When standard products don't fit your application, our engineering team designs a battery system from the ground up — to your exact voltage, capacity, form factor, and communication specifications.
Advanced Machine Power's in-house engineering team has designed custom battery systems for applications ranging from specialized AGV platforms and military ground vehicles to marine propulsion and industrial robotics. If your application has requirements that standard products can't meet, we want to hear about it.
Our custom development process is structured to move efficiently from requirements to production — with clear milestones, transparent pricing, and a dedicated engineering point of contact throughout the project.
Discuss Your Requirements →Any voltage from 12V to 1,500V DC. Any capacity from a few amp-hours to multi-megawatt-hour systems. We size the system to your load profile.
Custom mechanical designs to fit any available space — including non-rectangular shapes, split-pack configurations, and ruggedized enclosures for harsh environments.
LiFePO4 for safety and cycle life, NMC for energy density, LTO for extreme temperature and ultra-fast charging. We select the chemistry that best fits your requirements.
Custom BMS hardware and firmware development, including proprietary communication protocols, vehicle-specific state-of-charge algorithms, and safety interlocks.
CAN Bus, RS-485, Modbus, SMBus, UART, Ethernet, proprietary — we implement whatever protocol your system requires, including custom message sets.
Passive cooling, forced air, liquid cooling, or phase-change thermal management — designed for your ambient temperature range and duty cycle.
Any connector type, pin configuration, or interface standard. We match your existing harness and connector infrastructure to minimize vehicle-side modifications.
We support UL, CE, MIL-SPEC, UN 38.3, IEC, and other certification processes — including test report preparation and agency liaison.
We begin with a detailed technical discussion to understand your application, operating environment, duty cycle, interface requirements, and program constraints. This typically takes 1–2 meetings.
Our engineering team assesses feasibility and prepares a detailed proposal covering system architecture, key specifications, development timeline, and pricing — typically within 2 weeks of the requirements review.
Upon contract execution, we proceed to detailed design and prototype fabrication. Prototypes are typically delivered within 8–16 weeks depending on complexity. Design reviews are held at key milestones.
Prototypes undergo comprehensive electrical, mechanical, thermal, and safety testing at our facility. We provide full test reports and work with you to address any findings before production release.
Production units are assembled, tested, and inspected at our US facility. We support initial deployment and provide ongoing production support, field service, and warranty coverage.
Custom AGV, AMR, and robotic platform batteries with tight form factors and high-cycle requirements.
MIL-SPEC ruggedized battery systems for ground vehicles, portable equipment, and unmanned systems.
Corrosion-resistant, high-cycle battery systems for electric propulsion, hybrid vessels, and offshore equipment.
Airport ground support equipment, mining vehicles, construction equipment, and other specialty electric platforms.
High-reliability battery systems for medical devices, laboratory equipment, and cleanroom-compatible applications.
Backup power systems for cell towers, data centers, and distributed network infrastructure.