ABB SYN5302A-Z

¥2,299.00

ABB SYN5302A-Z is a high-performance synchronization and timing module developed by ABB, specially designed for power system automation, smart substations, and industrial grid synchronization applications. As a core component of the ABB SYN series of synchronization devices, ABB SYN5302A-Z integrates precise time synchronization, multi-source signal input, and standardized communication functions, which can seamlessly connect with protection relays, PLC systems, and SCADA platforms, undertaking the critical task of ensuring time consistency of devices in power grids and industrial control systems.

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Description

ABB SYN5302A-Z is a high-performance synchronization and timing module developed by ABB, specially designed for power system automation, smart substations, and industrial grid synchronization applications. As a core component of the ABB SYN series of synchronization devices, ABB SYN5302A-Z integrates precise time synchronization, multi-source signal input, and standardized communication functions, which can seamlessly connect with protection relays, PLC systems, and SCADA platforms, undertaking the critical task of ensuring time consistency of devices in power grids and industrial control systems.

Technical Parameters ABB SYN5302A-Z

Parameter Item Parameter Value
Product Type Industrial Precision Synchronization & Timing Module
Synchronization Sources IRIG-B (DC/AC), PTP (IEEE 1588v2), GPS, 1PPS/1PPM
Synchronization Accuracy ±1μs (GPS/PTP), ±10μs (IRIG-B)
Output Signals 4× 1PPS/1PPM, 2× IRIG-B (DC), 2× pulse relay outputs
Communication Interfaces Dual Ethernet (IEEE 1588v2, Modbus TCP/IP), RS-485 (Modbus RTU)
Power Supply Voltage 24V DC ±10%, 110/220V DC ±10%
Operating Temperature Range -40°C ~ +70°C (industrial wide-temperature grade)
Storage Temperature Range -55°C ~ +85°C
Protection Grade IP54 (front panel), IP20 (rear panel, cabinet mounting)
Mean Time Between Failures (MTBF) ≥ 800,000 hours
Compliance Certifications IEC 61850, IEEE 1588, CE, UL

Product Advantages and Features ABB SYN5302A-Z

  1. Ultra-High Precision Synchronization, Ensuring System Time Consistency

    ABB SYN5302A-Z supports multiple high-precision synchronization sources, including GPS, IEEE 1588v2 PTP, and IRIG-B, with a synchronization accuracy of ±1μs for GPS/PTP signals. The module adopts a multi-source redundant fusion algorithm, which can automatically switch to the backup synchronization source when the main source fails, ensuring uninterrupted time synchronization for critical devices such as protection relays and fault recorders in power systems.

  2. Multi-Channel Input/Output, Flexible System Integration

    ABB SYN5302A-Z is equipped with rich synchronization input and output interfaces, supporting the access of various standard timing signals and the distribution of precise time signals to multiple downstream devices. The dual Ethernet design with IEEE 1588v2 protocol enables it to build a high-precision time synchronization network for smart substations, eliminating the need for additional time signal conversion modules and reducing system integration complexity.

  3. Strong Anti-Interference and Environmental Adaptability

    ABB SYN5302A-Z uses industrial-grade reinforced hardware design, with built-in EMI filtering and surge protection circuits, which can resist electromagnetic interference, voltage fluctuations, and lightning strikes in power system environments. Its wide operating temperature range of -40°C to +70°C allows it to adapt to harsh outdoor and indoor industrial scenarios, ensuring stable operation in high-temperature, low-temperature, and high-humidity environments.

  4. Intelligent Monitoring and Easy Maintenance

    ABB SYN5302A-Z has a built-in intelligent status monitoring function, which can real-time monitor the working status of each synchronization source and output channel, and send alarm signals through communication interfaces when abnormalities occur. The user-friendly LCD HMI allows for local parameter configuration and status query, and the module supports online firmware upgrade and remote diagnosis, greatly reducing the workload of operation and maintenance personnel.

Application Cases

  1. Smart Substation Time Synchronization System

    In a 220kV smart substation project, ABB SYN5302A-Z is used as the core time synchronization device, receiving GPS signals and distributing precise time signals to protection relays, fault recorders, and merging units through IEEE 1588v2 protocol. When the GPS signal is interrupted due to severe weather, the module automatically switches to the IRIG-B backup source, ensuring that all devices maintain consistent time, which is critical for accurate fault location and power grid stability control.

  2. Industrial Grid-connected Power Generation System

    In a photovoltaic power plant grid-connected system, ABB SYN5302A-Z provides high-precision synchronization for grid-connected inverters and power quality monitoring devices. The module’s PTP synchronization function ensures that the inverter’s output voltage and frequency are accurately synchronized with the grid, avoiding grid instability caused by asynchronous connection, and the multi-source redundancy design ensures continuous operation of the power plant even when the GPS signal is lost.

  3. Industrial Automation Production Line Timing Control

    In a high-speed automated assembly line of an automobile manufacturing plant, ABB SYN5302A-Z realizes precise time synchronization for robots, conveyor belts, and quality inspection equipment. The module’s 1PPS output signal ensures that each device operates in strict accordance with the preset time sequence, improving the coordination and efficiency of the production line, and the remote monitoring function allows maintenance personnel to quickly troubleshoot timing abnormalities.

Competitor Comparison

Comparison Item ABB SYN5302A-Z Siemens 7XV5650 Schneider SEPAM SYNC
Synchronization Accuracy ±1μs (GPS/PTP) ±2μs (GPS/PTP) ±5μs (GPS/PTP)
Supported Sync Sources GPS, PTP, IRIG-B, 1PPS GPS, PTP, IRIG-B GPS, PTP
Communication Interfaces Dual Ethernet, RS-485 Dual Ethernet, RS-485 Single Ethernet, RS-485
Operating Temperature -40°C ~ +70°C -25°C ~ +65°C -20°C ~ +60°C
MTBF ≥ 800,000 hours ≥ 700,000 hours ≥ 600,000 hours
Application Scenario Power system, smart substation, industrial automation Power system, substation Industrial automation, small power grid

Selection Suggestions

  1. For smart substations, grid-connected power generation systems, and high-precision industrial automation production lines that require ultra-high precision time synchronization, ABB SYN5302A-Z is the preferred choice due to its multi-source redundancy, high synchronization accuracy, and strong environmental adaptability.
  2. When selecting, confirm the synchronization source types required by the project (such as GPS, PTP, or IRIG-B) and the number of downstream devices that need time signals, to ensure the module’s input/output interfaces can meet the system requirements.
  3. For outdoor substation applications, prioritize the configuration of a waterproof and dustproof installation cabinet, and use lightning protection accessories to enhance the module’s anti-lightning ability.

Precautions

  1. When installing ABB SYN5302A-Z, wear an anti-static wristband to prevent static electricity from damaging the internal high-precision circuit board; ensure that the GPS antenna is installed in an open area with no obstacles, to improve signal reception quality.
  2. Parameter configuration must be carried out in accordance with the ABB official manual, and the synchronization source priority and switching logic should be set according to the project requirements, avoiding incorrect settings that lead to time synchronization failure.
  3. During long-term operation, regularly check the connection tightness of the GPS antenna and communication cables to prevent signal interruption caused by vibration; regularly clean the module’s heat sink to ensure good heat dissipation.
  4. When performing remote firmware upgrades, ensure the stability of the communication network, and do not power off the module during the upgrade process to avoid firmware damage and module failure.

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