The Science

Sodium-Ion Technology

Why we chose sodium-ion chemistry — and why it's the only battery technology that solves all four marine energy problems simultaneously.

The Four Marine Energy Problems

Every marine energy system has to solve four problems at once. Most chemistries solve one or two. Sodium-ion solves all four.

Problem 1: Fire

Lithium-ion and LiFePO4 can experience thermal runaway — a self-sustaining exothermic reaction that produces fire, toxic gas, and explosion risk. On a boat, there's nowhere to go.

Na-Ion Solution: Sodium-ion chemistry cannot enter thermal runaway. The electrochemical mechanism simply doesn't support the runaway cascade. Zero fire risk. Insurers treat it identically to lead-acid.

Problem 2: Temperature

Florida engine rooms exceed 50°C in summer. Standard LiFePO4 is rated to 45°C and derates above it. Lead-acid loses capacity below 10°C. Marine environments are brutal on both.

Na-Ion Solution: Sodium-ion operates from -20°C to 60°C with no derating. No climate-controlled compartment needed. Full rated capacity in Florida heat and northern cold alike.

Problem 3: Surge

Gyroscopic stabilizers demand 3–5× their steady-state draw during spin-up — 10–25 kW for 2–4 seconds. Most batteries sag under this surge, causing BMS protection trips and failed starts.

Na-Ion Solution: Sodium-ion has excellent high-rate discharge capability. Our SALT START™ packs are engineered specifically for stabilizer surge profiles — tested against actual SK6 through SK35 inrush curves.

Problem 4: Longevity

Lead-acid lasts 500 cycles. LiFePO4 lasts ~2,000. On a boat used 200 days a year, you're replacing lead-acid every 2–3 years. The replacement cost erases any upfront savings.

Na-Ion Solution: 3,000+ cycle life at 80% DoD. At 200 cycles/year, that's 15+ years before degradation. The math is simple: sodium-ion is cheaper over the system lifecycle.

Chemistry Comparison

Property Na-Ion
(SALT START™)
LiFePO4
(lithium)
Lead-Acid AGM
Thermal Runaway RiskNonePossibleVery Low
Cycle Life (to 80%)3,000+~2,000~500
Operating Temp Range-20°C to 60°C0°C to 45°C-20°C to 50°C
Weight (per kWh)~12 kg~10 kg~30 kg
High-Surge CapabilityExcellentGoodFair
Marine InsuranceNo issuesVaries by insurerStandard
Engine Room (50°C)Full capacityDeratesAccelerated aging
10-Year Total CostLowestMediumHighest

Source: STAR internal testing + Seakeeper Battery Sizing TB-90621-3 + manufacturer datasheets. Marine environment conditions assumed.

SALT START™ Technology

Engineered by Salty Marine · Developed under STAR R&D

SALT START™ is not a commodity sodium-ion product. It's an engineered system designed from scratch for marine stabilizer applications.

Surge-Tuned Cell Selection

Cells are selected and qualified specifically for the 3–5× inrush current profile of marine gyro startup. Not all sodium-ion cells are surge-rated — ours are.

Marine-Grade BMS

IP67-rated battery management system with salt-spray resistant housing. Monitors cell voltage, temperature, current, and state-of-charge in real time. No consumer-grade electronics in a bilge.

Load-Matched Sizing

Every SALT START™ pack is sized to the specific stabilizer model and vessel house load. We don't sell boxes off a shelf. We engineer systems for your vessel's actual power profile.

Ready to Engineer Your System?

Use our sizing calculator for a quick estimate, or contact us for a full vessel load analysis.