SST SST-PB3-VME-2-E PROFIBUS DP Communication Board – PB3 Series
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Key Product Information
Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.
- Brand
- SST
- Primary Part Number
- SST-PB3-VME-2-E
- Product Type
- PROFIBUS Communication Board
- Product Family
- Other series
- Manufacturer
- SST (Woodhead / Molex SST)
- Country of Origin
- CA
- Catalog Category
- Communication
- Operating Temp.
- 0 °C to +60 °C
- Warranty
- 12 months from date of shipment
SST SST-PB3-VME-2-E: PROFIBUS DP Master/Slave Interface for VME Bus Control Architectures
The SST-PB3-VME-2-E is a 6U VMEbus-format PROFIBUS DP communication board manufactured by SST (a Woodhead Industries / Molex brand). It provides a direct, backplane-resident PROFIBUS DP interface for VME-hosted controllers, eliminating the latency and reliability penalties associated with external gateway solutions. The board operates as either a DP Master Class 1 or a DP Slave, configurable entirely in software, and communicates with the host CPU through a dual-port RAM (DPRAM) shared-memory architecture that delivers deterministic, interrupt-driven data exchange at sub-millisecond cycle resolution.
In distributed control architectures where the VME rack serves as the primary process controller — common in power generation, petrochemical, semiconductor fabrication, and railway traction systems — the SST-PB3-VME-2-E provides the fieldbus backbone that connects the host CPU to up to 125 PROFIBUS DP slave nodes. Its onboard PROFIBUS controller handles all token-ring bus management, GSD file parsing, and cyclic data exchange autonomously, offloading the host CPU from protocol overhead and freeing processing bandwidth for real-time control tasks.
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Technical Parameters
| Parameter | Specification |
|---|---|
| Part Number | SST-PB3-VME-2-E |
| Manufacturer | SST (Woodhead / Molex SST) |
| Series | PB3 PROFIBUS Interface Series |
| Form Factor | 6U VMEbus (ANSI/IEEE 1014-1987) |
| Fieldbus Protocol | PROFIBUS DP (EN 50170 / IEC 61158 / IEC 61784 CPF 3) |
| Operating Mode | DP Master Class 1 / DP Slave (software-selectable) |
| PROFIBUS Port | 1 × DB9 female, RS-485 differential, up to 12 Mbps |
| Supported Baud Rates | 9.6 kbps, 19.2 kbps, 45.45 kbps, 93.75 kbps, 187.5 kbps, 500 kbps, 1.5 Mbps, 3 Mbps, 6 Mbps, 12 Mbps |
| VMEbus Interface | A24/D16, A32/D32; interrupt levels IRQ1–IRQ7 configurable |
| Host Data Exchange | Dual-port RAM (DPRAM), mailbox interrupt mechanism |
| Max DP Slave Nodes | 125 (as DP Master Class 1) |
| Onboard Processor | Dedicated PROFIBUS ASIC + local microcontroller |
| Power Supply | +5 V DC via VME backplane; typical current draw ≤ 1.5 A |
| Operating Temperature | 0 °C to +60 °C |
| Storage Temperature | −25 °C to +85 °C |
| Relative Humidity | 5 % to 95 % non-condensing |
| Board Dimensions | 233.35 mm × 160 mm (6U VME standard) |
| Weight | 260 g |
| EMC Compliance | CE (EMC Directive 2014/30/EU) |
| Safety | UL recognized component |
| RoHS | Compliant (EU Directive 2011/65/EU) |
| OS / Driver Support | VxWorks, LynxOS, Windows 32/64-bit; Linux via third-party |
| Configuration Tool | SST PROFIBUS Configuration & Diagnostic Software |
| Warranty | 12 months from date of shipment |
Hardware Logical Analysis
The SST-PB3-VME-2-E separates the PROFIBUS protocol stack from the host CPU by implementing a self-contained PROFIBUS ASIC paired with a local microcontroller on the board itself. This architecture has two direct engineering consequences: first, the host CPU is never interrupted by bus arbitration events or token-rotation cycles; second, the PROFIBUS timing domain is fully decoupled from the VME bus cycle time, which can vary under heavy DMA or multi-master VME traffic.
The dual-port RAM interface is the critical data path between the host and the PROFIBUS network. The DPRAM is mapped into the VME address space (A24 or A32 depending on jumper configuration) and is simultaneously accessible by both the host CPU and the onboard microcontroller. Process image data — input and output byte arrays for all configured DP slaves — is continuously refreshed in the DPRAM by the onboard controller at the PROFIBUS cycle rate. The host CPU reads and writes this image through standard VME memory-mapped I/O, with interrupt notification (via VME IRQ lines) signaling each completed bus cycle. This eliminates polling overhead and allows the host to operate on a purely event-driven basis.
The RS-485 physical layer driver on the PROFIBUS port incorporates automatic bus termination detection logic and supports the full PROFIBUS DP cable length specifications: up to 1,200 m at 9.6 kbps, reducing to 100 m at 12 Mbps, consistent with EN 50170 segment length tables. The DB9 connector pinout follows the PROFIBUS standard (pin 3: B-line, pin 8: A-line, pin 5: DGND, pin 6: VP +5 V for termination supply), ensuring compatibility with all standard PROFIBUS DP connectors including those with integrated bus termination resistors.
EMC performance is addressed through board-level design: the RS-485 transceiver is galvanically isolated from the VME backplane logic via an optocoupler barrier, preventing ground loop currents from the field cable from coupling into the VME rack’s signal ground. This isolation is rated to withstand common-mode transients consistent with IEC 61000-4-5 surge immunity requirements, which is particularly relevant in installations where the PROFIBUS cable runs through cable trays shared with power wiring.
System Integration Benefits
- Zero-gateway latency: Direct VMEbus residency eliminates the serial or Ethernet hop that external PROFIBUS gateways introduce, reducing end-to-end I/O cycle time by typically 2–5 ms compared to gateway-based solutions.
- Deterministic interrupt delivery: VME IRQ-based notification of PROFIBUS cycle completion allows the host RTOS (VxWorks, LynxOS) to schedule control tasks with jitter below 1 ms, meeting IEC 61131-3 scan cycle requirements for fast process loops.
- Host CPU offload: The onboard PROFIBUS ASIC handles all token-ring management, watchdog supervision of slave nodes, and GSD-based parameterization autonomously. The host CPU load attributable to PROFIBUS communication is limited to DPRAM read/write operations.
- Transparent slave diagnostics: DP Master Class 1 operation provides access to the full PROFIBUS DP diagnostic data set (DPV0 slave diagnostics, extended diagnostics for DPV1-capable devices), surfaced through the DPRAM status area and readable by the host application without additional protocol handling.
- Dual-role flexibility: A single board SKU covers both DP Master and DP Slave roles, simplifying spare-parts management for facilities that operate mixed master/slave VME nodes across multiple control cabinets.
- Wide OS compatibility: Validated driver libraries for VxWorks and LynxOS — the two dominant RTOSes in VME-based industrial control — reduce software integration risk. Windows driver support enables offline configuration and simulation on engineering workstations using the same hardware.
- Long cable reach at low baud rates: At 93.75 kbps, segment length reaches 1,000 m, supporting large plant layouts where field devices are distributed across multiple process areas without repeaters.
- Legacy system life extension: For VME-based DCS and PLC platforms that are no longer in active development, the SST-PB3-VME-2-E provides a maintained, sourceable PROFIBUS interface that extends system operational life without requiring a controller platform migration.
Quality Assurance & Global Logistics
Every SST-PB3-VME-2-E unit shipped from our Xiamen, China facility undergoes a structured incoming inspection protocol before it enters available stock. This includes visual examination of PCB surface, component seating, and connector integrity; label and date-code verification cross-referenced against SST manufacturing records; and a powered functional check confirming VMEbus enumeration and PROFIBUS port initialization. Units are stored in ESD-controlled, humidity-monitored warehouse conditions and dispatched in anti-static shielding bags with desiccant packs and foam-lined cartons rated for international air freight handling.
Logistics from Xiamen reach major industrial hubs on the following typical transit schedules: Hong Kong and Southeast Asia within 1–2 business days via express air; Europe (Frankfurt, Amsterdam, Paris) within 3–5 business days via DHL Express or FedEx International Priority; North America (Chicago, Los Angeles, Houston) within 4–6 business days. All shipments include commercial invoice, packing list, and certificate of conformance. Export classification and HS code documentation are prepared for each shipment to minimize customs clearance delays. For project-critical deliveries, same-day dispatch is available for orders confirmed before 14:00 CST.
A 12-month warranty covers all units against manufacturing defects and functional failure under normal operating conditions. Warranty claims are processed with a target response time of 48 hours from receipt of the defective unit at our Xiamen facility.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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