9 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Triconex 3101 is a high-performance Main Processor Module designed for the Tricon Triple Modular Redundancy (TMR) safety system. It acts as the primary intelligence unit, managing safety logic, system diagnostics, and I/O coordination for mission-critical industrial processes. The module is engineered for high-availability applications, including oil and gas refining, chemical processing, and power generation, providing SIL 3 safety integrity by eliminating single points of failure through its redundant architecture.Features
Dual-processor architecture separating application logic (SX) from I/O management (IOX).
Motorola MPC860 32-bit RISC processors operating at 50 MHz for both SX and IOX.
TMR synchronization via a 2 Mbps HDLC diagnostic bus.
Robust memory configuration including 16 MB DRAM and 6 MB Flash PROM for the application processor.
Deterministic execution for time-critical safety functions.
Comprehensive self-diagnostics and inter-channel synchronization.
ApplicationsThe 3101 module is deployed in safety-instrumented systems (SIS) where continuous operation and high reliability are mandatory. Typical applications include emergency shutdown systems (ESD), burner management systems (BMS), and fire and gas monitoring in hazardous industrial environments.Technical Specifications
Model
3101
Brand
Triconex
Main Processors
Dual Motorola MPC860 (32-bit, 50 MHz)
Memory (SX)
16 MB DRAM, 6 MB Flash PROM, 8 KB NVRAM
Memory (IOX)
16 MB DRAM, 128 KB Shared Memory
Nominal Input Voltage
24 VDC
Operational Voltage Range
19.2 to 30 VDC
Maximum Input Voltage
33 VDC
Logic Power
8 W maximum
Diagnostic Bus
2 Mbps HDLC
Operating Temperature
0 to 60 deg C
Installation Guidelines
Ensure the Tricon chassis is powered down before inserting or removing the 3101 module to prevent electrical damage.
The module must be seated firmly in the designated processor slots of the Tricon chassis to ensure proper backplane connection.
Handle with care using ESD-safe procedures; the module contains sensitive electronic components.
Ensure adequate ventilation within the cabinet to maintain the operating temperature range of 0 to 60 deg C.
Verify that the input power supply is within the 19.2 to 30 VDC range before system startup.
FAQWhat is the primary function of the 3101 module?The 3101 is the main processor module for the Tricon TMR system, responsible for executing safety control logic and managing communications between I/O modules and the system backplane.Does this module support redundancy?Yes, the 3101 is designed specifically for Triple Modular Redundancy (TMR) configurations, where three processors work in parallel to provide fault-tolerant, fail-safe operation.
9 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
8 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe FBM214b (P0927AH) is a high-performance analog input interface module designed for the Foxboro I/A Series Distributed Control System (DCS). It provides eight isolated input channels, each supporting 4 to 20 mA DC analog signals while simultaneously enabling bidirectional digital communication with HART-compliant field devices. By facilitating direct access to secondary variables and diagnostic data from smart transmitters, the FBM214b supports predictive maintenance strategies and enhances system reliability in mission-critical industrial environments.Features
Eight independent, galvanically isolated input channels.
Integrated HART modem per channel for simultaneous analog and digital data transmission.
Acts as a HART Master for remote configuration, calibration, and instrument diagnostics.
Redundant 2 Mbps HDLC fieldbus communication for high availability.
15-bit A/D resolution for precise process variable measurement.
Superior noise immunity with 600 VAC channel-to-ground and channel-to-channel isolation.
ApplicationsThe FBM214b is engineered for demanding process automation environments, including oil and gas refineries, power generation facilities, and chemical processing plants. It is ideal for applications requiring high-density HART integration, such as monitoring smart pressure, temperature, and flow transmitters where real-time health diagnostics are required to prevent unplanned downtime.Technical Specifications
Parameter
Specification
Model
FBM214b (P0927AH)
Input Channels
8 Isolated
Input Signal
4 to 20 mA DC + HART
A/D Resolution
15-bit
HART Protocol
Revision 5, 6, and 7
Communication Bus
Redundant 2 Mbps HDLC
Isolation
600 VAC
Power Consumption
2.8 W max
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to 70 deg C
Relative Humidity
5 to 95% (non-condensing)
Installation Guidelines
Ensure the I/A Series baseplate is properly grounded before module insertion.
The FBM214b is designed for the 200 Series I/O subsystem; verify slot compatibility before installation.
Handle the module using ESD-safe procedures to prevent damage to internal circuitry.
Ensure all field wiring is properly shielded and routed away from high-voltage AC lines to minimize EMI.
Power down the I/O rack or follow specific hot-swap procedures defined by the Foxboro system documentation before removing or installing the module.
Verify that the HART communication loop resistance is within the specified range for the connected field devices.
FAQDoes the FBM214b require external power for the HART loop?The FBM214b provides loop power for the 4-20 mA signal. Ensure that the field device requirements are compatible with the module's output specifications.Is this module compatible with existing I/A Series systems?Yes, the FBM214b is a standard component of the 200 Series I/O subsystem for the Foxboro I/A Series DCS. Please consult your system documentation to confirm firmware compatibility for your specific Control Processor.
8 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro FBM211 (P0914TN) is a high-density analog input module designed for the I/A Series distributed control system. It provides sixteen isolated 0 to 20 mA DC analog input channels, serving as a critical interface between field instrumentation—such as pressure transmitters, flow meters, and temperature transducers—and the control processor. Engineered for high-availability environments, including oil refineries, chemical processing plants, and power generation facilities, the FBM211 ensures signal integrity through robust group isolation and advanced filtering, effectively minimizing process variability and supporting mission-critical control loops.Features
High-Density Design: 16-channel input capacity optimized for the Series 200 I/O subsystem.
Signal Precision: Each channel utilizes a dedicated Sigma-Delta analog-to-digital converter for high resolution and superior noise rejection.
Redundancy Support: Supports redundant power and communication paths; compatible with redundant baseplates for instantaneous failover.
Communication: Interfaces with the Control Processor via a redundant 2 Mbps HDLC Fieldbus.
Diagnostics: Executes continuous self-diagnostics, including monitoring of A/D converters, memory parity, and communication port health.
Galvanic Isolation: Protects internal system logic from field-side voltage spikes and common-mode noise.
ApplicationsThe FBM211 is widely utilized in industrial automation systems requiring precise, reliable analog data acquisition. Typical applications include monitoring process variables in petrochemical, water treatment, and power generation plants where signal stability and system uptime are paramount.Technical Specifications
Model
FBM211 (P0914TN)
Channels
16 Isolated Analog Inputs
Input Range
0 to 20 mA DC
Accuracy
+/- 0.03 percent of span
Resolution
15-bit
Input Impedance
250 Ohms (nominal)
Communication
Redundant 2 Mbps HDLC Fieldbus
Power Consumption
3 Watts maximum
Operating Temperature
0 to 60 deg C
Relative Humidity
5 to 95 percent (non-condensing)
Installation Guidelines
Handling: Use proper ESD protection when handling the module to prevent damage to sensitive internal components.
Mounting: Ensure the module is securely seated in the designated slot on the Series 200 baseplate.
Power: Always remove power from the baseplate before inserting or removing the module to prevent electrical arcing or damage.
Wiring: Use shielded twisted-pair cabling for field inputs to maintain signal integrity and minimize EMI interference.
Grounding: Ensure the baseplate is properly grounded according to site specifications to maintain galvanic isolation effectiveness.
Environment: Maintain adequate ventilation within the cabinet to ensure the module operates within its specified temperature range.
FAQQ: Can the FBM211 be used in a redundant configuration?A: Yes, the FBM211 supports redundant operation when installed in pairs on a redundant baseplate, allowing for seamless failover if one module fails.Q: What is the primary communication protocol for this module?A: The module communicates via a redundant 2 Mbps HDLC (High-Level Data Link Control) Fieldbus.
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Description
The Foxboro P0904AK functions as a specialized General Purpose Communication Input/Output (GCIO) interface module within the I/A Series distributed control system architecture. This tabletop-style interface provides a critical communication bridge between high-level processor nodes and peripheral field-side hardware. Primarily utilized in engineering workstations, laboratory testing environments, and pilot plant control rooms, the P0904AK facilitates high-speed data acquisition and system diagnostic monitoring. By centralizing complex communication protocols into a localized, accessible form factor, this module reduces the complexity of system troubleshooting and allows engineers to interface directly with the I/A Series network without specialized cabinet mounting.
Features
Versatile Diagnostic Access: The tabletop configuration allows maintenance personnel to bring the interface directly to the point of use, facilitating real-time monitoring of network traffic and device status.
Plug-and-Play Integration: Utilizes standard I/A Series connectors for rapid deployment in temporary test rigs or permanent workstation setups.
High-Speed Data Processing: Internal logic ensures low-latency signal conversion between serial devices and the high-speed system bus, maintaining deterministic performance.
Industrial-Grade Durability: Ruggedized enclosure protects internal circuitry from dust and electromagnetic interference, maintaining high MTBF ratings.
Applications
The P0904AK is designed for use in I/A Series distributed control system environments, specifically for:
Engineering workstation interfaces.
Laboratory and R&D testing environments.
Pilot plant control and monitoring.
Temporary diagnostic rigs for system troubleshooting.
Technical Specifications
Model
P0904AK (GCIO)
Brand
Foxboro (Schneider Electric / Invensys)
Module Type
General Purpose Communication I/O Interface
Mounting Type
Tabletop / Desk Mount
Power Input
24 VDC (Nominal)
Communication Ports
RS-232 / RS-485 Serial and Nodebus Compatibility
Operating Temperature
0 to +50 deg C
Storage Temperature
-40 to +70 deg C
Relative Humidity
10 to 90 percent (non-condensing)
Installation Guidelines
Ensure the module is placed on a stable, flat surface suitable for tabletop operation.
Verify that the 24 VDC power supply meets the nominal requirements before connection.
Use shielded communication cables to maintain signal integrity and minimize EMI impact.
Ensure proper grounding of the unit to prevent static discharge and noise interference.
Power down the system or disconnect the interface before performing maintenance or cable re-routing.
Maintain adequate clearance around the unit to ensure proper ventilation during operation.
FAQ
Is the P0904AK designed for permanent cabinet mounting?No, this model is specifically designed as a tabletop unit for engineering workstations and diagnostic use, rather than for permanent mounting in standard I/A Series control cabinets.
What communication protocols does this module support?The P0904AK supports standard I/A Series communication protocols, including Nodebus compatibility and serial RS-232/RS-485 interfaces.
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
6 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro FBM202 is a high-performance 8-channel isolated thermocouple input module designed for the I/A Series distributed control system. This module interfaces directly with standard thermocouple sensors (Types J, K, T, E, R, S, B, and N) and millivolt signals, providing precise temperature data to the controller backplane. By providing individual channel-to-channel isolation, the FBM202 effectively eliminates ground loop interference and protects control logic from field-side transients. It is a critical component for temperature monitoring in oil refineries, petrochemical plants, and power generation facilities.Features
8-Channel Input: Supports a wide range of thermocouple types and millivolt signals.
Galvanic Isolation: Independent channel-to-channel and channel-to-ground isolation up to 600 V AC.
Hot-Swappable: Designed for replacement without de-energizing the baseplate, minimizing downtime.
Cold Junction Compensation: Integrated automatic CJC for high-fidelity measurements.
Configurable Filtering: Software-adjustable integration times to reject 50 Hz or 60 Hz line noise.
Redundant Communication: Dual Fieldbus paths ensure continuous data flow.
ApplicationsThe FBM202 is primarily utilized in industrial automation environments requiring high-density, reliable temperature sensing. Common applications include boiler monitoring, furnace control, chemical reactor temperature tracking, and general process temperature acquisition within I/A Series control networks.Technical Specifications
Model
FBM202
Module Type
8-Channel Thermocouple / mV Input
Input Ranges
Type B, E, J, K, N, R, S, T and -20 to +100 mV
Accuracy
+/- 0.03 percent of span (typical)
Isolation
600 V AC channel-to-channel and channel-to-ground
Power Consumption
3 W maximum
Operating Temperature
-20 to +70 deg C
Storage Temperature
-40 to +85 deg C
Relative Humidity
5 to 95 percent (non-condensing)
Compliance
G3 harsh environment rating (ISA Standard S71.04)
Installation Guidelines
Handling: Use standard ESD precautions when handling the module to prevent damage to internal circuitry.
Mounting: Ensure the module is fully seated in the designated I/A Series baseplate slot to maintain proper electrical contact.
Wiring: Use shielded thermocouple extension wire to minimize noise pickup. Ensure proper polarity is maintained for all sensor inputs.
Environment: While rated for G3 harsh environments, ensure the cabinet is adequately ventilated to maintain operating temperatures within the specified -20 to +70 deg C range.
Maintenance: Always verify the integrity of the terminal assembly connections during module installation or replacement.
FAQIs the FBM202 compatible with all I/A Series baseplates?The FBM202 is designed for standard I/A Series baseplates. Please verify your specific baseplate revision and power supply configuration to ensure compatibility with the module's power requirements.Does this module require external power for the sensors?The FBM202 is designed to read passive thermocouple signals directly. It does not require external excitation for the thermocouples themselves, though it does require the standard 24V DC power provided by the I/A Series baseplate.
6 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Triconex 3501E is a high-density Digital Input Module engineered for the Triconex Triple Modular Redundant (TMR) safety system. Featuring 32 isolated input points, this module is designed to interface with 115 VAC/VDC field signals, making it an essential component for monitoring critical discrete devices such as limit switches and pushbuttons. In demanding industrial sectors like oil refining, power generation, and chemical processing, the 3501E ensures maximum process uptime through its fault-tolerant architecture. By utilizing advanced point-to-point isolation and rigorous signal processing, this module effectively eliminates common-mode interference and prevents field-side electrical faults from impacting the core logic controller.Features
32-channel high-density digital input configuration.
Triple Modular Redundant (TMR) architecture for high-availability safety applications.
Supports 115 VAC/VDC nominal input signals.
Robust optical isolation (1500 VDC to 2500 VDC) per channel.
Integrated self-diagnostic routines for real-time health monitoring.
SIL 3 compliant design for critical safety loops.
ApplicationsThe 3501E is widely utilized in safety-critical environments, including:
Emergency Shutdown Systems (ESD).
Fire and Gas (F&G) monitoring systems.
Turbine control and burner management systems.
High-integrity process monitoring in chemical and petrochemical plants.
Technical Specifications
Model
3501E
Module Type
Digital Input (DI)
Input Points
32 Channels, Isolated
Nominal Voltage
115 VAC/VDC
Input Voltage Range
90-155 VAC/VDC
Frequency Range
47-63 Hz
Input Current
6-9 mA
Power Consumption
2.9 W
Point Isolation
1500 VDC to 2500 VDC
Operating Temperature
0 to 60 deg C
Installation Guidelines
Ensure the Triconex chassis is powered down before inserting or removing the 3501E module.
Handle the module using ESD-safe practices to prevent damage to sensitive internal components.
Ensure proper seating in the backplane slot to maintain electrical connectivity for the TMR bus.
Use shielded cabling for field inputs to minimize EMI/RFI interference in high-noise industrial environments.
Verify that field wiring polarity matches the terminal block configuration before applying power.
Maintain adequate ventilation around the chassis to ensure operation within the specified 0 to 60 deg C temperature range.
FAQWhat is the primary function of the 3501E module?The 3501E is a digital input module designed to monitor 32 discrete field signals (115 VAC/VDC) and feed them into a Triconex TMR safety controller for processing.Is this module suitable for SIL 3 applications?Yes, the 3501E is designed for use in TMR systems that meet SIL 3 requirements, provided it is installed and configured according to the manufacturer's safety manual.Does the module require external power for the inputs?The 3501E monitors field-powered signals; ensure your field devices are powered within the 90-155 VAC/VDC range as specified.
4 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Invensys Triconex 3504E is a High-Density Digital Input (HDDI) module designed for high-integrity signal monitoring within the Triconex Triple Modular Redundancy (TMR) safety system. This module is engineered to interface with field discrete devices such as limit switches, alarm contacts, and push buttons, providing reliable data acquisition for Safety Instrumented Systems (SIS) in demanding industrial environments including chemical processing, refineries, and offshore platforms.Features
TMR Architecture: Utilizes Triple Modular Redundancy for fault tolerance, allowing the system to maintain safety functions even in the event of a single component failure.
High-Density Design: Optimized for space-constrained cabinets while maintaining high-speed signal processing capabilities.
Diagnostic Indicators: Front-panel LED indicators (PASS, FAULT, ACTIVE) provide real-time status and diagnostic feedback for maintenance personnel.
Galvanic Isolation: Integrated circuitry protects the main processor from field-side electrical surges and transients.
Voltage Flexibility: Supports a nominal 24/48 VDC range with a maximum input voltage rating of 72 VDC.
ApplicationsThe 3504E is primarily utilized in critical safety applications requiring high availability and fault tolerance. It is commonly deployed in emergency shutdown systems (ESD), fire and gas monitoring, and critical process control loops where false trips must be minimized to ensure continuous plant operations and personnel safety.Technical Specifications
Model
3504E
Module Type
High-Density Digital Input (HDDI)
Nominal Voltage
24/48 VDC
Max Input Voltage
72 VDC
Architecture
Triple Modular Redundancy (TMR)
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to 85 deg C
Humidity
5 to 95 percent (Non-condensing)
Installation Guidelines
ESD Protection: Always use a grounded wrist strap when handling the module to prevent electrostatic discharge damage to internal components.
Power Status: Ensure the system power is disconnected or the specific slot is de-energized before inserting or removing the module from the chassis.
Seating: Ensure the module is fully seated in the designated backplane slot and that the retaining screws are tightened to provide proper grounding and mechanical stability.
Wiring: Use shielded cabling for field inputs to minimize EMI/RFI interference. Route signal cables away from high-voltage power lines.
FAQWhat is the primary function of the 3504E module?The 3504E is a digital input module designed to monitor discrete field signals and provide high-integrity data to the Triconex TMR safety system for process control and safety shutdown applications.Can this module operate in high-temperature environments?The module is rated for an operating temperature range of 0 to 60 deg C. Ensure the control cabinet is properly ventilated to maintain ambient temperatures within this range.
4 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
7 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Triconex 3401 is a high-precision, single-axis stepper controller module engineered for integration within the 1734 POINT I/O motion control architecture. This module provides deterministic pulse-train outputs ranging from 200 kHz to 1 MHz, enabling precise open-loop control of stepper motor drives without requiring external encoder feedback. It is widely utilized in high-speed automated assembly, pharmaceutical packaging, and semiconductor manufacturing where localized, cost-effective motion control is essential. By offloading step and direction logic from the main processor to the 3401 module, engineers can significantly reduce network latency and CPU overhead, ensuring synchronized motion while maximizing system uptime in critical process environments.Features
Single-axis stepper motor control for 1734 POINT I/O systems.
Deterministic pulse-train output (200 kHz to 1 MHz).
Open-loop operation simplifies field wiring by eliminating encoder feedback requirements.
Hot-swappable design for rapid maintenance and reduced downtime.
Low power consumption (85 mA at 5 VDC) for efficient thermal management.
Applications
High-speed automated assembly lines.
Pharmaceutical packaging machinery.
Semiconductor manufacturing equipment.
Decentralized motion control tasks in electrically noisy industrial environments.
Technical Specifications
Model
3401
Brand
Invensys Triconex
Series
1734 POINT I/O
Module Type
Stepper Controller (1 Axis)
Pulse Output Range
200 kHz to 1 MHz
Feedback
Open Loop (No Encoder)
Power Consumption
85 mA Max @ 5 VDC
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to 85 deg C
Installation Guidelines
Ensure the 1734 POINT I/O backplane is powered down before inserting or removing the 3401 module.
Handle the module using ESD-safe practices to prevent damage to internal electronic components.
Ensure the module is securely seated in the base unit to maintain proper electrical contact with the backplane.
Route signal cables away from high-voltage power lines and high-EMI sources to maintain signal integrity.
Verify that the operating environment remains within the specified 0 to 60 deg C temperature range to ensure long-term reliability.
FAQDoes this module require an external encoder?No, the 3401 is designed for open-loop control and does not require encoder feedback, which simplifies wiring and setup for basic stepper applications.Is this module hot-swappable?Yes, the 3401 is designed as a slice-type I/O module compatible with the 1734 POINT I/O backplane, supporting hot-swappable replacement during system operation.
7 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
9 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro FCP270 (P0917YZ) is a high-performance Field Control Processor engineered for the I/A Series distributed control system. It provides robust regulatory, logic, timing, and sequential control capabilities, alongside integrated data acquisition and alarming functions. Designed for demanding environments such as oil refining, petrochemical processing, and power generation, the FCP270 facilitates seamless communication with the Mesh control network via fiber optic or copper media, offering superior control loop density and faster execution cycles compared to legacy processors.Features
High-speed RISC-based processor architecture for complex control tasks.
Fault-tolerant design supporting hot-swapping for continuous process availability.
Redundant configuration support with bumpless transfer between primary and tracker modules.
Interfaces with Series 200 Fieldbus Modules (FBMs) via redundant 2 Mbps or 267 Kbps HDLC fieldbus.
Integrated self-diagnostics for real-time monitoring of processor health, memory, and port status.
ApplicationsThis processor is widely utilized in critical infrastructure applications where high availability and reliability are required. It is suitable for large-scale plant automation, process control migration projects, and systems requiring seamless integration with existing Series 200 I/O infrastructure.Technical Specifications
Model
FCP270 (P0917YZ)
Processor Type
High-speed RISC
Memory
128 MB SDRAM, 128 MB Flash
Control Network
100 Mbps Ethernet
Fieldbus Interface
HDLC (2 Mbps / 267 Kbps)
Power Input
24 VDC Nominal
Power Consumption
8.5 W Max
Operating Temperature
0 to 60 deg C
Relative Humidity
5 to 95 percent (Non-condensing)
Installation Guidelines
Ensure the control system is powered down before inserting or removing the FCP270 module.
Handle the module using proper ESD (Electrostatic Discharge) precautions to prevent damage to internal circuitry.
Verify that the module is correctly seated in the baseplate to ensure reliable electrical contact.
Route communication cables away from high-EMI sources to maintain signal integrity on the Mesh network and HDLC fieldbus.
Ensure adequate ventilation in the cabinet to maintain operating temperatures within the specified 0 to 60 deg C range.
FAQIs the FCP270 hot-swappable?Yes, the FCP270 supports hot-swapping, allowing for module replacement without shutting down the entire control process, provided it is installed in a redundant configuration.Can this module replace older Foxboro processors?The FCP270 is designed to be compatible with existing Series 200 FBM infrastructure, making it an ideal choice for system upgrades and migrations from legacy I/A Series processors.What is the primary communication interface for this module?The FCP270 communicates with the plant control network via 100 Mbps Ethernet and manages I/O communication through a redundant HDLC fieldbus.
9 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
6 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro FBM233 (P0926GX) is a high-performance Ethernet Device Communications Module engineered for the I/A Series (Intelligent Automation) system. This module functions as a vital gateway between the Foxboro control network and external Ethernet-based field devices. It is widely deployed in demanding industrial sectors such as oil and gas refining, power generation, and pharmaceutical manufacturing to integrate third-party equipment like PLCs, motor control centers, and smart transmitters. By supporting high-speed data exchange and providing a standardized interface for heterogeneous systems, the FBM233 reduces integration complexity and enhances real-time visibility into process assets.Features
Supports 10/100 Mbps Ethernet connectivity for high-speed data exchange.
Dual RJ-45 Ethernet ports enable redundant network topologies to prevent control loop failure.
Dedicated internal processor for protocol conversion and data buffering, ensuring deterministic system performance.
Seamless integration with the Foxboro 200 Series baseplate architecture.
Treats external device data as native I/O variables within the control strategy.
ApplicationsThe FBM233 is designed for industrial automation environments requiring the integration of third-party Ethernet-enabled devices into a Foxboro I/A Series control system. It is commonly used for interfacing with Modbus TCP-compliant equipment, including variable frequency drives, smart instrumentation, and secondary PLC networks.Technical Specifications
Model
FBM233 (P0926GX)
Brand
Foxboro (Schneider Electric)
Ethernet Ports
2 x RJ-45 (10/100 Base-TX)
Protocol Support
Modbus TCP
Input Voltage
24 VDC
Power Consumption
3.5 W (Maximum)
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to 70 deg C
Relative Humidity
5 to 95% (Non-condensing)
Isolation
600 VAC (Input-to-Bus)
Vibration
5 to 500 Hz, 0.5 g
Installation Guidelines
Ensure the system power is disconnected before installing or removing the module from the 200 Series baseplate.
The module is designed for mounting on standard Foxboro 200 Series baseplates; ensure secure seating to maintain electrical contact.
Use shielded twisted-pair Ethernet cabling to minimize EMI interference in industrial environments.
Maintain proper ventilation clearance around the baseplate to ensure operating temperatures remain within the 0 to 60 deg C range.
Handle with standard ESD precautions to prevent damage to internal circuitry.
FAQWhat protocols does the FBM233 support?The FBM233 (P0926GX) is primarily designed to support Modbus TCP communication, allowing it to act as a gateway for various Ethernet-based field devices to communicate with the I/A Series system.Does this module support redundancy?Yes, the FBM233 features dual Ethernet ports, which support redundant network topologies to ensure high availability and continued operation in the event of a single network path failure.
6 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
8 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro ZCP270 (P0926CP) is a high-performance, fault-tolerant Control Processor designed for the I/A Series (Intelligent Automation) distributed control system. As a core processing unit, it executes complex regulatory, logic, and sequential control algorithms for large-scale industrial operations such as petrochemical refining, power generation, and offshore extraction. The ZCP270 facilitates high-speed communication with Field Bus Modules (FBMs) via the 100 Mbps fiber optic The Mesh control network. By offering advanced computational power and seamless redundancy, this module ensures continuous process integrity and eliminates single points of failure, directly contributing to the reduction of plant-wide downtime and the enhancement of operational safety.Features
High-speed RISC processor architecture for deterministic control execution.
Supports 1-to-1 redundancy for bumpless failover in less than one scan cycle.
Interfaces with up to 120 Field Bus Modules (FBMs).
Integrated high-speed fiber optic communication via The Mesh network.
Continuous internal self-diagnostics monitoring hardware health, memory parity, and communication status.
ApplicationsThe ZCP270 is engineered for demanding industrial environments where high availability and deterministic control are critical. Typical applications include large-scale petrochemical processing, power plant automation, and complex offshore extraction facilities requiring robust, fault-tolerant distributed control.Technical Specifications
Model
ZCP270 (P0926CP)
Brand
Foxboro (Schneider Electric)
Processor Type
RISC Architecture
Memory
16 MB SDRAM, 32 MB Flash
Network Interface
100 Mbps Fiber Optic (The Mesh)
Max FBMs Supported
120 Modules
Input Voltage
24 VDC
Power Consumption
8.5 Watts
Operating Temp
0 to 60 deg C
Storage Temp
-40 to 85 deg C
Relative Humidity
5 to 95% (Non-condensing)
Installation Guidelines
Ensure the control processor is installed in a clean, dry, and vibration-free environment.
Verify that the baseplate is properly grounded before inserting the module.
Handle the module using ESD-safe practices to prevent damage to internal circuitry.
Ensure the module is fully seated in the baseplate slot to maintain reliable backplane communication.
Power down the system before inserting or removing the module to prevent electrical arcing or data corruption.
Route fiber optic cables carefully to avoid exceeding minimum bend radii and to prevent signal attenuation.
FAQWhat is the primary function of the ZCP270?The ZCP270 acts as the central control processor for the Foxboro I/A Series system, responsible for executing control algorithms and managing communication between field devices and the control network.Does this module support redundancy?Yes, the ZCP270 supports 1-to-1 redundancy, allowing for a primary/shadow configuration that ensures continuous operation in the event of a processor failure.
8 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe 7400169-310 is a high-density terminal panel designed for the Triconex Triple Modular Redundant (TMR) safety system. This component serves as the critical physical interface between field-level instrumentation and the Tricon controller's I/O modules. It is engineered for deployment in high-reliability industrial sectors including petrochemical processing, power generation, and offshore oil exploration. By providing secure, low-impedance termination points for field signals, the 7400169-310 ensures signal integrity across the safety loop. Its ruggedized construction facilitates rapid wiring and maintenance, which plays a vital role in reducing mean time to repair (MTTR) and preventing unscheduled system shutdowns in SIL 3 environments.Features
Designed for seamless integration with Triconex TMR safety controller I/O modules.
Passive electrical design ensures zero signal latency for critical safety loops.
High-density terminal block array for efficient field signal distribution.
Conformal coating applied to circuit board surfaces to enhance resistance against moisture and atmospheric contaminants.
Integrated grounding and shielding paths to mitigate electromagnetic interference (EMI).
Compact form factor optimized for high-density cabinet layouts.
ApplicationsThis terminal panel is intended for use in safety-critical industrial environments where high availability and fault tolerance are required. Typical applications include emergency shutdown systems (ESD), fire and gas monitoring, burner management systems (BMS), and high-integrity pressure protection systems (HIPPS) within the oil, gas, and power generation industries.Technical Specifications
Model
7400169-310
Brand
Triconex (Schneider Electric)
Product Type
Terminal Panel
Operating Temperature
0 to 60 deg C
Installation Guidelines
Ensure all power to the associated I/O modules and field loops is disconnected before installation or maintenance.
Mount the terminal panel securely within the designated control cabinet, ensuring adequate clearance for field wiring and airflow.
Utilize proper ESD protection measures when handling the terminal panel to prevent damage to sensitive components.
Ensure that all field wiring is properly stripped and terminated to the specified torque requirements to maintain low-impedance connections.
Maintain proper grounding practices by connecting the panel shielding paths to the cabinet's common ground bus to minimize EMI.
Verify that all connections are secure and that the panel is correctly seated before restoring power to the system.
FAQWhat is the primary function of the 7400169-310?The 7400169-310 acts as a passive interface between field instrumentation and the Triconex controller I/O modules, providing a secure and reliable termination point for safety-critical signals.Is this panel suitable for use in harsh environments?Yes, the panel features conformal coating on the circuit board to protect against moisture and contaminants, making it suitable for standard industrial rack room environments.
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro FBM242 (P0916TA) is a high-density Discrete Output Interface Module designed for the I/A Series Distributed Control System (DCS). This module features 16 discrete output channels specifically engineered to interface with external termination assemblies for switching field loads. Commonly deployed in heavy industrial environments such as power generation plants, petrochemical refineries, and mining facilities, the FBM242 acts as the primary control interface for solenoids, motor starters, and indicator lamps. Its robust hardware design provides critical isolation between the internal control logic and field circuitry. By facilitating reliable signal execution and supporting redundant communication via the Fieldbus, the FBM242 ensures high system availability and minimizes process interruptions.Features
16-channel discrete output interface for high-density control requirements.
Redundant 2 Mbps Fieldbus communication for high system availability.
Optical isolation (1500 VAC) between field-side circuitry and internal logic.
Integrated self-diagnostics for continuous health monitoring and fault reporting.
Designed for use with External Termination Assemblies (ETAs) for flexible field wiring.
ApplicationsThe FBM242 is suitable for critical industrial control applications including:
Solenoid valve control in process automation.
Motor starter and contactor switching.
Indicator lamp and alarm signaling.
General-purpose discrete output logic for DCS-based control loops.
Technical Specifications
Model
FBM242 (P0916TA)
Brand
Foxboro (Schneider Electric)
Module Type
16-Channel Discrete Output
Bus Communication
Redundant 2 Mbps Fieldbus
Isolation
1500 VAC (Optical)
Power Consumption
3 Watts (Maximum)
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to +70 deg C
Relative Humidity
5 to 95% (non-condensing)
Installation Guidelines
Ensure the I/A Series baseplate is properly grounded before module insertion.
Always power down the segment or rack before installing or removing the FBM242 module to prevent electrical damage.
Verify that the External Termination Assembly (ETA) is correctly wired and seated before applying field power.
Handle the module using ESD-safe practices to prevent damage to sensitive internal components.
Ensure adequate ventilation in the cabinet to maintain operating temperatures within the 0 to 60 deg C range.
Compliance and Certifications
CE Marked
CSA Certified
FM Approved for Class 1 Division 2
FAQIs this module compatible with all I/A Series systems? The FBM242 is designed for the I/A Series DCS. Please verify your specific system revision and baseplate compatibility before installation.Does this module require an external termination assembly? Yes, the FBM242 is designed to interface with external termination assemblies to manage field connections and provide necessary signal conditioning or protection.
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro FBM201 (P0914SQ) is a high-density 0 to 20 mA Analog Input Interface Module designed for the I/A Series Distributed Control System (DCS). This module serves as a critical interface for connecting up to eight non-isolated analog input signals from field transmitters to the high-speed Fieldbus. Primarily utilized in heavy industries such as chemical processing, mining, and oil & gas, the FBM201 ensures precise data acquisition for process variables like pressure, flow, and temperature. By providing reliable signal conversion and integration into the control logic, this component plays a vital role in maintaining system stability, optimizing process efficiency, and reducing operational downtime through consistent hardware performance.Hardware ArchitectureThe FBM201 architecture is centered on high-speed data conversion and robust subsystem integration. It features eight analog input channels that share a common ground return. The module performs analog-to-digital conversion for each channel, filtering and validating signals before transmitting them to the Fieldbus Modules or Control Processors. It is designed to reside on a standard FBM baseplate, which provides the necessary redundant power and communication paths. The hardware supports software-configurable integration times, allowing engineers to balance between noise rejection and response speed based on specific application requirements.Features
8-channel analog input interface (0 to 20 mA DC).
High-resolution 15-bit analog-to-digital conversion.
Compact form factor optimized for high-density cabinet installations.
Software-configurable integration times for noise filtering.
Compatible with standard I/A Series FBM baseplates.
ApplicationsThe FBM201 is widely deployed in process automation environments, including oil and gas refineries, chemical manufacturing plants, and power generation facilities. It is ideal for monitoring critical process variables where standard 0-20 mA current loops are utilized for instrumentation feedback.Technical Specifications
Model
FBM201 (P0914SQ)
Input Type
8-Channel Analog Input (0 to 20 mA DC)
Input Impedance
250 Ohms (nominal)
Accuracy
+/- 0.03% of span
Resolution
15 bits
Power Consumption
2.5 Watts (Maximum)
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to +70 deg C
Relative Humidity
5 to 95% (non-condensing)
Installation Guidelines
Ensure the system is powered down before inserting or removing the module from the baseplate.
Handle the module using proper ESD (Electrostatic Discharge) precautions to prevent damage to internal circuitry.
Verify that the module is fully seated in the baseplate slot to ensure proper communication and power connection.
Route signal cables away from high-voltage lines and sources of electromagnetic interference (EMI) to maintain signal integrity.
Ensure the environment meets the specified temperature and humidity ratings for reliable long-term operation.
Compliance and CertificationsThe FBM201 (P0914SQ) meets rigorous industrial standards, including CSA Certification, FM Approval, and CE Marking, ensuring suitability for demanding control room and field cabinet environments.FAQIs the FBM201 isolated? No, the FBM201 features eight analog input channels that share a common ground return.What is the primary function of this module? It acts as an interface between field-mounted analog transmitters and the Foxboro I/A Series DCS, converting 0-20 mA signals into digital data for the control system.
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe FCM10E functions as a high-performance Fieldbus Communications Module within the Foxboro I/A Series distributed control system. It acts as a critical signal converter between the 10 Mbps Ethernet control network and the 2 Mbps HDLC-based module fieldbus. Specifically engineered for mission-critical deployments in oil refineries, petrochemical plants, and thermal power stations, the FCM10E facilitates the seamless exchange of process data and diagnostic information between the control processor and Fieldbus Modules (FBMs). Its robust architecture supports redundant configurations, ensuring that a single point of network failure does not disrupt process control. By providing high-speed deterministic communication, this module plays a pivotal role in maximizing system availability and reducing unscheduled plant downtime.Communication ArchitectureThe hardware architecture of the FCM10E is optimized for high-speed protocol translation and data buffering. It features a dedicated 10 Mbps Ethernet port to interface with the Nodebus or Mesh network and a secondary interface for the internal module fieldbus. The module manages all low-level communication tasks, including error checking, packet framing, and collision detection, offloading these requirements from the main control processor. It supports redundant pair installation, where two modules share the same address and provide bumpless switchover in the event of hardware or link failure. Integrated self-diagnostics continuously monitor the internal power rails and communication port integrity, reporting status changes immediately to the system manager.Features
High-speed protocol translation between 10 Mbps Ethernet and 2 Mbps HDLC fieldbus.
Supports redundant configuration for high-availability control environments.
Integrated self-diagnostics for real-time monitoring of power and communication integrity.
Offloads low-level communication tasks from the main control processor.
Supports up to 64 FBMs per fieldbus segment.
ApplicationsThe FCM10E is designed for integration into Foxboro I/A Series DCS environments, commonly utilized in:
Oil and gas processing facilities.
Petrochemical manufacturing plants.
Thermal power generation stations.
Large-scale industrial automation systems requiring high-speed deterministic data exchange.
Technical Specifications
Model
FCM10E
Module Type
Fieldbus Communications Module
Ethernet Data Rate
10 Mbps
Fieldbus Data Rate
2 Mbps (HDLC)
Max FBM Support
64 modules
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to +85 deg C
Relative Humidity
5 to 95% (Noncondensing)
Power Consumption
5 W (Typical)
Isolation
600 VAC (port-to-ground)
Installation Guidelines
Ensure the system power is disconnected before installing or removing the module from the rack.
Handle the module using proper ESD (Electrostatic Discharge) precautions to prevent damage to internal circuitry.
Ensure the module is fully seated in the designated I/A Series rack slot to maintain proper backplane connection.
Route communication cables away from high-voltage power lines and sources of electromagnetic interference (EMI).
Verify that the module is configured correctly for redundant operation if used in a fault-tolerant pair.
Compliance and CertificationsThe FCM10E is designed to meet industrial standards including UL, CSA, CE, and ATEX Zone 2 requirements for hazardous locations.FAQDoes the FCM10E support redundant operation?Yes, the FCM10E supports redundant pair installation, allowing two modules to share the same address and provide bumpless switchover if a hardware or link failure occurs.What is the primary function of the FCM10E?It acts as a communication bridge, converting signals between the 10 Mbps Ethernet control network and the 2 Mbps HDLC-based module fieldbus within the Foxboro I/A Series system.
2 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
1 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro NCNI P0972PP is a high-performance Network Control Node Interface module engineered for the Foxboro I/A Series distributed control system. This module serves as a vital communication bridge, managing data exchange between the control processor and the industrial network infrastructure. Designed for mission-critical applications such as hydrocarbon processing, power generation, and offshore oil and gas platforms, the P0972PP ensures high-speed, deterministic throughput for real-time control data. Its robust design is optimized to maintain network stability in demanding electromagnetic environments, effectively preventing communication bottlenecks and system-wide latency.Features
High Availability: Supports redundant Control Network (Nodebus) architectures with automatic failover capabilities.
Diagnostic Monitoring: Internal logic continuously monitors link integrity and port status for proactive fault detection.
Hot-Swap Capability: Designed for installation in standard I/A Series enclosures, allowing for module replacement without interrupting node operations.
Deterministic Performance: Optimized for high-density traffic loads typical of large-scale DCS deployments.
Passive Cooling: Reliable hardware design requiring no active cooling components.
ApplicationsThe NCNI P0972PP is primarily utilized in Foxboro I/A Series control systems for:
Large-scale distributed control system (DCS) network integration.
Real-time process control in oil, gas, and petrochemical facilities.
High-reliability power generation and utility infrastructure.
Industrial environments requiring redundant, fault-tolerant network communication.
Technical Specifications
Model
NCNI P0972PP
Brand
Foxboro by Schneider Electric
Module Type
Network Control Node Interface
Interface Rate
10/100 Mbps (Auto-negotiation)
Network Topology
Star or Mesh (Control Network)
Power Input
24 VDC (Backplane powered)
Operating Temperature
0 to 60 deg C
Storage Temperature
-40 to +70 deg C
Relative Humidity
5 to 95% (Non-condensing)
Mounting
I/A Series Modular Baseplate
Installation Guidelines
ESD Protection: Always use a grounded wrist strap when handling the module to prevent electrostatic discharge damage to internal components.
Power Status: Ensure the backplane power is stable before inserting or removing the module. While the module supports hot-swapping, verify system-specific safety protocols before performing maintenance.
Environment: Install in a clean, dry environment within the specified temperature range. Ensure adequate airflow around the baseplate assembly.
Wiring: Use shielded cabling appropriate for the network topology to minimize EMI interference. Ensure all connections are secure and properly seated in the baseplate.
Compliance and CertificationsThe NCNI P0972PP meets industry standards for industrial control equipment, including UL, CSA, CE, and ATEX Zone 2 compliance for hazardous locations.FAQIs the NCNI P0972PP hot-swappable?Yes, the module is designed to be hot-swappable within the I/A Series modular baseplate, allowing for replacement without shutting down the entire node.What is the primary function of this module?It acts as a network interface for the Control Network (Nodebus), facilitating reliable, redundant, and deterministic communication between the control processor and the rest of the DCS network.
1 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
4 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Description
The Foxboro AD916AE is a high-performance analog input extension cable engineered for the Foxboro I/A Series distributed control system. This component is designed to facilitate reliable signal transmission between Fieldbus Modules (FBM) and termination assemblies (TA) within complex industrial control environments. By ensuring high-fidelity data transfer, the AD916AE helps maintain signal integrity for sensitive process variables, minimizing electromagnetic interference (EMI) and preventing data loss in critical applications.
Features
High-Fidelity Signal Transmission: Multi-core, shielded twisted pair (STP) construction optimized for low-level analog signal integrity.
Robust Construction: Features a flame-retardant outer jacket designed to withstand industrial chemical exposure and thermal stress.
Reliable Connectivity: High-density connectors equipped with gold-plated contacts to prevent oxidation and ensure long-term electrical conductivity.
System Compatibility: Supports redundant signal paths when utilized with compatible redundant FBM architectures.
EMC Compliance: Calibrated to meet Foxboro stringent electromagnetic compatibility standards.
Applications
The AD916AE is suitable for use in demanding industrial sectors, including:
Petrochemical refineries
Offshore oil and gas platforms
Heavy mining operations
Large-scale distributed control system (DCS) installations
Technical Specifications
Model
AD916AE
Brand
Foxboro (Schneider Electric)
Cable Type
Analog Input Extension Cable
Signal Support
4-20 mA, 0-5 VDC, 0-10 VDC
Shielding
Overall foil and braided shield (100% coverage)
Operating Temperature
-20 to +70 deg C
Storage Temperature
-40 to +85 deg C
Jacket Material
PVC
Installation Guidelines
Handling: Ensure the cable is not subjected to excessive tension or sharp bends during installation to maintain the integrity of the internal shielding.
EMI Mitigation: Route signal cables away from high-voltage power lines and high-EMI sources to prevent signal noise.
Grounding: Ensure proper termination of the cable shield at the designated grounding points on the termination assembly to maintain effective EMI protection.
Environment: Verify that the installation area remains within the specified temperature range of -20 to +70 deg C.
Power Down: Always ensure the associated I/O modules and power supplies are de-energized before connecting or disconnecting the cable from the FBM or TA.
FAQ
Q: Is this cable compatible with all Foxboro I/A Series FBMs?A: The AD916AE is designed for specific I/A Series applications. Please verify your FBM and termination assembly part numbers to ensure compatibility with this specific cable interface.
Q: Can this cable be used in outdoor environments?A: The cable features a flame-retardant jacket suitable for industrial environments; however, it should be installed within appropriate conduit or cable trays to protect it from direct environmental hazards and mechanical damage.
4 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
5 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
DescriptionThe Foxboro P0926KE (also identified as RH926KE) is a 2-position modular baseplate engineered for the Foxboro I/A Series and Foxboro Evo process automation systems. This baseplate serves as a critical mounting platform and communication backplane for 200 Series Fieldbus Modules (FBM) and Field Communications Modules (FCM). Designed for high-reliability industrial environments, it supports seamless integration and hot-swapping of modules, allowing for maintenance without interrupting field wiring or system power.Features
Supports up to two 200 Series FBM or FCM modules.
Passive backplane architecture for enhanced system reliability.
Redundant 24 VDC power input connections for high availability.
Integrated module guides for precise alignment and protection of electrical contacts.
Supports 2 Mbps redundant Module Fieldbus (HDLC) communication.
Fixed baseplate addressing (Baseplate 0) with slots 1 and 2.
ApplicationsThis baseplate is widely utilized in distributed control environments, including oil and gas refining, power generation, and large-scale mining operations where modular, high-availability I/O configurations are required.Technical Specifications
Model
P0926KE (RH926KE)
Brand
Foxboro by Schneider Electric
Module Positions
2
Mounting
Horizontal DIN rail
Input Voltage
24 VDC (Redundant)
Communication
2 Mbps Redundant Module Fieldbus (HDLC)
Operating Temperature
-20 to +60 deg C
Storage Temperature
-40 to +70 deg C
Relative Humidity
5 to 95% (Noncondensing)
Material
PC and ABS (UL94 V0)
Installation Guidelines
Ensure the DIN rail is securely mounted and grounded according to local electrical codes before installing the baseplate.
The baseplate is designed for horizontal mounting; ensure adequate clearance for airflow and module insertion/removal.
Handle with care to avoid ESD damage to the backplane connectors.
Verify that the 24 VDC power supply is properly connected to the redundant terminals to ensure system availability.
Modules may be hot-swapped; however, always ensure the module is fully seated and locked into the guide rails to prevent contact misalignment.
Compliance and CertificationsThe P0926KE is designed for use in hazardous locations, holding certifications including UL/UL-C Class I Div 2 and ATEX Zone 2. It is CE compliant. Please note this specific model is not Marine certified.FAQIs this baseplate compatible with all 200 Series modules?The P0926KE is designed for standard 200 Series FBMs and FCMs. Please verify your specific module's compatibility with the 2-position baseplate architecture before installation.Can I replace modules while the system is running?Yes, the P0926KE supports hot-swapping of modules, allowing you to remove or install units without powering down the baseplate or disconnecting field wiring.
5 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Schneider Electric TSXBLY01 Screw Connection Terminal Block
Configured for discrete and analog signal termination in Modicon Premium I/O interfacing, the Schneider Electric TSXBLY01 (TSXBLY01 Screw Connection Terminal Block) provides direct physical/electrical execution between field wiring and compatible analog I/O modules within Modicon Premium backplane architectures.
Suffix Breakdown & Model Matrix
TSXBLY01 is a single-order terminal block designation. No further suffix segmentation or variant encoding is defined in the provided manufacturer data. The model functions as a fixed 20-way screw termination interface.
Hardware Specifications
Parameter
Specification
ModelBrand
Schneider Electric TSXBLY01
Origin
Japan
Weight
0.1 kg (0.22 lb US)
Dimensions
Not specified
OperatingTemp
0 to 60 degC
PowerConsumption
Passive component, no power consumption
Product Type
Screw Connection Terminal Block
Number of Ways
20
Compatible Modules
TSXASY410, TSXAEY414
Mounting Interface
Modicon Premium I/O connection interface
Backplane Interfacing and IO Density Handling Characteristics
Within Modicon Premium PLC architectures, TSXBLY01 supports structured I/O termination density scaling by providing a fixed 20-point screw terminal layout for analog and discrete signal aggregation. Backplane bus communication remains unaffected electrically, as the module functions purely as a passive termination layer between field wiring and I/O module connectors. Wiring continuity and channel segregation depend on mechanical torque stability and correct terminal assignment mapping.
Frequently Asked Questions
Q: Can TSXBLY01 be hot-swapped while the I/O module is energized?A: Mechanical disconnection is possible only after system de-energization. The terminal block itself contains no active circuitry, but removal under live conditions may disrupt field signal integrity at the connected TSXASY410 or TSXAEY414 modules.
Q: Does TSXBLY01 introduce any signal conditioning or isolation?A: No. It provides direct screw termination without galvanic isolation or signal processing. Isolation is handled at the I/O module level.
Q: What is the recommended torque for screw terminals?A: Manufacturer torque values are not specified in the provided data. Standard industrial control practice applies, ensuring secure conductor clamping without deformation of terminal structures.
Field Installation Guidelines
Ensure all field wiring is fully de-energized before installation. Conductors should be stripped to standard terminal insertion depth and inserted into the correct 20-way assignment positions. Tighten screws uniformly to maintain consistent contact pressure across all channels. Avoid excessive bending stress on conductors near the terminal entry point. Maintain separation between analog signal lines and high-voltage routing to reduce coupling effects. Verify continuity mapping between TSXBLY01 terminals and connected TSXASY410 or TSXAEY414 modules prior to system energization.
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Schneider Electric C65H-DCC10A Miniature Circuit Breaker
Configured for DC overcurrent interruption in low-voltage distribution circuits, the Schneider Electric C65H-DC (C65-DC Miniature Circuit Breaker) provides direct physical/electrical execution of fault current interruption in single-pole DC protection paths. The device operates as a thermomagnetic breaker with C curve tripping characteristics for defined inrush current tolerance and short-circuit disconnection behavior in 125 VDC networks.
Hardware Specifications
Parameter
Specification
ModelBrand
Schneider Electric C65H-DC
Origin
Not specified
Weight
110 g
Dimensions
18 mm (W) x 84 mm (H) x 71.5 mm (D)
OperatingTemp
-30 degC to 70 degC
PowerConsumption
Not applicable (passive electromechanical device)
Rated Current (In)
10 A at 40 degC
Poles
1P
Network Type
DC
Breaking Capacity (Icu)
10 kA at 125 VDC
Service Breaking Capacity (Ics)
7.5 kA (75 percent of Icu)
Tripping Curve
C curve
Magnetic Trip Range
8.5 x In +/- 20 percent
Electrical Life
10000 operations
Mechanical Life
20000 operations
Insulation Voltage (Uimp)
5 kV
Schneider Electric Multi9 Rail Modular Protection Behavior
The Schneider Electric C65H-DC integrates within Multi9 rail-mounted protection architectures, where DIN-rail mechanical stability and modular pole expansion define physical installation constraints. In Schneider Electric protection systems, device-level coordination is influenced by upstream and downstream impedance shaping and backplane distribution continuity, where deterministic fault isolation depends on thermal-magnetic response curves and controlled arc extinction behavior in DC environments. The C curve magnetic characteristic defines the instantaneous trip threshold window for inductive loads with moderate inrush profiles, ensuring coordination stability in segmented DC distribution chains.
Frequently Asked Questions
Q: Can the C65H-DC be hot-swapped under energized DC conditions?A: No. The device is not designed for hot-swap operation. Mechanical isolation of the circuit is required prior to DIN-rail removal to prevent DC arc formation.
Q: What determines the 10 kA Icu rating limitation?A: The Icu value is defined by IEC 60947-2 test conditions at 125 VDC, representing the maximum prospective short-circuit current the breaker can interrupt without catastrophic failure.
Q: Does the C curve affect DC trip coordination stability?A: Yes. The C curve defines magnetic trip onset at 8.5 x In, influencing coordination with upstream protection devices under transient inrush conditions.
Field Installation Guidelines
The device shall be installed on standard 35 mm DIN rail with secure mechanical locking engagement. Conductors must be terminated using tunnel-type terminals within 1 to 25 mm2 cross-sectional range, ensuring torque tightening at 2.5 N·m. For DC applications, polarity consistency must be maintained across distribution rails to avoid reverse polarity stress on arc interruption chambers. Cable routing should minimize loop inductance to reduce electromagnetic stress during fault interruption events.
Installations must maintain separation between load and supply wiring to reduce coupling effects during magnetic trip events. Shielding is not required for power conductors but recommended for adjacent signal cabling in mixed-control panels.
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Schneider Electric C65H-DC C6A Miniature Circuit Breaker DC
Configured for overcurrent interruption in low-voltage DC distribution networks, the Schneider Electric C65H-DC C6A (C65H-DC) miniature circuit breaker provides direct mechanical switching and thermal-magnetic protection for DC electrical paths. The device implements a D-curve trip profile with magnetic response calibrated for high inrush current environments, supporting controlled interruption of fault currents in DC circuits up to 10 kA breaking capacity.
Suffix Breakdown & Model Matrix
No structured suffix segmentation is defined for C65H-DC C6A within the provided dataset. The model designation is treated as a single fixed ordering code without documented modular suffix hierarchy.
Hardware Specifications
Parameter
Specification
ModelBrand
Schneider Electric C65H-DC C6A
OperatingTemp
-25 degC to +70 degC
PowerConsumption
Passive device, no auxiliary supply
RatedCurrent
6 A
TrippingCurve
D curve
BreakingCapacity
Up to 10 kA (IEC 60947-2)
RatedVoltage
220 VDC (1P), up to 500 VDC (2P)
InsulationVoltage
500 VDC
Mounting
35 mm DIN rail
ElectricalLife
10000 cycles
MechanicalLife
20000 cycles
Deterministic Industrial Network Compatibility Layer (Schneider Electric PLC Ecosystem Context)
Within Schneider Electric industrial control architectures, the C65H-DC platform is typically deployed alongside PLC and distributed control systems where deterministic communication over Profinet and EtherNet/IP backbones governs system-level coordination between protection devices and control logic layers. Firmware alignment constraints across modular protection and switching components require consistent parameter mapping to maintain predictable fault isolation behavior under rapid switching transients. Backplane and field-device synchronization ensures stable state transition during protective tripping events, minimizing control loop desynchronization in DC segmented distribution systems.
Frequently Asked Questions
Q: Can the C65H-DC C6A be operated under bidirectional DC polarity conditions?A: No. The device is polarity-sensitive and requires fixed + and - terminal orientation for correct arc extinction behavior.
Q: Does the breaker support hot-swap replacement under energized DC load?A: No. Replacement requires full circuit de-energization to prevent contact erosion and arc flash during extraction.
Q: Is coordination required with upstream DC protection devices?A: Yes. Selectivity coordination must be verified based on time-current curves and total breaking capacity margins.
Field Installation Guidelines
Install the device on a standard 35 mm DIN rail with firm mechanical locking engagement. Ensure correct polarity alignment according to terminal markings before energization. Maintain conductor routing separation between load and supply sides to reduce arc propagation risk in DC fault conditions. Tighten terminal connections to manufacturer-recommended torque values where specified in system documentation. Verify insulation integrity and absence of cross-connection before applying voltage. Avoid installation in environments exceeding specified thermal limits of -25 degC to +70 degC.
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Schneider Electric 141MMS53502 Modicon Quantum Motion Controller
Configured for high-speed SERCOS multi-axis motion control in Modicon Quantum backplane networks, the Schneider Electric 141MMS53502 (141MMS53502 Motion Controller) provides direct physical/electrical execution. The module integrates motion coordination logic, deterministic fieldbus communication, and memory-resident control tasks within a PLC-based rack architecture.
Suffix Breakdown & Model Matrix
No structured suffix segmentation is defined for 141MMS53502. The identifier is treated as a single fixed-order part number within the Modicon Quantum SERCOS motion controller family.
Hardware Specifications
Parameter
Specification
ModelBrand
Schneider Electric 141MMS53502
Origin
Not specified
Weight
0.94 kg
Dimensions
Not specified
OperatingTemp
Not specified
PowerConsumption
5 VDC, 3 A max (15 W)
Product Line
Modicon Quantum
Control Type
SERCOS Multi-Axis Motion Controller
ROM Capacity
500 kB
RAM Capacity
380 kB upper, 640 kB conventional, 7168 kB extended
Read/Write Memory
4000 kB
Holding Registers
Up to 60000 words
Communication Protocols
Modbus, Modbus Plus
Motion Interface
SERCOS fiber optic
SERCOS Baud Rate
2 to 4 Mbaud configurable
Connectors
2x SERCOS fiber optic, 3x DB9
Switches
2x BCD rotary switches
Status Indication
5 LED indicators
Schneider Electric Backplane Communication and Firmware Execution Profile
Within Schneider Electric Modicon Quantum architecture, the 141MMS53502 executes motion tasks through deterministic backplane bus scheduling and cyclic I/O synchronization. Backplane communication velocity governs scan alignment between CPU task execution and SERCOS motion frames, minimizing jitter in multi-axis interpolation cycles.
Firmware flash compatibility is managed at rack-level integration, where module firmware image alignment must match system configuration tables to ensure consistent register mapping. I/O density scaling is handled through rack expansion, allowing distributed motion control nodes to maintain synchronized register windows across Modbus and SERCOS segments.
Frequently Asked Questions
Q: Does the 141MMS53502 support hot-swap insertion in a powered rack?A: The module is designed for rack-based installation; hot-swap capability depends on Quantum backplane configuration and system controller state. Improper insertion under power may cause backplane synchronization loss.
Q: What is the impact of SERCOS baud rate selection on axis synchronization?A: Baud rate selection between 2 and 4 Mbaud affects cycle time resolution on the fiber optic SERCOS ring, directly influencing interpolation update rate and motion loop determinism.
Q: Can Modbus and Modbus Plus operate simultaneously with SERCOS motion traffic?A: Yes. Modbus/Modbus Plus communications operate as auxiliary channels while SERCOS handles deterministic motion control over the dedicated fiber optic interface.
Field Installation Guidelines
Install module only in Modicon Quantum compliant rack slots with stable backplane alignment.
Ensure all SERCOS fiber optic connectors are clean and properly seated to avoid signal attenuation.
Maintain DB9 connector shielding continuity to minimize electromagnetic coupling on communication lines.
Verify BCD rotary switch configuration before power application to prevent address conflicts.
Avoid bending fiber optic cables below minimum bend radius to preserve optical signal integrity.
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Schneider Electric TSXP57104M Unity Processor Module
Configured for execution of PLC scan cycles and system task scheduling in Modicon Premium Automation platform, the Schneider Electric TSXP57104M (TSXP57104M Unity processor) provides direct physical/electrical execution for multi-rack I/O processing and Unity Pro application runtime handling.
Hardware Specifications
Parameter
Specification
ModelBrand
Schneider Electric TSXP57104M
Origin
FR
Weight
0.38 kg
Dimensions
5.5 cm x 18 cm x 26 cm (package)
OperatingTemp
0 degC to 60 degC
PowerConsumption
850 mA at 5 V DC
PLC Platform
Modicon Premium Automation Platform
Program Memory
224 kB (with PCMCIA), 96 kB data
I/O Capacity
512 discrete I/O, 24 analog I/O
Rack Support
2 x 12-slot or 4 x 4/6/8-slot racks
Task Structure
1 master task, 1 fast task, up to 32 event tasks
Serial Communication
RS485 (19.2 kbit/s, non-isolated mini DIN)
Industrial Control Backplane Bus and Deterministic Execution Behavior
The Schneider Electric TSXP57104M operates within Modicon Premium backplane architecture, where deterministic scan execution is synchronized across distributed rack modules via internal system bus arbitration. Backplane communication velocity is optimized for cyclic task scheduling, supporting mixed Boolean and arithmetic instruction execution with fixed scan timing behavior under Unity Pro runtime.
Firmware execution supports structured application segmentation (master, fast, and event tasks), enabling predictable I/O refresh alignment across multi-rack configurations. PCMCIA expansion impacts execution timing profiles, particularly for floating-point instruction cycles and data block handling, requiring deterministic memory arbitration during high-load scan conditions.
Frequently Asked Questions
Q: Does TSXP57104M support hot-swap of CPU module during runtime?A: No hot-swap capability is defined for the processor module. Removal requires system power down due to backplane arbitration and memory state dependency.
Q: How does PCMCIA memory affect execution timing?A: When PCMCIA is installed, instruction execution time increases for Boolean and arithmetic operations due to external memory access latency and address mapping overhead.
Q: What is the backplane load behavior under maximum I/O configuration?A: Backplane current draw is constrained by 850 mA at 5 V DC processor consumption, with additional load distributed across rack-mounted I/O modules via system power rails.
Field Installation Guidelines
Processor shall be mounted on Modicon Premium compatible rack backplane ensuring full mechanical engagement of connector interface. Maintain separation between RS485 serial wiring and high-noise power conductors to minimize signal coupling.
Shielding for communication lines shall be grounded at single-point earth reference. Ensure rack power supply stability at 5 V DC system rail before processor insertion. Avoid insertion or removal under energized conditions.
Backplane connectors must be free of dust and oxidation prior to installation. Torque and mechanical locking should follow rack manufacturer specification for module retention integrity.
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link
Schneider Electric BMXXBP0800 Rack Module
Configured for expansion backplane interconnection in Modicon M340 automation platform,the Schneider Electric BMXXBP0800 (BMXXBP0800 Rack) provides direct physical/electrical execution. The module functions as an 8-slot X Bus rack for mounting BMXCPS power supply, BMXP34 processor, and I/O or specific application modules. Backplane distribution and mechanical alignment are implemented through the XBE connector interface, supporting deterministic internal communication and power distribution within the rack structure. Total power consumption of the rack is 2 W.
Suffix Breakdown & Model Matrix
Single fixed-order rack module. No manufacturer-defined suffix segmentation is applicable to BMXXBP0800. All functional attributes are embedded at assembly level without option coding.
Hardware Specifications
Parameter
Specification
ModelBrand
Schneider Electric BMXXBP0800
Origin
Not specified in provided technical data
Weight
0.95 kg (2.09 lb)
Dimensions
Not specified
OperatingTemp
0 to 60 degC
PowerConsumption
2 W
Slot Capacity
8-slot X Bus backplane
Interface
XBE expansion connector
Mounting Method
DIN rail, panel, screw fixation
Industrial Control Backplane Bus Architecture
The BMXXBP0800 rack implements internal backplane distribution logic for Modicon M340 systems. Slot-to-slot communication is mediated through the X Bus structure, enabling processor-to-module synchronization without external cabling between I/O cards. The backplane architecture supports deterministic cycle execution aligned with Schneider Electric PLC scan mechanisms. Mechanical keying ensures module alignment integrity under vibration and continuous industrial duty cycles. Firmware-level compatibility is dependent on BMXP34 processor revision matching and rack topology recognition during system initialization.
Frequently Asked Questions
Q: Does BMXXBP0800 support hot-swap of I/O modules?A: The rack backplane is not designed for live mechanical insertion under energized bus conditions. Module replacement requires system power-down to avoid X Bus signal disturbance.
Q: What is the backplane load limitation per rack?A: Load distribution is managed by BMXCPS power supply via rack bus architecture. Electrical budget is defined at system level rather than per slot in isolation.
Q: Is firmware required for rack recognition?A: Rack identification is handled through processor-level configuration in BMXP34. No standalone rack firmware exists.
Field Installation Guidelines
Install BMXXBP0800 on a 35 mm symmetrical DIN rail or fixed panel using four-point M6 screw mounting. Ensure XBE connector alignment between rack and adjacent modules before mechanical locking. Maintain minimum clearance for thermal convection within 0 to 60 degC operating range. All grounding paths must be bonded to cabinet earth to stabilize backplane reference potential. Avoid routing high-voltage or high-noise conductors parallel to the rack bus interface to preserve signal integrity.
14 in stock
Delivery within 48 hours, pay afterwards
Mid weeks Monday to friday we offer next day delivery if the product is on stock and exceptions on holidays.
Weekends We offer no deliveries in the weekends.
International Depending on where you’re located, we offer next day delivery. Check your status on this link