SDAA324
April
2026
AM62L
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1
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Abstract
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Trademarks
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1Introduction
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2Overview of Industrial Communication Protocols
- 2.1
Components of Industrial Communication Systems
- 2.2
Evolution from Serial Fieldbus to Industrial Ethernet
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3Market Trends and Multi-Protocol Requirements
- 3.1
Market Scale of Industrial Ethernet
- 3.2
Reality of Multi-Protocol Coexistence
- 3.3
Necessity of Unified Platforms
- 3.4
Core Value of TI's Multi-Protocol
Design
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4Technical Introduction of Mainstream
Industrial Protocols
- 4.1
EtherCAT (Ethernet for Control Automation Technology)
- 4.2
PROFINET RT/IRT (Real-Time Industrial
Ethernet)
- 4.3
EtherNet/IP (Common Industrial Protocol)
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5TI Processors' Multi-Protocol Support
Design
- 5.1
Key Technology: PRU-ICSS Subsystem
- 5.2
Multi-Protocol Architecture Multi-Protocol
- 5.3
Processor Selection Matrix
- 5.4
Industrial Protocol Support Matrix
- 5.5
Software Development Engagement Models
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6Summary
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7References
7 References
- Texas Instruments, Multi-protocol industrial communication: empowering next-generation
industrial automation, webinar.
- Texas Instruments, EtherCAT® on
Sitara™ Processors, marketing white paper.
- Texas Instruments, AM64x Sitara™
Processors, datasheet.
- Texas Instruments, AM243x Sitara™
Microcontrollers, datasheet.
- Texas Instruments, CPU (PLC controller) design resources, product page.