Configured for serial data transmission between controllers and external subsystems in CENTUM VP and ProSafe-RS networks, the Yokogawa ALR121-S50 (Yokogawa ALR121 Serial Communication Module) provides direct physical/electrical execution. The hardware operates as a dual-port physical layer interface module that manages asynchronous, start-stop synchronized serial loops without utilizing intermediate conversion equipment.
The formal suffix nomenclature defines the structural engineering type, environmental classification, and hardware generation for the module assembly:
| Parameter | Specification |
|---|---|
| Model | ALR121-S50 |
| Brand | Yokogawa |
| Origin | USA |
| Weight | 0.3 kg |
| Dimensions | 3.28 cm x 14.29 cm x 13.00 cm |
| Operating Temp | -20 to +70 deg C |
| Power Consumption | 0.5 A at 5 VDC (Current Consumption) |
| Interface Ports | 2 ports, RS-422 / RS-485 physical standard |
| Topology | Point-to-point (RS-422) or Multipoint (RS-485) |
| Transmission Mode | Half-duplex asynchronous |
| Baud Rate Matrix | 1200 / 2400 / 4800 / 9600 / 19200 / 38400 bps |
| Transmission Code | ASCII or binary formats |
Operating as an active element within high-density distributed control system nests, this communication card handles autonomous data scanning for peripheral devices via Modbus RTU or proprietary protocols. To maintain system reliability, the module design features extensive electrical isolation between the internal backplane logic and the field serial networks, providing channel-to-channel isolation safeguards. This layout contains localized electrical faults and high-voltage line spikes to the transceiver stage, shielding the primary controller processor from ground potential shifts. The dual-port configuration supports flexible wiring topologies, functioning either in dedicated point-to-point lines or multi-drop networks, maintaining steady data updates without introducing noise cross-talk or timing latency into the 4-20 mA HART loop protocol layer.
Q: Can the serial communication baud rate be parameterized independently for each of the two ports on the ALR121-S50 module?
A: Yes, each physical port functions as an autonomous communication channel. The hardware transmission speed matrix (ranging from 1200 bps to 38400 bps) and the transmission codes (ASCII or binary) are configured independently inside the host system engineering software to match the exact parameters of the respective downstream slave devices.
Q: What are the functional grounding and hardware requirements when switching a port from RS-422 to RS-485 multipoint mode?
A: The transition requires correct pin assignment termination at the external block interface. In RS-485 multipoint mode, appropriate line-termination resistors must be switched in or wired across the furthest physical node of the network loop to prevent signal reflection and data frame corruption over extended distances.
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