High-Speed Molex Interconnects Power the Future of Humanoid Robotics
Robust, Space-Saving Solutions That Advance Factory Automation
Molex delivers innovative interconnect technology for the compact designs, continuous movement and dependable operation required for today’s humanoid robots. Engineered for both electrical performance and mechanical durability, these rugged and flexible interconnect solutions provide high-speed data transmission and efficient power delivery in critical industrial robotic systems for greater precision, responsiveness and reliability.
Featured Products
Design Tools
RF Assembly Builder
Use the Molex RF cable assembly builder below to design a RF assembly from a variety of connector and cable types. Once submitted, a concept drawing and 3D model will immediately be forwarded to you, detailing your requirements. Our team will then review any samples and/or quotations requests and get back to you shortly
Resources
Automation Connectivity in Robotics and Data Centers (E23) Podcast
TTI host John Sandy is joined by Molex subject matter expert Michelle Reynolds to discuss how industrial connectors are evolving to support the advanced application needs of data centers, robotics and automation. Key topics include miniaturization, push-pull technology and the shift toward faster, more reliable connections.
Molex Easy-On FFC/FPC Connectors - Tech Specs
The Molex Easy-On FFC and FPC connectors are designed for tight packaging applications, with pitch as tight as 0.2 millimeters in low-profile, shallow-depth housing. They offer various ease of use actuator locking styles and a dual-contact design with moving terminals to ensure a reliable connection.
Molex SlimStack Connectors - Tech Specs
Molex 2.5 millimeter Board-in connectors are a one-piece connector that is soldered directly to the PCB to make a cost-effective, space-saving and reliable connection. Housings are available with 2 to 6 positions on a 2.5 millimeter pitch and can be assembled with vertical or right-angle crimp terminals for application flexibility.