In the field of modern industrial automation, programmable automation controllers (PACs) serve as the core of the system, and their performance, reliability, and scalability directly determine the operational efficiency and flexibility of the production line. The PACSystems RX3i series launched by Emerson is an ideal choice for many industrial applications due to its high-speed processor, innovative dual bus backplane architecture, and extensive selection of I/O modules. This article is based on the PACSystems RX3i System Manual (GFK-2314AF) and provides a systematic explanation of the architecture, core components, I/O modules, and engineering practices of the RX3i system, aiming to provide professional reference for automation engineers.
System Overview and Core Features
PACSystems RX3i is a modular and scalable control platform that integrates the reliability of traditional PLCs with the openness and high performance of PCs. Its core innovation lies in the universal backplane design, where each module slot supports two types of buses simultaneously:
High speed PCI bus: used to support the new generation of high-performance RX3i (IC695 series) modules, achieving high-speed data throughput.
Serial bus: Used to be compatible with existing Series 90-30 (IC693 series) I/O modules, providing users with a smooth migration path and protecting existing investments.
The RX3i offers a variety of CPU options, from the entry-level CPE100 to the high-performance CPL410, with user memory ranging from 1MB to 64MB, to meet control tasks of different sizes and complexities. All CPUs support configuration and programming through PAC Machine Edition (PME) software, which provides a unified engineering development environment.
Hardware architecture and installation specifications
2.1 Backboard and Power Supply
Universal Backplane: Available in three specifications: 7-slot, 12 slot, and 16 slot, as well as variants that only support PCI modules. The backplane comes with a grounding bar, which facilitates the unified grounding of the module shielding layer. In addition, the TB1 terminals (7 and 8) on the left side of the backplane can be used to connect an external isolated 24V DC power supply, providing power to modules that require isolated power supply.
Power module: The RX3i system must be equipped with a dedicated power module. It is mainly divided into two categories:
Universal backplane power supply (IC695 series): such as PSA040 (120/240V AC or 125V DC input, 40W), PSD040 (24V DC input, 40W), and multi-purpose power supply PSD140/PSA140, the latter supporting load sharing and redundant configuration. The new PSD180 provides 80W output to meet higher power requirements.
Expansion Backplane Power Supply (IC694 Series): such as PWR321, PWR330, PWR331, used to power expansion racks, providing+5V,+24V relay power supply and+24V isolation power supply.
Installation points: The backboard must be installed horizontally to ensure heat dissipation, and there should be at least 10cm (4 inches) of space around it. System grounding is crucial, and all backboards must be connected to a common grounding point through a separate grounding wire to ensure safety and anti-interference performance.
2.2 CPU module
The CPU module is the "brain" of the system, responsible for executing user logic, processing communication, and I/O data. Taking CPE330 as an example, it is a dual core CPU with 64MB of user memory and integrated dual Ethernet/PROFINET ports. When installing the CPU, it is necessary to follow the rules for occupying the backplane slot. For example, CPE330 occupies two slots and cannot be installed in the rightmost expansion slot. Except for a few models such as CPE302/305, most CPUs do not support hot swapping when powered on.

I/O module detailed explanation
The RX3i system provides an extremely rich range of I/O modules, covering digital, analog, special functions, and more.
3.1 Digital Input Module
Basic inputs: such as IC694MDL240 (16 point 120V AC input), IC694MDL645 (16 point 24V DC input), providing basic status detection function with LED status indication.
Isolated input: such as IC694MDL250 (16 point 120V AC isolated input), each channel is independently isolated and supports software configuration of input filtering time (20ms to 2540ms), effectively suppressing signal jitter and noise.
Intelligent Input Module (IC695MDL664): This is a more powerful 16 point 24V DC input module. It not only supports standard ON/OFF detection, but also provides:
Three state/four state input diagnosis: In conjunction with external resistors, it can detect faults such as open circuits, short circuits to power, and short circuits to ground.
Input pulse test: It can perform periodic or on-demand self check on the input circuit to verify its ability to detect state changes and improve system safety.
Programmable input filter: The filtering time can be finely adjusted within the range of 0.5ms to 100ms.
3.2 Digital output module
Relay output: such as IC694MDL930 (8-point normally open, 4A), IC694MDL916 (16 point normally open, 4A), suitable for AC/DC loads, with large contact capacity and good isolation performance. The manual provides detailed contact life curves and examples of load suppression circuits such as freewheeling diodes and RC absorbers.