ControlLogix 5590 PLC (L9): Specifications, Features, Four Modes and 5580 Comparison

Share:

PLC · Allen-Bradley · ControlLogix 5590 · L9 · Studio 5000 · EtherNet/IP

ControlLogix 5590 PLC (L9): Specifications, Features, Four Operating Modes and How It Compares to the 5580

The Allen-Bradley ControlLogix 5590 (L9) is Rockwell Automation's newest generation of ControlLogix controllers, launched in late 2025. It delivers up to 80 MB memory, 512 motion axes, 600+ EtherNet/IP nodes, dual gigabit Ethernet ports, built-in SIL 2/PLd safety in every variant, and OPC UA connectivity, all in a single-slot chassis-based design that is backward-compatible with the 5580 (L8) generation.

Specifications Table 5590 vs 5580 Comparison Four Operating Modes Physical Hardware Changes

What Is the ControlLogix 5590 PLC?

The ControlLogix 5590 is the latest generation of Allen-Bradley ControlLogix programmable logic controllers from Rockwell Automation, designated the L9 family. It replaces the ControlLogix 5580 (L8) as the flagship controller in the ControlLogix platform, which has been the dominant large-scale PLC platform in North American process and manufacturing industries for over two decades.

Where the 5580 (L8) was designed for high-performance control in the mid-2010s, the 5590 (L9) is designed for the demands of the mid-2020s: larger programs, more connected devices, integrated safety without a separate safety controller, OPC UA and MQTT connectivity for cloud and MES integration, and cybersecurity built into the hardware from the start. It is the first ControlLogix generation that includes SIL 2/PLd functional safety capability in every controller variant, not just in a separate GuardLogix model.

The 5590 is programmed using Studio 5000 Logix Designer version 38 or higher, and from November 2025, also supports FactoryTalk Design Studio v2.03 for cloud-based engineering workflows. It supports the same five IEC 61131-3 programming languages as all Logix controllers: Ladder Diagram (LD), Function Block Diagram (FBD), Structured Text (ST), Sequential Function Chart (SFC), and Instruction List (IL). For context on how PLCs fit in industrial automation, see our guide on PLC vs RTU differences.

ControlLogix 5590 Key Specifications

ParameterControlLogix 5590 (L9)Notes
Product family designation1756-L9xx seriesExample: 1756-L980 = 80 MB model. Memory size visible in catalog number.
User memory2 MB to 80 MBDouble the maximum of the 5580 (40 MB max). More memory supports larger programs, more tags, richer diagnostics and complex logic.
Motion axes supportedUp to 512 real and virtual axesSupports CIP Motion over EtherNet/IP. Suitable for large packaging lines, robotics cells and coordinated motion applications.
EtherNet/IP nodes600+ per controllerDouble the node capacity of the 5580 (300+ nodes). Supports large-scale I/O architectures and distributed control.
OPC UA nodesUp to 100,000Native OPC UA server for vendor-neutral data access from SCADA, MES, historians and cloud platforms without OPC bridges.
EtherNet/IP ports2 x 1-Gigabit RJ45Both ports can be used simultaneously. Supports Dual IP mode, Device Level Ring (DLR) and linear topologies.
Local programming portUSB-CReplaces the USB-A port of the 5580. Used for firmware flashing, project download/upload, online monitoring.
Removable storage8 GB MicroSD card (included)Supplied with every 5590. Used for firmware storage, project backup, and datalog archiving.
Safety ratingSIL 2/PLd standard; SIL 3/PLe with 1756-L9SP safety partnerSIL 2/PLd built into every variant. No separate GuardLogix controller needed for SIL 2 applications.
Redundancy1756-RM3 redundancy module requiredBumpless switchover between primary and secondary controller. Front Ethernet ports now usable for crossloading in redundancy mode (improvement over 5580).
CybersecurityIEC 62443-4-2 compliantCIP Security (TLS/DTLS encryption and device authentication), secure boot, role-based access control.
Modern protocolsOPC UA, MQTT, RESTMQTT and REST supported via machine builder libraries. Enables direct IoT connectivity without middleware.
Chassis slotsSingle slotSame physical form factor as 5580. Compatible with existing 1756 chassis.
Scan time improvement2x faster than 5580, 40x faster than 5570Based on Rockwell Automation internal testing. Significant for large programs and tight motion control loops.
Variants availableStandard, XT, P (Process)XT: corrosion-resistant for harsh environments. P: optimised for process control with integrated safety and redundancy.
Backward compatibilityCompatible with 5580 and 5570 I/O modules and chassisUpgrade without replacing I/O infrastructure. Same Studio 5000 toolchain.
Advertisement
Advertisement

New Physical Hardware Features on the ControlLogix 5590

Beyond the performance numbers, the 5590 introduces several visible hardware changes compared to the 5580. Field engineers and technicians upgrading from the L8 generation will notice these immediately on the front face of the controller.

Figure 1: ControlLogix 5590 (L9) Front Panel Features
ControlLogix 5590 Allen-Bradley L9 VERTICAL LIFT DOOR QR USB-C MODE ETH 1 1 GbE ETH 2 1 GbE microSD 8GB RUN ETH1 ETH2 Key hardware changes vs 5580 (L8): 1. Vertical lift door New hinged door covers QR code, USB-C port and mode switch. Scan QR to access manuals, downloads and Knowledgebase. 2. USB-C programming port Replaces USB-A of the 5580. Firmware flash, project download/upload and online monitoring. 3. Second 1-GbE EtherNet/IP port 5580 had one front Ethernet port. L9 adds a second for DLR, Dual IP or redundancy crossload. 4. Mode switch replaces 3-position key switch of older ControlLogix generations

Figure 1: ControlLogix 5590 (L9) front panel. Key hardware changes from the 5580 (L8): vertical lift door hiding QR code and USB-C port, replacement of the traditional 3-position key switch with a mode switch, addition of a second 1-Gigabit EtherNet/IP port, and an 8 GB MicroSD card included with every unit.

Four ControlLogix 5590 Operating Modes

Every ControlLogix 5590 controller can be configured for one of four operating modes. This is a significant advance over the 5580 generation, where safety applications required a separate GuardLogix controller and redundant safety required a separate Logix SIS architecture. With the 5590, all four modes are available from the same hardware variant, selected through firmware configuration rather than hardware purchase.

Standard Mode

Discrete, process, motion and drive control. No safety task enabled. The controller executes standard tasks with full performance and access to all 600+ EtherNet/IP nodes and 512 motion axes. For applications with no functional safety requirement or where safety is handled by a separate dedicated SIS system. Compatible with Modbus TCP and other third-party protocols via add-on instructions.

Safety Mode (SIL 2/PLd and SIL 3/PLe)

Safety task enabled alongside standard tasks. SIL 2/PLd (Category 3) is achieved using the safety task alone with safety I/O modules connected via CIP Safety over EtherNet/IP. SIL 3/PLe (Category 4) requires the 1756-L9SP safety partner module installed in the same chassis. This eliminates the need for a separate GuardLogix controller for most process and machine safety applications.

Redundancy Mode (High Availability)

Two 5590 controllers paired with a 1756-RM3 redundancy module achieve bumpless switchover between primary and secondary controllers. The primary executes standard tasks and crossloads data to the secondary via the dual front Ethernet ports (new in L9: the L8 could not use front ports in redundancy mode). Designed for non-safety high-availability applications.

Logix SIS Mode (Safety + Redundancy)

Both primary and secondary controllers simultaneously execute the safety task, with all safety data synchronised. Standard tasks execute on the primary only. Achieves up to SIL 3/PLe in a redundant configuration. Designed for safety-critical process applications requiring both high safety integrity and high availability, replacing traditional separate SIS/ESD hardware in some applications.

Important: configuring mode requires correct firmware and Studio 5000 version
The operating mode is selected through the Studio 5000 Logix Designer project configuration, not through hardware jumpers. Studio 5000 v38 or higher is required. Switching between modes (e.g. from Standard to Safety or from Redundancy to Logix SIS) requires a project download and may require changing the safety task configuration. Always consult the 1756-UM900 Safety Reference Manual before configuring safety modes on the 5590.
Advertisement
Advertisement

ControlLogix 5590 vs 5580: What Changed in the L9 Generation

FeatureControlLogix 5580 (L8)ControlLogix 5590 (L9)Improvement
Maximum user memory40 MB80 MB2x more memory
Scan timeBaselineApproximately 2x faster than L82x faster (40x faster than L7/5570)
EtherNet/IP nodes300+ per controller600+ per controller2x node capacity
Motion axes256 axes512 axes2x motion capacity
OPC UA nodesLimited OPC UA supportUp to 100,000 OPC UA nodesMajor expansion for IIoT connectivity
Built-in safetyRequires separate GuardLogix for SIL 2SIL 2/PLd in every variant standardEliminates separate safety controller
Front Ethernet ports in redundancyNot usable in redundancy modeUsable for crossloading in redundancyReduces need for additional comms modules
Local programming portUSB-AUSB-CModernised connector
Front doorStandard bezelVertical lift door with QR codeEasier access to QR resource links
Removable storageSD card (optional)8 GB MicroSD (included standard)Storage included with every unit
MQTT / REST supportNot nativeVia machine builder librariesDirect IoT/cloud connectivity
Cybersecurity standardCIP Security supportedIEC 62443-4-2 compliant + CIP Security + secure bootHigher security certification level
Chassis compatibility1756 chassisSame 1756 chassisBackward compatible: reuse existing chassis

ControlLogix 5590 Connectivity and IIoT Integration

The 5590 is Rockwell Automation's most connected controller to date. The dual 1-Gigabit EtherNet/IP ports support linear and Device Level Ring (DLR) topologies, reducing the need for separate managed switches in many network architectures. The EtherNet/IP network carries both I/O data (CIP I/O) and message-based communication (CIP Connected and CIP Unconnected messaging) to remote I/O, drives, smart instruments and other controllers.

The native OPC UA server capability supporting up to 100,000 nodes is the most significant connectivity advance for IIoT applications. OPC UA (IEC 62541) is the vendor-neutral, secure, platform-independent communication standard for industrial data exchange. With native OPC UA, any SCADA, MES, historian or cloud platform that supports OPC UA can read and write directly to the 5590 controller without an OPC bridge, gateway or middleware server. This directly supports data-driven operations where the PLC becomes a transparent data node rather than a closed-system logic engine.

MQTT and REST protocol support via machine builder libraries allows the 5590 to publish data directly to MQTT brokers (for cloud platforms such as AWS IoT, Azure IoT Hub or on-premise MQTT brokers) and interact with REST APIs. This makes the 5590 capable of participating in Industry 4.0 architectures where control-layer data flows directly to analytics and digital twin platforms without additional hardware gateways.

CIP Security: what it means for cybersecurity compliance
CIP Security is an extension to the CIP (Common Industrial Protocol) specification that adds mutual authentication and encrypted communication to EtherNet/IP networks. With CIP Security, a 5590 controller and a CIP Security-capable device (smart drive, safety I/O module, intelligent instrument) mutually authenticate each other before any data exchange occurs. This prevents man-in-the-middle attacks, rogue device insertion, and unauthorised command injection on the EtherNet/IP network. The 5590 meets IEC 62443-4-2 (security for industrial automation components), and its secure boot feature prevents unauthorised firmware from executing. This makes the 5590 the first ControlLogix generation to address cybersecurity requirements at the component level rather than only at the network perimeter level.

ControlLogix 5590 Variants: Standard, XT and P

VariantCatalog prefixEnvironment ratingTypical useFactoryTalk Design Studio support
Standard1756-L9xxStandard industrial temperature and humidityGeneral manufacturing, process control, machine automation, motion, packagingFrom v2.03 (November 2025)
XT (Extended Temperature / Corrosion Resistant)1756-L9xxXTExtended temperature range, corrosive gas environments (ISA-71.04 G3)Offshore platforms, chemical plants, wastewater treatment, outdoor enclosures in harsh climatesFrom v2.03 (November 2025)
P (Process)1756-L9xxPStandard industrial (same as Standard variant)Process control applications requiring integrated safety and redundancy. Oil and gas, refining, chemical manufacturing, power generationFuture release after v2.03

All three variants support safety, redundancy, secure communications and all four operating modes. The difference is environmental protection rating (XT) and application optimisation (P variant for process control with tighter integration to process-specific function block libraries). All are backward compatible with the existing 1756 chassis, I/O modules and power supplies from the 5580 generation.

Advertisement
Advertisement

Quick FAQs: ControlLogix 5590

What is the difference between ControlLogix 5590 and 5580?
The 5590 (L9) doubles the memory (80 MB vs 40 MB), doubles EtherNet/IP node capacity (600+ vs 300+), doubles motion axes (512 vs 256), achieves 2x faster scan times, adds a second 1-Gigabit Ethernet port, includes SIL 2/PLd safety in every variant without a separate GuardLogix, supports native OPC UA with up to 100,000 nodes, and meets IEC 62443-4-2 cybersecurity. The front USB-A port becomes USB-C and the 3-position key switch is replaced by a mode switch.
Can the ControlLogix 5590 replace GuardLogix for safety applications?
For SIL 2/PLd applications, yes. Every 5590 variant has the safety task capability built in, achieving SIL 2/PLd (Category 3) without a separate GuardLogix controller. For SIL 3/PLe, the 1756-L9SP safety partner module must be added. This simplification reduces panel space, spare parts inventory and engineering complexity compared to maintaining separate standard and safety controller types.
Is the ControlLogix 5590 backward compatible with 5580 hardware?
Yes. The 5590 fits in the same 1756 chassis as the 5580 and uses the same I/O modules, power supplies and communication modules. Existing programs developed in Studio 5000 for the 5580 can be migrated to the 5590. The same Studio 5000 Logix Designer software environment is used, starting from version 38.
What programming software does the ControlLogix 5590 use?
Studio 5000 Logix Designer version 38 or higher is required for the 5590. From November 2025, FactoryTalk Design Studio v2.03 also supports the Standard and XT variants, enabling cloud-based and collaborative engineering workflows. The Process (P) variant will be supported in a later FactoryTalk Design Studio release. All five IEC 61131-3 languages are supported.

External References

What we learn today

  • The ControlLogix 5590 (L9) doubles the 5580 (L8) in memory (80 MB), EtherNet/IP nodes (600+), motion axes (512) and adds a second 1-Gigabit Ethernet port. Scan time is approximately 2x faster than the L8. SIL 2/PLd safety is built into every variant without needing a separate GuardLogix controller.
  • Four operating modes from the same hardware: Standard, Safety (SIL 2/PLd or SIL 3/PLe with safety partner), Redundancy (high availability with 1756-RM3), and Logix SIS (safety plus redundancy for SIS applications). Mode is selected through Studio 5000 configuration, not hardware.
  • Key IIoT features: native OPC UA server (up to 100,000 nodes), MQTT and REST via libraries, IEC 62443-4-2 cybersecurity compliance, CIP Security with mutual authentication and encrypted communication, and secure boot. Three variants: Standard, XT (harsh environments), and P (process control).

Leave a Reply

Your email address will not be published. Required fields are marked *