Yokogawa ADV559-P01 Style S1 32-Channel Digital Output Module
Manufacturer: Yokogawa
-
Part Number: ADV559-P01
Condition:New with Original Package
Product Type: Digital Output Modules
-
Country of Origin: Japan
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
Yokogawa ADV559-P01 Style S1 Digital Output Module
The Yokogawa ADV559-P01 Style S1, also cataloged as the ADV559 Digital Output Module, operates as a dedicated hardware component for driving discrete solenoids, pilot indicators, and interlock relays within CENTUM VP and ST4-compatible I/O architectures. Operating on an internal 5 VDC backplane bus, this module provides 32 electrically isolated current-sink transistor channels rated up to 30 VDC and 100 mA per point. It supports advanced process regulation via configurable pulse width modulation (PWM) and time-proportional output generation across dedicated KS2 or AKB331 interface cables.
Suffix Breakdown & Model Matrix
| Code / Suffix | Designation | Technical Description |
|---|---|---|
| ADV559 | Base Model | High-Density Digital Output Module (32-channel, Transistor Sink Type) |
| -P01 | Environmental Option | ISA Standard G3 conformal coating for aggressive atmospheric protection |
| STYLE S1 | Revision Level | Hardware design revision designation for internal component layout |
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | ADV559-P01 Style S1 |
| Brand | Yokogawa |
| Origin | Singapore |
| Weight | 0.20 kg to 0.30 kg |
| Dimensions | Standard ST4 / FIO module footprint |
| Operating Temp | -20 to +70 deg C |
| Power Consumption | 570 mA to 700 mA at 5 VDC; 60 mA (external supply) |
| Output Count | 32 channel isolated transistor outputs |
| Output Type | Transistor contact, Current Sink type |
| Rated Output Voltage | 24 VDC nominal (20.4 to 26.4 VDC; 30 VDC maximum) |
| Maximum Load Current | 100 mA per channel (resistive or inductive load) |
| Isolation Voltage | 2 kV AC signal-to-system (1 min); 500 VAC between commons (1 min) |
| Response Time | <= 16 ms total delay (<= 3 ms status output; <= 10 ms mixed status/pulse) |
| Pulse Width Range | 8 ms to 7,200 s (8 ms resolution, +/- 1 ms delay) |
Channel Isolation and HART Loop Integrity
The Yokogawa ADV559-P01 Style S1 features robust channel-to-channel isolation and field-to-system potential barriers designed to isolate field disturbances from central processing units. By maintaining 500 VAC isolation between output commons and 2 kV AC isolation against internal logic circuits, the unit suppresses ground potential shifts and inductive kickback transients generated by relay switching. In DCS topologies utilizing 4-20 mA HART loops and high-density digital I/O banks, this electrical decoupling prevents common-mode noise propagation, while the ISA G3 conformal coating shields active components against corrosive sulfur dioxide and hydrogen sulfide environments.
Frequently Asked Questions
Q: Does the ADV559-P01 Style S1 output channels require external power to operate?
A: Yes, while logic side power is drawn from the 5 VDC backplane (up to 700 mA), the output channels operate as current sinks and require an external field DC power supply (nominally 24 VDC) to drive field loads.
Q: What is the maximum pulse width timing configurable on individual output channels?
A: Each isolated transistor channel can be programmed independently for pulse width output times ranging from 8 ms up to 7,200 seconds with an 8 ms timing resolution.
Q: How does the ISA G3 conformal coating impact installation in process facilities?
A: The G3 designation certifies that circuit assemblies resist atmospheric corrosion caused by airborne contaminants like hydrogen sulfide and chlorine, making the unit suitable for unconditioned chemical plant electrical enclosures.
Field Installation Guidelines
Seat the ADV559-P01 Style S1 into its assigned base rack or node unit slot, ensuring the backplane connector locks flush to the DIN-rail bus guide. Secure the external field cabling using the designated Yokogawa KS2 interface cable or AKB331 connector assembly, tightening retaining hardware to prevent intermittent connections under vibration. Route field output conductors in dedicated, shielded channels separate from high-voltage AC motor wires and variable frequency drive outputs. Earth the cable shields at a single ground bus termination point inside the cabinet, ensuring that shield continuity remains unbroken through field junction boxes. Fasten field screw connections to ensure a minimum engagement of 5 full threads across all wiring blocks.