ROSS Controls

ROSS Controls

US manufacturer of pneumatic and hydraulic safety valves for industrial automation; founded 1921; global leader in fluid power safety solutions.

Visit Website

Company Overview

ROSS Controls is an international manufacturer of pneumatic valves, control systems, and hydraulic safety products, founded in 1921 and headquartered in Troy, Michigan. Recognized as a global leader in fluid power safety solutions and poppet valve technology, the company designs and manufactures safety and control valves for industrial machinery and automation, including double valves for press control, pneumatic lockout/tagout (L-O-X series), proportional pressure regulators for robotic coating applications, and the ROSS/FLEX custom engineering platform. Ross products are used in robot safety systems, stamping presses, assembly lines, and automated manufacturing.

With approximately 201 employees and revenue of around USD 92 million, Ross operates globally through offices in the United States, Germany, France, United Kingdom, Japan, Brazil, India, and China, backed by a worldwide network of over 145 stocking distributors.

Capabilities & Activities

Primary type & automation activities this supplier delivers:

Applications & Industries

Product Categories

Products & Solutions

DM2 Double Safety Valve

Category 4 control-reliable double valve for pneumatic press and automation safety systems. Provides redundant valve function monitoring and energy isolation for industrial machinery to protect operators from unexpected machine motion.

L-O-X Pneumatic Lockout Valve

Full line of manual pneumatic lockout/tagout products for energy isolation on automated machinery and robot cells. Enables safe maintenance by trapping and exhausting compressed air according to OSHA and international safety standards.

Partnership & Notable clients

Associating Events

Contact ROSS Controls

WEBSITE

https://www.rosscontrols.com

EMAIL

[email protected]

PHONE

+1 248-764-1800

HEADQUARTERS

Troy
Troy , Michigan  48083

United States

Company Facts

Founded

1921

Primary Role

Manufacturer

Company Size

employees 100-500

Primary Region

North America

Annual Sales

$50 – $99.9 Million

Funding Stage

-

Funding Total

-

Certifications & Memberships

Export Markets

Listed in RobotToday Supplier Discovery. Verified Profile

Related Coverage

Maven Robotics Secures $100 Million Series A Funding for Industrial Robotics Development

Maven Robotics Secures $100 Million Series A Funding for Industrial Robotics Development

Maven Robotics has successfully raised $100 million in Series A funding to enhance its industrial robotics platform aimed at logistics and manufacturing. The funding round included participation from RoboStrategy, LocalGlobe, Vine Ventures, and XTX Ventures. Maven is focused on developing a general-purpose robotics system that will expand its applications beyond palletizing and tote handling into more complex material handling and assembly tasks. This funding is particularly significant as it addresses the growing U.S. labor shortages in industrial sectors. Maven's platform integrates hardware, software, and AI, allowing for reliable operation across multiple shifts. The company has already deployed its robots with a Fortune 250 consumer packaged goods company, where they are expected to achieve over 100,000 hours of autonomous operation by the end of 2026. Looking ahead, Maven Robotics aims to surpass 1 million hours of autonomous operation by the end of 2027. The company is entering a robust market, with over $18.8 billion in global venture capital investment in robotics reported in the first half of 2026. This positions Maven to capitalize on the increasing demand for intelligent industrial automation solutions.

AI AI Funding & Investment Robotics funding industrial robotics LocalGlobe
Maven Robotics Secures $100 Million Series A for Innovative General-Purpose Industrial Robotics System

Maven Robotics Secures $100 Million Series A for Innovative General-Purpose Industrial Robotics System

Maven Robotics, an intelligent industrial robotics company, has announced the completion of a $100 million Series A funding round. This funding was secured from notable investors including RoboStrategy, LocalGlobe, Vine Ventures, and XTX Ventures. The company aims to revolutionize material handling and assembly tasks with its innovative robotics solutions. The significance of this funding lies in Maven Robotics' ambition to achieve 1 million hours of autonomous real-world operations. As the creator of the world's first general-purpose robotics system for industrial work, Maven is poised to make a substantial impact on logistics and manufacturing sectors. This investment will support the development and deployment of their intelligent robotics technology. Looking ahead, industry observers should monitor Maven Robotics' progress in scaling its operations and the adoption of its robotics systems in various industrial applications. No further timeline was disclosed at the time of publication.

Vention Launches Montreal AI Lab to Enhance Industrial Robotics Capabilities

Vention Launches Montreal AI Lab to Enhance Industrial Robotics Capabilities

Vention has inaugurated a physical AI research lab in Montreal aimed at advancing robotic manipulation for manufacturing applications. The lab, directed by Jimmy Li and advised by Joelle Pineau, will leverage industrial data and customer insights to develop scalable robotic systems. With a focus on real-world production challenges, the lab aims to create technologies that enhance reliability and reduce costs in automation. This initiative is significant as Vention's physical AI segment has seen a remarkable 400% revenue increase over the past year, indicating a growing demand for advanced automation solutions. The lab's unique approach integrates academic research with practical production feedback, allowing for rapid development and testing of new robotic systems. This model positions Vention to address complex manufacturing tasks that have traditionally been difficult to automate. Looking ahead, Vention's Montreal lab is expected to expand its team and generate new intellectual property. The company plans to release a public software development kit for its GRIIP manipulation pipeline, which breaks down robotic tasks into manageable stages. No further timeline was disclosed at the time of publication.

AI AI Funding & Investment Robotics Canada.Montreal computer vision industrial robotics
Xpeng Motors Launches Automated Production Line for Humanoid Robot IRON in Guangzhou

Xpeng Motors Launches Automated Production Line for Humanoid Robot IRON in Guangzhou

In September 2026, Xpeng Motors officially launched the automated production line for its humanoid robot IRON in Guangzhou, aiming for mass production by the end of the year. This initiative signifies the transfer of quality management systems from automotive manufacturing to the robotics sector, as stated by Xpeng CEO He Xiaopeng during the launch ceremony. This move is part of a broader trend, with over 140 humanoid robot manufacturers in China, which released more than 330 humanoid robot products in the past year. According to Omdia, Chinese companies accounted for nearly 80% of the global humanoid robot shipment volume in 2025, with ZhiYuan Robotics leading in deliveries. The rapid integration of advanced algorithms into hardware by Chinese manufacturers has given them a competitive edge in this emerging market. Despite the excitement, concerns remain about the sustainability of the industry, as many companies are startups focusing on basic functionalities. The launch of Xpeng's production line may serve as a model for integrating established automotive manufacturing practices into robotics, but significant challenges remain before achieving true commercial viability in the humanoid robot sector.

Humanoid Robots Robot Manufacturing Automation AI Industrial Robotics
U.S. Robotics Sector Seeks National Strategy for Innovation and Manufacturing

U.S. Robotics Sector Seeks National Strategy for Innovation and Manufacturing

U.S. robotics researchers and industry leaders are advocating for a cohesive national strategy to enhance basic research and boost domestic production of robots. Recent advancements, such as Boston Dynamics' Atlas performing complex movements, underscore the U.S.'s role as a leader in technological innovation. However, critics warn that without a focus on manufacturing robotic hardware domestically, the U.S. risks losing economic benefits from its innovations. The U.S. has historically relied on a free-market approach to drive technological advancements, significantly contributing to its GDP and leadership in artificial intelligence. The Department of Defense has emerged as a key player in funding robotics, with a proposed $13.4 billion budget for autonomous systems in 2026, reflecting the growing importance of robotics in military applications. Despite these investments, the U.S. faces challenges in competing in physical manufacturing, which requires substantial capital and long-term commitment. As the U.S. ranks third in industrial robotics consumption, the reliance on foreign imports for manufacturing poses a risk to national security. The lack of domestic infrastructure for robotic production contrasts sharply with countries like Japan, which has a minimal dependency on imports. Moving forward, the U.S. must address these vulnerabilities to maintain its competitive edge in the global robotics landscape. No further timeline was disclosed at the time of publication.

Vention Launches Leading Physical AI Lab in Montreal for Industrial Robotics Advancement

Vention Launches Leading Physical AI Lab in Montreal for Industrial Robotics Advancement

Vention has inaugurated Canada's premier Physical AI and industrial robotics lab in Montreal, aimed at enhancing robotic manipulation through the integration of advanced AI research into scalable manufacturing solutions. This initiative is significant as it focuses on applied manufacturing use cases, industrial data collection, and the development of post-training foundation models for robotics, leveraging existing intellectual property while generating new innovations. Looking ahead, stakeholders should monitor the lab's progress in bridging AI research with practical manufacturing applications. No further timeline was disclosed at the time of publication.

Power Shift in the Global Robotics Industry as Traditional Leaders Face Challenges

Power Shift in the Global Robotics Industry as Traditional Leaders Face Challenges

In 2026, a significant power shift is occurring within the global robotics industry, particularly impacting the Chinese market. The four major foreign companies, Fanuc, Yaskawa, ABB, and KUKA, known as the 'Four Families,' are experiencing unprecedented challenges, while domestic brands have gained a market share exceeding 55% in industrial robotics. Fanuc's share has dropped to 9%, highlighting a dramatic change in the competitive landscape. This shift is crucial as it marks the decline of established players who once dominated over 60% of the Chinese industrial robotics market. The rise of domestic brands, particularly in collaborative and welding robots, indicates a growing trend towards local innovation and manufacturing capabilities. ABB's strategic retreat, including the planned sale of its robotics business, underscores the urgency of this transformation. Looking ahead, the robotics industry is witnessing the emergence of new players and innovative technologies. Companies like Tianji Intelligent and Yushu Technology are making strides in capital markets, while cross-industry giants like Xiaomi and Midea are integrating robotics into their operations. The ongoing power transfer suggests that the industry is entering a new phase, with the balance of power shifting towards domestic manufacturers and innovators.

Industrial Robots Vacuum Robots Automation Chinese Robotics Market
Palladyne AI and Fanuc America Collaborate on AI-Enhanced Robotics for Industry

Palladyne AI and Fanuc America Collaborate on AI-Enhanced Robotics for Industry

Palladyne AI and Fanuc America have established a strategic partnership to advance AI-driven robotic automation tailored for manufacturing, warehousing, and logistics sectors. This collaboration aims to integrate Fanuc's industrial robots with Palladyne IQ, focusing on enhancing motion planning, adaptive behavior, and human-assisted learning capabilities. The significance of this partnership lies in addressing challenges faced by manufacturers and logistics operators, such as skilled labor shortages and the need for increased productivity. By combining their technologies, the companies aim to create more adaptable robotic systems that can efficiently respond to dynamic environments, ultimately streamlining deployment processes across various operations. Looking ahead, the collaboration will also emphasize joint customer validation and the development of standardized deployment workflows, which are expected to simplify the introduction of robotic automation. No further timeline was disclosed at the time of publication.

AI AI Funding & Investment Capital Markets Robotics automation Fanuc
Palladyne AI and FANUC America Form Strategic Partnership to Enhance Robotic Automation

Palladyne AI and FANUC America Form Strategic Partnership to Enhance Robotic Automation

Palladyne AI and FANUC America have announced a strategic collaboration aimed at advancing intelligent robotic automation. This partnership will integrate FANUC America's extensive industrial robot portfolio with Palladyne AI's innovative physical AI software platform. The collaboration is significant as it seeks to simplify the deployment of robotic systems, enhance their adaptability, and broaden the scope of automation across various sectors, including manufacturing, warehousing, and logistics. By leveraging both companies' strengths, the partnership aims to address the growing demand for efficient automation solutions. Looking ahead, industry stakeholders should monitor the developments from this collaboration, particularly how the integration of AI with robotics will impact operational efficiencies in the targeted sectors. No further timeline was disclosed at the time of publication.

Emerging 2D Flex Feeding Revolutionizes Industrial Part Picking with Simplified Vision Systems

Emerging 2D Flex Feeding Revolutionizes Industrial Part Picking with Simplified Vision Systems

The article discusses the advancements in 2D Flex feeding technology, which simplifies robotic vision for industrial part picking. Unlike traditional 3D bin picking, this new approach allows for quicker and more reliable implementations, making it accessible for a broader range of applications. This innovation is significant as it enhances the capabilities of industrial robots in manufacturing, reducing the complexity associated with advanced vision systems. Experts Nicholas Kern from SICK and Nick Barron from Feedall highlight the advantages of flex feeding over bowl feeding, showcasing early adopters who are already experiencing substantial benefits. Looking ahead, the future of feeding robots appears promising with the integration of smarter vision systems. As this technology continues to evolve, it will be essential to monitor its adoption and impact on manufacturing efficiency and productivity. No further timeline was disclosed at the time of publication.

Factory / Robotics
Underactuated Robotics Russ Tedrake — RSF Specialist Shelf · Book S3 of 6

Underactuated Robotics Russ Tedrake — RSF Specialist Shelf · Book S3 of 6

Legged robots fall over for control reasons, not mechanical ones. Tedrake's free MIT 6.832 notes explain why, and what a controller must do about it.

Handbook of Marine Craft Hydrodynamics and Motion Control Thor I. Fossen — RSF Specialist Shelf · Book S1 of 6

Handbook of Marine Craft Hydrodynamics and Motion Control Thor I. Fossen — RSF Specialist Shelf · Book S1 of 6

Added mass, wave loading, DVL navigation: the marine GNC reference for USV, ROV and AUV service engineers. The hardest book on the RSF list, 5/5.

Robotics: Modelling, Planning and Control Siciliano, Sciavicco, Villani & Oriolo — RSF Specialist Shelf · Book S6 of 6

Robotics: Modelling, Planning and Control Siciliano, Sciavicco, Villani & Oriolo — RSF Specialist Shelf · Book S6 of 6

Siciliano's single-narrative counterpart to the Springer Handbook: kinematics through force control and visual servoing in one consistent notation. 4/5.

Small Unmanned Aircraft: Theory and Practice Beard & McLain — RSF Specialist Shelf · Book S2 of 6

Small Unmanned Aircraft: Theory and Practice Beard & McLain — RSF Specialist Shelf · Book S2 of 6

Beard & McLain derive the fixed-wing autopilot the RSF Top 10 never does: successive loop closure on roll, pitch, altitude and airspeed. 4/5.

Reinforcement Learning: An Introduction Richard S. Sutton & Andrew G. Barto — RSF Specialist Shelf · Book S5 of 6

Reinforcement Learning: An Introduction Richard S. Sutton & Andrew G. Barto — RSF Specialist Shelf · Book S5 of 6

“It's the AI” will not satisfy an OEM support call. Sutton & Barto turn that into something a service engineer can investigate. Free PDF, Part I 4/5.

Planning Algorithms Steven M. LaValle — RSF Specialist Shelf · Book S4 of 6

Planning Algorithms Steven M. LaValle — RSF Specialist Shelf · Book S4 of 6

The reference that treats planning as a subject in its own right: configuration space, sampling-based methods, RRT. Free online, dual difficulty 4/5-2/5.

Introduction to Robotics J. J. Craig — RSF Top 10 Robot Education Textbooks · No. 6

Introduction to Robotics J. J. Craig — RSF Top 10 Robot Education Textbooks · No. 6

Six of ten benchmark universities teach kinematics from Craig. Frames, transforms and D-H parameters: the language vendor manuals already speak.

Modern Robotics K. M. Lynch & F. C. Park — RSF Top 10 Robot Education Textbooks · No. 8

Modern Robotics K. M. Lynch & F. C. Park — RSF Top 10 Robot Education Textbooks · No. 8

The book the field agreed to make free: full preprint PDF, video lectures and open code from the authors. Screw theory and kinematics, taught rigorously.

Probabilistic Robotics Thrun, Burgard & Fox — RSF Top 10 Robot Education Textbooks · No. 7

Probabilistic Robotics Thrun, Burgard & Fox — RSF Top 10 Robot Education Textbooks · No. 7

An AMR that lost localization broke nothing you can touch. Thrun explains Layer 4 faults: belief, Bayes filters, SLAM. Budget 12-15 hours.

A Gentle Introduction to ROS Jason M. O’Kane — RSF Top 10 Robot Education Textbooks · No. 9

A Gentle Introduction to ROS Jason M. O’Kane — RSF Top 10 Robot Education Textbooks · No. 9

Most ROS material is for people who build systems. O'Kane wrote for people who must understand one: nodes, topics, where to look. Free, 10-12 hours.