Ground robots punish batteries: vibration, dust, thermal soak, and duty cycles that never let the pack rest. We design and manufacture lithium packs engineered for your chassis, your terrain, and your mission profile.
A UGV battery lives a harder life than almost any other pack. Catalogue batteries aren't built for it, and the failure usually shows up in the field, not the lab.
Tracked and wheeled platforms transmit continuous vibration and repeated shock loads into the pack. Cell interconnects, weld joints and BMS boards need mechanical design that survives thousands of hours of it, not just a drop test.
Ground robots seal their electronics against dust and water, which traps heat. Packs must deliver sustained current inside a hot, unventilated bay. Thermal design and cell selection decide whether runtime holds up in summer field conditions.
Drive motors, actuators and payloads pull sharp current transients: stall events, slope climbs, payload lifts. The pack and BMS must handle burst loads without nuisance cutoffs that strand the vehicle mid-mission.
UGV battery bays are whatever space was left after drivetrain and payload. Standard brick formats waste volume or simply don't fit. Chassis-fit pack geometry directly buys you runtime, often more than a chemistry change would.
We don't sell you the nearest catalogue match. We start from your platform's power budget, envelope and environment, and design the pack to it.
Pack geometry designed to your battery bay (flat, L-shaped, split or distributed) to maximise energy in the space you actually have.
NMC for energy density on weight-limited platforms; LFP for cycle life and thermal stability on fleet vehicles running daily shifts. We select per platform, not per catalogue.
Potted electronics, damped cell mounting, reinforced interconnects and sealed enclosures rated for dust, splash and wash-down environments.
Protection tuned to your load profile: burst thresholds that don't trip on motor transients, with cell balancing, temperature supervision and safe-state behaviour.
CAN, SMBus or UART battery data into your robot's compute (state of charge, health, temperatures) so your autonomy stack can plan around real energy state.
Your connector standard, keyed interfaces, and swap-friendly mechanical design for fleets that exchange packs between shifts instead of waiting on charge.
We model your drive cycle (cruise, climb, idle, payload events) and size cells and cooling for the real load profile, not a datasheet average.
Vibration and shock evaluation of the mechanical design, interconnects and mounting before the pack ever rides on your platform.
Cell spacing, conduction paths and enclosure strategy designed for sealed-bay heat soak and low-temperature cold starts down to −30 °C.
Incoming cell QC, batch-level traceability and documented test records for every pack we ship, built for programmes that audit their supply chain.
Long-endurance packs for platforms covering large sites on repeating routes, with telemetry for predictable return-to-dock.
Compact high-burst packs for manipulator-equipped platforms where reliability under load is non-negotiable.
LFP fleet packs engineered for multi-shift duty, opportunity charging and thousands of cycles per year.
Dust-sealed, thermally robust packs for platforms working full days in open-field heat, mud and wash-down cleaning.
Ruggedised packs for defence robotics programmes, engineered with the documentation and traceability procurement teams expect. See defence robotics packs →
Low-MOQ prototype packs for university labs and early-stage teams, with a path from one-off to production.
UGV programmes iterate: payloads change, chassis revisions happen, power budgets grow. You need a battery partner that moves with the platform.
Your engineers talk to our pack designers, not a sales layer. Requirement discussions happen in volts, amps and millimetres.
We build packs in ones and tens for development, then scale the same design into production.
Local engineering, local manufacturing, local support. Short iteration loops and a supply chain your programme can actually visit.
Beyond the pack: chargers, smart-battery telemetry and monitoring from one partner, so your power system is designed as a whole.
Share your platform's power budget, envelope, duty cycle and environment, under NDA where needed.
Cell selection, pack architecture, BMS configuration and mechanical design proposed against your spec.
Working packs on your platform for field trials; design iterated on real mission data.
Repeatable manufacture with cell QC, end-of-line testing and batch traceability.
Tell us your platform, payload and runtime target. Our engineering team will come back with a pack architecture proposal, not a brochure.
Send Your Requirement