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ABB  PPD113-B03-23-111615  high-performance Processor / Controller Module
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ABB PPD113-B03-23-111615 high-performance Processor / Controller Module

ABB  PPD113-B03-23-111615  high-performance Processor / Controller Module

75200.00
¥63333.00
¥63333.00
¥63333.00
Weight:2.000KG
Description

ABB  PPD113-B03-23-111615  high-performance Processor / Controller Module


ABB PPD113-B03-23-111615 is a high-performance Processor / Controller Module primarily used within the ABB Symphony Plus (S+) and Harmony distributed control systems (DCS).

It is engineered to handle complex regulatory control, high-speed logic, and data acquisition in large-scale industrial environments.

1. Introduction

The PPD113 series represents a more modern iteration of the Symphony Plus controller family.

It is designed to act as the "brain" of a control rack, executing sophisticated control algorithms and managing communication between I/O modules and the human-machine interface (HMI).

The specific suffix B03-23-111615 typically denotes a specific hardware revision, firmware baseline, and memory configuration optimized for power generation and water treatment applications.

2. Technical Parameter Table

ParameterSpecification
Model NumberPPD113-B03-23-111615
SeriesSymphony Plus (S+) / Harmony
Processor ArchitectureHigh-speed 32-bit RISC
Input Voltage24 V DC (Redundant power inputs supported)
Communication PortsEthernet (HN800/PN800), Serial (RS-485/232)
Redundancy1:1 Hot Standby Redundancy capability
Internal MemoryNon-volatile Flash and battery-backed RAM
I/O CapacityUp to 5,000+ tags per node
Execution SpeedSub-millisecond logic processing
Operating Temp0°C to +70°C (Standard Industrial)

3. Related Models

PPD512A10: A higher-tier controller with increased processing throughput.

PPD111: Base version for smaller, less demanding control loops.

BRC410: The bridge controller variant often used in legacy Harmony systems.

IMDSI22: Digital input module frequently controlled by the PPD113.

4. Product Advantages and Features

Bumpless Redundancy: Supports seamless switching between primary and secondary controllers, ensuring the process never stops even during a hardware failure.

"Evolution without Obsolescence": Designed to be backward compatible with existing Harmony/INFI 90 racks, allowing for easy system upgrades.

High Efficiency: Low power consumption relative to its processing power, reducing the heat load within the control cabinet.

Advanced Cybersecurity: Includes hardened firmware and secure communication protocols to protect against external industrial network threats.

Comprehensive Diagnostics: Built-in self-monitoring for CPU load, memory health, and communication integrity with real-time reporting to the HMI.

5. Application Cases

Power Plants: Controlling boiler feedwater systems, steam turbine speed regulation, and burner management systems (BMS).

Desalination Plants: Managing large-scale Reverse Osmosis (RO) sequences and high-pressure pump control.

Chemical Refineries: Executing complex PID loops for temperature and pressure regulation in distillation columns.

Municipal Water: Centralized control of regional water distribution networks and pumping stations.

6. Installation and Maintenance

Installation:

Rack Mounting: Slide the module into the dedicated controller slot of the Symphony Plus rack. Ensure the locking tabs are engaged.

Addressing: Station addresses are typically set via S+ Engineering (Composer) software. Ensure no address conflicts exist on the HN800/PN800 bus.

Powering: Connect dual 24V DC sources to the rack backplane to utilize the module's redundant power circuitry.

Maintenance:

Battery Replacement: If the module utilizes a backup battery for RAM retention, replace it every 3 years or when the "Low Batt" indicator appears.

Firmware Management: Use the S+ Loader tool to keep firmware updated to the latest security patch level.

Airflow: Ensure cabinet filters are clean. The PPD113 is a powerful processor and requires consistent airflow for optimal longevity.

Backup: Regularly export the configuration logic to an external server to facilitate rapid recovery in the event of hardware replacement.

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