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Lattice Announces Stack to Accelerate Development of Industrial Automation Systems
Lattice Automate Stack, next-generation factory automation and
Low power for industrial robotic applications
Providing safe and reliable solutions
Technological advancements such as the Internet of Things (IoT) and edge computing are driving the development of intelligent automation systems to improve efficiency and worker safety. According to market research firm Fortune Business Insights, the global industrial automation market is expected to reach USD 326.14 billion (approximately KRW 367 trillion) by 2027.
Lattice Semiconductor held an online press conference on the 12th and announced that it is expanding its low-power FPGA-based solution stack portfolio by unveiling the 'Lattice Automate™' stack. The stack supports automation of future smart factories, logistics warehouses, and commercial buildings through intelligent industrial systems.

The new stack includes software tools, industrial IP cores, modular hardware development boards, and software programmable reference designs and demos that simplify and accelerate implementation of applications such as robotics, scalable multi-channel motor control with predictive maintenance (PdM), and real-time industrial networking.
“Automated industrial systems need to support low-power operation, low-latency data transfer, high availability, and real-time processing to deliver the productivity and safety businesses demand,” said Mark Hoopes, director of marketing for Lattice Industrial. “This new Lattice stack enables developers to leverage these characteristics to quickly and easily develop industrial systems that support emerging technologies like PdM.”
The Lattice Automate Stack implements scalable sensing and control systems for numerous devices using the Lattice Nexus™ FPGA as the central controller. Enables implementation of a hardware root-of-trust (RoT) to detect, protect against, and recover from firmware-based attacks in real time.
Additionally, it supports 'Lattice Propel™', which simplifies the development of industrial automation systems by providing coprocessing functions to embedded RISC-V-based SW and HW.
Low power for industrial robotic applications
Providing safe and reliable solutions
Technological advancements such as the Internet of Things (IoT) and edge computing are driving the development of intelligent automation systems to improve efficiency and worker safety. According to market research firm Fortune Business Insights, the global industrial automation market is expected to reach USD 326.14 billion (approximately KRW 367 trillion) by 2027.
Lattice Semiconductor held an online press conference on the 12th and announced that it is expanding its low-power FPGA-based solution stack portfolio by unveiling the 'Lattice Automate™' stack. The stack supports automation of future smart factories, logistics warehouses, and commercial buildings through intelligent industrial systems.
▲ (From left) Lattice Semiconductor Korea, which held the meeting
CEO Yoon Jang-seop and Manager Lee Ki-hoon [Photo = Lattice]
CEO Yoon Jang-seop and Manager Lee Ki-hoon [Photo = Lattice]
The new stack includes software tools, industrial IP cores, modular hardware development boards, and software programmable reference designs and demos that simplify and accelerate implementation of applications such as robotics, scalable multi-channel motor control with predictive maintenance (PdM), and real-time industrial networking.
“Automated industrial systems need to support low-power operation, low-latency data transfer, high availability, and real-time processing to deliver the productivity and safety businesses demand,” said Mark Hoopes, director of marketing for Lattice Industrial. “This new Lattice stack enables developers to leverage these characteristics to quickly and easily develop industrial systems that support emerging technologies like PdM.”
The Lattice Automate Stack implements scalable sensing and control systems for numerous devices using the Lattice Nexus™ FPGA as the central controller. Enables implementation of a hardware root-of-trust (RoT) to detect, protect against, and recover from firmware-based attacks in real time.
Additionally, it supports 'Lattice Propel™', which simplifies the development of industrial automation systems by providing coprocessing functions to embedded RISC-V-based SW and HW.
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