Transient-Tolerant, Standards-Compliant Power for Robots, Cobots, and Automated Cells

Horizon PSS designs custom and semi-custom power supplies engineered for the dynamic load behavior of industrial robots, collaborative robots, automated cells, and mobile platforms. Power solutions integrate peak-current handling matched to real motion profiles, regenerative-energy management, N+1 redundancy, and EN 60204-1 machinery-safety integration.

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Meeting Engineering, Procurement and Compliance Needs

Custom Power Architectures for Motion Performance
Delivering peak-current capability matched to servo acceleration events, sized from the actual duty cycle rather than nameplate wattage, preventing bus sag and servo faults during high-torque motion.

Managing regenerative energy returned to the DC bus during deceleration through absorption capacity, hold-up capacitance, and buffering, keeping bus voltage inside drive limits.

Providing defined hold-up and DC-UPS ride-through that carries controllers and safety logic through input disturbances and enables a controlled stop on power loss.

Engineering N+1 redundancy with active load sharing and decoupling for lines where a single supply fault cannot stop production.
Standards Compliance Built Into the Design
Horizon PSS takes ownership of compliance documentation and qualification testing:

Meeting EN 60204-1 requirements for protective bonding, control-circuit isolation, and correct power behavior within your emergency-stop architecture.

Supporting UL 508/508A industrial-control documentation your panel builder needs for North American deployment.

Passing industrial emissions and immunity testing in a drive-dense cabinet through architecture-level filtering, isolation, and grounding, addressing IEC 61000-6-2 and 61000-6-4.

Characterizing shutdown and hold-up behavior so your ISO 13849 / IEC 62061 safety architecture, including Safe Torque Off and controlled-stop categories, can rely on defined power performance.
Custom Development Process for OEM Programs
Defining specifications, compliance pathways, and schedules before commitment through transparent NRE structures covering motion-profile characterization, regenerative-energy analysis, and duty-cycle peak-load verification.

Ensuring the supply qualified against your motion profile matches production units identically through configuration control and PCN discipline.

Providing advance notification of changes affecting form, fit, function, or safety certifications across decade-long automation platform lifecycles.
Application-Specific Engineering
Providing transient-tolerant AC-DC power for six-axis and SCARA arms and cobots, holding regulation through repeated acceleration without oversizing the system.

Delivering wide-input DC-DC conversion for AGVs and AMRs that tolerates real battery-voltage swing, with thermal performance sized for sealed mobile enclosures.

Supplying stable 24 VDC and 48 VDC distribution for PLCs, safety controllers, I/O, and vision systems, with hold-up that prevents nuisance faults during line disturbances.

Engineering low-noise power for cell-level vision and sensing where switching artifacts degrade image quality and measurement repeatability.

Providing conformal-coated and ruggedized configurations for washdown, high-vibration, and wide-temperature environments where standard modules fail.
RFI/RFQ Support for Procurement Teams
Supporting procurement evaluation with peak-load and transient-response data referenced to your duty cycle, regenerative-energy handling verification, hold-up and controlled-stop timing, EMC pre-compliance results, EN 60204-1 and functional-safety documentation, and supply-chain qualification.
Why Robotics & Automation OEMs Choose Horizon PSS
EN 60204-1 and functional-safety compliance responsibility is integrated into power system architecture development, not handed to you as a qualification burden.

Engineering depth covers servo transient behavior, regenerative-energy management, and drive-dense EMC beyond generic DIN-rail power supply selection.

Production capability and design documentation are maintained throughout decade-long platform lifecycles, supporting field service and redundancy expansion.

Custom power design eliminates the servo faults, nuisance trips, and oversized cabinets that come from specifying power by nameplate wattage instead of motion profile.

Contact our experts for Robotics & Automation Equipment power solutions

Ready to discuss your robotics or automation power requirements? Request an engineering consultation or submit an RFI with your bus architecture, motion profile or duty cycle, redundancy needs, and machinery-safety requirements.

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