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3BHE021887R0101 UBC717 BE101

OVVP-Board
In Stock

Product Information:

UB C717 BE101; OVVP-Board Coated

OVVP-Board Coated spare part

for ABB drive systems

industrial automation system

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Technical specifications for 3BHE021887R0101 UBC717 BE101

  • Manufacturer:
    ABB
  • Product Category:
    DCS System
  • Estimated shipping dimensions:
    15.2 x 20 x 18.9 cm
  • Weight:
    1.25 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Product Type:
    OVVP-Board
  • Category Series:
    Drives Accessories
  • Voltage Supply:
    24 V DC
  • Operating Temperature:
    -20 °C to 55 °C
  • WEEE Category:
    Product Not in WEEE
  • Stock:
    30

Information

Overview Manuals Principle Core pplications

Features:

  • UB C717 BE101; OVVP-Board Coated
  • OVVP-Board Coated spare part for ABB drive systems
  • Industrial automation and power management systems
As the core communication hub of the system, it coordinates the large-scale data flow between the main control processor and the distributed power modules. By providing a high-bandwidth dedicated bus interface, this unit ensures extremely high real-time performance and determinism in command transmission within complex power grid control logic, thereby supporting precise scheduling of power electronic switching devices.

This highly integrated design not only enhances the system's immunity to electromagnetic interference (EMI) but also ensures lossless transmission of control signals between different hardware abstraction layers, even in extreme industrial environments, through built-in redundant link management logic.

The 3BHE021887R0101 UBC717 BE101 ABB OVVP-Board may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
ABB 3BHE021887R0101 UBC717 BE101 OVVP-Board manual(Datasheets), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
During operation, it achieves microsecond-level clock synchronization at the hardware level, ensuring that all external units connected to the bus operate on a unified time base. Through a photoelectric conversion mechanism, the 3BHE021887R0101 UBC717 BE101 safely transmits logic instructions from the low-voltage side to the high-voltage side power supply hardware, achieving absolute electrical isolation between the control circuit and the high-voltage power supply circuit.
1. Digital I/O Interface: Serving as a bridge between the control system and field devices, it provides 16 digital inputs and 16 digital outputs for signal processing.
2. System Protection: The "OVVP" designation indicates integrated overvoltage protection, protecting sensitive control electronics from transient voltages.
3. Compatible Systems: It is a key component of the ABB ACS 6000, ACS 5000, and AC 800PEC control platforms, widely used in power generation, oil and gas, and marine automation.

Ask our team:

  • In which specific deterministic control architectures does the 3BHE021887R0101 UBC717 BE101 function as the primary communication hub?
    The 3BHE021887R0101 UBC717 BE101 is designed as a high-speed communication and bridging unit in the AC 800PEC ecosystem. It is primarily used in large power conversion systems, such as static inverters and excitation systems. In these systems, the 3BHE021887R0101 UBC717 BE101 enables seamless integration of advanced control logic with distributed peripheral hardware via dedicated fiber optic or bus interfaces.
  • How does the 3BHE021887R0101 UBC717 BE101 achieve low-latency telemetry through its integrated communication sublayer?
    The 3BHE021887R0101 UBC717 BE101 employs a complex multi-protocol interface, typically utilizing high-speed fiber optic links for peripheral communication. This architectural choice enables the 3BHE021887R0101 UBC717 BE101 to reduce electromagnetic interference (EMI) while maintaining synchronized data exchange between the central logic module and distributed power modules, effectively eliminating jitter in high-bandwidth control signals.
  • What mechanism does the 3BHE021887R0101 UBC717 BE101 use to achieve real-time synchronization between redundant processor nodes?
    The 3BHE021887R0101 UBC717 BE101 features high-performance clock synchronization logic, ensuring that all units within the parallel control cluster operate on a unified time base. This feature is crucial for maintaining phase angle accuracy and current distribution balance in multilevel converter topologies.
  • What impact does the
    The "BE101" model designation of the 3BHE021887R0101 UBC717 BE101 specifies a precise hardware-to-software configuration, determining the available analog/digital channel density and internal bus mapping. This version control ensures that the 3BHE021887R0101 UBC717 BE101 is perfectly synchronized with specific system-level firmware, providing "plug-and-play" replacement capabilities, thereby maintaining the established safety parameters of the entire asset.
  • Why is the 3BHE021887R0101 UBC717 BE101 critical for maintaining the transient response of synchronous power systems?
    Because the 3BHE021887R0101 UBC717 BE101 features high-performance interrupt handling capabilities and a wide-bandwidth data bus, it can process complex communication vectors at extremely high speeds. Deploying the 3BHE021887R0101 UBC717 BE101 enables zero-latency transmission of instantaneous active power damping and reactive power compensation commands across the network.
  • What diagnostic protocols are built into the 3BHE021887R0101 UBC717 BE101 to enhance its State-Based Monitoring (CBM) capabilities?
    The 3BHE021887R0101 UBC717 BE101 has comprehensive self-diagnostic procedures that monitor communication integrity, memory parity, and link layer status. With these built-in safety features, the 3BHE021887R0101 UBC717 BE101 can feed predictive telemetry data back to a Supervisory Control and Data Acquisition (SCADA) system, enabling operators to identify problems before hardware performance degradation leads to catastrophic system tripping.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.