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Yellow New Holland forage harvester cutting corn in a field under an overcast sky.

Agriculture Power Systems

Agriculture & AgTech

Advanced battery system integration and power architecture support for agricultural equipment, AgTech platforms, field robotics, utility systems, and next-generation farm operations.

Built for rugged field work, seasonal demands, long run cycles, and practical farm deployment

Engineer Battery and Power Systems for Agriculture and AgTech Platforms

We help teams develop battery-integrated systems for agriculture and AgTech applications that need dependable runtime, strong low-speed torque, environmental durability, and practical operation across changing field conditions, seasonal workloads, and long duty cycles.

That includes electric farm equipment, utility vehicles, spraying systems, autonomous field platforms, specialty machines, sensor-equipped tools, and other agricultural technologies where battery architecture, charging behavior, controls, thermal management, and rugged integration all need to work together. Our approach helps shape solutions that are durable, efficient, and ready for real farm and field deployment.

Field Equipment
AgTech Robotics
Farm Utility Platforms

Field Ready

Support rugged operation across dirt, vibration, moisture, weather, and long outdoor shifts

Torque Focused

Deliver dependable low-speed power for hauling, towing, spraying, lifting, and utility work

Season Aware

Shape battery and charging strategies around variable workloads and seasonal operating demands

Farm Scaled

Useful for utility vehicles, field tools, precision agriculture, and autonomous farm systems

Comprehensive Agriculture Battery Integration Built for Real Work in the Field

Our approach helps teams connect battery systems, vehicle demands, charging needs, controls, environmental protection, and runtime expectations into a more complete solution for agricultural use.

Electric Farm Equipment Integration

Support battery system design for farm utility vehicles, compact equipment, sprayers, handling systems, and other agricultural machines where reliability and serviceability matter.

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Charging & Farm Operations Planning

Integrate charging behavior and runtime expectations so equipment remains available during field work, shift changes, and critical seasonal operating windows.

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Rugged Environmental Design

Engineer around dust, moisture, weather, vibration, washdown exposure, and uneven terrain so battery systems are better matched to real agricultural conditions.

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Controls, Cooling & Protection

Coordinate BMS behavior, thermal management, power electronics, monitoring, and protection systems so agricultural equipment performs predictably through demanding field use.

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Prototype to Field Deployment

Help teams move from concept and prototype integration into pilot farm trials, product validation, and production-aware agricultural deployment with stronger technical readiness.

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Standards Customers Often Prepare For

The programs below are common lithium battery certification and test pathways. Prime Energy can help customers prepare documentation, test readiness, and pack design decisions aligned to these standards. Listing these standards does not mean Prime Energy or every completed battery assembly currently holds these certifications.

  • UL 1973 — For lithium battery packs and systems used in stationary energy storage and motive auxiliary power applications.
  • UL 2580 — For lithium battery packs and modules used in electric vehicle applications.
  • UL 2271 — For lithium batteries used in light electric vehicle applications such as smaller mobility platforms and support vehicles.
  • IEC 62133-2 — For portable sealed secondary lithium cells and batteries used in portable applications.
  • IEC 62619 — For secondary lithium cells and batteries used in industrial applications, including many larger pack and stationary use cases.
  • IECEE CB Scheme — A global certification pathway that helps support international acceptance of test reports and certificates for applicable IEC battery standards.
  • UL 9540 — System-level listing path for complete energy storage systems and equipment, often relevant when a battery pack is part of a larger ESS.
  • UL 9540A — Fire test method commonly used to evaluate thermal runaway fire propagation behavior in battery energy storage systems.
  • UN 38.3 — Transport testing required for shipping lithium cells and batteries; this is a transportation compliance requirement rather than a product safety listing.