In smart logistics systems, container trackers act as the communication brain, collecting global location and environmental data and uploading it to the cloud. However, these devices face extreme operating challenges:
2. Long‑Term Standby Requirement: Backup batteries may remain unused for months or even a year, but must immediately support data reporting and alarms once the main power supply fluctuates.
3. Safety & Compliance: Maritime transport demands high battery stability. NiMH batteries feature excellent thermal stability and mild failure modes, meeting industrial requirements for high safety redundancy.

Under such harsh conditions, low self‑discharge NiMH batteries, renowned for exceptional stability, have become the top choice for industrial‑grade backup power.
2. Low Self‑Discharge: Reliable When It Matters Most
Container trackers operate in low‑power standby mode for extended periods. BPI's low self‑discharge technology ensures batteries retain sufficient power for positioning and communication tasks after long idle periods, preventing emergency failures.3. Automotive‑Grade Quality for Longevity
BPI implements the stringent IATF16949 automotive‑grade quality system in production, enabling full traceability from raw materials to finished products. This supports device lifespans of 5–10 years or longer, significantly reducing labor costs from frequent battery replacements.
| Core Model | Rated Voltage | Rated Capacity | Product Advantage |
| 43SC3000mAh*3 | 3.6V | 3000mAh | High‑capacity SC‑type cells, ideal for long‑term data collection and monitoring. |
| 49C4500mAh*3 | 3.6V | 4500mAh | Ultra‑high‑capacity C‑type cells, delivering extreme endurance for high‑frequency global positioning. |
BPI's Mainstream Solutions: Supports standard 3.6V combinations including 43SC3000mAh*3 and 49C4500mAh*3, with custom specifications available for specific voltage requirements.
Space & Parameter Customization: Personalized matching based on tracker installation space, voltage, capacity and terminal wire length, delivering optimal power support while ensuring safety.