Functional Inspection100% tested on professional platforms to ensure stable performance.
Yokogawa ADV141-P13 S1 is a NANKMOS industrial automation product record. Confirm condition, availability, lead time, compatibility and documentation by email inquiry.
Brand names are used for identification only.
Yokogawa ADV141-P13 S1 is a NANKMOS industrial automation product record. Confirm condition, availability, lead time, compatibility and documentation by email inquiry.
| Manufacturer | Yokogawa |
|---|---|
| Application | Controller Processing & System Control |
| Part Number / Model | ADV141-P13 S1 |
| Compatible System | CENTUM VP |
| Series | CENTUM VP |
| Condition Options | To Confirm |
| Module Type | Controller / CPU Module |
| Warranty | 12 Months |
| Packaging | Anti-static Bag / Secure Box |
| Shipping Methods | DHL / FedEx / UPS / Air / Sea |
| Availability | To Confirm |
| Lead Time | To Confirm |
| Documentation | Part number and revision checked before quote |
The Yokogawa ADV141-P13 S1 is a high-reliability digital input module engineered for the CENTUM VP and CS 3000 distributed control systems. Designed to operate within energy-conscious industrial environments, this module delivers precise field signal acquisition while minimizing power draw across the I/O bus. Its compact form factor and low self-consumption make it a preferred choice for facilities targeting measurable reductions in panel-level energy overhead — a critical factor in modern smart factory and energy management system (EMS) deployments.
As industrial plants push toward leaner energy profiles and tighter production schedules, the ADV141-P13 S1 plays a foundational role in capturing discrete status signals from motors, valves, circuit breakers, and safety interlocks. These inputs feed directly into the CENTUM VP controller, enabling real-time load visibility, predictive maintenance triggers, and production line rhythm optimization. When integrated with Yokogawa's STARDOM FCN/FCJ autonomous controllers or paired with the Yokogawa MW100 data acquisition unit, the ADV141-P13 S1 becomes part of a cohesive energy monitoring architecture that spans field devices to SCADA dashboards.
In a fully integrated CENTUM VP control architecture, the ADV141-P13 S1 digital input module works in close coordination with a range of complementary components to deliver a power-aware automation strategy. The module's discrete inputs are typically wired to field devices such as motor starter auxiliary contacts, valve position switches, and pressure switch outputs — all of which feed status data into the Yokogawa CENTUM VP FCS (Field Control Station). This real-time status visibility allows the FCS to execute load-shedding logic, preventing unnecessary energy consumption during low-demand production windows.
When paired with the Yokogawa ADV151 analog input module, the ADV141-P13 S1 enables a hybrid I/O strategy where both discrete and continuous process variables are monitored simultaneously. This combination is particularly effective in motor control centers where the ADV141 captures run/stop status while the ADV151 monitors current draw or temperature — together feeding data to the Yokogawa CENTUM VP HIS (Human Interface Station) for operator visibility and energy trend analysis.
For drive-intensive applications, the ADV141-P13 S1 integrates with Yokogawa VariFlex variable frequency drives and third-party inverters via the FCS I/O bus, capturing drive fault signals, run confirmations, and speed reference acknowledgments. This closed-loop feedback reduces the risk of undetected drive faults that lead to energy waste through motor overloading or unplanned restarts. The Yokogawa STARDOM FCN autonomous controller can also leverage ADV141-P13 S1 inputs in remote substations, extending energy monitoring to distributed field nodes without requiring full DCS infrastructure.
Communication-wise, the CENTUM VP system transmits aggregated I/O data — including ADV141-P13 S1 channel states — via Vnet/IP, Yokogawa's high-speed control network, to upstream SCADA platforms and the Yokogawa Exaquantum plant information management system (PIMS). This integration enables long-term energy KPI tracking, shift-based consumption reporting, and anomaly detection. Additionally, the Yokogawa MW100 data acquisition unit can be deployed in parallel to log discrete input events for compliance reporting and energy audit trails.
In safety-critical environments, the ADV141-P13 S1 complements the Yokogawa ProSafe-RS safety instrumented system (SIS) by providing non-safety discrete inputs that inform the DCS of equipment states adjacent to safety loops. This separation of safety and control I/O is a best practice that reduces unnecessary SIS activations — each of which carries an energy and operational cost. The module also works alongside Yokogawa YS1700 single-loop controllers in hybrid control architectures where legacy standalone loops are integrated into the broader CENTUM VP energy management framework.
The ADV141-P13 S1 contributes to production line energy optimization through its role as the primary discrete signal gateway between field equipment and the DCS. By providing accurate, low-latency status feedback from motors, pumps, compressors, and conveyors, it enables the CENTUM VP system to implement demand-response strategies that align energy consumption with actual production requirements. When a production line segment is idle, the DCS can use ADV141-P13 S1 inputs to confirm equipment shutdown states before issuing power-down commands to associated drives and actuators — eliminating standby energy waste.
Thermal load management is another area where the ADV141-P13 S1 delivers measurable value. In facilities with high motor density, undetected overload conditions generate excess heat that increases cooling system energy demand. The module's ability to capture thermal relay trip signals and motor protection relay outputs in real time allows the CENTUM VP FCS to log thermal events, trigger maintenance alerts, and adjust production pacing to prevent recurrence. This predictive maintenance capability reduces both unplanned downtime and the energy cost of reactive cooling responses.
Production line rhythm — or takt time — is directly influenced by the reliability of discrete I/O. A missed or delayed input signal can cause the DCS to hold a production step longer than necessary, disrupting downstream sequencing and increasing cycle energy per unit. The ADV141-P13 S1's deterministic scan cycle within the CENTUM VP I/O bus ensures that signal transitions are captured and processed within the controller's execution cycle, maintaining tight synchronization between field events and control actions. This precision supports consistent takt time adherence and reduces the energy cost of production irregularities.
For facilities pursuing ISO 50001 energy management certification or implementing IEC 62443 cybersecurity frameworks, the ADV141-P13 S1 supports structured energy data collection as part of a broader EMS architecture. Its integration with Exaquantum PIMS and SCADA systems enables automated energy reporting, baseline establishment, and continuous improvement tracking — all without manual data collection overhead. Combined with in-stock availability and a 12-Month Warranty, the ADV141-P13 S1 represents a low-risk, high-value investment for facilities modernizing their energy control infrastructure.
Q1: What energy efficiency benefits does the Yokogawa ADV141-P13 S1 provide in a CENTUM VP system? The ADV141-P13 S1 reduces panel-level I/O power overhead through its low self-consumption design. By delivering accurate discrete status signals to the CENTUM VP FCS, it enables demand-response load management, equipment shutdown confirmation, and thermal event detection — all of which contribute to measurable reductions in facility energy consumption and cooling load.
Q2: Is the ADV141-P13 S1 compatible with both CENTUM VP and CS 3000 systems? Yes. The ADV141-P13 S1 is designed for use within the Yokogawa CENTUM VP and CENTUM CS 3000 distributed control system platforms. It is compatible with the standard I/O bus architecture of both systems, making it suitable for both new installations and legacy CS 3000 upgrade projects where I/O module replacement is required.
Q3: What is the testing and inspection process before shipment? Each ADV141-P13 S1 unit undergoes functional testing prior to shipment to verify channel integrity, signal response, and bus communication. Units are inspected for physical condition and firmware compatibility. A 12-Month Warranty is provided on all units, covering defects in materials and workmanship under normal operating conditions.
Q4: What is the lead time and stock availability for the ADV141-P13 S1? The ADV141-P13 S1 is currently available in stock and can be shipped within standard lead times. For urgent requirements or bulk orders, please contact our team directly to confirm availability and arrange expedited dispatch. All orders are supported by a 12-Month Warranty and post-sale technical assistance.
Functional Inspection100% tested on professional platforms to ensure stable performance.
Anti-static PackagingModules are packed in anti-static bags to prevent electrostatic damage.
Secure Export PackingCushion protection and strong cartons ensure safe transportation.
Worldwide ShippingGlobal logistics network supports air, sea and express delivery.
Documentation CheckPart number, revision and compatibility verified before shipment.
After-sales SupportProfessional technical support to help resolve your issues.