38.4kbps
- COM3: 230.4kbps
- Operating conditions
- –40°C to 70°C operating temperature range
- 90% maximum relative humidity at 70°C (non-condensing)
- Compliant standards:
- IO-Link interface and system specification v1.1.2
- IO-Link test specification v1.1.2
- RS485 Modbus RTU
- Digital inputs (SIO [DI] mode):
- 5mA typical input current
- 15VDC minimum/5mA minimum ON voltage/current
- 5VDC maximum OFF voltage
- Digital outputs (SIO [DO] Mode):
- 120mΩ typical and 250mΩ maximum on-resistance
- 0.7A minimum, 1A typical, and 1.3A maximum current limit
- -10µA minimum and 10µA maximum off leakage current
Mechanical Diagram
Veröffentlichungsdatum: 2024-03-22
| Aktualisiert: 2024-05-09
